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基于明胶的聚(酯-氨酯-脲)电纺纤维的评价:用人间质和神经干细胞。

Evaluation of Gelatin-Based Poly(Ester Urethane Urea) Electrospun Fibers Using Human Mesenchymal and Neural Stem Cells.

机构信息

CENIMAT/i3N, NOVA School of Sciences and Technology, Universidade Nova de Lisboa, Caparica, 2829-516, Portugal.

Departamento de Física, NOVA School of Sciences and Technology, Universidade Nova de Lisboa, Caparica, 2829-516, Portugal.

出版信息

Macromol Biosci. 2024 Sep;24(9):e2400014. doi: 10.1002/mabi.202400014. Epub 2024 Jul 29.

DOI:10.1002/mabi.202400014
PMID:39072995
Abstract

Previously, a new biodegradable poly(ester urethane urea) was synthesized based on polycaprolactone-diol and fish gelatin (PU-Gel). In this work, the potential of this new material for neural tissue engineering is evaluated. Membranes with randomly oriented fibers and with aligned fibers are produced using electrospinning and characterized regarding their mechanical behavior under both dry and wet conditions. Wet samples exhibit a lower Young's modulus than dry ones and aligned membranes are stiffer and more brittle than those randomly oriented. Cyclic tensile tests are conducted and high values for recovery ratio and resilience are obtained. Both membranes exhibited a hydrophobic surface, measured by the water contact angle (WCA). Human mesenchymal stem cells from umbilical cord tissue (UC-MSCs) and human neural stem cells (NSCs) are seeded on both types of membranes, which support their adhesion and proliferation. Cells stained for the cytoskeleton and nucleus in membranes with aligned fibers display an elongated morphology following the alignment direction. As the culture time increased, higher cell viability is obtained on randomfibers for UC-MSCs while no differences are observed for NSCs. The membranes support neuronal differentiation of NSCs, as evidenced by markers for a neuronal filament protein (NF70) and for a microtubule-associated protein (MAP2).

摘要

先前,基于聚己内酯二醇和鱼明胶(PU-Gel)合成了一种新型可生物降解的聚(酯-氨酯-脲)。在这项工作中,评估了这种新材料在神经组织工程中的潜力。使用静电纺丝制备具有随机取向纤维和取向纤维的膜,并对其在干燥和湿润条件下的力学性能进行了表征。湿样品的杨氏模量比干样品低,取向膜比无规取向膜更硬、更脆。进行了循环拉伸试验,得到了高的恢复比和回弹性。两种膜均表现出疏水性表面,通过水接触角(WCA)测量。从脐带组织中分离出人骨髓间充质干细胞(UC-MSCs)和人神经干细胞(NSCs)并接种在这两种膜上,这支持了它们的黏附和增殖。在具有取向纤维的膜中,用细胞骨架和核染色的细胞显示出沿取向方向的拉长形态。随着培养时间的增加,在随机纤维上获得了更高的 UC-MSCs 细胞活力,而 NSCs 则没有差异。膜支持 NSCs 的神经元分化,这可以通过神经元丝蛋白(NF70)和微管相关蛋白(MAP2)的标志物来证明。

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