Oral components

Incorporating nicotinic acid or its derivatives into oral compositions with anionic surfactants addresses the reduction in bactericidal effect caused by saliva, enhancing the bactericidal activity and shortening oral care time.

JP7767008B2Active Publication Date: 2025-11-11SUNSTAR INC
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Patent Information

Application Number
JP2020210800
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2020-12-18
Publication Date
2025-11-11
Estimated Expiration
2040-12-18

AI Technical Summary

Technical Problem

Oral compositions containing bactericides, particularly anionic surfactants, experience a reduction in bactericidal effect due to the influence of saliva.

Method used

Incorporating nicotinic acid or its derivatives into oral compositions with anionic surfactants having a C10 to C18 linear carbon chain to enhance the bactericidal effect and protect it from the deactivating effects of saliva.

Benefits of technology

The bactericidal effect of anionic surfactants is maintained or enhanced, reducing the time required for oral care and effectively sterilizing the oral cavity, particularly against periodontal disease bacteria.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an oral composition that prevents the bactericidal effect of an anionic surfactant contained therein from being inhibited by saliva.SOLUTION: An oral composition contains (i) an anionic surfactant having a C10-C18 straight-carbon-chain and (ii) nicotinic acid or a derivative thereof. The component (i) is at least one compound selected from the group consisting of sodium lauryl sulfate, sodium lauroyl sarcosinate, sodium cocoyl sarcosinate, sodium myristoylmethyl sarcosinate and the like.SELECTED DRAWING: None
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Description

[Technical Field]

[0001] The present disclosure relates to oral compositions and ingredients contained in oral compositions, etc. The contents of all documents described in this specification are incorporated herein by reference. [Background technology]

[0002] Oral compositions often contain a bactericide to enhance the bactericidal effect in the oral cavity. Various ingredients are known as bactericides to be contained in oral compositions, such as anionic surfactants. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2018-002719 Summary of the Invention [Problem to be solved by the invention]

[0004] However, when the oral composition is applied to the oral cavity, the bactericidal agent contained in the oral composition is affected by components in saliva, resulting in a decrease in the bactericidal effect.

[0005] Therefore, the present inventors attempted to develop a means for preventing the reduction in the bactericidal effect of bactericides, particularly anionic surfactants, due to the influence of saliva. [Means for solving the problem]

[0006] The inventors discovered that by incorporating nicotinic acid or a derivative thereof in addition to an anionic surfactant into an oral composition, the antibacterial effect of the anionic surfactant may be less likely to be reduced by saliva, and they have made further improvements.

[0007] The present disclosure includes, for example, the subject matter described in the following sections: Section 1. (i) anionic surfactants having a linear carbon chain of C10 to C18, and (ii) Nicotinic acid or its derivatives An oral composition comprising: Section 2. (i) is represented by the formula (1-1): R-(CH2) n CH3(1-1) (In formula (1-1), n ​​represents an integer of 9 to 17, and R represents Formula (A):

[0008] [ka]

[0009] (wherein M represents Na or K, and m represents 1 or 2), Formula (B):

[0010] [ka]

[0011] (wherein M represents Na or K, and p represents an integer of 0 to 16), Formula (C):

[0012] [ka]

[0013] (wherein M represents Na or K), Formula (D):

[0014] [ka]

[0015] (wherein M represents Na or K), Formula (E):

[0016] [ka]

[0017] (wherein M represents Na or K, q is the same or different and represents an integer of 12 to 16, and n is the same as above), Formula (F):

[0018] [ka]

[0019] (wherein M represents Na or K), or Formula (G):

[0020] [ka]

