New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release

Abstract Aim The in vitro drug release profiles of metformin hydrochloride thermoplastic coated tablets and nifedipine thermoplastic coated tablets were studied. Methods By measuring the in vitro release profiles of the thermoplastic coated tablets of model drugs, the effec...

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Main Authors: Chunping Yuan, Huimin Hou, Shuyun Ou, Shujing Zhao, Yongjian Gao, Qing Liu
Format: Article
Language:English
Published: Georg Thieme Verlag KG 2019-08-01
Series:Pharmaceutical Fronts
Subjects:
Online Access:http://www.thieme-connect.de/DOI/DOI?10.1055/s-0039-1693125
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spelling doaj-f2a7aba242cd46fab005a21a4bd21ec62021-03-17T08:40:47ZengGeorg Thieme Verlag KGPharmaceutical Fronts2628-50882628-50962019-08-010101e1e1010.1055/s-0039-1693125New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug ReleaseChunping Yuan0Huimin Hou1Shuyun Ou2Shujing Zhao3Yongjian Gao4Qing Liu5National Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical Industry, Shanghai, ChinaNational Pharmaceutical Engineering Research Center, China State Institute of Pharmaceutical Industry, Shanghai, ChinaResearch and Development Center, Sinopharm Group Guangdong Medi-world Pharmaceutical Company Limited, Foshan, ChinaResearch and Development Center, Sinopharm Group Guangdong Medi-world Pharmaceutical Company Limited, Foshan, ChinaResearch and Development Center, Sinopharm Group Guangdong Medi-world Pharmaceutical Company Limited, Foshan, ChinaResearch and Development Center, Sinopharm Group Guangdong Medi-world Pharmaceutical Company Limited, Foshan, ChinaAbstract Aim The in vitro drug release profiles of metformin hydrochloride thermoplastic coated tablets and nifedipine thermoplastic coated tablets were studied. Methods By measuring the in vitro release profiles of the thermoplastic coated tablets of model drugs, the effects of membrane thickness, polyethylene glycol-1,500 (PEG1500) content, number of orifice, stirring speed, and release medium on the drug release were investigated, and the rule and mechanism of drug release were also analyzed by comparing with the osmotic pump tablets (OPTs). Results Thermoplastic coated tablets with single- or double-chamber construction performed the same function of controlling the drug release, operated under the same release mechanism (osmotic pressure drove the drug release), and exhibited the same release characteristics (zero-order release, unaffected by release medium, and stirring speed) and release rule (release rate was inversely proportional to the membrane thickness but proportional to the PEG1500 content) as compared with OPTs prepared by the common spray coating technology. Conclusion Thermoplastic coated tablets have the same release characteristics in vitro as OPTs. The new technology of thermoplastic coating can replace the spray coating technology of OPTs. This study provides theoretical basis and practical support for the industrialization and clinical application of thermoplastic coating technology.http://www.thieme-connect.de/DOI/DOI?10.1055/s-0039-1693125thermoplastic coatingspray coatingmetformin hydrochloridenifedipineosmotic pump tablet
collection DOAJ
language English
format Article
sources DOAJ
author Chunping Yuan
Huimin Hou
Shuyun Ou
Shujing Zhao
Yongjian Gao
Qing Liu
spellingShingle Chunping Yuan
Huimin Hou
Shuyun Ou
Shujing Zhao
Yongjian Gao
Qing Liu
New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release
Pharmaceutical Fronts
thermoplastic coating
spray coating
metformin hydrochloride
nifedipine
osmotic pump tablet
author_facet Chunping Yuan
Huimin Hou
Shuyun Ou
Shujing Zhao
Yongjian Gao
Qing Liu
author_sort Chunping Yuan
title New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release
title_short New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release
title_full New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release
title_fullStr New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release
title_full_unstemmed New Technology of Thermoplastic Coating for Osmotic Pump Tablets: Study on in vitro Drug Release
title_sort new technology of thermoplastic coating for osmotic pump tablets: study on in vitro drug release
publisher Georg Thieme Verlag KG
series Pharmaceutical Fronts
issn 2628-5088
2628-5096
publishDate 2019-08-01
description Abstract Aim The in vitro drug release profiles of metformin hydrochloride thermoplastic coated tablets and nifedipine thermoplastic coated tablets were studied. Methods By measuring the in vitro release profiles of the thermoplastic coated tablets of model drugs, the effects of membrane thickness, polyethylene glycol-1,500 (PEG1500) content, number of orifice, stirring speed, and release medium on the drug release were investigated, and the rule and mechanism of drug release were also analyzed by comparing with the osmotic pump tablets (OPTs). Results Thermoplastic coated tablets with single- or double-chamber construction performed the same function of controlling the drug release, operated under the same release mechanism (osmotic pressure drove the drug release), and exhibited the same release characteristics (zero-order release, unaffected by release medium, and stirring speed) and release rule (release rate was inversely proportional to the membrane thickness but proportional to the PEG1500 content) as compared with OPTs prepared by the common spray coating technology. Conclusion Thermoplastic coated tablets have the same release characteristics in vitro as OPTs. The new technology of thermoplastic coating can replace the spray coating technology of OPTs. This study provides theoretical basis and practical support for the industrialization and clinical application of thermoplastic coating technology.
topic thermoplastic coating
spray coating
metformin hydrochloride
nifedipine
osmotic pump tablet
url http://www.thieme-connect.de/DOI/DOI?10.1055/s-0039-1693125
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