Composition containing plasmalogen for enhancing memory ability

A composition of ethanolamine and choline plasmalogens from Halocynthia roretzi enhances verbal and visual memory abilities, addressing the underexplored functions of plasmalogens and improving memory performance.

JP7751846B2Active Publication Date: 2025-10-09NIHON PHARMACEUTICAL CO LTD +1
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Patent Information

Application Number
JP2020538487
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2018-08-24
Filing Date
2019-08-23
Publication Date
2025-10-09
Estimated Expiration
2039-08-23

AI Technical Summary

Technical Problem

The full extent of plasmalogen functions in vivo, particularly for enhancing learning and memory, has not been fully elucidated, and there is a need to identify additional beneficial functions.

Method used

A composition containing ethanolamine and choline plasmalogens, derived from aquatic invertebrates like Halocynthia roretzi, is formulated to enhance verbal and visual memory abilities, with a specific mass ratio of 7:3 to 9:1, administered at 12 to 25 μg/kg body weight per day.

Benefits of technology

The composition effectively enhances verbal and visual memory abilities in subjects, as demonstrated by clinical trials, showing significant improvements in memory tests.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a beneficial use of plasmalogen that has not yet been publicly known. A composition containing plasmalogen for enhancing verbal memory ability and / or visual memory ability.
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Description

[Technical Field]

[0001] The present invention relates to a composition containing plasmalogen for enhancing memory ability. More specifically, the present invention relates to a composition containing plasmalogen for enhancing memory ability such as verbal memory ability, visual memory ability, and overall memory ability. [Background technology]

[0002] There have been many reports on plasmalogens' involvement in brain signal transduction and their function as antioxidants in the brain. For example, Patent Document 1 reports that plasmalogens have a brain neurogenesis effect, and Patent Document 2 reports that plasmalogens have the effect of improving central nervous system inflammation.

[0003] Recently, it has been reported that mice administered with plasmalogen had enhanced learning and memory abilities (Patent Document 3). [Prior art documents] [Patent documents]

[0004] [Patent Document 1] International Publication No. 2011 / 083827 [Patent Document 2] International Publication No. 2012 / 039472 [Patent Document 3] Japanese Patent Application Laid-Open No. 2016-210696 Summary of the Invention [Problem to be solved by the invention]

[0005] Thus, plasmalogens have been reported to have a wide range of functions in vivo, such as improving central nervous system inflammation and enhancing learning and memory. However, it is believed that the full extent of the functions of plasmalogens in vivo has not yet been elucidated. Therefore, plasmalogens may have other beneficial functions that are not yet publicly known. [Means for solving the problem]

[0006] In view of the above problems, the present inventors have conducted intensive research and have unexpectedly found that plasmalogens have the function of enhancing verbal memory ability and / or visual memory ability, and have completed the present invention.

[0007] Therefore, the present invention provides the following in summary. [1] A composition containing plasmalogen for enhancing verbal memory ability and / or visual memory ability. [2] The composition according to [1] for enhancing verbal memory ability. [3] The composition according to [1] or [2] for enhancing verbal memory ability and visual memory ability. [4] The composition according to any one of [1] to [3], wherein the plasmalogen comprises an ethanolamine plasmalogen and a choline plasmalogen. [5] The composition according to [4], wherein the mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is 7:3 to 9:1. [6] The composition according to any one of [1] to [5], wherein the plasmalogen is derived from a plasmalogen-containing animal tissue. [7] The composition according to [6], wherein the animal tissue is derived from an aquatic invertebrate. [8] The composition according to [7], wherein the aquatic invertebrate is an aquatic invertebrate of the phylum Chordata, subphylum Urochordata, class Ascidiacea. [9] The composition according to [8], wherein the aquatic invertebrate of the phylum Chordata, subphylum Urichoda, class Ascidiacea is a aquatic invertebrate of the genus Halocynthia.

[10] The composition according to [9], wherein the aquatic invertebrate of the genus Halocynthia is a Halocynthia roretzi or a Halocynthia roretzi.

[11] The composition according to any one of [1] to

[10] , which enhances normal verbal memory ability.

[12] The composition according to any one of [1] to

[11] , wherein the plasmalogen is administered at a dose of 12 to 25 μg / kg body weight per day.

[13] The composition according to any one of [1] to

[12] , which is a food composition.

[14] The composition according to

[13] , wherein the food composition is a food for specified health uses, a food with functional claims, or a health food other than these. [Effects of the Invention]

[0008] According to the present invention, it is possible to enhance verbal memory ability and / or visual memory ability in a subject who has ingested plasmalogen. [Brief explanation of the drawings]

[0009] [Figure 1] Figure 1 shows the results of verbal memory ability in the human clinical trial conducted in Test Example 1. Note that "*" indicates p<0.1. [Figure 2] 2 shows the results of visual memory ability in the human clinical trial conducted in Test Example 1. Note that "**" indicates p<0.05. [Figure 3] 3 shows the results of the overall memory ability in the human clinical trial conducted in Test Example 1. Note that "**" indicates p<0.05. [Figure 4A] FIG. 4A shows the results (graph) of an LCMSMS analysis of the proportion of ethanolamine plasmalogen contained in plasmalogen. [Figure 4B] Figure 4B shows the results of LCMSMS analysis of the proportion of ethanolamine plasmalogen contained in plasmalogen (table). [Figure 5A] FIG. 5A shows the results (graph) of an LCMSMS analysis of the proportion of choline plasmalogen contained in plasmalogens. [Figure 5B] FIG. 5B shows the results of LCMSMS analysis of the proportion of choline plasmalogen contained in plasmalogen (table). DETAILED DESCRIPTION OF THE INVENTION

[0010] In one embodiment of the present invention, a composition containing a plasmalogen is provided for enhancing verbal and / or visual memory ability.

[0011] As used herein, "verbal memory ability" refers to the ability to recognize, memorize, and later recall letters, words, etc., and refers to the ability to process the expressions and meanings of letters, words, etc. Verbal memory ability can be assessed, for example, by a verbal memory test using Cognitrax.

[0012] As used herein, "visual memory ability" refers to the ability to recognize, memorize, and later recall shapes and spaces, and refers to the ability to process shapes and spatial representations. Visual memory ability can be assessed, for example, by a visual memory test using Cognitrax.

[0013] In another embodiment of the present invention, there is provided a method for enhancing verbal and / or visual memory ability, comprising administering an effective amount of a plasmalogen to a subject in need thereof.

[0014] In another embodiment of the present invention, a plasmalogen is provided for enhancing verbal and / or visual memory performance.

