Patches for treating osteoarthritis
A patch with a support and adhesive layer containing diclofenac sodium, dimethyl sulfoxide, and organic acid addresses the challenge of ineffective drug delivery in osteoarthritis treatment, providing effective and safe pain relief through optimized skin permeability and pharmacokinetics.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-02-22
- Publication Date
- 2026-04-07
AI Technical Summary
Existing patches for treating osteoarthritis often lack effective and safe drug release ability and skin permeability, necessitating the development of a patch that can deliver a high concentration of diclofenac sodium efficiently and safely through the skin.
A patch comprising a support layer and an adhesive layer containing diclofenac sodium, dimethyl sulfoxide, and an organic acid, with specific ratios and compositions to enhance skin permeability and adhesiveness, applied once a day with a dosage of 70 mg to 150 mg.
The patch effectively relieves osteoarthritis pain by maintaining consistent drug delivery, achieving optimal pharmacokinetic parameters such as peak plasma concentration, area under the curve, and half-life, ensuring safety and efficacy.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a patch for treating osteoarthritis.
Background Art
[0002] As a method for treating osteoarthritis, a method of administering a transdermal preparation containing diclofenac has been proposed (Patent Document 1). As an external preparation containing sodium diclofenac, for example, a patch containing sodium diclofenac, dimethyl sulfoxide and citric acid (Patent Document 2) is known.
[0003] Treatment for osteoarthritis, which is likely to occur due to disorders of bones, muscles, joints, nerves, etc., is considered to be increasingly important in modern society. Therefore, development of a patch having excellent drug release ability and skin permeability and being effective and safe for osteoarthritis in humans has been desired.
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0005] When the inventors of the present invention examined in detail the composition and administration method of a patch for treating osteoarthritis containing a high concentration of sodium diclofenac, they found an effective and safe patch and completed the present invention.
Means for Solving the Problems
[0006] The patch for treating osteoarthritis of the present invention comprises a support layer and an adhesive layer laminated on the support layer. The adhesive layer contains an adhesive base, diclofenac sodium, dimethyl sulfoxide and an organic acid, and the content of the organic acid is 6% to 8% by mass based on the total mass of the adhesive layer. The patch is applied to the affected area once a day, and the dosage of diclofenac sodium per application is 70 mg to 150 mg.
Effect of the Invention
[0007] The present invention can provide an effective and safe patch for treating osteoarthritis.
Modes for Carrying Out the Invention
[0008] The patch for treating osteoarthritis of the present invention comprises a support layer and an adhesive layer laminated on the support layer. The adhesive layer is usually laminated on one surface of the support layer, and if necessary, a peelable film is laminated on the other surface of the adhesive layer.
[0009] The adhesive layer is the part that adheres to the skin when the patch is applied, and contains an adhesive base, diclofenac sodium, dimethyl sulfoxide and an organic acid.
[0010] Diclofenac sodium is a non-steroidal anti-inflammatory drug and an active ingredient for treating osteoarthritis. The content of diclofenac sodium is preferably 1% to 10% by mass or 3% to 7% by mass based on the total mass of the adhesive layer.
[0011] The adhesive base may include at least one adhesive base selected from rubber-based adhesive bases, acrylic-based adhesive bases, and silicone-based adhesive bases. Examples of rubber-based adhesive bases include styrene-butadiene block copolymer, styrene-butadiene-styrene block copolymer, styrene-isoprene block copolymer, styrene-isoprene-styrene block copolymer, polyisobutylene, natural rubber, alkyl vinyl ether (co)polymer, polyisoprene, polybutadiene, etc. One of these may be used alone, or two or more may be used in combination. Of these, styrene-isoprene-styrene block copolymer, polyisobutylene, or a combination thereof is preferred in terms of increasing the skin permeability of diclofenac sodium and further increasing the adhesiveness of the patch, and a mixture of styrene-isoprene-styrene block copolymer and polyisobutylene is more preferred. Specific examples of styrene-isoprene-styrene block copolymers include Quintac® 3570C (trade name, manufactured by Zeon Corporation), SIS5002, SIS5229, SIS5505 (trade names, manufactured by JSR Corporation), SIBSTAR® T102 (trade name, manufactured by Kaneka Corporation), and others. Polyisobutylene also includes so-called butyl rubber (isobutylene-isoprene rubber), with specific examples including Oppanol® N50. Examples include N80, N100, N150, B11, B12, B50, B80, B100, B120, B150, B220 (product names, manufactured by BASF), JSR® Butyl065, 268, 365 (product names, manufactured by JSR Corporation), X_Butyl® RB100, 101-3, 301, 402 (product names, manufactured by ARLANXEO), and Exxon® Butyl065, 065S, 068, 068S, 268, 268S, 365, 365S (product names, manufactured by Exxon Mobile). Acrylic adhesive bases are adhesives obtained by polymerizing or copolymerizing at least one of the (meth)acrylic monomers, such as (meth)acrylic acid, (meth)acrylic acid-2-ethylhexyl, (meth)acrylate, (meth)acrylate, butyl (meth)acrylate, and (meth)acrylate.Silicone-based adhesive bases primarily consist of silicone rubber such as polydimethylsiloxane, polymethylvinylsiloxane, and polymethylphenylsiloxane.
