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基于聚(乳酸-乙醇酸)(PLGA)/碳纳米管和酒石酸胆碱离子液体的可生物降解的各向异性纤维电纺导管。

Biodegradable Electrospun Conduit with Aligned Fibers Based on Poly(lactic--glycolic Acid) (PLGA)/Carbon Nanotubes and Choline Bitartrate Ionic Liquid.

机构信息

Mechanical Engineering Department, Universidade Federal de Santa Catarina (UFSC), Florianópolis, Santa Catarina 88040-535, Brazil.

Université de Lyon, CNRS, Université Claude Bernard Lyon 1, INSA Lyon, Université Jean Monnet, UMR 5223, Ingénierie des Matériaux Polymères, Villeurbanne F-69621 Cédex, France.

出版信息

ACS Appl Bio Mater. 2024 Mar 18;7(3):1536-1546. doi: 10.1021/acsabm.3c00980. Epub 2024 Feb 12.

Abstract

Functionally active aligned fibers are a promising approach to enhance neuro adhesion and guide the extension of neurons for peripheral nerve regeneration. Therefore, the present study developed poly(lactic--glycolic acid) (PLGA)-aligned electrospun mats and investigated the synergic effect with carbon nanotubes (CNTs) and Choline Bitartrate ionic liquid (Bio-IL) on PLGA fibers. Morphology, thermal, and mechanical performances were determined as well as the hydrolytic degradation and the cytotoxicity. Results revealed that electrospun mats are composed of highly aligned fibers, and CNTs were aligned and homogeneously distributed into the fibers. Bio-IL changed thermal transition behavior, reduced glass transition temperature (), and favored crystal phase formation. The mechanical properties increased in the presence of CNTs and slightly decreased in the presence of the Bio-IL. The results demonstrated a decrease in the degradation rate in the presence of CNTs, whereas the use of Bio-IL led to an increase in the degradation rate. Cytotoxicity results showed that all the electrospun mats display metabolic activity above 70%, which demonstrates that they are biocompatible. Moreover, superior biocompatibility was observed for the electrospun containing Bio-IL combined with higher amounts of CNTs, showing a high potential to be used in nerve tissue engineering.

摘要

功能化的取向纤维是一种很有前途的方法,可以增强神经黏附性,并引导神经元的延伸,从而促进周围神经再生。因此,本研究开发了聚乳酸-乙醇酸(PLGA)取向电纺纤维垫,并研究了 CNTs 和酒石酸胆碱离子液体(Bio-IL)与 PLGA 纤维的协同作用。对纤维的形貌、热性能、力学性能、水解降解和细胞毒性进行了测定。结果表明,电纺纤维垫由高度取向纤维组成,CNTs 被取向并均匀地分布在纤维中。Bio-IL 改变了热转变行为,降低了玻璃化转变温度(Tg),有利于晶体相的形成。在 CNTs 的存在下,力学性能增加,而在 Bio-IL 的存在下,力学性能略有下降。结果表明 CNTs 的存在降低了降解速率,而 Bio-IL 的使用则增加了降解速率。细胞毒性结果表明,所有电纺纤维垫的代谢活性均高于 70%,这表明它们具有生物相容性。此外,含有 Bio-IL 的电纺纤维垫表现出更高的生物相容性,同时含有更高含量的 CNTs,这表明其在神经组织工程中有很高的应用潜力。

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