[0021] (wherein M represents Na or K) and a compound represented by Formula (1-2): R-(CH2) a -CH=CH-(CH2) b CH3(1-2) (In formula (1-2), a represents an integer of 0 to 15, b represents an integer of 0 to 15 (provided that 7≦a+b≦15), and R is the same as above.) A compound represented by at least one compound selected from the group consisting of Item 1. The composition according to item 1. Section 3. Item 1. The composition according to Item 1, wherein (i) is at least one compound selected from the group consisting of sodium lauryl sulfate, sodium lauroyl sarcosinate, sodium cocoyl sarcosinate, sodium myristoyl sarcosinate, sodium myristoyl sarcosinate, sodium lauroyl methyl alanine, sodium palmitoyl methyl alanine, sodium laureth sulfate, disodium polyoxyethylene alkyl (12-14) sulfosuccinate, sodium lauroyl methyl taurate, sodium cocoyl methyl taurate, sodium myristoyl methyl taurate, sodium palmitoyl methyl taurate, polyoxyethylene alkyl (12-16) ether phosphate, sodium lauroyl glutamate, sodium myristoyl glutamate, sodium palmitoyl glutamate, and sodium tetradecene sulfonate. Section 4. (ii) is at least one compound selected from the group consisting of nicotinic acid, 2-hydroxynicotinic acid, isonicotinic acid, 2-chloronicotinic acid, and methyl nicotinate; Item 4. The composition according to any one of Items 1 to 3. Section 5. Item 5. The composition according to any one of Items 1 to 4, which is a composition for sterilizing the oral cavity. Section 6. An oral bactericidal activity enhancer for an anionic surfactant having a C10 to C18 linear carbon chain, which comprises nicotinic acid or a derivative thereof. [Effects of the Invention]

[0022] The present invention provides an oral composition in which the bactericidal effect of the contained anionic surfactant is not easily reduced by components in saliva, and also provides an agent for enhancing the bactericidal effect of the anionic surfactant in the oral cavity. DETAILED DESCRIPTION OF THE INVENTION

[0023] Each embodiment of the present disclosure will be described in more detail below. The present disclosure preferably includes an oral composition, an agent for enhancing the bactericidal effect of an anionic surfactant in the oral cavity, etc., but is not limited thereto, and the present disclosure includes all of the disclosures herein that would be recognized by a person skilled in the art.

[0024] The oral composition encompassed by the present disclosure contains (i) an anionic surfactant having a C10-C18 linear carbon chain, and (ii) nicotinic acid or a derivative thereof. Hereinafter, the oral composition encompassed by the present disclosure may be referred to as the "oral composition of the present disclosure." The anionic surfactant having a C10-C18 linear carbon chain may be referred to as component (i). Nicotinic acid or a derivative thereof may be referred to as component (ii).

[0025] The C10-C18 linear carbon chain in component (i) may be saturated or unsaturated. If it is unsaturated, it preferably has one or two carbon-carbon double bonds, and more preferably one carbon-carbon double bond, in the linear carbon chain.

[0026] Component (i), that is, anionic surfactants having a C10 to C18 (C10, C11, C12, C13, C14, C15, C16, C17, or C18) linear carbon chain, include surfactants represented by formula (1-1): R-(CH2) n CH3(1-1) Preferred examples of the compound include compounds represented by the following formula:

[0027] n represents an integer of 9 to 17 (9, 10, 11, 12, 13, 14, 15, 16, or 17).

[0028] Also, equation (1-2): R-(CH2) a -CH=CH-(CH2) b CH3(1-2) Preferred examples of the compound include compounds represented by the following formula:

[0029] a represents an integer of 0 to 15, and b represents an integer of 0 to 15 (provided that 7≦a+b≦15). That is, in the range where a+b=7, 8, 9, 10, 11, 12, 13, 14, or 15, a can be 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15, and b can be 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15. A particularly preferred combination of (a, b) is, for example, (a, b)=(4, 7).

[0030] In addition, R in the formula (1-1) and the formula (1-2) is preferably, for example, Formula (A):

[0031] [ka]

[0032] (wherein M represents Na or K, and m represents 1 or 2), Formula (B):

[0033] [ka]

[0034] (wherein M represents Na or K, and p represents an integer of 0 to 16), Formula (C):

[0035] [ka]

[0036] (wherein M represents Na or K), Formula (D):

[0037] [ka]

[0038] (wherein M represents Na or K), Formula (E):

[0039] [ka]

[0040] (wherein M represents Na or K, q is the same or different and represents an integer of 12 to 16, and n is the same as above), Formula (F):

[0041] [ka]

[0042] (wherein M represents Na or K), or Formula (G):

[0043] [ka]

[0044] (wherein M represents Na or K) Examples include:

[0045] As described above, p represents 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, or 16, and q represents 12, 13, 14, 15, or 16. When R is a group represented by formula (E), there are two n's in formula (1-1), and in this case, n's may be the same or different, and are preferably the same.