[0015] In another embodiment of the present invention, there is provided a use of plasmalogen for producing a food or medicine for enhancing verbal and / or visual memory ability.

[0016] In one embodiment of the present invention, a composition containing a plasmalogen is provided for enhancing verbal memory ability.

[0017] In one embodiment of the present invention, a composition containing a plasmalogen is provided for enhancing verbal and visual memory abilities.

[0018] As used herein, "overall memory ability" refers to memory ability calculated from the sum of a verbal memory test and a visual memory test, for example, when measured using Cognitrax. Therefore, in another embodiment of the present invention, a composition containing plasmalogen for enhancing overall memory ability is provided.

[0019] As used herein, the term "plasmalogen" generally refers to a glycerophospholipid having a long-chain alkenyl group at the 1-position (sn-1 position) of the glycerol backbone via a vinyl ether bond, for example, a glycerophospholipid represented by the following general formula: [ka] This can be shown as:

[0020] R 1 is an aliphatic hydrocarbon group, and is usually an aliphatic hydrocarbon group having 1 to 20 carbon atoms. 1 Examples of the alkyl group include, but are not limited to, dodecyl group (C12), tetradecyl group (C14), hexadecyl group (C16), octadecyl group (C18), octadecyl group (C18:1), and icosanyl group (C20) (preferably, hexadecyl group (C16), octadecyl group (C18), and icosanyl group (C20), and more preferably, octadecyl group (C18)). R 2 is an aliphatic hydrocarbon group, and is usually a group corresponding to the aliphatic hydrocarbon portion of a fatty acid. 2 Examples of R include, but are not limited to, groups corresponding to the aliphatic hydrocarbon moieties of fatty acids such as palmitic acid, stearic acid, oleic acid, octadecadienoic acid, octadecatrienoic acid, eicosenoic acid, eicosatetraenoic acid, eicosapentaenoic acid, docosatetraenoic acid, docosapentaenoic acid, and docosahexaenoic acid. 2-CO- is, for example, a group derived from palmitic acid (CH3(CH2) 14 -CO-), a group derived from stearic acid (CH3(CH2) 16 -CO-), a group derived from oleic acid (CH3(CH2)7CH=CH(CH2)7-CO-), a group derived from octadecadienoic acid (e.g., CH3(CH2)4(CH=CHCH2)2(CH2)6-CO-), a group derived from octadecatrienoic acid (e.g., CH3CH2(CH=CHCH2)3(CH2)6-CO-), a group derived from eicosenoic acid (CH3(CH2)7CH=CHCH2(CH2)8-CO-), a group derived from eicosatetraenoic acid (e.g., CH3(CH2)4(CH=CHCH2)4(CH2)2-CO-). , groups derived from eicosapentaenoic acid (e.g., CH3CH2(CH=CHCH2)5(CH2)2-CO-), groups derived from docosatetraenoic acid (e.g., CH3(CH2)4(CH=CHCH2)4(CH2)4-CO-), groups derived from docosapentaenoic acid (e.g., CH3CH2(CH=CHCH2)5(CH2)4-CO-, CH3(CH2)4(e.g., CH=CHCH2)5CH2-CO-), and groups derived from docosahexaenoic acid (e.g., CH3CH2(CH=CHCH2)6CH2-CO-). X represents a polar group, and examples thereof include, but are not limited to, -CH2CH2N + H3, -CH2CH2N + (CH3)3, -CH2CH(NH2)COOH (preferably -CH2CH2N + H3, -CH2CH2N + (CH3)3).

[0021] In the above general formula, X is -CH2CH2N + In the case of H3, it represents an ethanolamine plasmalogen, and X is -CH2CH2N + In the case of (CH3)3, it represents a choline plasmalogen. The compositions described herein preferably contain ethanolamine plasmalogen and choline plasmalogen as plasmalogens.

[0022] Thus, in one embodiment of the present invention there is provided a composition as described herein, wherein the plasmalogen comprises an ethanolamine plasmalogen and a choline plasmalogen.

[0023] In another embodiment of the present invention, there is provided a method for enhancing verbal and / or visual memory ability as described herein, wherein the plasmalogen comprises an ethanolamine plasmalogen and a choline plasmalogen.

[0024] In another embodiment of the present invention, there is provided a plasmalogen for enhancing verbal and / or visual memory ability as described herein, wherein the plasmalogen comprises an ethanolamine plasmalogen and a choline plasmalogen.

[0025] The mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is not particularly limited as long as the object of the present invention can be achieved, but is, for example, about 5:about 5 to about 10:about 0, preferably about 6:about 4 to about 9.5:about 0.5, more preferably about 7:about 3 to about 9:about 1, and even more preferably about 8:about 2 to about 8.8:about 1.2.

[0026] In one preferred embodiment of the present invention, there is provided a composition described herein, wherein the mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is about 7:about 3 to about 9:about 1.

[0027] In another embodiment of the present invention, there is provided a method for enhancing verbal memory ability and / or visual memory ability described herein, wherein the mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is about 7:about 3 to about 9:about 1.

[0028] In another embodiment of the present invention, there is provided a plasmalogen for enhancing verbal memory ability and / or visual memory ability described herein, wherein the mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is about 7:about 3 to about 9:about 1.

[0029] In a more preferred embodiment of the present invention, there is provided a composition described herein, wherein the mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is about 8:about 2 to about 8.8:about 1.2.

[0030] In one embodiment of the present invention, the ethanolamine plasmalogen contained in the plasmalogen has an octadecyl group at the sn-1 position (i.e., R 1 is an octadecyl group).

[0031] In one embodiment of the present invention, the choline plasmalogen contained in the plasmalogen has an octadecyl group at the sn-1 position (i.e., R 1 is an octadecyl group).

[0032] In a preferred embodiment of the present invention, the ethanolamine plasmalogen contained in the plasmalogen has an octadecyl group at the sn-1 position (i.e., R 1 is an octadecyl group), and the choline plasmalogen contained in the plasmalogen has an octadecyl group at the sn-1 position (i.e., R 1 is an octadecyl group).

[0033] In one embodiment of the present invention, the ethanolamine plasmalogen contained in the plasmalogen has an ethanolamine group at the sn-2 position (i.e., R 2The hydroxybenzoates include at least one having a group derived from oleic acid (as -CO-), a group derived from octadecadienoic acid, a group derived from eicosenoic acid, a group derived from eicosatetraenoic acid, a group derived from eicosapentaenoic acid, or a group derived from docosahexaenoic acid (preferably a group derived from oleic acid, a group derived from eicosatetraenoic acid, a group derived from eicosapentaenoic acid, or a group derived from docosahexaenoic acid).