[0012] In the case of rubber-based adhesive bases, the content of the adhesive base is preferably 10% to 70% by mass, 20% to 50% by mass, 23% to 40% by mass, or 25% to 30% by mass, relative to the total mass of the adhesive layer, from the viewpoint of the adhesiveness of the adhesive. When a mixture of styrene-isoprene-styrene block copolymer and polyisobutylene is used as the rubber-based adhesive base, the mass ratio of the two is preferably 4:1 to 1:4, 3:1 to 1:1, or 3:1 to 2:1. In the case of acrylic-based or silicone-based adhesive bases, the content of the adhesive base is preferably 50% to 90% by mass, relative to the total mass of the adhesive layer.
[0013] Dimethyl sulfoxide (DMSO) enhances the solubility of diclofenac sodium and improves its skin permeability. The DMSO content is preferably 1% to 20% by mass, 2% to 10% by mass, 3% to 10% by mass, or 5% to 9% by mass, relative to the total mass of the adhesive layer.
[0014] The ratio of diclofenac sodium to DMSO is preferably 1:0.3-1:4, 1:0.4-1:3, 1:0.6-1:3, or 1:0.72-1:3, in order to improve the skin permeability of diclofenac sodium and to prevent the precipitation of diclofenac sodium crystals.
[0015] Organic acids promote the transdermal absorption of diclofenac sodium and / or prevent the precipitation of diclofenac sodium crystals over time. Examples of organic acids include aliphatic monocarboxylic acids (formic acid, acetic acid, propionic acid, butyric acid, isobutyric acid, valeric acid, caproic acid, enanthic acid, caprylic acid, nonanoic acid, capric acid, lauric acid, oleic acid, linoleic acid, linolenic acid, isostearic acid, sorbic acid, pyruvic acid, etc.), aliphatic dicarboxylic acids (oxalic acid, malonic acid, succinic acid, glutaric acid, adipic acid, sebacic acid, maleic acid, fumaric acid, oxaloacetate, etc.), and aliphatic tricarboxylic acids ( Examples of organic acids include aliphatic carboxylic acids such as aconitic acid and propanetricarboxylic acid, hydroxy acids (glycolic acid, lactic acid, tartaric acid, glyceric acid, hydroxybutyric acid, malic acid, tartaric acid, citric acid, isocitric acid, sugar acid, gluconic acid, glucuronic acid, ascorbic acid, erythorbic acid, etc.), aromatic carboxylic acids (benzoic acid, gallic acid, salicylic acid, acetylsalicylic acid, phthalic acid, etc.), or other organic acids (mesylic acid, besylic acid, etc.). These organic acids may be used individually or in combination of two or more. Among these organic acids, oleic acid, citric acid, mesylic acid, or a combination thereof is preferred, with a combination of oleic acid and citric acid being more preferred, in order to promote the transdermal absorption of diclofenac sodium and prevent the precipitation of diclofenac sodium crystals over time. From the viewpoint of effectiveness in treating osteoarthritis, the content of organic acids is 6% to 8% by mass relative to the total mass of the adhesive layer. When the organic acid is a combination of oleic acid and citric acid, the oleic acid content is preferably 4% to 6% by mass relative to the total mass of the adhesive layer, and the citric acid content is preferably 2% to 4% by mass relative to the total mass of the adhesive layer.
[0016] The adhesive layer may further contain other additives such as tackifiers, plasticizers, solvents, stabilizers, and fillers.
[0017] Examples of tackifiers include rosin, rosin glycerin esters, hydrogenated rosin (also called hydrogenated rosin), hydrogenated rosin glycerin esters, and rosin derivatives such as rosin pentaerythritol esters; alicyclic saturated hydrocarbon resins such as Alcon P100 and Alcon P115 (trade names, manufactured by Arakawa Chemical Industries, Ltd.); aliphatic hydrocarbon resins such as Quinton B170 (trade name, manufactured by Nippon Zeon Co., Ltd.); terpene resins such as YS Resin PX1150N and Clearon P-125 (trade names, manufactured by Yasuhara Chemical Co., Ltd.); and maleic acid resins. Among these, hydrogenated rosin glycerin esters, alicyclic saturated hydrocarbon resins, aliphatic hydrocarbon resins, or terpene resins are preferred, with alicyclic saturated hydrocarbon resins being more preferred. Two or more of these tackifier resins may be combined. By including a tackifier resin, the adhesion of the adhesive layer can be improved and other physical properties can be stably maintained. The content of the tackifying resin is preferably, for example, 5% to 60% by mass, 10% to 50% by mass, 30% to 45% by mass, or 35% to 40% by mass, based on the total mass of the adhesive layer. A combination of an alicyclic saturated hydrocarbon resin and a hydrogenated rosin glycerin ester is more preferred as the tackifying agent. The mass ratio of the alicyclic saturated hydrocarbon resin to the hydrogenated rosin glycerin ester is preferably 4:1 to 1:4, 4:1 to 2:3, or 3:1 to 2:1.
