Pharmaceutical Compositions of Edoxaban
20170231969 · 2017-08-17
Assignee
Inventors
Cpc classification
A61K9/2018
HUMAN NECESSITIES
A61K9/2059
HUMAN NECESSITIES
A61K31/444
HUMAN NECESSITIES
A61P9/14
HUMAN NECESSITIES
A61P7/02
HUMAN NECESSITIES
A61K9/2054
HUMAN NECESSITIES
International classification
Abstract
Edoxaban is factor X inhibitor useful for the treatment or the prevention of thrombosis or embolism. A pharmaceutical composition comprising Edoxaban, or a pharmaceutically acceptable salt thereof, a water soluble vinylpyrrolidone polymer selected from the group consisting of povidone and copovidone, and a cellulose ether, and not comprising a sugar alcohol, having good dissolution and bioavailability is provided. A process for its preparation, a dosage form comprising such composition, and the use of said pharmaceutical composition and dosage form as a medicament are also disclosed.
Claims
1. A pharmaceutical composition comprising Edoxaban, or a pharmaceutically acceptable salt thereof, a water soluble vinylpyrrolidone polymer selected from the group consisting of povidone and copovidone, and a cellulose ether and not comprising a sugar alcohol.
2. The pharmaceutical composition of claim 1 wherein the pharmaceutically acceptable salt of Edoxaban is Edoxaban tosylate monohydrate.
3. The pharmaceutical composition of claim 1 wherein the water soluble vinylpyrrolidone polymer is povidone.
4. The pharmaceutical composition of claim 1 wherein the water soluble vinylpyrrolidone polymer is copovidone.
5. The pharmaceutical composition of claim 1 wherein the cellulose ether is selected from the group consisting of hydro xypropyl methylcellulose, hydro xypropyl cellulose, ethylcellulose, hydroxyethyl cellulose, carboxymethyl cellulose and methylcellulose.
6. The pharmaceutical composition of claim 1 wherein the cellulose ether is hydroxypropyl methylcellulose.
7. The pharmaceutical composition of claim 1 further comprising one or more active ingredients selected from the group consisting of fillers, disintegrants and lubricants.
8. A dosage form comprising the pharmaceutical composition of claim 1.
9. The dosage form of claim 8, which is a tablet.
10. The dosage form of claim 8, which is an uncoated tablet.
11. A process for the preparation of the pharmaceutical composition of claim 1 comprising granulating Edoxaban, or a pharmaceutically acceptable salt thereof, a water soluble vinylpyrrolidone polymer selected from the group consisting of povidone and copovidone, and a cellulose ether.
12. The process of claim 11, wherein wet granulation is used.
13. A pharmaceutical composition obtainable by the process of claim 11.
14. The pharmaceutical composition of claim 1 for use as a medicament.
15. The pharmaceutical composition of claim 1 for use in preventing and/or treating thrombosis or embolism.
Description
DETAILED DESCRIPTION OF THE DISCLOSURE
Definitions
[0009] As used herein “povidone” refers to polyvinylpyrrolidone, a water-soluble polymer made from the monomer N-vinylpyrrolidone.
[0010] As used herein “copovidone” refers to a water-soluble vinylpyrrolidone-vinyl acetate copolymer that contains the two components in a ratio of about 6:4.
[0011] As used herein “cellulose ether” refers to derivatives of cellulose that are formed via partial of complete substitution of the hydrogen atoms of the hydroxyl groups of cellulose. Such reaction is known as etherification.
[0012] As used herein “granulating” refers to the formation of relatively coarse or granular aggregate material as a powder by assembling and/or aggregating finer powder particles (agglomerate formation, or build-up granulation) and/or the formation of finer granules by breaking up coarser aggregates (disintegration, or break-down granulation). Granulation can conventionally mean wet or dry granulation.
Pharmaceutical Compositions
[0013] It has surprisingly been found that when formulating Edoxaban, or a pharmaceutically acceptable salt thereof, with two different binders, the first being a water soluble vinylpyrrolidone polymer selected from the group consisting of povidone and copovidone, and the second a cellulose ether, notwithstanding the absence of a sugar alcohol fast and complete dissolution is achieved independently of the pH of the solution and thanks to surface activation and intensive interaction on molecular level between the binders and the active ingredient. Moreover subsequent precipitation of the active ingredient is avoided. Particularly good results are obtained if the formulation is prepared by wet granulation, which enables a more intimate contact of Edoxaban with the two binders.
[0014] Edoxaban free base or, preferably, a pharmaceutically acceptable salt thereof may be used. More preferably, the pharmaceutically acceptable salt of Edoxaban is Edoxaban tosylate. Particularly preferred is Edoxaban tosylate monohydrate. Preferably, the pharmaceutical composition of the present invention comprises 5 to 80%, more preferably 8 to 50%, even more preferably 10 to 30% of Edoxaban, calculated as weight of the free base on the total weight of the composition.
