The use of polymeric matrix devices to control the release of variety of therapeutic agents has become increasingly important in development of the modified release dosage forms. The device may be a swellable, hydrophilic monolithic systems, an erosion controlled monolithic system or a non erodible system. The initial burst release of 5-Fluoruracil from such matrix tablet surface can be controlled by compression coating technology. Appropriate combination of hydrophilic polymer in upper and lower layer of tablet can govern the release of 5-fluoruracil as well as lag time to deliver it in effective concentration to the colon with reduced toxicity. The lag time can be controlled by appropriate combination of polymer and excipients in coating layer. The release mechanism of 5-fluoruracil from the compression coated tablets was controlled by the rate of water uptake into the core tablet, which in turn was dependent upon the channeling agent used, the type and concentration of polymer. The hydration and swelling of these polymers results in the formation of gel which control the release of 5-fluoruracil from tablet.
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The use of polymeric matrix devices to control the release of variety of therapeutic agents has become increasingly important in development of the modified release dosage forms. The device may be a swellable, hydrophilic monolithic systems, an erosion controlled monolithic system or a non erodible system. The initial burst release of 5-Fluoruracil from such matrix tablet surface can be controlled by compression coating technology. Appropriate combination of hydrophilic polymer in upper and lower layer of tablet can govern the release of 5-fluoruracil as well as lag time to deliver it in effective concentration to the colon with reduced toxicity. The lag time can be controlled by appropriate combination of polymer and excipients in coating layer. The release mechanism of 5-fluoruracil from the compression coated tablets was controlled by the rate of water uptake into the core tablet, which in turn was dependent upon the channeling agent used, the type and concentration of polymer. The hydration and swelling of these polymers results in the formation of gel which control the release of 5-fluoruracil from tablet.
Mr.Tarak Jayraj Mehta did his B.Pharmacy From Rajiv Gandhi University,M.Pharmacy From S.R.M.University,and Persuing Ph.D. From JJT University,Jhunjhunu,he has started his carrier from B.M.C.P.E.R.,Modasa as a Lecturer,he has Published a number of Research Papers in National and International journals.he has successfully passed WIPO Exam,Switzerland
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Kartoniert / Broschiert. Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Mehta Tarak JayrajMr.Tarak Jayraj Mehta did his B.Pharmacy From Rajiv Gandhi University,M.Pharmacy From S.R.M.University,and Persuing Ph.D. From JJT University,Jhunjhunu,he has started his carrier from B.M.C.P.E.R.,Modasa as a Lectur. N° de réf. du vendeur 5527290
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The use of polymeric matrix devices to control the release of variety of therapeutic agents has become increasingly important in development of the modified release dosage forms. The device may be a swellable, hydrophilic monolithic systems, an erosion controlled monolithic system or a non erodible system. The initial burst release of 5-Fluoruracil from such matrix tablet surface can be controlled by compression coating technology. Appropriate combination of hydrophilic polymer in upper and lower layer of tablet can govern the release of 5-fluoruracil as well as lag time to deliver it in effective concentration to the colon with reduced toxicity. The lag time can be controlled by appropriate combination of polymer and excipients in coating layer. The release mechanism of 5-fluoruracil from the compression coated tablets was controlled by the rate of water uptake into the core tablet, which in turn was dependent upon the channeling agent used, the type and concentration of polymer. The hydration and swelling of these polymers results in the formation of gel which control the release of 5-fluoruracil from tablet. N° de réf. du vendeur 9783848499205
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Taschenbuch. Etat : Neu. Innovatioon 5-Fluoruracil SR Tablets for Colon Cancer Treatment | To optimize the challenges across formulation strategies and targeting colon | Tarak Jayraj Mehta (u. a.) | Taschenbuch | Englisch | LAP Lambert Academic Publishing | EAN 9783848499205 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. N° de réf. du vendeur 106497152
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