[0046] More specific examples of component (i) include sodium lauryl sulfate, sodium lauroyl sarcosinate, sodium cocoyl sarcosinate, sodium myristoyl sarcosinate, sodium myristoyl sarcosinate, sodium lauroyl methyl alanine, sodium palmitoyl methyl alanine, sodium laureth sulfate, disodium polyoxyethylene alkyl (12-14) sulfosuccinate, sodium lauroyl methyl taurate, sodium cocoyl methyl taurate, sodium myristoyl methyl taurate, sodium palmitoyl methyl taurate, polyoxyethylene alkyl (12-16) ether phosphate, sodium lauroyl glutamate, sodium myristoyl glutamate, sodium palmitoyl glutamate, and sodium tetradecene sulfonate.

[0047] The compound of component (i) can be used either individually or in combination of two or more.

[0048] Preferred examples of the nicotinic acid derivative in component (ii), i.e., nicotinic acid or a derivative thereof, include 2-hydroxynicotinic acid, isonicotinic acid, 2-chloronicotinic acid, methyl nicotinate, etc. The compound of component (ii) can be used alone or in combination of two or more.

[0049] In the oral composition of the present disclosure, component (ii) is preferably contained in an amount of 0.05 to 10 parts by mass per part by mass of component (i). The upper and lower limits of this range (0.05 to 10 parts by mass) are, for example, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1, 1.1, 1.2, 1.3, 1.4, 1.5, 1.6, 1.7, 1.8, 1.9, 2, 2.1, 2.2, 2.3, 2.4, 2.5, 2.6, 2.7, 2.8, 2.9, 3, 3.1, 3.2, 3.3, 3.4, 3.5, 3.6, 3.7, 3.8, 3.9, 4, 4.1, 4.2, 4.3, 4.4, 4.5, 4.6, 4.7, 4.8, 4.9, 4.10, 4.11, 4.12, 4.13, 4.14, 4.15, 4.16, 4.17, 4.18, 4.19, 4.20, 4.21, 4.22, 4.23, 4.24, 4.25, 4.26, 4.27, 4.28, 4.29, 4.30, 4.31, 4.32, 4.33, 4.34, 4.35, 4.36, 4.37, 4.38, 4.39, 4.39, 4.39, 4.39, 4.39, 4. 0.8, 4.9, 5, 5.1, 5.2, 5.3, 5.4, 5.5, 5.6, 5.7, 5.8, 5.9, 6, 6.1, 6.2, 6.3, 6.4, 6.5, 6.6, 6.7, 6.8, 6.9, 7, 7.1, 7.2, 7.3, 7.4, 7.5, 7.6, 7.7, 7.8, 7.9, 8, 8.1, 8.2, 8.3, 8.4, 8.5, 8.6, 8.7, 8.8, 8.9, 9, 9.1, 9.2, 9.3, 9.4, 9.5, 9.6, 9.7, 9.8, or 9.9 parts by mass. For example, the range may be 0.1 to 9.

[0050] Furthermore, in the oral cavity composition of the present disclosure, component (i) is preferably contained in an amount of approximately 0.05 to 2% by mass. The upper or lower limit of this range (0.05 to 2% by mass) may be, for example, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1, 1.1, 1.2, 1.3, 1.4, 1.5, 1.6, 1.7, 1.8, or 1.9% by mass. For example, the range may be 0.1 to 1.5% by mass.

