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通过手持式静电纺丝将中药与西药结合用于新型伤口敷料

Integrating Chinese Herbs and Western Medicine for New Wound Dressings through Handheld Electrospinning.

作者信息

Zhou Jianfeng, Wang Liangzhe, Gong Wenjian, Wang Bo, Yu Deng-Guang, Zhu Yuanjie

机构信息

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

Department of Dermatology, Naval Special Medical Center, Naval Medical University, Shanghai 200052, China.

出版信息

Biomedicines. 2023 Jul 30;11(8):2146. doi: 10.3390/biomedicines11082146.

Abstract

In this nanotechnology era, nanostructures play a crucial role in the investigation of novel functional nanomaterials. Complex nanostructures and their corresponding fabrication techniques provide powerful tools for the development of high-performance functional materials. In this study, advanced micro-nanomanufacturing technologies and composite micro-nanostructures were applied to the development of a new type of pharmaceutical formulation, aiming to achieve rapid hemostasis, pain relief, and antimicrobial properties. Briefly, an approach combining a electrohydrodynamic atomization (EHDA) technique and reversed-phase solvent was employed to fabricate a novel beaded nanofiber structure (BNS), consisting of micrometer-sized particles distributed on a nanoscale fiber matrix. Firstly, Zein-loaded Yunnan Baiyao (YB) particles were prepared using the solution electrospraying process. Subsequently, these particles were suspended in a co-solvent solution containing ciprofloxacin (CIP) and hydrophilic polymer polyvinylpyrrolidone (PVP) and electrospun into hybrid structural microfibers using a handheld electrospinning device, forming the EHDA product E3. The fiber-beaded composite morphology of E3 was confirmed through scanning electron microscopy (SEM) images. Fourier-transform infrared (FTIR) spectroscopy and X-ray diffraction (XRD) analysis revealed the amorphous state of CIP in the BNS membrane due to the good compatibility between CIP and PVP. The rapid dissolution experiment revealed that E3 exhibits fast disintegration properties and promotes the dissolution of CIP. Moreover, in vitro drug release study demonstrated the complete release of CIP within 1 min. Antibacterial assays showed a significant reduction in the number of adhered bacteria on the BNS, indicating excellent antibacterial performance. Compared with the traditional YB powders consisting of Chinese herbs, the BNS showed a series of advantages for potential wound dressing. These advantages include an improved antibacterial effect, a sustained release of active ingredients from YB, and a convenient wound covering application, which were resulted from the integration of Chinese herbs and Western medicine. This study provides valuable insights for the development of novel multiscale functional micro-/nano-composite materials and pioneers the developments of new types of medicines from the combination of herbal medicines and Western medicines.

摘要

在这个纳米技术时代,纳米结构在新型功能纳米材料的研究中发挥着关键作用。复杂的纳米结构及其相应的制造技术为高性能功能材料的开发提供了强大的工具。在本研究中,先进的微纳制造技术和复合微纳结构被应用于新型药物制剂的开发,旨在实现快速止血、止痛和抗菌性能。简而言之,采用了一种将电液动力雾化(EHDA)技术与反相溶剂相结合的方法来制造一种新型的珠状纳米纤维结构(BNS),该结构由分布在纳米级纤维基质上的微米级颗粒组成。首先,使用溶液电喷雾工艺制备了负载玉米醇溶蛋白的云南白药(YB)颗粒。随后,将这些颗粒悬浮在含有环丙沙星(CIP)和亲水性聚合物聚乙烯吡咯烷酮(PVP)的共溶剂溶液中,并使用手持式静电纺丝装置电纺成混合结构微纤维,形成EHDA产物E3。通过扫描电子显微镜(SEM)图像确认了E3的纤维珠复合形态。傅里叶变换红外(FTIR)光谱和X射线衍射(XRD)分析表明,由于CIP与PVP之间具有良好的相容性,BNS膜中的CIP处于非晶态。快速溶解实验表明,E3具有快速崩解性能,并促进了CIP的溶解。此外,体外药物释放研究表明CIP在1分钟内完全释放。抗菌试验表明,BNS上附着的细菌数量显著减少,表明其具有优异的抗菌性能。与由中药组成的传统YB粉末相比,BNS在潜在伤口敷料方面显示出一系列优势。这些优势包括抗菌效果的改善、YB中活性成分的持续释放以及伤口覆盖应用的便利性,这些都是中药与西药结合的结果。本研究为新型多尺度功能微/纳米复合材料的开发提供了有价值的见解,并开创了中药与西药结合的新型药物的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8acd/10452315/4c84d08b6e95/biomedicines-11-02146-g001.jpg

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