Surface Engineering of Fenofibrate Nanocrystals Using Nano-by-Design Multivariate Integration: A Biopharmaceutical and Pharmacokinetic Perspective

非诺贝特 生物利用度 溶解度 材料科学 生物制药 Zeta电位 化学工程 研磨 关键质量属性 纳米技术 化学 药理学 有机化学 研磨 粒径 医学 生物技术 复合材料 工程类 纳米颗粒 生物
作者
Sandip Gite,Pratik Kakade,Vandana Patravale
出处
期刊:Current Drug Delivery [Bentham Science Publishers]
卷期号:18 (9): 1314-1329 被引量:4
标识
DOI:10.2174/1567201818666210224100700
摘要

Surface engineering of nanocrystals for improving the biopharmaceutical features is a multivariate process involving numerous formulation and process variables, thus making it a complicated process to get the desired biopharmaceutical quality profile. Nano-by-design is hereby proposed as an approach to nanonize an orally active, lipid-lowering fenofibrate in order to improve feasibility of product development.Top-down wet ball milling (media milling) in zirconia planetary chamber was methodically explored for improving the solubility and bioavailability of fenofibrate by formulating a nanosuspension using polyvinyl alcohol as a stabilizer. Several influencing variables were screened using a systematic one-factor-at-a-time approach. DSC, SEM, XRD, and FTIR were utilized for physical characterization of the product during the development stage and to study the effect of milling time, milling speed, fenofibrate:stabilizer ratio, premilling time and stabilizer concentration. Potential risk factors affecting critical quality biopharmaceutical attributes of fenofibrate nanocrystals like size, zeta potential, in vitro release, crystallinity and intrinsic solubility were optimized to improve pharmacokinetic performance.Formulated nanosized fenofibrate exhibited a crystalize nature as evident from XRD and DSC, 411 nm size, and a rapid but complete dissolution (~99% in 30 min). This resulted in a quick onset of action and improved bioavailability as observed from 51.46% shorter Tmax, 82.63% higher Cmax, and 69.34% higher AUC0-24h, respectively.
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