IN-SITU MULTILAYERED TABLET TECHNOLOGY
The present invention relates to an in-situ multilayered tablet comprising at least one polymer layers and at least one drug layers wherein the said layers are physically separated from each other. After coming in contact with biological and/or aqueous fluids at least one of the polymer layers rapidly swells and sticks to one or more drug layers to form an in-situ multilayered tablet. Further, the polymer layer may optionally comprise a drug. Furthermore, the present invention relates to the processes for preparing said in-situ multilayered tablets.
1 . An in-situ multilayered tablet comprising at least one polymer layer and at least one drug layer wherein said layers are physically separated from each other.
2 . The in-situ multilayered tablet according to claim 1 , wherein the said tablet comprises one polymer layer and one drug layer.
3 . The in-situ multilayered tablet according to claim 1 , wherein the said tablet comprises two polymer layers and one drug layer.
4 . The in-situ multilayered tablet according to claim 1 , wherein the said tablet comprises two polymer layers and two drug layers.
5 . The in-situ multilayered tablet according to claim 1 , wherein the polymer layer may optionally comprise a drug.
6 . The in-situ multilayered tablet according to claim 1 and claim 5 , wherein the polymer layer and the drug layer contain the same drug.
7 . The in-situ multilayered tablet according to claim 1 and claim 5 , wherein the polymer layer and the drug layer contain different drugs.
8 . The in-situ multilayered tablet according to claim 1 , wherein the said tablet provides an initial lag phase followed by the controlled release of the drug present in the drug layer wherein the drug layer is sandwiched between the two polymer layers.
9 . The in-situ multilayered tablet according to claim 1 , wherein the said tablet provides an initial immediate release followed by the controlled release of the drug present in the drug layer, wherein the drug layer contains a polymer layer on either of its sides.
10 . The in-situ multilayered tablet according to claim 1 , wherein the said tablet comprise an immediate release layer on it.
11 . The in-situ multilayered tablet according to claim 10 , wherein the said immediate release layer is in the form of a powder or a tablet.
12 . The in-situ multilayered tablet according to claim 1 , wherein the polymer layer comprises swelling polymers, antiadherents, binders, diluents, disintegrants, glidants, lubricants, opaquants, and/or polishing agents and optionally a drug.
13 . The in-situ multilayered tablet according to claim 12 , wherein the swelling polymer is selected from the group consisting of polyethylene oxide polymers, polyethylene glycol polymers, hydroxymethylcellulose, hydroxyethylcellulose, hydroxypropyl methylcellulose having molecular weight from 1,000 to 4,000,000, hydroxypropyl cellulose having molecular weight from 2,000 to 2,000,000, carboxyvinyl polymers, polyvinyl alcohols, glucans, scleroglucans, chitosans, mannans, galactomannans, xanthan gum, carrageenan, amylose, alginic acid and salts, and derivatives thereof, polyanhydrides, polyamino acids, methyl vinyl ethers/maleic anhydride copolymers, carboxymethylcellulose and derivatives thereof, acrylates, methacrylates, acrylic/methacrylic copolymers, or mixtures thereof.
14 . The in-situ multilayered tablet according to claim 12 , wherein the swelling polymer comprises about 50% to about 100% by weight of the polymer layer.
15 . The in-situ multilayered tablet according to claim 1 , wherein the drug layer comprises a drug and one or more pharmaceutically acceptable excipients selected from the group comprising adsorbents, antioxidants, acidifying agents, alkalizing agents, buffering agents, colorants, flavorants, sweetening agents, antiadherents, binders, diluents, disintegrants, glidants, lubricants, opaquants, and/or polishing agents.
16 . The in-situ multilayered tablet according to claim 1 , wherein the polymer layer and the drug layer are prepared by the process of direct compression, dry granulation or wet granulation.