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Sliding Fibers: Slidable, Injectable, and Gel-like Electrospun Nanofibers as Versatile Cell Carriers

机译:滑动纤维:可滑动,可注射和类似凝胶的电纺纳米纤维,作为多功能细胞载体

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摘要

Designing biomaterial systems that can mimic fibrous, natural extracellular matrix is crucial for enhancing the efficacy of various therapeutic tools. Herein, a smart technology of three-dimensional electrospun fibers that can be injected in a minimally invasive manner was developed. Open surgery is currently the only route of administration of conventional electrospun fibers into the body. Coordinating electrospun fibers with a lubricating hydrogel produced fibrous constructs referred to as slidable, injectable, and gel-like (SLIDING) fibers. These SLIDING fibers could pass smoothly through a catheter and fill any cavity while maintaining their fibrous morphology. Their injectable features were derived from their distinctive theological characteristics, which were presumably caused by the combinatorial effects of mobile electrospun fibers and lubricating hydrogels. The resulting injectable fibers fostered a highly favorable environment for human neural stem cell (hNSC) proliferation and neurosphere formation within the fibrous structures without compromising hNSC viability. SLIDING fibers demonstrated superior performance as cell carriers in animal stroke models subjected to the middle cerebral artery occlusion (MCAO) stroke model. In this model, SLIDING fiber application extended the survival rate of administered hNSCs by blocking microglial infiltration at the early, acute inflammatory stage. The development of SLIDING fibers will increase the clinical significance of fiber-based scaffolds in many biomedical fields and will broaden their applicability.
机译:设计可以模拟纤维状天然细胞外基质的生物材料系统对于提高各种治疗工具的功效至关重要。在此,开发了可以以微创方式注入的三维电纺纤维的智能技术。目前,开放手术是将常规电纺丝纤维植入体内的唯一途径。将电纺纤维与润滑性水凝胶配合产生的纤维结构被称为可滑动,可注射和凝胶状(SLIDING)纤维。这些滑动纤维可以平滑地通过导管并填充任何空腔,同时保持其纤维形态。它们的可注射特性源自其独特的神学特性,这可能是由于移动电纺纤维和润滑水凝胶的组合作用所致。所得的可注射纤维为人类神经干细胞(hNSC)增殖和纤维结构内神经球形成提供了高度有利的环境,而不会损害hNSC的生存能力。在经受中脑动脉闭塞(MCAO)中风模型的动物中风模型中,滑动纤维表现出优异的细胞载体性能。在此模型中,滑动纤维的应用通过在急性急性炎症阶段阻止小胶质细胞浸润,从而延长了所给予的hNSC的存活率。 SLIDING纤维的发展将增加基于纤维的支架在许多生物医学领域中的临床意义,并将拓宽其适用性。

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