[0034] In one embodiment of the present invention, the choline plasmalogens contained in the plasmalogens include at least one having a group derived from palmitic acid, a group derived from octadecatrienoic acid, a group derived from eicosapentaenoic acid, or a group derived from docosapentaenoic acid at the sn-2 position.

[0035] In a preferred embodiment of the present invention, the ethanolamine plasmalogens contained in the plasmalogens include at least one having an oleic acid-derived group, an octadecadienoic acid-derived group, an eicosenoic acid-derived group, an eicosatetraenoic acid-derived group, an eicosapentaenoic acid-derived group, or a docosahexaenoic acid-derived group (preferably, an oleic acid-derived group, an eicosatetraenoic acid-derived group, an eicosapentaenoic acid-derived group, or a docosahexaenoic acid-derived group) at the sn-2 position, and the choline plasmalogens contained in the plasmalogens include at least one having a palmitic acid-derived group, an octadecatrienoic acid-derived group, an eicosapentaenoic acid-derived group, or a docosapentaenoic acid-derived group at the sn-2 position.

[0036] The plasmalogen (or plasmalogen-containing composition) described herein may be, but is not limited to, a plasmalogen (or plasmalogen-containing composition) synthesized by a known or well-known method, or a plasmalogen (or plasmalogen-containing composition) obtained from biological tissue by a known or well-known method or by a method described below. Examples of biological tissue include, but are not limited to, plasmalogen-containing animal tissue and plasmalogen-containing microbial tissue, with plasmalogen-containing animal tissue being preferred.

[0037] As used herein, the term "plasmalogen-containing animal tissue" is not particularly limited as long as it is an animal tissue containing plasmalogen, and may be the entire animal, or tissue isolated from the animal such as animal muscle tissue, adipose tissue, nervous tissue, visceral tissue, skin tissue, eggs, shells, or blood. It may also be a combination of the entire animal and isolated tissue, or a mixture of multiple isolated tissues. Plasmalogen-containing animal tissues include, but are not limited to, those derived from terrestrial vertebrates such as cows, pigs, horses, sheep, goats, chickens, and ducks (excluding humans); aquatic vertebrates such as bluefin tuna, salmon, saury, bonito, sardines, and cod; and aquatic invertebrates such as ascidians, red ascidians, yellow starfish, starfish, northern sea urchins, sea urchins, sea cucumbers, green sea anemones, armored sea anemones, scallops, chitons, mussels, Japanese mullet, Japanese oysters, monkey abalone, purple mussels, purple parrot mussels, Pacific oysters, octopus, squid, crab, and shrimp. These may be used as whole organisms or isolated tissues, and may be used alone or in combination of two or more.

[0038] In a preferred embodiment of the present invention, the animal tissue is derived from an aquatic invertebrate, more preferably an aquatic invertebrate of the phylum Chordata, subphylum Urichoda. Examples of aquatic invertebrates of the phylum Chordata, subphylum Urochordata include aquatic invertebrates such as Ascidiaceae of the phylum Chordata, subphylum Urochordata, Thaliaceae of the phylum Chordata, and Ascidiaceae of the phylum Chordata, subphylum Urochordata.

[0039] In a further preferred embodiment of the present invention, the aquatic invertebrate is an aquatic invertebrate of the phylum Chordata, subphylum Urichoda, class Ascidiacea.

[0040] In an even more preferred embodiment of the present invention, the aquatic invertebrate of the phylum Chordata, subphylum Urichoda, class Ascidiacea is a aquatic invertebrate of the genus Halocynthia. A preferred aquatic invertebrate of the genus Halocynthia is the ascidian Halocynthia roretzi or the ascidian Halocynthia anguilla.

[0041] As used herein, the term "plasmalogen-containing microbial tissue" is not particularly limited as long as it is microbial tissue containing plasmalogen, and may be a microorganism itself or a substance isolated from a microorganism, such as a cell membrane. Examples of plasmalogen-containing microbial tissue include, but are not limited to, bacteria of the Acidaminococcaceae family, rumen bacteria, and microorganisms belonging to the Propionibacterium genus, such as P. acidipropionici and P. acnes.

[0042] When obtaining plasmalogen (or a composition containing plasmalogen) from plasmalogen-containing animal tissue, for example, plasmalogen (or a composition containing plasmalogen) can be obtained by a method including: (A) concentrating an alcohol extract of the plasmalogen-containing animal tissue; and (B) diluting the concentrate obtained in (A) and then refrigerating and allowing it to stand.

[0043] The "alcohol extract of plasmalogen-containing animal tissue" in (A) above is not particularly limited as long as it is a liquid obtained by extracting plasmalogen-containing animal tissue with a solvent containing alcohol. The "solvent containing alcohol" may be a solvent consisting of alcohol alone, or a mixed solvent of alcohol and other solvents. The "alcohol" used in the extraction includes, but is not limited to, primary alcohols such as methanol, ethanol, propanol, and 1-butanol; secondary alcohols such as isopropanol and 2-butanol; and tertiary alcohols such as tert-butanol. These may be used alone or in combination of two or more. Examples of "other solvents" to be used in combination with alcohol include, but are not limited to, water (for example, tap water, natural water, tap water, hard water, soft water, ion-exchanged water, purified water, sterilized water, water for injection, etc., which may be used alone or in combination of two or more types); fatty acids or esters thereof such as acetic acid, propanoic acid, butanoic acid, pentanoic acid, hexanoic acid, heptanoic acid, octanoic acid, nonanoic acid, and oleic acid; hydrophilic organic solvents other than these, such as acetone; and hydrophobic organic solvents such as chloroform, hexane, heptane, cyclohexane, and petroleum ether, which may be used alone or in combination of two or more types.

[0044] When a mixed solvent of alcohol and other solvent is used, the mixing ratio of the alcohol to other solvent is not particularly limited. For example, the ratio of alcohol to other solvent, in volume %, is usually about 99.9:about 0.1 to about 0.1:about 99.9, preferably about 99:about 1 to about 50:about 50, more preferably about 99:about 1 to about 60:about 40, and even more preferably about 99:about 1 to about 90:about 10.

[0045] The amount of alcohol-containing solvent used to obtain the extract is not particularly limited, but is preferably about 1 to about 100 L, more preferably about 3 to about 50 L, even more preferably about 5 to about 20 L, and even more preferably about 5 to about 10 L per 1 kg of plasmalogen-containing animal tissue.