[0015] Povidone is preferably selected from the group consisting of povidone K12, K15, K17, K25, K30, K60, K90 and K120. Copovidone is preferably selected from the group consisting of Kollidon VA 64, Plasdone S-630 and Luvixol VA. Preferably, the pharmaceutical composition of the present invention comprises 1 to 20%, more preferably 2 to 15%, even more preferably 3 to 10% of the water soluble vinylpyrrolidone polymer, calculated as weight of vinylpyrrolidone polymer on the total weight of the composition.
[0016] The cellulose ether is preferably selected from the group consisting of hydroxypropyl methylcellulose (HPMC), hydroxypropyl cellulose (HPC), ethylcellulose (EC), hydroxyethyl cellulose (HEC), carboxymethyl cellulose (CMC) and methylcellulose (MC), preferably hydroxypropyl methylcellulose, hydroxypropyl cellulose, ethyl cellulose or hydroxyethyl cellulose, most preferably hydroxypropyl methylcellulose. Preferably, the pharmaceutical composition of the present invention comprises 1 to 20%, more preferably 2 to 15%, even more preferably 3 to 10% of the cellulose ether, calculated as weight of the cellulose ether on the total weight of the composition.
[0017] The pharmaceutical composition of the invention can preferably contain further inactive ingredients, preferably selected from the group consisting of fillers, disintegrants and lubricants.
[0018] The term “fillers” generally refers to substances which serve, for example, to form the body of the tablet in the case of tablets with small amounts of active agent. This means that fillers “dilute” the active agents in order to produce an adequate dosage form mixture. The normal purpose of fillers, therefore, is to obtain a suitable dosage form size, preferably a suitable tablet size. Examples of suitable fillers are microcrystalline cellulose, dibasic calcium phosphate, lactose, talcum, calcium phosphate, magnesium carbonate, magnesium oxide, calcium sulphate, saccharose, monosaccharides, such as glucose, maltodextrin, dextrates, dextrin. Preferred fillers are microcrystalline cellulose, dibasic calcium phosphate and lactose monohydrate.
[0019] Disintegrants expand and dissolve when wet causing the pharmaceutical composition to break apart in the digestive tract, releasing the active ingredients for absorption. They ensure that when the pharmaceutical composition is in contact with water, it rapidly breaks down into smaller fragments, facilitating dissolution. Examples of suitable disintegrants include crosslinked polymers, starches and modified starches. Preferred disintegrants are crosslinked polyvinylpyrrolidone (crospovidone), crosslinked sodium carboxymethyl cellulose (croscarmellose sodium), corn starch and sodium starch glycolate.
[0020] Lubricants are generally used in order to reduce sliding friction. Suitable lubricants are, for example, sodium stearyl fumarate, magnesium stearate, glyceryl behenate, stearic acid and adipic acid. Preferred lubricants are sodium stearyl fumarate, magnesium stearate and glyceryl behenate.
Formulation Process
[0021] The pharmaceutical compositions of the present invention are obtained by contacting Edoxaban, or a pharmaceutically acceptable salt thereof, with a water soluble vinylpyrrolidone polymer selected from the group consisting of povidone and copovidone, and a cellulose ether in a dry state or dispersed in the adequate amount of solvent) and, optionally, further inactive ingredients such as fillers and disintegrants with the proviso that sugar alcohols are excluded.
[0022] In a preferred embodiment wet granulation is used and water is used as preferred solvent. The wet granules are then dried. The dried granules are optionally sieved and blended with further ingredients, such as lubricants, and the final blend is compressed into tablets, or, alternatively, filled into capsules or sachets.
[0023] In an alternative embodiment, dry granulation is used. The mixture is then blended and compacted using appropriate compacting machine. The compacted granules or slugs are then milled and passed through appropriate sieve, blended with further ingredients, such as lubricants, and the final blend is compressed into tablets, or, alternatively, filled into capsules or sachets.
Dosage Forms
[0024] Generally, the composition of the present invention can be used as intermediate or as final dosage form. Preferably, the composition of the present invention is used as intermediate, which is preferably further processed into a dosage form. The processing into a dosage form can be achieved by means of suitable methods, such as filling into sachets or capsules or by compressing into tablets.
[0025] Therefore, the composition of the invention can be employed to prepare a dosage form, preferably an oral dosage form, more preferably a solid oral dosage form, in particular a capsule or a tablet. In a preferred embodiment, the dosage form can be a tablet, which can or cannot be film-coated. For this purpose, methods known in the art for film-coating a tablet may be employed. Generally, film-coatings can be prepared by using cellulose derivatives, poly(meth)acrylate, polyvinyl pyrrolidone, polyvinyl acetate phthalate, or natural rubbers such as carrageenan. Preferably the tablet is uncoated.