[0018] Examples of plasticizers include petroleum oils such as paraffinic process oils, naphthenic process oils, and aromatic process oils; squalane; squalene; vegetable oils such as olive oil, camellia oil, castor oil, tall oil, and peanut oil; silicone oil; dibasic acid esters such as dibutyl phthalate and dioctyl phthalate; liquid rubbers such as polybutene and liquid isoprene rubber; liquid fatty acid esters such as isopropyl myristate, hexyl laurate, diethyl sebacate, and diisopropyl sebacate; diethylene glycol; polyethylene glycol; glycol salicylate; propylene glycol; dipropylene glycol; triacetin; triethyl citrate; and crotamiton. Among these, liquid paraffin, liquid polybutene, isopropyl myristate, diethyl sebacate, and hexyl laurate are preferred, liquid polybutene, isopropyl myristate, and liquid paraffin are more preferred, and liquid paraffin is particularly preferred. Two or more of these plasticizers may be combined. The plasticizer content is preferably, for example, 7% to 70% by mass, 8% to 40% by mass, 10% to 20% by mass, or 12% to 15% by mass, relative to the total mass of the adhesive layer.
[0019] Examples of solvents include liquid fatty acid esters (isopropyl myristate, hexyl laurate, diethyl sebacate, diisopropyl sebacate, etc.), diethylene glycol, triethylene glycol, polyethylene glycol, propylene glycol, dipropylene glycol, triacetin, triethyl citrate, and crotamiton. Of these, diethylene glycol, triethylene glycol, polyethylene glycol, propylene glycol, and dipropylene glycol are preferred, with polyethylene glycol being more preferred. When polyethylene glycol is used as the solvent, the number-average molecular weight of polyethylene glycol may be 200 to 20000, preferably 400 to 6000, and more preferably 1000 to 6000. Two or more of these solvents may be combined. The solvent content is preferably 0.1% to 10% by mass or 0.5% to 5% by mass, based on the total mass of the adhesive layer.
[0020] Examples of stabilizers include fatty acid metal salts (zinc undecylenate, zinc stearate, magnesium stearate, calcium stearate, aluminum stearate, sodium stearate, zinc palmitate, zinc myristate, magnesium myristate, zinc laurate, sodium laurate, etc.), antioxidants (tocopherol derivatives, ascorbic acid derivatives, erythorbic acid derivatives, nordihydroguayaretinic acid, gallic acid derivatives, dibutylhydroxytoluene (BHT), butylhydroxyanisole, 2-mercaptobenzimidazole, etc.), and ultraviolet absorbers (imidazole derivatives, benzotriazole derivatives, p-aminobenzoic acid derivatives, anthranilic acid derivatives, salicylic acid derivatives, cinnamic acid derivatives, benzophenone derivatives, coumaric acid derivatives, camphor derivatives, etc.). Two or more of these stabilizers may be combined. Among these stabilizers, aliphatic metal salts are preferred, at least one component selected from the group consisting of zinc stearate and magnesium stearate is more preferred, and a combination of zinc stearate and magnesium stearate is particularly preferred. The stabilizer content is preferably 0% to 5% by mass or 0% to 2% by mass based on the total mass of the adhesive layer. The presence of a stabilizer in the adhesive layer can improve the stability of diclofenac sodium.
[0021] Examples of fillers include metal oxides (zinc oxide, titanium oxide, etc.), metal salts (calcium carbonate, magnesium carbonate, zinc stearate, etc.), silicate compounds (kaolin, talc, bentonite, aerosil, hydrated silica, aluminum silicate, magnesium silicate, magnesium aluminometasilicate, etc.), and metal hydroxides (aluminum hydroxide, etc.). Two or more of these fillers may be combined. The filler content is preferably 0% to 10% by mass or 0% to 5% by mass, based on the total mass of the adhesive layer.
[0022] The adhesive layer may be a single layer consisting of one composition, or it may be a multilayer formed by laminating multiple layers with different compositions. The total mass of the adhesive layer should be 10 g / m², from the standpoint of properly adhering the patch to the skin.2 ~1000 g / m 2 、 30 g / m 2 ~300 g / m 2 、 150 g / m 2 ~250 g / m 2 or 190 g / m 2 ~240 g / m 2 is preferable. Further, when the specific gravity of the adhesive layer is 1, the overall thickness of the adhesive layer is preferably 10 μm to 1000 μm, 30 μm to 300 μm, 150 μm to 250 μm or 190 μm to 240 μm.
[0023] Next, the support layer will be described. The support layer holds the adhesive layer. The support layer is preferably a single layer or a laminate of a fiber in a cloth form (woven fabric, non-woven fabric, or knitted fabric), or a non-porous or porous film (sheet). The material of the support layer is preferably one or more materials selected from polyester (such as polyethylene terephthalate (PET), polyethylene isophthalate, polypropylene terephthalate, polypropylene isophthalate, polybutylene terephthalate, or polyethylene naphthalate, etc.), polyolefin (a polymer or copolymer of vinyl monomers such as ethylene, propylene, vinyl acetate, or acrylonitrile, etc.), polyamide (such as nylon or silk, etc.), polyurethane (PU), or cellulose (such as cotton or hemp, etc.). The cloth (woven fabric, non-woven fabric, or knitted fabric) may be coated with a rubber composition. The rubber composition contains a rubber-based adhesive. The rubber-based adhesive is, for example, polyisoprene, polyisobutylene, polybutadiene, styrene-butadiene-styrene block copolymer, styrene-isoprene-styrene block copolymer, styrene-butadiene rubber, styrene-isoprene rubber, or a combination thereof. The rubber composition may contain a tackifier. The tackifier is, for example, an alicyclic saturated hydrocarbon resin, a hydrogenated rosin ester, a terpene resin, or a combination thereof. Further, the rubber composition may further contain additives such as a plasticizer and a filler. The thickness of the support layer is, for example, 0.1 mm to 2 mm. The basis weight of the support layer is, for example, 30 g / m 2 ~200 g / m 2In this specification, the thickness and basis weight of the support layer are measured in accordance with the JIS L 1913:2010 standard.
