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负载高剂量双重植物化学物质的聚乙烯醇稳定共组装纳米/微粒用于增强抗菌和靶向作用

PVA-Stabilized and Coassembled Nano/Microparticles with High Payload of Dual Phytochemicals for Enhanced Antibacterial and Targeting Effect.

作者信息

Yang Hua, Yang Yuerui, Wang Jiao, Dong Zhi, Wang Jiali, Ma Yuhua, Zhang Peng, Wang Wenping

机构信息

College of Chinese Materia Medica, Yunnan University of Chinese Medicine, Kunming, Yunnan 650500, China.

Key Laboratory for Tibet Plateau Phytochemistry of Qinghai Province, School of Pharmacy, Qinghai Nationalities University, Xining, Qinghai 810007, China.

出版信息

ACS Omega. 2024 Sep 26;9(40):41990-42001. doi: 10.1021/acsomega.4c06925. eCollection 2024 Oct 8.

Abstract

The codelivery of multiple bioactive phytochemicals via nano/microparticles (NPs/MPs) represents a promising strategy for enhancing therapeutic efficacy. This study presents the development of novel poly(vinyl alcohol) (PVA)-stabilized hybrid particles designed for codelivery of palmatine hydrochloride (PAL) and glycyrrhizic acid (GL). Employing a straightforward coassembly method, we synthesized dual-drug particles achieving a high payload capacity of over 70%. The particles were characterized as uniform in size, within the nano/micron range, and exhibited a ζ-potential of -5.0 mV. The incorporation of PVA not only stabilized the particles but also refined the aggregation process, resulting in more uniform and finer particles approximately 1 μm in size. Spectral analysis and molecular dynamics simulations verified the presence of π-π stacking and hydrogen bonding between PAL and GL within the particles. In vitro antibacterial assays indicated that the hybrid particles had a lower minimum inhibitory concentration against and Multidrug-Resistant than those of the pure drugs. biodistribution study in rats revealed that the PVA-stabilized particles revealed enhanced targeting to the liver, lung, and heart, demonstrating improved tissue selectivity compared with the solution group. In summary, the PVA-stabilized hybrid NPs/MPs represent an innovative and efficient platform for codelivery of multidrugs. These findings highlight the promise of coassembled particles for high loading, enhanced bioactivity, and targeted delivery, making them a strong candidate for future clinical applications.

摘要

通过纳米/微粒(NPs/MPs)共递送多种生物活性植物化学物质是提高治疗效果的一种有前景的策略。本研究展示了一种新型的聚乙烯醇(PVA)稳定的混合颗粒的开发,该颗粒设计用于共递送盐酸巴马汀(PAL)和甘草酸(GL)。采用一种简单的共组装方法,我们合成了双药颗粒,其载药量超过70%,具有很高的载药能力。这些颗粒的特征是尺寸均匀,在纳米/微米范围内,ζ电位为-5.0 mV。PVA的加入不仅稳定了颗粒,还优化了聚集过程,从而产生了尺寸约为1μm的更均匀、更细小的颗粒。光谱分析和分子动力学模拟证实了颗粒内PAL和GL之间存在π-π堆积和氢键。体外抗菌试验表明,与纯药物相比,混合颗粒对[具体细菌名称]和耐多药[具体细菌名称]的最低抑菌浓度更低。在大鼠体内的生物分布研究表明,PVA稳定的颗粒对肝脏、肺和心脏具有增强的靶向性,与溶液组相比,显示出更好的组织选择性。总之,PVA稳定的混合NPs/MPs代表了一种创新且高效的多药共递送平台。这些发现突出了共组装颗粒在高载药量、增强生物活性和靶向递送方面的前景,使其成为未来临床应用的有力候选者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03f1/11465548/970ac8ec4f69/ao4c06925_0001.jpg

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