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静电纺丝法制备白藜芦醇纳米晶体/PCL 纳米纤维复合材料及其抗菌性能研究

Preparation, characterization and antimicrobial activity evaluation of electrospun PCL nanofiber composites of resveratrol nanocrystals.

机构信息

Faculty of Pharmacy, Department of Pharmaceutical Technology, Gazi University, Ankara, Turkey.

Fiber Farma Drug Cosmetics Medical Devices and Consulting, Gazi Technopark, Ankara, Turkey.

出版信息

Pharm Dev Technol. 2020 Dec;25(10):1216-1225. doi: 10.1080/10837450.2020.1805761. Epub 2020 Aug 10.

Abstract

The objective of this study was to develop resveratrol nanocrystals to solve low water solubility issues of resveratrol and adsorb them to the polycaprolactone nanofibers. Nanocrystals were prepared by microfluidization. Particle size, polydispersity index and zeta potential values were evaluated as dependent variables. Polycaprolactone (PCL) nanofibers were prepared via electrospinning method and the flow rate, electrical voltage and tip-to-collector distance were set to 3 mL/h, 13 kV and 15 cm, respectively. Optimum resveratrol nanocrystals were lyophilized and re-suspended in water and physically adsorbed to PCL nanofibers with two different concentrations (0.2 and 1 mg/cm). Bioadhesion, wettability, solubility, drug loading and antimicrobial activity against studies were carried out. Final nanocrystals showed 800 nm of particle size, 0.4 of polydispersity index, and -8 mV of zeta potential. Nanocrystals successfully adsorbed to PCL nanofibers proven on SEM images with adsorption efficiencies >70%. Adsorption of resveratrol nanocrystals decreased the contact angle of PCL from 128° to 50°. The solubility of resveratrol nanocrystals enhanced ∼5-fold in comparison with coarse powder. Effective antimicrobial activity against was observed. It is concluded that nanocrystal loading on nanofibers brings advantage into preparing easy to use dermal patches for acne treatment or skin disorders.

摘要

本研究旨在制备白藜芦醇纳米晶体以解决白藜芦醇水溶性差的问题,并将其吸附到聚己内酯纳米纤维上。采用微射流法制备纳米晶体。以粒径、多分散指数和 Zeta 电位值为考察指标。通过静电纺丝法制备聚己内酯(PCL)纳米纤维,流速、电压和针尖到收集器的距离分别设定为 3mL/h、13kV 和 15cm。将最优的白藜芦醇纳米晶体冻干并重新悬浮在水中,然后以两种不同的浓度(0.2 和 1mg/cm)物理吸附到 PCL 纳米纤维上。对生物黏附性、润湿性、溶解度、载药量和抗菌活性进行了研究。最终的纳米晶体粒径为 800nm,多分散指数为 0.4,Zeta 电位为-8mV。纳米晶体成功吸附到 PCL 纳米纤维上,这在 SEM 图像上得到了证明,吸附效率>70%。白藜芦醇纳米晶体的吸附降低了 PCL 的接触角从 128°到 50°。与粗粉相比,白藜芦醇纳米晶体的溶解度提高了约 5 倍。观察到对白念珠菌有效的抗菌活性。结论是,将纳米晶体负载到纳米纤维上为制备易于使用的治疗痤疮或皮肤疾病的透皮贴片带来了优势。

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