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PMID: 20467888 Published · ppublish English Journal Article

Simulating dissolution of intravitreal triamcinolone acetonide suspensions in an anatomically accurate rabbit eye model.

Pharmaceutical research ·Vol. 27 ·No. 8 ·2010-08-00 ·页码 1530-46

Missel PJ, Horner M, Muralikrishnan R

Abstract

A computational fluid dynamics (CFD) study examined the impact of particle size on dissolution rate and residence of intravitreal suspension depots of Triamcinolone Acetonide (TAC). A model for the rabbit eye was constructed using insights from high-resolution NMR imaging studies (Sawada 2002). The current model was compared to other published simulations in its ability to predict clearance of various intravitreally injected materials. Suspension depots were constructed explicitly rendering individual particles in various configurations: 4 or 16 mg drug confined to a 100 microL spherical depot, or 4 mg exploded to fill the entire vitreous. Particle size was reduced systematically in each configuration. The convective diffusion/dissolution process was simulated using a multiphase model. Release rate became independent of particle diameter below a certain value. The size-independent limits occurred for particle diameters ranging from 77 to 428 microM depending upon the depot configuration. Residence time predicted for the spherical depots in the size-independent limit was comparable to that observed in vivo. Since the size-independent limit was several-fold greater than the particle size of commercially available pharmaceutical TAC suspensions, differences in particle size amongst such products are predicted to be immaterial to their duration or performance.

MeSH 主题词
Animals Computer Simulation Models, Anatomic Particle Size Rabbits Solubility Suspensions/chemistry Triamcinolone Acetonide/chemistry
化学物质
Suspensions Triamcinolone Acetonide
作者与单位
共 3 位作者,点击展开单位 / ORCID
Missel Paul J
Drug Delivery, Alcon Research Ltd., Mail Stop R2-45, 6201 South Freeway, Fort Worth, Texas 76134, USA. [email protected]
Horner Marc
Muralikrishnan R
Article Info
Journal
Pharmaceutical research
Abbr.
Pharm Res
ISSN
1573-904X
Corresponding email
Published
2010-08-00
电子出版
2010-00-14
页码
1530-46
Language
English
Country/Region
United States
NLM ID
8406521
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