[0046] The method for obtaining the "alcohol extract of plasmalogen-containing animal tissue" in (A) above is not particularly limited, but it can be obtained, for example, as described below. Plasmalogen-containing animal tissue is extracted by standing, mixing, or stirring in an alcohol-containing solvent at about 1 to about 50°C, preferably about 20 to about 50°C, and more preferably about 40 to about 50°C, for about 0.5 to about 24 hours, preferably about 1 to about 10 hours, and more preferably about 2 to about 6 hours. The solid-liquid mixture is separated into solid phase 1 and liquid phase 1 using a strainer or the like. Liquid phase 1 is filtered by a method such as suction filtration to remove solid matter, yielding liquid phase 2, which can be used as the alcohol extract. Alternatively, to increase the extraction efficiency, an alcohol-containing solvent is further added to the solid phase 1 separated above, and the mixture is immersed at about 1 to about 50°C, preferably about 20 to about 50°C, more preferably about 40 to about 50°C, for about 0.5 to about 24 hours, preferably about 1 to about 10 hours, more preferably about 2 to about 6 hours. The solid-liquid mixture is then separated using a strainer or the like into solid phase 2 and liquid phase 3. Liquid phase 3 is filtered by a method such as suction filtration to remove solid matter, thereby obtaining liquid phase 4. The combination of liquid phase 2 and liquid phase 4 can be used as the alcohol extract. Alternatively, one or more liquid phases obtained by further repeated re-extraction of the solid phase with a solvent containing alcohol, combined with the above liquid phases 2 and 4, can be used as the alcohol extract.

[0047] The concentration of the alcohol extract in (A) above is not particularly limited and may be carried out in an open or closed system, but is preferably carried out in a closed system. This concentration can be carried out, for example, by vacuum concentration, heating concentration, freezing concentration, or membrane concentration, with vacuum concentration being preferred. Furthermore, to prevent oxidation, this concentration is preferably carried out under bubbling of an inert gas such as nitrogen or argon. When vacuum concentration is carried out, the temperature can be, for example, about 10 to about 55°C, preferably about 25 to about 50°C, and more preferably about 40 to about 50°C, for typically about 1 to about 72 hours, preferably about 6 to about 48 hours, and more preferably about 12 to about 36 hours. The degree of vacuum can be, for example, about 60 mmHg.

[0048] In (B) above, the solvent used to dilute the concentrate obtained in (A) above is not particularly limited, and examples thereof include water (e.g., tap water, natural water, tap water, hard water, soft water, ion-exchanged water, purified water, sterilized water, water for injection, etc., which may be used alone or in combination of two or more); alcohols such as methanol, ethanol, propanol, 1-butanol, isopropanol, 2-butanol, and tert-butanol; fatty acids or esters thereof such as acetic acid, propanoic acid, butanoic acid, pentanoic acid, hexanoic acid, heptanoic acid, octanoic acid, nonanoic acid, and oleic acid; hydrophilic organic solvents other than these, such as acetone; and hydrophobic organic solvents such as chloroform, hexane, heptane, cyclohexane, and petroleum ether, which may be used alone or in combination of two or more. Among these, water or alcohols are preferred, water or ethanol is more preferred, and water is even more preferred. When water is used for dilution, the pH of the water may be adjusted using a pH adjuster, if necessary. Examples of pH adjusters used to adjust the pH of water include, but are not limited to, acetic acid, lactic acid, tartaric acid, oxalic acid, glycolic acid, malic acid, citric acid, succinic acid, fumaric acid, phosphoric acid, hydrochloric acid, oxalic acid, sulfuric acid, nitric acid, and salts thereof, sodium hydroxide, potassium hydroxide, sodium bicarbonate, potassium carbonate, and the like, which may be used alone or in combination of two or more.

[0049] The amount of solvent used for dilution is not particularly limited, but is preferably about 1 to about 100 L, more preferably about 10 to about 80 L, and even more preferably about 20 to about 60 L, per 1 kg of the concentrate obtained in (A) above.

[0050] The refrigerated standing in (B) above is preferably carried out at about 2 to about 15°C, more preferably at about 2 to about 10°C, and even more preferably at about 2 to about 5°C.

[0051] The refrigerated standing in (B) above is preferably carried out for about 1 to about 7 days, more preferably for about 2 to about 6 days, even more preferably for about 3 to about 5 days, and even more preferably for about 3 days.

[0052] The concentrate obtained in (A) above may be allowed to stand or stored before being diluted in (B) above. This standing or storage is preferably carried out at about 2 to about 15°C, preferably about 2 to about 10°C, and more preferably about 2 to about 5°C, for about 1 to about 14 days, and may be carried out in an open or closed system, but is preferably carried out in a closed system. Furthermore, this standing or storage is preferably carried out under bubbling of an inert gas such as nitrogen or argon to prevent oxidation.

[0053] In addition, the concentrate obtained in (A) above may be purified by a method such as solvent extraction, if necessary, before being diluted with (B) above, and further concentrated by a method such as vacuum filtration, and the resulting product may be used as the "concentrate" in (B) above.

[0054] The plasmalogen-containing animal tissue may be dried. The drying method used here is not particularly limited, but known or well-known methods such as air drying, dehumidification, vacuum drying, and freeze-drying can be used.

[0055] The drying by blowing air is preferably carried out by blowing air onto the plasmalogen-containing animal tissue at a temperature of typically about 25 to about 59° C., preferably about 35 to about 55° C., and more preferably about 40 to about 50° C. The drying by blowing air may be carried out in an open system or a closed system. In the case of an open system, the ambient temperature is, for example, about 20 to about 55° C., preferably about 30 to about 45° C., and more preferably about 35 to about 40° C. In the case of a closed system, the ambient temperature is preferably, for example, approximately the same as the temperature of the air blown onto the plasmalogen-containing animal tissue.

[0056] The drying by blowing air can be carried out for, for example, about 0.5 to about 96 hours, preferably about 1 to about 72 hours, more preferably about 6 to about 48 hours, and even more preferably about 12 to about 36 hours.

[0057] The water content of the dried plasmalogen-containing animal tissue can be, for example, about 1 to about 40% by mass, preferably about 5 to about 30% by mass, and more preferably about 10 to about 25% by mass, relative to the total amount of the plasmalogen-containing animal tissue.

[0058] The plasmalogen-containing animal tissue may be divided into two or more parts in order to increase the efficiency of the drying and alcohol extraction.

