Claims
- 1. A slow-release delivery vehicle for delivering at least one active ingredient into a film coating, comprising a population of stable, homogeneously-dispersed, porous polymeric or co-polymeric beads having a network of pores, wherein the at least one active ingredient is held within the bead particles and within the network of pores and slowly released by internal flow, and wherein the network of pores is substantially non-collapsible upon removal of the active ingredient.
- 2. The delivery vehicle of claim 1, wherein the network of pores comprises (i) macropores; (ii) mesopores; (iii) micropores; and (iv) gel porosity.
- 3. The delivery vehicle of claim 2, wherein the porous co-polymer bead preparation comprises a continuous aqueous phase solution containing a monomeric mixture, further comprising at least one polyvinylaromatic monomer and at least one porogen.
- 4. The delivery vehicle of claim 3, wherein the at least one monomer is selected from the group consisting of ethylene, propylene, isobutylene, diisobutylene, styrene, ethylvinylbenzene, vinylpyridine, vinyltoluene, and dicyclopentadiene; esters of acrylic and methacrylic acid, including the methyl, ethyl, propyl, isopropyl, butyl, sec-butyl, tert-butyl, amyl, hexyl, octyl, ethylhexyl, decyl, dodecyl, cyclohexyl, isobornyl, phenyl, benzyl, alkylphenyl, ethoxymethyl, ethoxyethyl, ethoxypropyl, propoxymethyl, propoxyethyl, propoxypropyl, ethoxyphenyl, ethoxybenzyl, and ethoxycyclohexyl esters; vinyl esters, and vinyl acetate, vinyl propionate, vinyl butyrate and vinyl laurate; vinyl ketones and vinyl methyl ketone, vinyl ethyl ketone, vinyl isopropyl ketone, and methyl isopropenyl ketone; vinyl ethers, and vinyl methyl ether, vinyl ethyl ether, vinyl propyl ether, hydroxyethyl (meth)acrylate, hydroxypropyl (meth)acrylate; aromatic vinyl compounds, styrene; substituted styrenes; butadiene; acrylonitrile; monomers containing acetoacetoxy functional groups, and acetoacetoxyethyl methacrylate; vinyl acetate; acid or base containing monomers, and (meth)acrylic acid, itaconic acid, maleic acid, fumaric acid, N,N-dimethylaminoethyl methacrylate; cross-linking and grafting monomers, and 1,4-butyleneglycol methacrylate, trimethylolpropane triacrylate and trimethaerylate, allyl methacrylate, diallyl phthalate, divinyl benzene, glycerol methacrylate and glycerol dimethacrylate, pyethylenically unsaturated monomers, which ordinarily act as though they have only one unsaturated group, and sopropene, butadiene and chloroprene, and combinations thereof.
- 5. The delivery vehicle of claim 4, wherein the composition is cross-linked, comprising polyethylenically unsaturated cross-linking monomers selected from the group consisting of diallyl phthalate, ethylene glycol diacrylate, ethylene glycol dimethacrylate, trimethylolpropanetri-methacrylate, divinylsulfone; polyvinyl and polyallyl ethers of ethylene glycol, of glycerol, of pentaerythritol, of diethyleneglycol, of monothio- and dithio-derivatives of glycols, and of resorcinol; divinylketone, divinylsulfide, allyl acrylate, diallyl maleate, diallyl fumarate, diallyl succinate, diallyl carbonate, diallyl malonate, diallyl oxalate, diallyl adipate, diallyl sebacate, divinyl sebacate, diallyl tartrate, diallyl silicate, triallyl tricarballylate, triallyl aconitate, triallyl citrate, triallyl phosphate, divinyl naphthalene, divinylbenzene, trivinylbenzene; alkyldivinylbenzenes having from 1 to 4 alkyl groups of 1 to 2 carbon atoms substituted on the benzene nucleus; alkyltrivinylbenzenes having 1 to 3 alkyl groups of 1 to 2 carbon atoms substituted on the benzene nucleus; trivinylnaphthalenes, and polyvinylanthracenes.
- 6. The delivery vehicle of claim 3, wherein the at least one porogen is selected from the group consisting of toluenes, xylenes, (C4-C10)-alkanols, (C6-C12)-saturated hydrocarbons, and polyalkylene glycols.
- 7. The delivery vehicle of claim 1, wherein the at least one active ingredient comprises at least one plasticizer.
- 8. The delivery vehicle of claim 7, wherein the at least one plasticizer is selected from the group consisting of dibutyl phthalates or other phthalates; dioctyl adipate, (bis)2-ethylhexyl adipate (DOA), diisobutyl adipate, dipropyl adipate, diisostearyl adipate, diisocetyl adipate, diisodecyl adipate, diisononyl adipate, pentaerythrityl tetraacetate or other adipates; pentaerythrityl tetrabenzoates; pentaerythrityl tetrabenzoates, wherein the R group is a benzyl; 1,2,4-trimethyl-1,3-pentanediol diisobutyrate (TXIB); and combinations thereof.
- 9. The delivery vehicle of claim 1, further comprising at least one film forming ingredient, which is selected from the group consisting of nitrocellulose, cellulose acetate butyrate, polyurethanes, and mixtures thereof.
