4.3 Article

Formulation and Characterization of Mucoadhesive Microparticles of Cinnarizine Hydrochloride Using Supercritical Fluid Technique

Journal

CURRENT DRUG DELIVERY
Volume 10, Issue 3, Pages 317-325

Publisher

BENTHAM SCIENCE PUBL LTD
DOI: 10.2174/1567201811310030008

Keywords

Cinnarizine HCl; microparticles; supercritical CO2; mucoadhesion; chitosan

Funding

  1. Science and Engineering Research Board (Department of Science and Technology) from the Ministry of Science and Technology of the India for FAST tract young Scientists Fellowship [SR/FT/LS-070/2008]

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The mucoadhesive microparticles (CHCNZ) composed of chitosan (CH) and cinnarizine (CNZ) hydrochloride were successfully prepared, in a process of solution-enhanced dispersion, by supercritical CO2 (SEDS) technique. Scanning electron microscopy was used to reveal the morphological characteristics of mucoadhesive microparticles. The average particle size of microparticles was in the range from 1.9 to 12.8 mu m. In vitro and in vivo mucoadhesive tests showed that CHCNZ mucoadhesive microparticles adhered more strongly to gastric mucous layer. Thereby retaining in gastrointestinal tract for an extended period of time and exhibiting good mucoadhesive properties. The X-ray powder diffractometry and differential scanning calorimetry analysis demonstrated that the SEDS process was an efficient physical coating process to produce CHCNZ composite microparticles. It also suggests that CNZ did not undergo chemical changes during the production of microparticles. The optimized batch exhibited a high drug entrapment efficiency of 67 % with particle size of 3.9 mu m. A sustained pattern of drug release was obtained for more than 20 h. In vivo studies were carried out by administering orally cinnarizine HCl (CNZ) suspension and mucoadhesive microparticles to rabbits under fasted (for 12 h) conditions. The results showed that CNZ mucoadhesive microparticles had a better bioavailability than CNZ suspension due to longer retention in the gastric environment of the test animals.

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