[0051] Furthermore, in the oral composition of the present disclosure, component (ii) is preferably contained in an amount of about 0.01 to 1% by mass. The upper or lower limit of this range (0.01 to 1% by mass) can be, for example, 0.02, 0.03, 0.04, 0.05, 0.06, 0.07, 0.08, 0.09, 0.1, 0.11, 0.12, 0.13, 0.14, 0.15, 0.16, 0.17, 0.18, 0.19, 0.2, 0.21, 0.22, 0.23, 0.24, 0.25, 0.26, 0.27, 0.28, 0.29, 0.3, 0.31, 0.32, 0.33, 0.34, 0.35, 0.36, 0.37, 0.38, 0.39, 0.4, 0.41, 0.42, 0.43, 0.44, 0.45, 0.46, 0.47, 0.48, 0. 49, 0.5, 0.51, 0.52, 0.53, 0.54, 0.55, 0.56, 0.57, 0.58, 0.59, 0.6, 0.61, 0.62, 0.63, 0.64, 0.65, 0.66, 0.67, 0.68, 0.69, 0.7, 0.71, 0.72, 0.73, 0.74, 0.75, The concentration may be 0.76, 0.77, 0.78, 0.79, 0.8, 0.81, 0.82, 0.83, 0.84, 0.85, 0.86, 0.87, 0.88, 0.89, 0.9, 0.91, 0.92, 0.93, 0.94, 0.95, 0.96, 0.97, 0.98, or 0.99% by mass. For example, the range may be 0.02 to 0.9% by mass. Although not particularly limited, when a nicotinic acid derivative is used as component (ii), the concentration is preferably about 0.1 to 0.5% by mass.

[0052] The oral composition of the present disclosure can be produced by known methods or methods easily derived from known methods. The oral composition of the present disclosure can also be used as, for example, a pharmaceutical product, a quasi-drug, or a cosmetic. The form of the oral composition of the present disclosure is not particularly limited, and can be, for example, an ointment, a paste, a gel, a liquid, a spray, a mouthwash, a liquid dentifrice, a toothpaste, or a liniment (dosage form).

[0053] In addition to component (i) and component (ii), the oral composition of the present disclosure may further contain optional components that can be incorporated into the oral composition, either alone or in combination of two or more, as long as the effects of the present invention are not impaired.

[0054] For example, surfactants other than component (i), such as nonionic surfactants and / or amphoteric surfactants, can be further blended. Specific examples of nonionic surfactants include sugar fatty acid esters such as sucrose fatty acid esters, maltose fatty acid esters, and lactose fatty acid esters; fatty acid alkanolamides; sorbitan fatty acid esters; fatty acid monoglycerides; polyoxyethylene alkyl ethers having a polyoxyethylene addition coefficient of 8 to 10 and an alkyl group having 13 to 15 carbon atoms; polyoxyethylene alkylphenyl ethers having a polyoxyethylene addition coefficient of 10 to 18 and an alkyl group having 9 carbon atoms; diethyl sebacate; polyoxyethylene hydrogenated castor oil; fatty acid polyoxyethylene sorbitan; and alkyl glucosides having an alkyl group having 8 to 16 carbon atoms. Examples of zwitterionic surfactants include acetate betaine surfactants such as lauryl dimethylaminoacetic acid betaine and coconut oil fatty acid amidopropyl dimethylaminoacetic acid betaine; imidazoline surfactants such as N-cocoyl-N-carboxymethyl-N-hydroxyethylethylenediamine sodium; and amino acid surfactants such as N-lauryl diaminoethylglycine. Other preferred examples include coconut oil fatty acid monoethanolamide, coconut oil fatty acid diethanolamide, coconut oil fatty acid amidobetaine, coconut oil fatty acid amidopropyl betaine, and N-coconut oil fatty acid acyl L-arginine ethyl dl-pyrrolidonecarboxylate. These surfactants can be used alone or in combination of two or more.

[0055] Sweeteners such as saccharin sodium, acesulfame potassium, stevioside, sucralose, neohesperidyl dihydrochalcone, perillartine, thaumatin, aspartyl phenylalanyl methyl ester, and p-methoxycinnamic aldehyde may also be added. These may be used alone or in combination of two or more. These may be added in an amount of, for example, 0.01 to 1% by mass based on the total amount of the composition.