[0026] The tablet of the invention can preferably have a hardness of not less than 30 N, more preferably not less than 50 N. The hardness is determined in accordance with Ph. Eur., 6.0, Chapter 2.9.8. In addition, the tablet of the invention can preferably have a friability of less than 3%, more preferably less than 2%, in particular 0.1 to 1.2%. The friability is determined in accordance with Ph. Eur., 6.0, Chapter 2.9.7. Further, the tablet of the invention preferably can have a “content uniformity” of 93 to 107%, more preferably 95 to 105%, still more preferably 98 to 102%, particularly 99 to 101% of the average content. The “content uniformity” is determined in accordance with Ph. Eur., 6.0, Chapter 2.9.6. The above details regarding hardness, friability and content uniformity preferably relate to the non-film-coated tablet.
[0027] In a preferred embodiment the composition and/or the dosage form according to the invention provides an immediate release of Edoxaban. This means that the release profile of the dosage forms of the invention according to USP method (paddle, 900 ml, 0.1 n HC1, 75 rpm, 37 'C) after 10 minutes usually indicates a content release of at least 75%, preferably at least 85%, especially at least 90%. The release can be up to 95%, preferably up to 100%.
[0028] It has been unexpectedly found that the dosage form of the present invention can be administered independently from the meals of the patient, i.e. the dosage forms of the present invention are suitable to be administered before, during or after the meals. In a preferred embodiment, the dosage forms of the invention are administered once a day at a daily dose of 30 to 60 mg.
Advantages
[0029] The dosage form of the present invention preferably shows superior and pH independent dissolution and absorption characteristics upon administration, leading to high bioavailability and desirable plasma values, like desirable AUC (area under the curve from 0 to 48 hours after oral administration), C.sub.max and T.sub.max values. Preferably, administration of the dosage form of the present invention results in a T.sub.max value of 0.5 to 3 hours, more preferably of 0.75 to 1.5 hours. Preferably, administration of the dosage form of the present invention in a strength of 30 mg calculated for the free base of Edoxaban results in a C.sub.max value of 100 to 300 ng/ml, more preferably 150 to 250 ng/ml. Preferably, administration of the dosage form of the present invention in a strength of 60 mg calculated for the free base of Edoxaban results in a C.sub.max value of 150 to 500 ng/ml, more preferably 200 to 350 ng/ml. Preferably, administration of the dosage form of the present invention in a strength of 30 mg calculated for the free base of Edoxaban results in a AUC value of 500 to 3000 ng h/ml, more preferably 750 to 1500 ng h/ml. The plasma values are an average of ten single measurement values, determined upon administration to 10 male humans having a body weight of about 75 kg.
[0030] In addition, no specific fillers like sugar alcohols are needed and very good results can be obtained using common fillers like lactose, calcium phosphate and the like. Moreover high drug loads can be achieved, resulting in smaller dosage forms and improved patient compliance. Use of carbon dioxide forming agent is also avoided, which allows for cheap manufacturing and packaging. Also coating of the dosage forms can be avoided, leading to quicker and cheaper processing.
EXAMPLES
Examples 1-6
[0031]
TABLE-US-00001 Amounts (mg) Ingredients Function Ex. 1 Ex. 2 Ex. 3 Ex. 4 Ex. 5 Ex. 6 Edoxaban tosylate Active 40.46 40.46 40.46 40.46 40.46 40.46 monohydrate ingredient (corresponding to 30 mg of the free base) HPMC Binder 6 0 13 20 0 20 HPC Binder 0 20 0 0 6 0 Povidone Binder 6 0 13 6 20 0 Copovidone Binder 0 20 0 0 0 6 Sodium starch Disintegrant 16.54 16.54 16.54 16.54 16.54 16.54 glycolate Lactose Filler 59 35 59 69 59 49 Monohydrate Dibasic calcium Filler 64 40 50 40 30 50 phosphate Corn starch Filler 0 20 0 0 20 10 Sodium stearyl Lubricant 8 8 8 8 8 8 fumarate Total 200 200 200 200 200 200
[0032] Edoxaban tosylate monohydrate is blended with the two binders, half of the disintegrant and with the fillers in a high shear mixer. The mixture is then granulated with an adequate amount of water using a high shear granulation. The wet granules are then dried at 50° C. The dried granules are passed through a 0.8 mm screen and blended with the rest of the disintegrant and with the lubricant using an appropriate free fall blender. The final blend is compressed into tablets using a 9 mm round punch with a target weight of 200 mg.