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American Journal of PharmTech Research

Published

Formulation and In-Vitro Evaluation of Colon Specific Polymeric Microspheres of Ornidazole

Published in June 2012 Issue 3 (Vol. 2, Issue 3, 2012)

Formulation and In-Vitro Evaluation of Colon Specific Polymeric Microspheres of Ornidazole - Issue cover

Abstract

In the present investigation, pH-dependent and controlled drug release polymeric microspheres of Ornidazole were developed to deliver the active molecule to the colonic region. Microspheres were prepared by emulsion cross-linking method with some modifications, using different proportions of Ornidazole and Polymers (guar gum and gelatin). Gelatin microspheres were coated with Acrycoat L100 to achieve pH sensitive properties and specific biodegradability for colon targeted delivery of Ornidazole. Microspheres were evaluated for size, morphology, sphericity study, % yield, loose surface crystal study, drug content and entrapment efficiency. In vitro drug release study was conducted by buffer change method to mimic GIT environment using buffer solutions of varying pH. The investigations revealed that microspheres prepared with Ornidazole: guar gum ratio (1:2) shows only 10.003±0.885 % drug was released in first 5 hours and 38.849 ± 0.62 % in 12 hours, which proves the potentiality of guar gum for colonic delivery of drugs. While for microspheres prepared with Ornidazole: gelatin (1:2) and coated with Arycoat L100 shows 16.596 ± 3.18 % drug release in first 5 hours and 45.921 ± 3.07 % in 12 hours. Key Words: colon specific drug delivery, biodegradable polymers, pH-dependent release, In vitro drug release

Authors (3)

Prasanta Kumar Choudhury

Department of Pharmaceutics, R...

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Padala Narasimha Murthy

Department of Pharmaceutics, R...

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Niraj Kanti Tripathy

Department of Zoology, Berhamp...

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Article Information

Article ID:
AJPTR023242
Paper ID:
AJPTR-01-001449
Published Date:
2012-06-01

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How to Cite

Kumar, P., & Narasimha, P. & Kanti, N. (2012). Formulation and In-Vitro Evaluation of Colon Specific Polymeric Microspheres of Ornidazole. American Journal of PharmTech Research, 2(3), xx-xx. https://ajptr.scholarjms.com/articles/243

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