[0024] The moisture permeability of the support layer is 1000 g / m². 2 It is preferable that the duration be 24 hours or more. When a support layer with such high moisture permeability is used, DMSO gradually evaporates from the patch applied to the skin, improving the adhesiveness of the patch and making it less likely to peel off even when the patch is applied for a long time. The upper limit of moisture permeability is 20,000 g / m². 2 • 24 hours is acceptable. When the moisture permeability of the support layer is within this range, DMSO volatilizes more easily from the adhesive layer, which is more effective in improving the adhesiveness of the adhesive. Note that the moisture permeability of the support layer refers to the moisture permeability at 40°C as defined in the JIS Z0208:1976 standard (Moisture permeability test method for moisture-proof packaging materials (cup method)).
[0025] When the support layer is cloth-like, it is preferable that the 50% modulus (JIS L 1018:1999) in both the longitudinal (material flow direction) and transverse (material width direction) directions of the support layer be between 1N / 50mm and 12N / 50mm. When the 50% modulus is 12N / 50mm or less, the stress on the patch due to skin stretching is reduced, resulting in better adhesion to the skin.
[0026] If the support layer is a film, the material is preferably highly permeable (high DMSO permeability), such as polyurethane. Films made of polyurethane are preferred because they have excellent elasticity, which enhances the adhesion and stretchability of the adhesive to the skin.
[0027] The support layer is preferably, for example, a nonwoven fabric or film made of polyurethane, a knitted fabric made of polyethylene terephthalate, a polyester fabric coated with a rubber composition, or a combination thereof. More specifically, the support layer is preferably a laminate of a film made of polyurethane and a nonwoven fabric made of polyurethane fibers, a nonwoven fabric made of PET fibers, or a polyester fabric coated with a rubber composition.
[0028] Next, we will describe peelable films (release films, release liners). A peelable film is one that can cover the adhesive layer until the application of the adhesive and can be peeled off and removed when needed. Specifically, examples include films made of polyester such as polyethylene terephthalate and polyethylene naphthalate, polyolefins such as polyethylene and polypropylene, polyvinyl chloride and polyvinylidene chloride, laminate films of high-quality paper and polyolefin, nylon and aluminum films, etc. From the viewpoint of being easily peelable from the adhesive layer, it is preferable to use peelable films that have been surface-coated (released) with a release agent such as silicone or polytetrafluoroethylene.
[0029] To ensure sufficient adhesive strength and adequate skin penetration of diclofenac sodium, the application area of the patch is 30 cm². 2 ~300cm 2 , 50cm 2 ~150cm 2 or 70cm 2 ~140cm 2 It would be preferable if this were the case.
[0030] The adhesive patch can be manufactured, for example, by the following method, but is not limited to this, and known methods can be used. First, the components constituting the adhesive layer are mixed in predetermined proportions to obtain a uniform solution. Next, the solution is spread to a predetermined thickness on a peelable film or support layer to form an adhesive layer. Then, the support layer is pressed onto the adhesive layer or peelable film so that the adhesive layer is sandwiched between the peelable film and the support layer. Finally, the adhesive patch can be obtained by cutting it into the desired shape. In this case, the peelable film is removed when the adhesive patch is applied. Alternatively, the solution may be spread to a predetermined thickness on a support layer to form an adhesive layer, and then the support layer may be pressed onto a peelable film.
[0031] The above-mentioned patch should be applied to the affected area (such as the knee, groin, elbow, or shoulder) once a day to adult humans, and replaced every day (approximately every 24 hours). The dose of diclofenac sodium per application is 70 mg to 150 mg. The dose refers to the amount of diclofenac sodium contained in the patch being applied. The dose may be the amount of diclofenac sodium contained in one patch, or the sum of the amounts of diclofenac sodium contained in multiple patches. For example, if one patch containing 70 mg to 150 mg of diclofenac sodium is applied, the dose is 70 mg to 150 mg. For example, if one or two patches containing 75 mg of diclofenac sodium are applied, the dose is 75 mg or 150 mg. For example, if two or three patches containing 50 mg of diclofenac sodium each are applied, the dosage is 100 mg or 150 mg.
[0032] The above-mentioned patch is effective in treating osteoarthritis. More specifically, it is effective in relieving pain associated with osteoarthritis. The above-mentioned patch is particularly effective against osteoarthritis of the knee. When using the above-mentioned patch to treat osteoarthritis of the knee, it is preferable to apply the patch alternately to the inner and outer sides of the knee every other day. Such administration can avoid skin irritation, increase the local concentration of diclofenac sodium in the knee joint, and enhance the therapeutic effect on osteoarthritis of the knee.
