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微流控技术制备黄豆黄素微球增强其抗癌效果。

Enhancing Anticancer Efficacy of Formononetin Microspheres via Microfluidic Fabrication.

机构信息

Department of Pharmaceutics, School of Pharmacy, Centre for Nano Drug/Gene Delivery and Tissue Engineering, Jiangsu University, Zhenjiang, People's Republic of China.

Medicinal function development of new food resources, Jiangsu Provincial Research Center, Jiangsu, People's Republic of China.

出版信息

AAPS PharmSciTech. 2023 Nov 28;24(8):241. doi: 10.1208/s12249-023-02691-9.

Abstract

Formononetin is a flavonoid compound with anti-tumor and anti-inflammatory properties. However, its low solubility limits its clinical use. We employed microfluidic technology to prepare formononetin-loaded PLGA-PEGDA microspheres (Degradable polymer PLGA, Crosslinking agent PEGDA), which can encapsulate and release drugs in a controlled manner. We optimized and characterized the microspheres, and evaluated their antitumor effects. The microspheres had uniform size, high drug loading efficiency, high encapsulation efficiency, and stable release for 35 days. They also inhibited the proliferation, migration, and apoptosis. The antitumor mechanism involved the induction of reactive oxygen species and modulation of Bcl-2 family proteins. These findings suggested that formononetin-loaded PLGA-PEGDA microspheres, created using microfluidic technology, could be a novel drug delivery system that can overcome the limitations of formononetin and enhance its antitumor activity.

摘要

芒柄花黄素是一种具有抗肿瘤和抗炎特性的类黄酮化合物。然而,其低溶解度限制了其在临床上的应用。我们采用微流控技术制备了芒柄花黄素载 PLGA-PEGDA 微球(可降解聚合物 PLGA、交联剂 PEGDA),可以以可控的方式包封和释放药物。我们对微球进行了优化和表征,并评估了它们的抗肿瘤作用。微球具有均匀的粒径、高载药效率、高包封效率和稳定的 35 天释放。它们还抑制了增殖、迁移和凋亡。抗肿瘤机制涉及活性氧的诱导和 Bcl-2 家族蛋白的调节。这些发现表明,采用微流控技术制备的芒柄花黄素载 PLGA-PEGDA 微球可能是一种新型药物递送系统,可克服芒柄花黄素的局限性并增强其抗肿瘤活性。

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