[0059] After the treatment (B) above, unnecessary fractions can be removed by decanting at, for example, about 2 to about 15°C, thereby obtaining only the fraction containing plasmalogen derived from the plasmalogen-containing animal tissue. The fraction containing plasmalogen may be in the upper layer, the lower layer, or another intermediate layer depending on the type of solvent used for dilution. In a preferred embodiment, the fraction containing plasmalogen is in the lower layer (more preferably, the liquid phase in the lower layer).

[0060] The product obtained after the treatment (B) above may be used as is as the plasmalogen (or composition containing plasmalogen) described herein, or the product after removing unnecessary fractions may be used as the plasmalogen (or composition containing plasmalogen) described herein. Alternatively, the product may be dissolved, dispersed, or suspended in a solvent as appropriate and used as the plasmalogen (or composition containing plasmalogen) described herein. Alternatively, the product obtained by adding a solvent and further treating it with concentration, purification, etc. may be used as the plasmalogen (or composition containing plasmalogen) described herein. The concentration here is not particularly limited and may be carried out in an open system or a closed system, but is preferably carried out in a closed system. This concentration can be carried out, for example, by vacuum concentration, heating concentration, freezing concentration, or membrane concentration, with vacuum concentration being preferred. Furthermore, to prevent oxidation, this concentration is preferably carried out under bubbling of an inert gas such as nitrogen or argon. When vacuum concentration is carried out, the temperature can be, for example, about 10 to about 55°C, preferably about 25 to about 50°C, and more preferably about 40 to about 50°C, for example, about 1 to about 72 hours, preferably about 6 to about 48 hours, and more preferably about 12 to about 36 hours. The degree of vacuum can be, for example, about 60 mmHg. Examples of the purification method include, but are not limited to, solvent extraction; reprecipitation; and chromatography such as thin layer chromatography and column chromatography.

[0061] In the above treatment (A) or (B) or other treatments, or in the obtained composition containing plasmalogen, desired additives may be added as needed. The purpose of adding additives is not particularly limited, but examples include adding an antioxidant to prevent oxidation of the plasmalogen, adding a preservative to preserve the composition containing plasmalogen, and adding a dispersant to homogenize the plasmalogen. Additives that can be used include, but are not limited to, antioxidants such as ascorbic acid, tocopherol, erythorbic acid, sodium sulfite, dibutylhydroxytoluene, butylhydroxyanisole, and catechin; preservatives such as sorbic acid, potassium sorbate, calcium sorbate, benzoic acid, sodium benzoate, propionic acid, sodium propionate, calcium propionate, sodium dehydroacetate, natamycin, pimaricin, polylysine, nisin, isopropyl parahydroxybenzoate, isopropyl parahydroxybenzoate, and isopropylparaben; and dispersants such as polysorbates, sodium lauryl sulfate, polyoxyethylene hydrogenated castor oil, and lecithin. These may be used alone or in combination of two or more.

[0062] The plasmalogens (or compositions containing plasmalogens) described herein may enhance verbal and / or visual memory abilities in subjects suffering from diseases that can affect verbal and / or visual memory abilities, such as diseases associated with central nervous system inflammation (including, but not limited to, Alzheimer's disease, Parkinson's disease, dementia, schizophrenia, depression, etc.), or may enhance healthy verbal and / or visual memory abilities in subjects not suffering from these diseases, preferably enhancing healthy verbal and / or visual memory abilities in subjects not suffering from these diseases. Therefore, in one embodiment of the present invention, the plasmalogens (or compositions containing plasmalogens) described herein enhance healthy verbal and / or visual memory abilities. Furthermore, in a preferred embodiment of the present invention, the plasmalogens (or compositions containing plasmalogens) described herein enhance healthy verbal and / or visual memory abilities.

[0063] As used herein, "healthy" means that the subject is not suffering from any of the above-mentioned diseases that may affect verbal and / or visual memory abilities. As used herein, "healthy" also includes cases where verbal and / or visual memory abilities decline with age compared to when the subject was younger. Whether a subject has "healthy" verbal and / or visual memory abilities may be determined, for example, by the Mini-Mental State Examination (MMSE). When using the Mini-Mental State Examination, for example, subjects who score 20 or more, preferably 22 or more, more preferably 24 or more, and even more preferably 27 or more out of a total of 30 points may be determined to have "healthy" verbal and / or visual memory abilities.

[0064] The "subject" used in the present invention includes, but is not limited to, mammals such as rodents such as mice, rats, hamsters, and guinea pigs; lagomorphs such as rabbits; ungulates such as pigs, cows, goats, horses, and sheep; carnivores such as dogs and cats; and primates such as humans, monkeys, rhesus monkeys, cynomolgus monkeys, marmosets, orangutans, and chimpanzees; with primates being preferred, and humans being more preferred.

[0065] The intake amount of a composition containing plasmalogen is not particularly limited as long as it exhibits the effect of enhancing verbal memory ability and / or visual memory ability, but for example, as plasmalogen, it is preferably about 1 to about 1000 μg / kg body weight per day, more preferably about 10 to about 100 μg / kg body weight per day, even more preferably about 12 to about 25 μg / kg body weight per day, and even more preferably about 15 to about 24 μg / kg body weight per day. In another embodiment of the present invention, the intake amount of a composition containing plasmalogen, for example, as plasmalogen, is preferably about 0.01 to about 100 mg per day, more preferably about 0.1 to about 10 mg per day, more preferably about 0.5 to about 5 mg per day, and even more preferably about 1 mg per day.

[0066] Therefore, one embodiment of the present invention provides a composition described herein, characterized in that the plasmalogen described herein is administered at a dose of about 12 to about 25 μg / kg body weight per day.

[0067] In another embodiment of the present invention, there is provided a method for enhancing verbal memory ability and / or visual memory ability described herein, characterized by administering about 12 to about 25 μg / kg body weight per day of a plasmalogen described herein.

[0068] In another embodiment of the present invention, there is provided a plasmalogen for enhancing verbal memory ability and / or visual memory ability described herein, characterized by administering about 12 to about 25 μg / kg body weight of the plasmalogen described herein per day.

[0069] The number of times plasmalogen (or a composition containing plasmalogen) is taken per day is not particularly limited as long as it exerts the effect of enhancing verbal memory ability and / or visual memory ability. For example, it may be taken once a day or multiple times a day, but once a day is preferred.

[0070] In one embodiment of the present invention, the composition containing the plasmalogen described herein is a food composition or a pharmaceutical composition. In a preferred embodiment of the present invention, the composition containing the plasmalogen described herein is a food composition. In a more preferred embodiment of the present invention, the food composition is a specified health food, a functional food, or other health food.