[0033] When the above patch was administered as a single dose of 150 mg of diclofenac sodium to adult humans, the peak plasma concentration of diclofenac (C) was obtained. max ) was 19 ng / mL to 23 ng / mL, and the above-mentioned highest plasma concentration (C max The time required to reach (t max Preferably, the area under the plasma drug concentration-time curve (AUC) of diclofenac from administration to the final concentration measurement point. 0-tThe area under the plasma drug concentration-time curve (AUC) of diclofenac when extrapolated from administration to infinity is preferably 300 ng·h / mL to 400 ng·h / mL. 0-inf The plasma concentration of diclofenac is preferably 300 ng·h / mL to 400 ng·h / mL, and the half-life (t) of the plasma concentration of diclofenac is 1 / 2 Preferably, the release time is 6 to 8 hours, the apparent dose of diclofenac is 13 mg to 16 mg, and the drug release rate is 8.6% to 10.7%. A transdermal patch exhibiting these pharmacokinetic parameters is excellent in terms of safety and efficacy for the treatment of osteoarthritis.
[0034] When the above transdermal patch is administered to adult humans once daily at a dose of 150 mg of diclofenac sodium and a steady state is reached, the maximum plasma concentration of diclofenac (C) ss max ) is 30 ng / mL to 65 ng / mL, and the above maximum plasma concentration (C ss max The time required to reach (t ss max The interval between doses is preferably 3 to 6 hours, and the area under the plasma drug concentration-time curve (AUC) of diclofenac during the dosing interval is preferably 3 to 6 hours. ss 0-t The plasma concentration of diclofenac is preferably 400 ng·h / mL to 700 ng·h / mL, and the half-life (t) of the plasma concentration of diclofenac is ss 1 / 2 Preferably, the pharmacokinetic period is 1 to 5 hours, the apparent dose of diclofenac is 14 mg to 21 mg, and the % drug released is 9.3% to 14%. A transdermal patch exhibiting such pharmacokinetic parameters is superior in terms of safety and efficacy for the treatment of osteoarthritis.
[0035] When the above patch was administered as a single dose of 107 mg of diclofenac sodium to adult humans, the peak plasma concentration of diclofenac (C) was obtained. max ) is 10 ng / mL to 13 ng / mL, and the above-mentioned maximum plasma concentration (Cmax The time required to reach (t max Preferably, the period is 10 to 15 hours, and the area under the plasma drug concentration-time curve (AUC) of diclofenac from administration to the final concentration measurement time. 0-t The area under the plasma drug concentration-time curve (AUC) of diclofenac, when extrapolated from administration to infinity, is preferably 140 ng·h / mL to 200 ng·h / mL. 0-inf The plasma concentration of diclofenac is preferably 150 ng·h / mL to 200 ng·h / mL, and the half-life (t) of the plasma concentration of diclofenac is 1 / 2 The pharmacokinetic period is preferably 5 to 7 hours. A transdermal patch exhibiting such pharmacokinetic parameters is superior in terms of safety and efficacy for the treatment of osteoarthritis.
[0036] Other preferred embodiments of the present invention are as follows: [1] A method for treating osteoarthritis, comprising the step of administering a patch to a patient, wherein the patch comprises a support layer and an adhesive layer laminated on the support layer, the adhesive layer comprising an adhesive base, diclofenac sodium, dimethyl sulfoxide and an organic acid, the content of the organic acid being 6% to 8% by mass relative to the total mass of the adhesive layer, the patch being applied to the affected area once a day, and the dose of diclofenac sodium per application being 70 mg to 150 mg. [2] The area of the above adhesive patch is 70 cm 2 ~140cm 2 The method described in [1]. [3] The amount of ointment of the above patch is 190 g / m² 2 ~240g / m 2 The method described in [1]. [4] The method according to [1] which states that osteoarthritis is osteoarthritis of the knee. [5] The method according to [4], wherein the above-mentioned patch is applied alternately to the inner and outer sides of the knee on a daily basis. [6] The method according to [1], wherein the transdermal patch has a peak plasma concentration of diclofenac of 19 ng / mL to 23 ng / mL after a single dose, and the time required to reach the peak plasma concentration is 6 to 18 hours. [7] The method according to [1], wherein the transdermal patch is a transdermal patch in which the area under the plasma drug concentration-time curve of diclofenac from the time of administration to the final time of concentration measurement after a single dose is 300 ng·h / mL to 400 ng·h / mL. [8] The method according to [1], wherein the transdermal patch is a transdermal patch in which the area under the plasma drug concentration-time curve of diclofenac, extrapolated from administration to infinity, is 300 ng·h / mL to 400 ng·h / mL. [9] The method according to [1], wherein the transdermal patch has a plasma half-life of 6 to 8 hours after a single dose of diclofenac.
[10] The method according to [1], wherein the transdermal patch has a single dose release of 13 mg to 16 mg of diclofenac and a diclofenac release rate of 8.6% to 10.7%.
[11] The method according to [1], wherein the transdermal patch has a maximum plasma concentration of diclofenac of 30 ng / mL to 65 ng / mL when administered once daily to reach a steady state, and the time required to reach the maximum plasma concentration is 3 to 6 hours.
[12] The method according to [1], wherein the transdermal patch is a transdermal patch in which the area under the plasma drug concentration-time curve of diclofenac at the administration interval when a steady state is reached by repeating administration once daily is 400 ng·h / mL to 700 ng·h / mL.
