Novel polyvinyl-alcohol microsphere for everolimus delivery for subependymal giant cell astrocytoma

聚乙烯醇 生物利用度 材料科学 室管膜下巨细胞星形细胞瘤 微粒 聚合物 药物输送 人口 傅里叶变换红外光谱 化学工程 纳米技术 药理学 胶质瘤 复合材料 医学 星形细胞瘤 癌症研究 工程类 环境卫生
作者
Lynn Louis,Bor Shin Chee,Noreen Louis,Gabriel Goetten de Lima,Marion McAfee,Alan Murphy,Michael Nugent
出处
期刊:Journal of Drug Delivery Science and Technology [Elsevier BV]
卷期号:81: 104204-104204 被引量:7
标识
DOI:10.1016/j.jddst.2023.104204
摘要

Everolimus (EVR) has demonstrated efficacy in treating subependymal giant cell astrocytoma (SEGA) and other tuberous sclerosis (TSC) manifestations. Oral use of EVR is associated with low bioavailability and systemic toxicities culminating in treatment cessation in an appreciable patient population. To circumvent undesired effects, we developed a microsphere embedded formulation of EVR using polyvinyl alcohol (PVA) with an end-goal to achieve higher bioavailability and sustained delivery. PVA-EVR microspheres were physically cross-linked using the freeze-thaw technique, and solvent-cast PVA-EVR films were developed as a control, without freezing and thawing cycles to ascertain the techniques significance. In vitro analyses and characterisation was performed to determine drug release and drug-polymer compatibility whereas In silico studies was done to analyse the non-crosslinked polymer and to evaluate qualitatively the interaction between EVR and PVA. The PVA-EVR microspheres were found to have high encapsulation efficiency, resulting in sustained release of EVR when compared to solvent cast films. The molecular docking studies showed excellent compatibility of the drug-polymer combination, further confirmed by the characterisation studies performed using DSC, FTIR, SEM and XRD. The developed PVA-EVR microspheres in this study can serve as a highly effective drug-delivery system with better bioavailability in treating SEGA tumours.
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