[0071] The compositions containing the plasmalogens described herein may contain additives such as, but not limited to, excipients, binders, disintegrants, lubricants, sweeteners, colorants, surfactants, solubilizers, dissolution aids, preservatives, pH adjusters, suspending agents, isotonicity agents, buffers, soothing agents, and antioxidants.

[0072] Examples of excipients include, but are not limited to, lactose hydrate, sucrose, glucose, starch, sucrose, crystalline cellulose, mannitol, etc., and these may be used alone or in combination of two or more.

[0073] Examples of binders include, but are not limited to, gum arabic, hydroxypropylmethylcellulose, hydroxypropylcellulose, and hydroxyethylcellulose, and these may be used alone or in combination of two or more.

[0074] Examples of disintegrants include, but are not limited to, corn starch, potato starch, carmellose calcium, carmellose sodium, low-substituted hydroxypropyl cellulose, croscarmellose sodium, crospovidone, and carboxymethyl starch sodium, and these may be used alone or in combination of two or more.

[0075] Examples of lubricants include, but are not limited to, light anhydrous silicic acid, stearic acid, magnesium stearate, calcium stearate, sucrose fatty acid esters, polyethylene glycol, and talc, and these may be used alone or in combination of two or more.

[0076] Examples of sweeteners include, but are not limited to, sucrose, fructose, xylitol, sorbitol, aspartame, potassium acesulfame, and sucralose.

[0077] Examples of colorants include, but are not limited to, yellow ferric oxide, black iron oxide, food yellow No. 4, food red No. 3, tar dyes, caramel, cocoa dyes, titanium oxide, and riboflavins, and these may be used alone or in combination of two or more.

[0078] Examples of surfactants include, but are not limited to, polysorbates, sodium lauryl sulfate, polyoxyethylene hydrogenated castor oil, etc., which may be used alone or in combination of two or more.

[0079] Examples of solubilizers include, but are not limited to, ethanol, propylene glycol, polyethylene glycol, sorbitan sesquioleate, sorbitan laurate, sorbitan palmitate, glyceryl oleate, glyceryl myristate, polyoxyethylene lauryl ether, polyoxyethylene nonylphenyl ether, and glycerin, and these may be used alone or in combination of two or more.

[0080] Examples of solubilizing agents include, but are not limited to, polyethylene glycol; propylene glycol; cyclodextrin; sugar alcohols such as mannitol; benzyl benzoate; trisaminomethane; cholesterol; triethanolamine; sodium carbonate; sodium citrate; alcohols such as methanol, ethanol, propanol, and isopropanol; single fatty acids or esters thereof such as acetic acid, propanoic acid, butanoic acid, pentanoic acid, hexanoic acid, heptanoic acid, myristic acid, stearic acid, and oleic acid; and vegetable oils such as sesame oil, peanut oil, coconut oil, palm oil, soybean oil, olive oil, coconut oil, corn oil, cottonseed oil, castor oil, rapeseed oil, and sunflower oil. These may be used alone or in combination of two or more.

[0081] Examples of preservatives include, but are not limited to, sorbic acid, potassium sorbate, calcium sorbate, benzoic acid, sodium benzoate, propionic acid, sodium propionate, calcium propionate, sodium dehydroacetate, natamycin, pimaricin, polylysine, nisin, isopropyl parahydroxybenzoate, isopropyl parahydroxybenzoate, and isopropylparaben, and these may be used alone or in combination of two or more.

[0082] Examples of pH adjusters include, but are not limited to, acetic acid, lactic acid, tartaric acid, oxalic acid, glycolic acid, malic acid, citric acid, succinic acid, fumaric acid, phosphoric acid, hydrochloric acid, sulfuric acid, nitric acid, and salts thereof, sodium hydroxide, potassium hydroxide, sodium bicarbonate, potassium carbonate, and the like, which may be used alone or in combination of two or more.

[0083] Examples of suspending agents include, but are not limited to, stearyl triethanolamine, sodium lauryl sulfate, lauryl aminopropionic acid, lecithin, benzalkonium chloride, benzethonium chloride, glycerin monostearate, polyvinyl alcohol, polyvinylpyrrolidone, sodium carboxymethylcellulose, methylcellulose, hydroxymethylcellulose, hydroxyethylcellulose, and hydroxypropylcellulose, and these may be used alone or in combination of two or more.

[0084] Examples of isotonic agents include, but are not limited to, sodium chloride, glycerin, mannitol, etc., which may be used alone or in combination of two or more.

[0085] Examples of buffering agents include, but are not limited to, phosphates, acetates, carbonates, citrates, and buffer solutions containing these, and these may be used alone or in combination of two or more.

[0086] Examples of soothing agents include, but are not limited to, benzyl alcohol.

[0087] Examples of antioxidants include, but are not limited to, ascorbic acid, tocopherol, erythorbic acid, sodium sulfite, dibutylhydroxytoluene, butylhydroxyanisole, and catechin, and these may be used alone or in combination of two or more.

[0088] In addition, the compositions containing the plasmalogens described herein may contain not only plasmalogens but also other beneficial components (e.g., other components that are beneficial for health or treatment) depending on their purpose.

[0089] The compositions containing plasmalogens described herein may be formulated by known methods into, for example, tablets, coated tablets, powders, granules, fine granules, hard capsules, soft capsules, pills, liquids, suspensions, emulsions, jellies, chewable tablets, soft tablets, etc. These may be oral or parenteral preparations, but oral preparations are preferred. In the case of oral preparations, it is preferable to process the preparation into an enteric coating to prevent degradation of the plasmalogen by gastric acid, etc. Enteric preparations include, but are not limited to, enteric-coated tablets, enteric-coated hard capsules, and enteric-coated soft capsules, preferably enteric-coated soft capsules.

[0090] In the case of soft capsules or hard capsules, in addition to the above-mentioned additives, for example, a base may be added as the capsule contents. Examples of bases include, but are not limited to, aqueous bases such as water; oily bases such as medium-chain fatty acid triglycerides, tricaprylin, caproic acid, caprylic acid, oleic acid, linoleic acid, linolenic acid, coconut oil, olive oil, rapeseed oil, peanut oil, corn oil, soybean oil, cottonseed oil, grape oil, and safflower oil; and the like, which may be used alone or in combination of two or more. Of these, oily bases are preferred, and medium-chain fatty acid triglycerides are particularly preferred.

[0091] Furthermore, in the case of soft capsules, a coating can be used to cover the contents. In addition to the above-mentioned additives, the coating may contain, for example, a coating base, a plasticizer, etc. Examples of coating bases include, but are not limited to, gelatin, succinated gelatin, starch (including modified starch), pullulan, polyvinyl alcohol copolymer, macrogol, carrageenan, glycerin, etc., and these may be used alone or in combination of two or more. Examples of plasticizers include, but are not limited to, sugar alcohols such as sorbitol and mannitol; and glycerin; and these may be used alone or in combination of two or more.