[13] The method according to [1], wherein the transdermal patch is a transdermal patch in which the plasma concentration of diclofenac has a half-life of 1 to 5 hours when administered once daily to reach a steady state.
[14] The method according to [1], wherein the transdermal patch has a diclofenac release amount of 14 mg to 21 mg and a diclofenac release rate of 9.3% to 14% when administered once daily to reach a steady state. [14a] The method according to [1], wherein the transdermal patch has a peak plasma concentration of 10 ng / mL to 13 ng / mL after a single dose, and the time required to reach the peak plasma concentration is 10 to 15 hours. [14b] The method according to [1], wherein the transdermal patch is a transdermal patch in which, after a single administration, the area under the plasma drug concentration-time curve of diclofenac from administration to the final concentration measurement time is 140 ng·h / mL to 200 ng·h / mL. [14c] The method according to [1], wherein the transdermal patch is a transdermal patch in which the area under the plasma drug concentration-time curve of diclofenac, extrapolated from administration to infinity, is 150 ng·h / mL to 200 ng·h / mL. [14d] The method according to [1], wherein the transdermal patch is a transdermal patch in which the plasma concentration of diclofenac after a single dose has a half-life of 5 to 7 hours.
[15] The method according to [1], wherein the patch is a patch comprising a styrene-isoprene-styrene block copolymer and polyisobutylene as the adhesive base.
[16] The method according to [1], wherein the adhesive patch comprises an alicyclic saturated hydrocarbon resin and a hydrogenated rosin glycerin ester in the adhesive layer.
[17] The method according to [1], wherein the patch is a patch containing liquid paraffin in the adhesive layer.
[18] The method according to [1], wherein the patch contains 3% to 7% by mass of diclofenac sodium based on the total mass of the adhesive layer.
[19] The method according to [1], wherein the patch is a patch containing oleic acid and citric acid as the organic acid.
[20] The method according to
[19] , wherein the patch contains 4% to 6% by mass of oleic acid and 2% to 4% by mass of citric acid based on the total mass of the adhesive layer.
[21] A patch used in a method for treating osteoarthritis, the patch comprising a support layer and an adhesive layer laminated on the support layer, wherein the adhesive layer contains an adhesive base, diclofenac sodium, dimethyl sulfoxide, and an organic acid, the content of the organic acid being 6% to 8% by mass relative to the total mass of the adhesive layer, the patch being applied to the affected area once a day, and the dose of diclofenac sodium per application being 70 mg to 150 mg.
[22] The area of the above adhesive patch is 70 cm 2 ~140cm 2 The transdermal patch described in
[21] .
[23] The amount of ointment of the above patch is 190 g / m² 2 ~240g / m 2 The transdermal patch described in
[21] or
[22] .
[24] A patch described in any of
[21] to
[23] , wherein the osteoarthritis is osteoarthritis of the knee.
[25] The patch described in
[24] , which is used in such a manner that it is applied alternately to the inner and outer sides of the knee on a daily basis.
[26] The transdermal patch according to any one of
[21] to
[25] , wherein the peak plasma concentration of diclofenac after a single administration of the above transdermal patch is 19 ng / mL to 23 ng / mL, and the time required to reach the above peak plasma concentration is 6 hours to 18 hours.
[27] The transdermal patch according to any one of
[21] to
[26] , wherein, after a single administration of the above transdermal patch, the area under the plasma drug concentration-time curve of diclofenac from administration to the final concentration measurement time is 300 ng·h / mL to 400 ng·h / mL.
[28] The transdermal patch according to any one of
[21] to
[27] , wherein, when extrapolated from the time of administration to infinity after a single dose of the above transdermal patch, the area under the plasma drug concentration-time curve of diclofenac is 300 ng·h / mL to 400 ng·h / mL.
[29] The transdermal patch according to any one of
[21] to
[28] , wherein the half-life of the plasma concentration of diclofenac after a single administration of the above transdermal patch is 6 to 8 hours.
[30] The transdermal patch described in any of
[21] to
[29] , wherein the amount of diclofenac released during a single administration of the above transdermal patch is 13 mg to 16 mg, and the release rate of diclofenac is 8.6% to 10.7%.
[31] The transdermal patch according to any one of
[21] to
[30] , wherein the maximum plasma concentration of diclofenac when a steady state is reached by repeating the administration of the above transdermal patch once daily is 30 ng / mL to 65 ng / mL, and the time required to reach the above maximum plasma concentration is 3 to 6 hours.
[32] The transdermal patch according to any one of
[21] to
[31] , wherein the area under the plasma drug concentration-time curve at the administration interval of diclofenac is 400 ng·h / mL to 700 ng·h / mL when a steady state is reached by repeating the administration of the above transdermal patch once daily.
[33] The transdermal patch according to any one of
[21] to
[32] , wherein the half-life of the plasma concentration of diclofenac is 1 to 5 hours when a steady state is reached by repeating the administration of the above transdermal patch once daily.
