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Gliclazide microcrystals prepared by two methods of in situ micronization: Pharmacokinetic studies in diabetic and normal rats

journal contribution
posted on 2023-06-08, 19:22 authored by Roya Talari, Jaleh Varshosaz, Saied Abolfazl Mostafavi, Ali Nokhodchi
The low water-solubility of gliclazide (GL) leads to a low dissolution rate and variable bioavailability. The aim of this study was to investigate the effect of micronization on the absorption and pharmacokinetics of GL after oral administration in rats. GL microcrystals were prepared using solventchange and pH-shift methods. Scanning electron microscopy showed considerable changes in the shape and size of crystals using both methods. In the optimized formulation of each method, the particle size of treated GL was reduced about 30 (from 290 to 9.9 µm) and 61 times (to 4.76 µm) by solvent-change and pH-shift methods, respectively. Recrystallized samples showed faster dissolution rate than untreated GL particles. Glucose-lowering effect, Cmax, and area under the drug concentration-time profile (area under the curve (AUC)) were compared in diabetic and normal rats. AUC and Cmax were increased by microcrystals in both groups of animals. Administration of 40 mg/kg of GL in the form of untreated drug and microcrystals obtained by solvent-change and pH-shift methods caused 12.49% and 21.04% enhancement in glucose-lowering effect of GL in diabetic rats, respectively. © 2010 American Association of Pharmaceutical Scientists.

History

Publication status

  • Published

Journal

AAPS PharmSciTech

ISSN

1530-9932

Publisher

Springer Verlag

Issue

2

Volume

11

Page range

786-792

Department affiliated with

  • Chemistry Publications

Full text available

  • No

Peer reviewed?

  • Yes

Legacy Posted Date

2014-12-19

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