[0092] When the composition containing the plasmalogen described in this specification is a hard capsule, it can be produced, for example, by mixing the plasmalogen, excipients, etc. to obtain capsule contents, and filling the capsule contents, such as solid, liquid, or paste, into a gelatin capsule or the like.

[0093] When the composition containing the plasmalogen described in this specification is a soft capsule, it can be produced by filling the capsule contents into a coating, molding it, and drying it, using, for example, a punching method using a rotary die capsule molding device, a flat plate method in which the capsule contents are placed between two gelatin sheets and compressed from both sides with a mold, or a dropping method using a double nozzle. The shape of the soft capsule is not limited to these, but examples thereof include oval, oblong, round, eggplant, triangular, diamond, fish, tube, and bottle shapes.

[0094] The content of plasmalogen in a composition containing the plasmalogen described herein or a formulation thereof is not particularly limited as long as it exerts the effect of enhancing verbal memory ability and / or visual memory ability. For example, the content of plasmalogen in a composition containing the plasmalogen described herein or a formulation thereof is preferably 0.05 to 99.9% by mass, more preferably 0.1 to 80% by mass, and even more preferably 0.15 to 40% by mass, based on the total amount of the composition. [Example]

[0095] The present invention will be described in more detail below using examples, but these examples are not intended to limit the scope of the present invention in any way.

[0096] [Preparation Example 1] Preparation of compositions containing plasmalogens The shelled ascidians were divided into two equal parts and dried in a cold air dryer by exposing them to air at approximately 45°C for approximately 24 hours (the temperature inside the cold air dryer reached approximately 45°C). A mixture of ethanol and water (95% by volume: 5% by volume) was added to the dried material, and the mixture was stirred and extracted at approximately 40°C for approximately 2 hours. The solid and liquid were separated into solid phase 1 and liquid phase 1 using a stainless steel strainer (200 mesh). Liquid phase 1 was filtered under suction to remove the solid matter, yielding liquid phase 2. A mixture of ethanol and water (95% by volume: 5% by volume) was added to solid phase 1, and the mixture was immersed at room temperature for approximately 10 hours. The solid and liquid were then separated into solid phase 2 and liquid phase 3 using a stainless steel strainer (200 mesh). Liquid phase 3 was filtered under suction to remove the solid matter, yielding liquid phase 4. Liquid phases 2 and 4 were combined and concentrated under reduced pressure at approximately 45°C for approximately 24 hours. The concentrated solution was stored in a sealed state under nitrogen bubbling at about 5°C for about 8 days. It was then diluted with water and allowed to stand at about 4°C for about 3 days. The supernatant was then removed by decantation at about 4°C to recover liquid phase 5, and the plasmalogen content in liquid phase 5 was measured by HPLC. Medium-chain fatty acid triglyceride (manufactured by Nisshin Oillio Group, Inc.) and vitamin E (manufactured by Riken Vitamin Co., Ltd.) were added to liquid phase 5 so that the plasmalogen content was 1% by mass, thereby obtaining a composition containing plasmalogen.

[0097] [Example 1] Preparation of plasmalogen-containing enteric-coated soft capsules 100 mg of the plasmalogen-containing composition obtained in Preparation Example 1 and 100 mg of medium-chain fatty acid triglyceride (manufactured by Nisshin Oillio Group, Ltd.) were filled into a coating (32 parts by weight of glycerin (manufactured by Sakamoto Pharmaceutical Industry Co., Ltd.), 26 parts by weight of gelatin (manufactured by Nitta Gelatin Co., Ltd.), 26 parts by weight of modified starch (manufactured by National Starch Food Innovation), 14 parts by weight of carrageenan (manufactured by CP Kelco), and 2 parts by weight of cocoa color (manufactured by Mitsubishi Chemical Foods Corporation)) using an existing rotary die capsule molding device to obtain a plasmalogen-containing enteric-coated soft capsule (plasmalogen content in soft capsule: 1 mg).

[0098] [Comparative Example 1] Preparation of placebo enteric-coated soft capsules A placebo enteric-coated soft capsule was obtained by repeating the same procedure as in Example 1, except that 200 mg of medium-chain fatty acid triglyceride (manufactured by The Nisshin Oillio Group, Ltd.) was used instead of 100 mg of the plasmalogen-containing composition of Example 1 and 100 mg of medium-chain fatty acid triglyceride (manufactured by The Nisshin Oillio Group, Ltd.).

[0099] [Test Example 1] To verify the memory-enhancing effect of plasmalogen, a human clinical trial (randomized, placebo-controlled, double-blind, parallel-group comparative study) was conducted using the following method. Healthy adult male and female subjects were randomly assigned to two groups: a plasmalogen intake group (n=25) and a control group (n=24). The background of the subjects is shown in Table 1. The plasmalogen intake group was administered the plasmalogen-containing enteric-coated soft capsules prepared in Example 1, and the control group was administered the placebo enteric-coated soft capsules prepared in Comparative Example 1. Subjects were instructed to take one capsule once a day at any time (intake period: 12 weeks). During the study period, subjects were restricted from consuming foods for specified health uses, foods with functional claims, and other foods / drinks that may be thought to have functional properties, as well as from using tools and equipment that may contribute to improving brain function. Furthermore, from the date of obtaining consent for the study until the completion of the final test (test 12 weeks after intake), subjects were also prohibited from overeating and drinking, and from changing their lifestyle habits. Cognitive function was tested for each subject using Cognitrax (Health Solutions, Inc.) before taking the capsules and after 4, 8, and 12 weeks of capsule intake. Cognitrax assesses cognitive function through 10 online computerized tests. In this study, the changes in verbal memory, visual memory, and overall memory scores were calculated for each subject using the following formula: Score change = (Score after 4, 8 or 12 weeks of capsule intake) (Score before taking capsules) The obtained results were analyzed using Student's t-test (software used: SPSS (version 23.0 or 24.0, IBM Japan), Microsoft Excel 2013 (Microsoft)). The results are shown in Figures 1 to 3.

[0100] [Table 1]

[0101] The results of Test Example 1 using Example 1 and Comparative Example 1 show that verbal memory ability, visual memory ability, and overall memory ability were significantly improved in subjects who took plasmalogen-containing enteric soft capsules. Therefore, plasmalogen has the function of enhancing verbal memory ability, visual memory ability, and overall memory ability.