[0056] In addition, as the binder, for example, one or a combination of two or more of the following can be used: cellulose derivatives such as sodium carboxymethylcellulose, carboxymethylethylcellulose salts, hydroxyethylcellulose, hydroxypropylcellulose, and hydroxypropylmethylcellulose; microbially produced polymers such as xanthan gum and gellan gum; natural polymers or natural rubbers such as tragacanth gum, karaya gum, gum arabic, carrageenan, and dextrin; synthetic polymers such as polyvinyl alcohol and polyvinylpyrrolidone; inorganic binders such as thickening silica and Veegum; and cationic binders such as O-[2-hydroxy-3-(trimethylammonio)propyl]hydroxyethylcellulose chloride.

[0057] Furthermore, sorbitol, glycerin, propylene glycol, xylitol, maltitol, lactite, polyoxyethylene glycol, etc. may be blended alone or in combination of two or more kinds as a humectant.

[0058] As preservatives, parabens such as methylparaben, ethylparaben, propylparaben, butylparaben, sodium benzoate, phenoxyethanol, alkyldiaminoethylglycine hydrochloride, etc. may be blended alone or in combination of two or more.

[0059] As coloring agents, legal pigments such as Blue No. 1, Yellow No. 4, Red No. 202, and Green No. 3, mineral pigments such as ultramarine, enhanced ultramarine, and Prussian blue, titanium oxide, etc. may be used alone or in combination of two or more.

[0060] The pH adjuster may be citric acid, phosphoric acid, malic acid, pyrophosphoric acid, lactic acid, tartaric acid, glycerophosphoric acid, acetic acid, nitric acid, or chemically acceptable salts thereof, or sodium hydroxide. These may be added alone or in combination of two or more so that the pH of the composition is within the range of, for example, 4 to 9, preferably 5 to 8. The amount of pH adjuster added is, for example, 0.01 to 2% by weight.

[0061] Examples of medicinal ingredients include cationic disinfectants such as cetylpyridinium chloride, benzalkonium chloride, benzethonium chloride, chlorhexidine hydrochloride, and chlorhexidine gluconate; amphoteric disinfectants such as dodecyldiaminoethylglycine; nonionic disinfectants such as triclosan and isopropylmethylphenol; and hinokitiol. Furthermore, medicinal ingredients other than disinfectants can also be blended. For example, aluminum lactate, potassium nitrate, vitamin E compounds such as dl-α-tocopherol acetate, tocopherol succinate, and tocopherol nicotinate, sodium fluoride, β-glycyrrhetinic acid, and dipotassium glycyrrhizinate may be blended. The medicinal ingredients can be blended alone or in combination of two or more.

[0062] Furthermore, as a base, for example, alcohols, silicone, apatite, white petrolatum, paraffin, liquid paraffin, microcrystalline wax, squalane, plastibase, etc. can be added alone or in combination of two or more kinds.

[0063] The above descriptions of optional components are merely examples and do not limit the optional components that can be used.

[0064] The oral composition of the present disclosure contains component (ii), which inhibits the reduction in the bactericidal activity of component (i) due to saliva. Therefore, the time required for sterilization is shorter than when component (ii) is not contained. This makes it possible to shorten the time required for oral care. Furthermore, the bactericidal activity of component (i) is preferably used in oral compositions to sterilize, for example, periodontal disease bacteria. Therefore, although not particularly limited, the oral composition of the present disclosure can also be preferably used for subjects (particularly periodontal disease patients) who carry periodontal disease bacteria in their oral cavity. Furthermore, because the reduction in the bactericidal activity of component (i) due to saliva varies from person to person (for example, some people experience a significant reduction in the bactericidal activity of component (i) due to saliva, while others experience a mild reduction), the oral composition of the present disclosure can be preferably used for, for example, subjects in which the reduction in the bactericidal activity of component (i) due to saliva is desired to be suppressed (more specifically, for example, subjects in which the bactericidal activity of component (i) is reduced by saliva, subjects suffering from oral diseases caused by bacteria such as periodontal disease, etc.), although not particularly limited thereto. Furthermore, subjects include not only humans but also non-human mammals. For example, pets and livestock may be included. More specifically, for example, dogs, cats, monkeys, cows, horses, pigs, sheep, goats, mice, rats, etc. may be included.