[34] The transdermal patch described in any of
[21] to
[33] , wherein the amount of diclofenac released when a steady state is reached by repeating the administration of the above transdermal patch once daily is 14 mg to 21 mg, and the release rate of diclofenac is 9.3% to 14%. [34a] The transdermal patch according to any one of
[21] to
[25] , wherein the peak plasma concentration of diclofenac after a single administration of the above transdermal patch is 10 ng / mL to 13 ng / mL, and the time required to reach the above peak plasma concentration is 10 to 15 hours. [34b] The transdermal patch according to any of
[21] to
[25] or [34a], wherein, after a single administration of the above transdermal patch, the area under the plasma drug concentration-time curve of diclofenac from administration to the final concentration measurement time is 140 ng·h / mL to 200 ng·h / mL. [34c] The transdermal patch according to any of
[21] to
[25] , [34a] to [34b], wherein the area under the plasma drug concentration-time curve of diclofenac when extrapolated from the time of administration to infinity after a single dose of the above transdermal patch is 150 ng·h / mL to 200 ng·h / mL. [34d] The transdermal patch according to any of
[21] to
[25] , [34a] to [34c], wherein the half-life of the plasma concentration of diclofenac after a single dose of the above transdermal patch is 5 to 7 hours.
[35] The adhesive patch according to any one of
[21] to [34d], comprising a styrene-isoprene-styrene block copolymer and polyisobutylene as the adhesive base.
[36] The adhesive patch according to any one of
[21] to
[35] , comprising an alicyclic saturated hydrocarbon resin and a hydrogenated rosin glycerin ester in the adhesive layer.
[37] The adhesive patch according to any one of
[21] to
[36] , comprising liquid paraffin in the adhesive layer.
[38] A patch according to any one of
[21] to
[37] , comprising 3% to 7% by mass of diclofenac sodium based on the total mass of the adhesive layer.
[39] A patch according to any one of
[21] to
[38] , comprising oleic acid and citric acid as the above organic acid.
[40] The adhesive patch according to any one of
[21] to
[39] , comprising 4% to 6% by mass of oleic acid and 2% to 4% by mass of citric acid based on the total mass of the adhesive layer.
[0037] Examples
[0038] 1. Preparation of a patch containing diclofenac sodium A patch containing diclofenac sodium was prepared by the following method: The components of the adhesive layer (shown in Table 1) were uniformly mixed, and a patch with a mass of 214 g / m² was applied to a release liner (a PET liner treated for mold release). 2 The adhesive layer was spread out in this manner. A support layer was laminated onto the spread adhesive layer, and 100 cm 2 The material was cut to the desired size to obtain a patch (the content of diclofenac sodium per unit area was 10.7 g / m²). 2 Each patch contains 107 mg of diclofenac sodium.
[0039] [Table 1]
[0040] 2. Preparation of placebo patch A placebo patch without diclofenac sodium was prepared using the same method as described above. The components of the adhesive layer of the placebo patch are shown in Table 2.
[0041] [Table 2]
[0042] 3. Efficacy testing of the patch Screening of subjects Participants in this study were screened using the Numerical Rating Scale (a graded scale from 0 to 10, with 0 representing no pain and 10 representing the maximum imaginable pain, indicating the current level of pain; hereafter referred to as the "NRS scale"), targeting patients with osteoarthritis of the knee.
[0043] Application of transdermal patches to subjects Subjects deemed eligible in the above screening were assigned to one of the following groups: the patch of Example 1, the patch of Comparative Example 1, or a placebo patch. The patch was applied once daily for four consecutive weeks, alternating between the medial and lateral sides of the subject's knee. Dosage changes during the application period were prohibited.
[0044] Criteria for evaluating effectiveness The change in the Western Ontario and McMaster Universities Osteoarthritis Index (WOMAC) LK3.10A pain score between baseline and week 4 of application was measured. The WOMAC LK3.10A pain score is widely used as a specific measure for osteoarthritis. The following five items were evaluated on a 5-point scale (0 to 4), with lower scores indicating better results (0 = not painful, 4 = extremely painful). 1. Walking 2. Stair climbing 3. Nocturnal 4. Rest 5. Weight bearing
[0045] result As is clear from the results shown in Table 3, the patch administration group (N=69) in Example 1 showed a statistically significant improvement (pain relief) compared to the placebo patch administration group (N=143).
[0046] [Table 3]
[0047] 4. Pharmacokinetic studies of transdermal patches (1) Preparation of a patch containing diclofenac sodium The area of the adhesive patch is 140 cm². 2 Except for being cut to the specified size, the patches for Example 2 and Comparative Example 2 were obtained with the same composition as Example 1 and Comparative Example 1 described in 1 above (the content of diclofenac sodium per unit area was 10.7 g / m²). 2 Each patch contains 150 mg of diclofenac sodium.
[0048] Application of transdermal patch to subject The patches of Example 2 and Comparative Example 2, or Comparative Example 2 and Example 2, were applied to the knees of 18 healthy subjects in that order, and the pharmacokinetics of single and multiple doses of diclofenac sodium were evaluated.
[0049] result The results for a single dose are shown in Table 4, and the results for multiple doses are shown in Table 5. The values in the tables represent the mean (% coefficient of variation), but t max and t ss max This represents the median (minimum value - maximum value).
[0050] [Table 4]
[0051] [Table 5]
[0052] 5. Pharmacokinetic studies of transdermal patches (2) Preparation of a patch containing diclofenac sodium An adhesive patch (Example 3) with the same composition as Example 1 described above was obtained (area 100 cm²). 2 The content of diclofenac sodium per unit area is 10.7 g / m².2 Each patch contains 107 mg of diclofenac sodium.