[0102] [Test Example 2] The composition containing the plasmalogen prepared in Preparation Example 1, and the plasmalogen contained in sea squirts (produced in Miyagi Prefecture) and scallops (produced in Miyagi Prefecture) were analyzed by LCMSMS under the conditions described below, and the proportions of ethanolamine plasmalogen and choline plasmalogen contained in the plasmalogen were analyzed. Sea squirts or scallops (approximately 100 g) were crushed into approximately 5 mm cubes and freeze-dried to obtain approximately 15 g of dried material. 95% ethanol was added to this and extracted by ultrasonic treatment at approximately 40°C for approximately 2 hours. The solid and liquid were separated into solid and liquid phases using a suction funnel, and 95% ethanol (approximately 100 g) was added to the solid phase to separate the liquid phase. The liquid phases were combined, and 1.3 times the amount of water (by weight) of the liquid phase was added. The mixture was allowed to stand at approximately 4°C for approximately 3 days. The upper layer was removed by decanting and centrifuging (4000 rpm, 5 minutes). The lower layer, the precipitate, was dissolved in ethanol and used as the sample. The proportions (mass ratio) of ethanolamine plasmalogen and choline plasmalogen were calculated so that the sum of these was 100%. The results are shown in Figures 4A to 5B.

[0103] LCMSMS analysis conditions [Standard product] Ethanolamine Plasmalogen (PEp) 18-18:1 (Merck) Choline plasmalogen (PCp) 18-18:1 (Merck) *18-18:1 means that the sn-1 position is C18 and the sn-2 position is a group derived from oleic acid (18:1). [Analysis conditions] Column: L-column 2 (2.1 x 150 mm, CERI) Column temperature: 50℃ Mobile phase A: Acetonitrile / water (60 / 40) 10 mM ammonium formate, 0.1% formic acid Mobile phase B: Isopropanol / acetonitrile (90 / 10) 10 mM ammonium formate, 0.1% formic acid Gradient: 0-27 min (A: 70% → A: 1%), 27-31 min (A: 1%), 31-31.1 min (A: 1% → A: 70%), 31.1-35 min (A: 70%) ·Flow rate: 300μL / min, injection volume: 5μL Detector: 3200QTRAP (manufactured by AB Sciex) [Measurement ions] [Table 2] *Eleven types of PEp and PCp were detected, each of which had a C18 at the sn-1 position and 16:0 (a group derived from palmitic acid), 18:0 (a group derived from stearic acid), 18:1 (a group derived from oleic acid), 18:2 (a group derived from octadecadienoic acid), 18:3 (a group derived from octadecatrienoic acid), 20:1 (a group derived from eicosenoic acid), 20:4 (a group derived from eicosatetraenoic acid), 20:5 (a group derived from eicosapentaenoic acid), 22:4 (a group derived from docosatetraenoic acid), 22:5 (a group derived from docosapentaenoic acid), or 22:6 (a group derived from docosahexaenoic acid) at the sn-2 position. For molecular species for which no standard was commercially available, the mass was calculated from the area value, assuming that the species was PEp 18-18:1 or PCp 18-18:1 based on the retention time, precursor, and product ions.

[0104] The results of Test Example 2 reveal that the plasmalogen-containing composition prepared in Preparation Example 1, and the plasmalogen contained in sea squirts and scallops contain ethanolamine plasmalogen and choline plasmalogen. Furthermore, it is revealed that the mass ratio of ethanolamine plasmalogen to choline plasmalogen contained in the plasmalogen is about 7:about 3 to about 9 to about 1. Therefore, plasmalogens containing ethanolamine plasmalogen and choline plasmalogen (particularly those in which the mass ratio of ethanolamine plasmalogen to choline plasmalogen is about 7:about 3 to about 9 to about 1) are thought to be useful for enhancing memory abilities such as verbal memory, visual memory, and overall memory. Ethanolamine plasmalogens frequently contained oleic acid-, octadecadienoic acid-, eicosenoic acid-, eicosatetraenoic acid-, eicosapentaenoic acid-, and docosahexaenoic acid-derived groups at the sn-2 position (especially oleic acid-, eicosatetraenoic acid-, eicosapentaenoic acid-, and docosahexaenoic acid-derived groups). On the other hand, choline plasmalogens frequently contained palmitic acid-, octadecatrienoic acid-, eicosapentaenoic acid-, and docosapentaenoic acid-derived groups at the sn-2 position.

[0105] As shown by the results of the above examples, the present invention can provide a composition containing plasmalogen for enhancing memory abilities such as verbal memory ability, visual memory ability, and overall memory ability. Furthermore, the present invention can provide a method for enhancing memory abilities such as verbal memory ability, visual memory ability, and overall memory ability, which comprises administering an effective amount of plasmalogen to a subject in need thereof. Furthermore, the present invention can provide a plasmalogen for enhancing memory abilities such as verbal memory ability, visual memory ability, and overall memory ability.

Claims

1. A composition containing plasmalogen for enhancing verbal memory ability and visual memory ability, or visual memory ability, The plasmalogen includes ethanolamine plasmalogen and choline plasmalogen, A composition comprising plasmalogen in a mass ratio of ethanolamine plasmalogen to choline plasmalogen of 7:3 to 9:

1.

2. A composition as described in claim 1 for enhancing verbal memory ability and visual memory ability.

3. The composition according to claim 1 or 2, wherein the plasmalogen is derived from plasmalogen-containing animal tissue.

4. 4. The composition of claim 3, wherein the animal tissue is derived from an aquatic invertebrate.

5. The composition according to claim 4, wherein the aquatic invertebrate is an aquatic invertebrate of the phylum Chordata, subphylum Urichoda, class Ascidiacea.

6. 6. The composition according to claim 5, wherein the aquatic invertebrate of the phylum Chordata, subphylum Urichoda, class Ascidiacea is a aquatic invertebrate of the genus Halocynthia.

7. 7. The composition according to claim 6, wherein the aquatic invertebrate of the genus Halocynthia is a Halocynthia roretzi or a Halocynthia roretzi.

8. The composition according to any one of claims 1 to 7, which enhances normal verbal memory ability.

9. The composition according to any one of claims 1 to 8, wherein the plasmalogen is administered at a dose of 12 to 25 μg / kg body weight per day.

10. The composition according to any one of claims 1 to 9, further comprising vitamin E.

11. The composition according to any one of claims 1 to 10, which is a food composition.

12. The composition according to claim 11, wherein the food composition is a food for specified health uses, a food with functional claims, or other health food.

Citation Information

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