[0065] The present disclosure also includes a method for inhibiting the reduction in the bactericidal activity of component (i) by saliva, which comprises using a combination of component (i) and component (ii), as well as a method for producing an oral composition, which comprises incorporating component (i) and component (ii) into a composition.

[0066] Furthermore, the present disclosure also includes an oral bactericidal activity enhancer of component (i), which comprises component (ii). The oral bactericidal activity enhancer can be particularly preferably used as an oral bactericidal time shortener.

[0067] In this specification, the term "comprising" includes "consisting essentially of" and "consisting of." Furthermore, the present disclosure encompasses all arbitrary combinations of the constituent elements described in this specification.

[0068] Furthermore, the various characteristics (properties, structures, functions, etc.) described in each embodiment of the present disclosure above may be combined in any way to specify the subject matter encompassed by the present disclosure, i.e., the present disclosure encompasses all subject matter consisting of any combination of the combinable characteristics described herein. [Example]

[0069] Hereinafter, the embodiments of the present disclosure will be described more specifically with reference to examples, but the embodiments of the present disclosure are not limited to the following examples.

[0070] Saliva collection Each subject (Subject A or B) was asked to brush their teeth with a toothpaste that did not contain surfactants or disinfectants, and 10 mL of saliva (unstimulated saliva) was collected. The collected saliva was stored in a refrigerator, and immediately before use, it was aspirated and discharged five times using a 23G needle and a 10 mL syringe (both manufactured by Terumo Corporation).

[0071] Preparation of test drug solutions Test drug solutions were prepared containing 0.05 to 2% (w / v) of each compound belonging to component (i) and 0.01 to 1% (w / v) of each compound belonging to component (ii). For the preparation of the test drug solutions, aqueous solutions were prepared and used for the solutions containing nicotinic acid, isonicotinic acid, methyl nicotinate, and nicotinamide. For the solutions containing 2-hydroxynicotinic acid and 2-chloronicotinic acid, DMSO solutions with a final concentration of 5% (v / v) were prepared and diluted 10-fold with water.

[0072] The concentrations of all test drug solutions are shown in % (w / v), but since this is almost the same as the % (w / w) value (% (w / w) is only slightly larger), it can be interpreted as % (w / w) (i.e., mass %). More specifically, for example, the density of a 5% (v / v) DMSO solution calculated according to JIS K 9702 and JIS Z 8804 is 0.994 g / cm 3 Therefore, 0.1% (w / v) of 2-hydroxynicotinic acid and 2-chloronicotinic acid can be calculated as 0.10060362 mass%.

[0073] Sterilization test 200 μL of the test drug solution was dispensed into row A of a 96-well plate, and 200 μL of TSB / Y / VH medium was dispensed into rows B to H to inactivate the bactericidal action of the anionic surfactant and to culture oral bacteria.

[0074] TSB / Y / VH medium can inactivate the bactericidal activity of anionic surfactants, so the sterilization time can be adjusted by adjusting the timing of addition of the medium. TSB / Y / VH medium was prepared by dissolving 30 g of Tripticase Soy Broth (TSB), 1 g of Yeast Extract, 1 g of Hemin / Menadion Solution, 0.7 g of Lecithin, and 5 g of Tween 80 in distilled water, diluting the mixture to 1 L, and sterilizing the mixture in an autoclave. Hemin / Menadion solution was prepared by dissolving 0.25 g of Hemin in 5 ml of 1N NaOH, adding 20 ml of distilled water, and then mixing with 0.025 g of Menadion (Vitamin K3) dissolved in 25 ml of 99% ethanol.

