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盐酸小檗碱的双步控制释放:纳米纤维-微球跨尺度杂化体。

Dual-Step Controlled Release of Berberine Hydrochloride from the Trans-Scale Hybrids of Nanofibers and Microparticles.

机构信息

School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China.

Wenqi Middle School, East Jiangchuan Road 980, Shanghai 200240, China.

出版信息

Biomolecules. 2023 Jun 18;13(6):1011. doi: 10.3390/biom13061011.

Abstract

In this nano era, nanomaterials and nanostructures are popular in developing novel functional materials. However, the combinations of materials at micro and macro scales can open new routes for developing novel trans-scale products with improved or even new functional performances. In this work, a brand-new hybrid, containing both nanofibers and microparticles, was fabricated using a sequential electrohydrodynamic atomization (EHDA) process. Firstly, the microparticles loaded with drug (berberine hydrochloride, BH) molecules in the cellulose acetate (CA) were fabricated using a solution electrospraying process. Later, these microparticles were suspended into a co-dissolved solution that contained BH and a hydrophilic polymer (polypyrrolidone, PVP) and were co-electrospun into the nanofiber/microparticle hybrids. The EHDA processes were recorded, and the resultant trans-scale products showed a typical hybrid topography, with microparticles distributed all over the nanofibers, which was demonstrated by SEM assessments. FTIR and XRD demonstrated that the components within the hybrids were presented in an amorphous state and had fine compatibility with each other. In vitro dissolution tests verified that the hybrids were able to provide the designed dual-step drug release profiles, a combination of the fast release step of BH from the hydrophilic PVP nanofibers through an erosion mechanism and the sustained release step of BH from the insoluble CA microparticles via a typical Fickian diffusion mechanism. The present protocols pave a new way for developing trans-scale functional materials.

摘要

在这个纳米时代,纳米材料和纳米结构在开发新型功能材料方面很受欢迎。然而,材料在微观和宏观尺度上的组合可以为开发具有改进甚至新功能性能的新型跨尺度产品开辟新途径。在这项工作中,使用顺序电动力学雾化(EHDA)工艺制造了一种全新的包含纳米纤维和微粒的混合体。首先,使用溶液静电纺丝工艺制造了负载有药物(盐酸小檗碱,BH)分子的微粒。然后,将这些微粒悬浮在包含 BH 和亲水性聚合物(聚乙烯吡咯烷酮,PVP)的共溶解溶液中,并共电纺成纳米纤维/微粒混合体。记录了 EHDA 过程,所得跨尺度产品显示出典型的混合形貌,微粒分布在纳米纤维上,这通过 SEM 评估得到证明。FTIR 和 XRD 表明混合物中的成分呈无定形状态,彼此之间具有良好的相容性。体外溶解试验验证了这些混合物能够提供设计的两步药物释放曲线,这是通过侵蚀机制从亲水性 PVP 纳米纤维中快速释放 BH 和通过典型的菲克扩散机制从不溶性 CA 微粒中持续释放 BH 的组合。本方案为开发跨尺度功能材料开辟了一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e054/10295831/9ab311184932/biomolecules-13-01011-g001.jpg

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