IL163205A

Method for the manufacture of a pharmaceutical tablet delivering both immediate release and sustained release drugs

Abstract

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Term

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14 claims: 14 independent, 0 dependent

  1. 1
    163,205/3 What is Claimed is:1. A, method for the manufacture of a pharmaceutical tablet which upon oral ingestion delivers a first drug by substantially immediate release and a second drug by sustained release defined as a release rate into gastric fluid that is slow enough to leave at least about 40% of said second drug unreleased one hour after ingestion, and in which said first drug is at most sparingly soluble in water and the weight ratio of said first drug to said second drug is equal to or less than about 0.01:1, said method comprising: dispersing said second drug in a solid matrix to form a unitary core which upon immersion in gastric fluid releases said second drug by sustained release while retaining at least a portion of the mass of said solid matrix as a coherent body until said second drug is fully released there from;depositing on the surface of said unitary core an aqueous suspension of particles of said first drug that are equal to or less than about 10 microns in diameter, using an amount of said first drug selected to achieve said weight ratio relative to said second drug;and evaporating water from said aqueous suspension thus deposited to leave a solid shell encasing said unitary core and containing said first drug.
  2. 2
    A method for the manufacture of a pharmaceutical tablet which upon oral ingestion delivers a first drug by substantially immediate release and a second drug by sustained release defined as a release rate into gastric fluid that is slow enough to leave at least about 40% of said second drug unreleased one hour after ingestion, and in which said first drug is at most sparingly soluble in water and the weight ratio of said first drug to said second drug is equal to or less than about 0.01:1, said method comprising: combining said second drug with a first solid matrix to form a sustained-release layer, said first solid matrix being of a substance which when formed into a coherent body and immersed in gastric fluid releases said second drug by sustained release while retaining at least a portion of the mass of said first solid matrix as a coherent body until said second drug is fully released there from;and combining particles of said first drug that are equal to or less than about 10 microns in diameter with particles of a second solid matrix to form an immediate-release layer adjoined to said sustained-release layer as a layered tablet, said second 1 ’ ' solid matrix being of a substance that separates into discrete matrix particles immediately upon immersion in gastric fluid, using amounts of said first and second drugs selected to achieve said weight ratio. 9 163,205/3
  3. 3
    A method in accordance with claims 1 or 2 in which said weight ratio is from about 0.001:1 to about 0.01:1.
  4. 4
    A method in accordance with claims 1 or 2 in which said particles of said first drug are from about 0.3 micron to about 10 microns in diameter.
  5. 5
    A method in accordance with claims 1 or 2 which said particles of said first drug are from about 1 micron to about 5 microns in diameter.
  6. 6
    A method in accordance with claims 1 or 2 in which said first drug has a solubility in water at 37.degree. C. of less than 2% by weight.
  7. 7
    A method in accordance with claims 1 or 2 in which said first drug has a solubility in water at 37.degree. C. of less than 0.5% by weight.
  8. 8
    A method in accordance with claims 1 or 2 in which said first drug is a sulfonylurea and said second drug is a member selected from the group consisting of metformin hydrochloride, vancomycin hydrochloride, captopril, erythromycin lactobionate, ranitidine hydrochloride, sertraline hydrochloride, ticlopidine hydrochloride, amoxicillin, cefuroxime axetil, cefaclor, clindamycin, doxifluridine, tramadol, fluoxitine hydrochloride, ciprofloxacin, gancyclovir, bupropion, lisinopril, cefaclor, ciprofloxacin, saguinavir, ritonavir, nelfinavir, clarithromycin, azithromycin, ceftazidine, cyclosporin, digoxin, paclitaxel, iron salts, topiramate, and ketoconazole.
  9. 9
    A method in accordance with claims 1 or 2 in which said first drug is a sulfonylurea selected from the group consisting of glimepiride, glyburide, and glipizide, and said second drug is metformin hydrochloride.
  10. 10
    A method in accordance with claims 1 or 2 in which said first drug is glimepiride and said second drug is metformin hydrochloride.
  11. 11
    A method in accordance with claims 1 or 2 in which said solid matrix is a member selected from the group consisting of poly(ethylene oxide), hydroxypropyl methyl cellulose, and combinations of poly(ethylene oxide) and hydroxypropyl methyl cellulose. 10 163,205/1
  12. 12
    A method in accordance with claim 1 in which said aqueous suspension has a suspending agent dissolved therein.
  13. 13
    A method in accordance with claim 12 in which said suspending agent is hydroxypropyl methyl cellulose.
  14. 14
    A method in accordance with claim 2 in which said second solid matrix is a member selected from the group consisting of lactose, microcrystalline cellulose, and combinations of lactose and microcrystalline cellulose. For the Applicant WOLFF, BREGMAN AND GOLLER by:11 □voau?an ppuza , crnxan rwzn ατα inia^n pnow pnszn irn nr -jaoa ,ρνο ηχΒ- laoa-a ma™ na^maa np’ioz .zrtwan rwaa mp^an ρ-ίϊ? oxnm □ιηπη Pi? evaCtOffi ^·*'*^·*· * ***9^"·** {yyj — 1$ J112029 05 SI S3 40200 'id··» · ·· .(mcna navin) cras amp;’an nwa