[0075] 20 μL of saliva was added to column A and pipetted. Then, 20 μL of saliva was added to columns A through H at each time point. Specifically, the measurement started when 20 μL of saliva was added to column A and mixed by pipetting. 20 μL of the solution from column A was then added to column B after 30 seconds, column C after 60 seconds, column D after 90 seconds, column E after 120 seconds, column F after 180 seconds, column G after 240 seconds, and column H after 300 seconds, and mixed by pipetting. Anaerobic incubation was then performed for 48 hours using Anaeropack Kenki (Mitsubishi Gas Chemical Company, Inc.). Bacterial growth was visually confirmed and viability was assessed. Specifically, visually turbid medium indicated bacterial growth and indicated that the bacteria in the solution had not been completely killed.

[0076] Each solution collected from row A was judged after 30 seconds, 60 seconds, 90 seconds, 120 seconds, 180 seconds, 240 seconds, and 300 seconds, and the time when the medium did not become cloudy for the first time and the bacteria in the solution were killed was defined as the sterilization time.

[0077] The results are shown in Tables 1 and 2. Table 1 shows the sterilization time when each component (ii) was further added relative to the sterilization time for each subject's saliva when sodium lauryl sulfate (component (i)) alone was used as component (i) alone, which was taken as 100%. Table 2 shows the sterilization time when nicotinic acid (component (ii)) was further added relative to the sterilization time for each subject's saliva when component (i) alone was taken as 100%. For example, if the sterilization time when 0.1% (w / v) sodium lauryl sulfate was mixed with subject A's saliva was 360 seconds, and the sterilization time when a test drug solution containing 0.1% (w / v) sodium lauryl sulfate and 0.1% (w / v) nicotinic acid was mixed with subject A's saliva was 180 seconds, the relative sterilization time in this case would be 50%.

[0078] [Table 1]

[0079] [Table 2]

[0080] Formulation examples are shown below. Note that the numerical values ​​(amounts of each component) shown in the tables showing the formulation examples below are in mass %.

[0081] [Table 3]

[0082] [Table 4]

[0083] [Table 5]

[0084] [Table 6]

[0085] [Table 7]

[0086] [Table 8]

[0087] [Table 9]

Claims

1. (i) anionic surfactants having a C10 to C18 linear carbon chain; and (ii) at least one compound selected from the group consisting of nicotinic acid, 2-hydroxynicotinic acid, isonicotinic acid, 2-chloronicotinic acid, and methyl nicotinate; Contains 0.05 to 1.5% by mass of (i) and 0.01 to 1% by mass of (ii); An oral composition comprising:

2. (i) is represented by formula (1-1): R-(CH 2 ) n CH 3 (1-1) (In formula (1-1), n ​​represents an integer of 9 to 17, and R represents Formula (A): 【Chemistry 1】 (wherein M represents Na or K, and m represents 1 or 2), Formula (B): 【Chemistry 2】 (wherein M represents Na or K, and p represents an integer of 0 to 16), Formula (C): 【Transformation 3】 (wherein M represents Na or K), Formula (D): 【Chemistry 4】 (wherein M represents Na or K), Formula (E): 【Transformation 5】 (wherein M represents Na or K, q is the same or different and represents an integer of 12 to 16, and n is the same as above), Formula (F): 【Transformation 6】 (wherein M represents Na or K), or Formula (G): 【Transformation 7】 (wherein M represents Na or K) and a compound represented by the formula: Formula (1-2): R-(CH 2 ) a -CH=CH-(CH 2 ) b CH 3 (1-2) (In formula (1-2), a represents an integer of 0 to 15, b represents an integer of 0 to 15 (7≦a+b≦15), and R is the same as above.) A compound represented by at least one compound selected from the group consisting of The composition of claim 1.

3. 2. The composition of claim 1, wherein (i) is at least one compound selected from the group consisting of sodium lauryl sulfate, sodium lauroyl sarcosinate, sodium cocoyl sarcosinate, sodium myristoyl sarcosinate, sodium lauroyl methyl alanine, sodium palmitoyl methyl alanine, sodium laureth sulfate, disodium polyoxyethylene alkyl (12-14) sulfosuccinate, sodium lauroyl methyl taurate, sodium cocoyl methyl taurate, sodium myristoyl methyl taurate, sodium palmitoyl methyl taurate, polyoxyethylene alkyl (12-16) ether phosphate, sodium lauroyl glutamate, sodium myristoyl glutamate, sodium palmitoyl glutamate, and sodium tetradecene sulfonate.