[0053] Application of transdermal patch to subject The transdermal patch of Example 3 was applied to the inner or outer side of the knee of 20 healthy subjects for 24 hours, and the pharmacokinetics of diclofenac sodium were evaluated.
[0054] result The results are shown in Table 6. The numbers in the table represent the average values. [Table 6]
Claims
1. A patch for treating osteoarthritis of the knee, comprising a support layer and an adhesive layer laminated on the support layer, The adhesive layer comprises an adhesive base, diclofenac sodium, dimethyl sulfoxide, and an organic acid. The adhesive base comprises a styrene-isoprene-styrene block copolymer, polyisobutylene, or a combination thereof. The content of the organic acid is 6% to 8% by mass relative to the total mass of the adhesive layer. The aforementioned patch is used by applying it to the affected area, the knee, once a day, and the dose of diclofenac sodium per application is 70 mg to 150 mg. Adhesive patch.
2. The area of the aforementioned adhesive patch is 70 cm² 2 ~140cm 2 The adhesive patch according to claim 1.
3. The mass of the adhesive patch is 190 g / m². 2 ~240g / m 2 The adhesive patch according to claim 1 or 2.
4. The patch according to claim 1, wherein the patch is used by being applied alternately to the inner and outer sides of the knee on a daily basis.
5. The transdermal patch according to any one of claims 1 to 4, wherein the maximum plasma concentration of diclofenac after a single administration of the transdermal patch is 19 ng / mL to 23 ng / mL, and the time required to reach the maximum plasma concentration is 6 hours to 18 hours.
6. The transdermal patch according to any one of claims 1 to 5, wherein, after a single administration of the transdermal patch, the area under the plasma drug concentration-time curve of diclofenac from the time of administration to the final time of concentration measurement is 300 ng·h / mL to 400 ng·h / mL.
7. The transdermal patch according to any one of claims 1 to 6, wherein the area under the plasma drug concentration-time curve of diclofenac when extrapolated from the time of administration to infinity after a single administration of the transdermal patch is 300 ng·h / mL to 400 ng·h / mL.
8. The transdermal patch according to any one of claims 1 to 7, wherein the half-life of the plasma concentration of diclofenac after a single administration of the transdermal patch is 6 hours to 8 hours.
9. The transdermal patch according to any one of claims 1 to 8, wherein the maximum plasma concentration of diclofenac when a steady state is reached by repeating the administration of the transdermal patch once a day is 30 ng / mL to 65 ng / mL, and the time required to reach the maximum plasma concentration is 3 hours to 6 hours.
10. The transdermal patch according to any one of claims 1 to 9, wherein when a steady state is reached by repeating the administration of the transdermal patch once daily, the area under the plasma drug concentration-time curve at the administration interval of diclofenac is 400 ng·h / mL to 700 ng·h / mL.
11. The transdermal patch according to any one of claims 1 to 10, wherein the half-life of the plasma concentration of diclofenac when a steady state is reached by repeating the administration of the transdermal patch once a day is 1 to 5 hours.
12. The transdermal patch according to any one of claims 1 to 4, wherein the maximum plasma concentration of diclofenac upon single administration of the transdermal patch is 10 ng / mL to 13 ng / mL, and the time required to reach the maximum plasma concentration is 10 hours to 15 hours.
13. The transdermal patch according to any one of claims 1 to 4, 12, wherein, after a single administration of the transdermal patch, the area under the plasma drug concentration-time curve of diclofenac from the time of administration to the final time of concentration measurement is 140 ng·h / mL to 200 ng·h / mL.
14. The transdermal patch according to any one of claims 1 to 4, 12 to 13, wherein the area under the plasma drug concentration-time curve of diclofenac when extrapolated from the time of administration to infinity after a single administration of the transdermal patch is 150 ng·h / mL to 200 ng·h / mL.
15. The transdermal patch according to any one of claims 1 to 4, 12 to 14, wherein the half-life of the plasma concentration of diclofenac after a single administration of the transdermal patch is 5 to 7 hours.
16. The adhesive patch according to any one of claims 1 to 15, comprising a styrene-isoprene-styrene block copolymer and polyisobutylene as the adhesive base.
17. The adhesive patch according to any one of claims 1 to 16, wherein the adhesive layer comprises an alicyclic saturated hydrocarbon resin and a hydrogenated rosin glycerin ester.
18. The adhesive patch according to any one of claims 1 to 17, wherein the adhesive layer comprises liquid paraffin.
19. The adhesive patch according to any one of claims 1 to 18, comprising 3% to 7% by mass of diclofenac sodium based on the total mass of the adhesive layer.
20. The patch according to any one of claims 1 to 19, comprising oleic acid and citric acid as the organic acid.
21. The adhesive patch according to any one of claims 1 to 20, comprising 4% to 6% by mass of oleic acid and 2% to 4% by mass of citric acid based on the total mass of the adhesive layer.
Citation Information
Patent Citations
JPP6744511B
patch
US20150202171A1
Diclofenac formulations
US20150297507A1
Skin patch
WO2013191128A1
Patch
WO2018124089A1