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通过静电纺丝法由聚乙烯醇和壳聚糖混合物制备纳米纤维的条件研究。

Study of the Nanofibers Fabrication Conditions from the Mixture of Poly(vinyl alcohol) and Chitosan by Electrospinning Method.

作者信息

Vu Thi Hong Nhung, Morozkina Svetlana N, Uspenskaya Mayya V

机构信息

Chemical Engineering Centre, ITMO University, Kronverkskiy Prospekt, 49A, 197101 St. Petersburg, Russia.

出版信息

Polymers (Basel). 2022 Feb 19;14(4):811. doi: 10.3390/polym14040811.

Abstract

Nanofiber fabrication is attracting great attention from scientists and technologists due to its applications in many fields of life. In order to design a nanosized polymer-based drug delivery system, we studied the conditions for the fabrication of electrospun nanofibers from poly (vinyl alcohol) (PVA) and chitosan (CS), which are well-known as biocompatible, biodegradable and non-toxic polymers that are widely used in the medical field. Aiming to develop nanofibers that can directly target diseased cells for treatment, such as cancerous cells, the ideal choice would be a system that contains the highest CS content as well as high quality fibers. In the present manuscript, it is expected to become the basis for improving the low bioavailability of medicinal drugs limited by poor solubility and low permeability. PVA-CS nanofibers were obtained by electrospinning at a PVA:CS ratio of 5:5 in a 60% (/) acetic acid solution under the following parameters: voltage 30 kV, feed rate 0.2 mL/h, needle-collector distance 14 cm. The obtained fibers were relatively uniform, with a diameter range of 77-292 nm and average diameter of 153 nm. The nanofiber system holds promise as a potential material for the integration of therapeutic drugs.

摘要

由于纳米纤维制造在许多生活领域中的应用,它正吸引着科学家和技术专家的极大关注。为了设计一种基于聚合物的纳米药物递送系统,我们研究了由聚(乙烯醇)(PVA)和壳聚糖(CS)制备电纺纳米纤维的条件,PVA和CS是众所周知的生物相容性、可生物降解且无毒的聚合物,在医学领域广泛应用。旨在开发能够直接靶向病变细胞(如癌细胞)进行治疗的纳米纤维,理想的选择将是一个含有最高CS含量以及高质量纤维的系统。在本手稿中,有望成为改善受溶解度差和渗透率低限制的药物低生物利用度的基础。通过在60%(/)乙酸溶液中以PVA:CS比例为5:5进行电纺,在以下参数下获得了PVA-CS纳米纤维:电压30 kV,进料速率0.2 mL/h,针-收集器距离14 cm。所获得的纤维相对均匀,直径范围为77-292 nm,平均直径为153 nm。纳米纤维系统有望成为整合治疗药物的潜在材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/955a/8963080/8347cbb30c8e/polymers-14-00811-g001.jpg

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