4. (i) is represented by formula (1-1): R-(CH 2 ) n CH 3 (1-1) (In formula (1-1), n ​​represents an integer of 9 to 17, and R represents Formula (A): 【Transformation 8】 (wherein M represents Na or K, and m represents 1 or 2), Formula (B): 【Chemistry 9】 (wherein M represents Na or K, and p represents an integer of 0 to 16), Formula (C): 【Chemistry 10】 (wherein M represents Na or K), or Formula (F): 【Chemistry 11】 (wherein M represents Na or K) A compound represented by at least one compound selected from the group consisting of The composition of claim 1.

5. (i) is two or more compounds selected from the group The composition according to any one of claims 2 to 4.

6. The composition according to any one of claims 1 to 4, which is a composition for sterilizing the oral cavity.

7. (i) an oral bactericidal potentiator of an anionic surfactant having a C10 to C18 linear carbon chain, (ii) consisting of at least one compound selected from the group consisting of nicotinic acid, 2-hydroxynicotinic acid, isonicotinic acid, 2-chloronicotinic acid, and methyl nicotinate; The composition for oral use is used by blending it so that (i) is contained in an amount of 0.05 to 1.5% by mass and (ii) is contained in an amount of 0.01 to 1% by mass. Oral antibacterial agent.

8. (i) is a compound represented by formula (1-1): R-(CH 2 ) n CH 3 (1-1) (In formula (1-1), n ​​represents an integer of 9 to 17, and R represents Formula (A): 【Chemistry 12】 (wherein M represents Na or K, and m represents 1 or 2), Formula (B): 【Chemistry 13】 (wherein M represents Na or K, and p represents an integer of 0 to 16), Formula (C): 【Chemistry 14】 (wherein M represents Na or K), Formula (D): 【Chemistry 15】 (wherein M represents Na or K), Formula (E): 【Chemistry 16】 (wherein M represents Na or K, q is the same or different and represents an integer of 12 to 16, and n is the same as above), Formula (F): 【Chemistry 17】 (wherein M represents Na or K), or Formula (G): [Chemistry 18] (wherein M represents Na or K) and a compound represented by the formula: Formula (1-2): R-(CH 2 ) a -CH=CH-(CH 2 ) b CH 3 (1-2) (In formula (1-2), a represents an integer of 0 to 15, b represents an integer of 0 to 15 (7≦a+b≦15), and R is the same as above.) A compound represented by or at least one compound selected from the group consisting of Two or more compounds selected from the group The oral bactericidal activity enhancer according to claim 7.

9. (i) is at least one compound selected from the group consisting of sodium lauryl sulfate, sodium lauroyl sarcosinate, sodium cocoyl sarcosinate, sodium myristoyl sarcosinate, sodium lauroyl methyl alanine, sodium palmitoyl methyl alanine, sodium laureth sulfate, disodium polyoxyethylene alkyl (12-14) sulfosuccinate, sodium lauroyl methyl taurate, sodium cocoyl methyl taurate, sodium myristoyl methyl taurate, sodium palmitoyl methyl taurate, polyoxyethylene alkyl (12-16) ether phosphate, sodium lauroyl glutamate, sodium myristoyl glutamate, sodium palmitoyl glutamate, and sodium tetradecene sulfonate, or two or more compounds selected from the group. The oral bactericidal activity enhancer according to claim 8.

10. (i) is a compound represented by formula (1-1): R-(CH 2 ) n CH 3 (1-1) (In formula (1-1), n ​​represents an integer of 9 to 17, and R represents Formula (A): 【Chemistry 19】 (wherein M represents Na or K, and m represents 1 or 2), Formula (B): 【Chemistry 20】 (wherein M represents Na or K, and p represents an integer of 0 to 16), Formula (C): 【Chemistry 21】 (wherein M represents Na or K), or Formula (F): 【Chemistry 22】 (wherein M represents Na or K) A compound represented by or two or more compounds selected from the group consisting of: The oral bactericidal activity enhancer according to claim 8.

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