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壳聚糖/聚乳酸-共聚己内酯纳米纤维共混电纺膜的亲水性和可降解性研究。

Study on hydrophilicity and degradability of chitosan/polylactide-co-polycaprolactone nanofibre blend electrospun membrane.

机构信息

Department of Drug Science, University of Pavia, Via Taramelli 12, 27100, Pavia, Italy.

Phase I Clinical Trial Unit and Experimental Therapy, IRCCS Policlinico S. Matteo, Viale Camillo Golgi 19, 27100, Pavia, Italy.

出版信息

Carbohydr Polym. 2018 Nov 1;199:150-160. doi: 10.1016/j.carbpol.2018.06.050. Epub 2018 Jun 30.

Abstract

Electrospinning is an interesting technique to produce polymer membranes made of entangled nanofibres. The technique is raising interest in pharmaceutical and biomedical areas. Either electrospun membranes are studied for tissue regeneration purposes, or incorporation of nanoparticles in electrospun membranes can be an opportunity to control the delivery of drug or to obtain dual drug delivery system. In this work suspensions of hydrochloride chitosan salt in copolymer polylactide-co-polycaprolactone (PLA-PCL) solution were electrospun in order to assess an advanced study for developing polymer nanofibre blend membrane loaded with chitosan polymer. The aim of the work was to investigate the properties and stability of chitosan/PLA-PCL electrospun membranes considering their application for tissue regeneration and drug delivery. The electrospun membranes were characterized for their physico-chemical (FT-IR) morphology (SEM) and in vitro biological properties (cytocompatibility and cells engraftment). Results show that homogeneous electrospun PLA-PCL/chitosan blend nanofibres in the range size 800 nm were obtained. Chitosan was loaded inside the nanofibres up to 27.2% (w/w) without modifying nanofibre shape, and only 6% of the loaded chitosan resulted to be on the nanofibre surface. The presence of chitosan in the nanofibres has shown to accelerate the electrospun membranes degradation in vitro.

摘要

静电纺丝是一种生产由纠缠纳米纤维制成的聚合物膜的有趣技术。该技术在制药和生物医学领域引起了关注。静电纺丝膜要么用于组织再生目的的研究,要么在静电纺丝膜中加入纳米颗粒可能是控制药物释放或获得双重药物释放系统的机会。在这项工作中,盐酸壳聚糖盐在共聚物聚乳酸-聚己内酯(PLA-PCL)溶液中的悬浮液被静电纺丝,以评估开发负载壳聚糖聚合物的聚合物纳米纤维共混膜的高级研究。这项工作的目的是研究壳聚糖/PLA-PCL 静电纺丝膜的性能和稳定性,考虑其在组织再生和药物输送方面的应用。对静电纺丝膜进行了物理化学(FT-IR)形态(SEM)和体外生物性能(细胞相容性和细胞植入)的表征。结果表明,获得了尺寸在 800nm 范围内均匀的 PLA-PCL/壳聚糖共混纳米纤维。壳聚糖的负载量高达 27.2%(w/w),而不会改变纳米纤维的形状,并且只有 6%的负载壳聚糖位于纳米纤维表面。纳米纤维中壳聚糖的存在已显示出可加速体外静电纺丝膜的降解。

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