- 10. The delivery vehicle of claim 1, further comprising at least one ingredient selected from the group consisting of vitamins, botanicals, pigments, dyes, stabilizing agents, UV-activated initiators, UV absorbers, UV inhibitors, UV blockers, brighteners, fragrances, flavors, opacifiers, oils, moisturizers, antioxidants, solvents, bactericides, mildewcides, fungicides, herbicides, pesticides, stabilizing agents, radical inhibiting compositions, radical trapping compositions, antibiotics, antimicrobials, slip agents, catalysts, antibiotics, topical therapeutic drugs, radiation treatment compositions and imaging compositions.
- 11. A method for preparing slow-release delivery vehicle for delivering at least one active ingredient into a film coating, comprising the steps of:
dissolving at least one monomeric composition in an inert porogen to form a solution; suspending the solution in a phase incompatible with the solution; agitating the solution and the phase to form a plurality of droplets of the solution suspended in the phase; activating at least one monomer in the plurality of droplets to polymerize the at least one monomeric composition and form a population of stable, homogeneously-dispersed, porous polymeric or co-polymeric beads having a network of pores, capable of containing at least one active ingredient within the bead particles and within the network of pores and slowly releasing same by internal flow, and wherein the network of pores is substantially non-collapsible upon removal of the active ingredient; separating the porous polymeric bead from the phase; removing any impurity from the porous polymeric bead; and adding at least one active ingredient to the porous polymeric bead preparation to form the delivery vehicle.
- 12. The method of preparation of claim 11, wherein the network of pores comprises (i) macropores; (ii) mesopores; (iii) micropores; and (iv) gel porosity.
- 13. The method of preparation of claim 12, wherein the porous co-polymer bead preparation comprises a continuous aqueous phase solution containing a monomeric mixture, further comprising at least one polyvinylaromatic monomer and at least one porogen.
- 14. The method of preparation of claim 13, wherein the at least one monomer is selected from the group consisting of ethylene, propylene, isobutylene, diisobutylene, styrene, ethylvinylbenzene, vinylpyridine, vinyltoluene, and dicyclopentadiene; esters of acrylic and methacrylic acid, including the methyl, ethyl, propyl, isopropyl, butyl, sec-butyl, tert-butyl, amyl, hexyl, octyl, ethylhexyl, decyl, dodecyl, cyclohexyl, isobornyl, phenyl, benzyl, alkylphenyl, ethoxymethyl, ethoxyethyl, ethoxypropyl, propoxymethyl, propoxyethyl, propoxypropyl, ethoxyphenyl, ethoxybenzyl, and ethoxycyclohexyl esters; vinyl esters, and vinyl acetate, vinyl propionate, vinyl butyrate and vinyl laurate; vinyl ketones and vinyl methyl ketone, vinyl ethyl ketone, vinyl isopropyl ketone, and methyl isopropenyl ketone; vinyl ethers, and vinyl methyl ether, vinyl ethyl ether, vinyl propyl ether, hydroxyethyl (meth)acrylate, hydroxypropyl (meth)acrylate; aromatic vinyl compounds, styrene; substituted styrenes; butadiene; acrylonitrile; monomers containing acetoacetoxy functional groups, and acetoacetoxyethyl methacrylate; vinyl acetate; acid or base containing monomers, and (meth)acrylic acid, itaconic acid, maleic acid, fumaric acid, N,N-dimethylaminoethyl methacrylate; cross-linking and grafting monomers, and 1,4-butyleneglycol methacrylate, trimethylolpropane triacrylate and trimethacrylate, allyl methacrylate, diallyl phthalate, divinyl benzene, glycerol methacrylate and glycerol dimethacrylate, pyethylenically unsaturated monomers, which ordinarily act as though they have only one unsaturated group, and sopropene, butadiene and chloroprene, and combinations thereof.
- 15. The method of preparation of claim 14, further comprising at least partially cross-linking to form the porous bead.
- 16. The method of preparation of claim 13, wherein the at least one porogen is selected from the group consisting of toluenes, xylenes, (C4-C10)-alkanols, (C6-C12)-saturated hydrocarbons, and polyalkylene glycols.
- 17. A method for delivering an active ingredient into a film coating of claim 1 and slow-release delivery therefrom, comprising the steps of:
mixing a delivery vehicle with a medium to form a mixture, which comprises at least one active ingredient, and wherein the delivery vehicle comprises a population of stable, homogeneously-dispersed, porous polymeric or co-polymeric beads having a network of pores, capable of containing the at least one active ingredient within the bead particles and within the network of pores and slowly releasing same by internal flow, and wherein the network of pores is substantially non-collapsible upon removal of the active ingredient; applying the mixture to a surface; and releasing the at least one active ingredient from the network of pores and bead particles.
- 18. The method of delivery of claim 17, wherein the network of pores comprises (i) macropores; (ii) mesopores; (iii) micropores; and (iv) gel porosity.
- 19. The method of delivery of claim 18, wherein the porous co-polymer bead preparation comprises a continuous aqueous phase solution containing a monomeric mixture, further comprising at least one polyvinylaromatic monomer and at least one porogen.
- 20. The method of delivery of claim 19, wherein one monomer is at least partially cross-linked to form the porous bead containing the at least one active ingredient.
REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to U.S. Provisional Application No. 60/364,266, filed Mar. 14, 2002, the content of which is herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60364266 |
Mar 2002 |
US |