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细胞填充微纤维的单轴拉伸促进 C2C12 成肌细胞的取向排列和肌纤维的形成。

Uniaxial Stretching of Cell-Laden Microfibers for Promoting C2C12 Myoblasts Alignment and Myofibers Formation.

机构信息

Nationwide Children's Hospital , Columbus , Ohio 43205 , United States.

The Ohio State University College of Medicine , Columbus , Ohio 43205 , United States.

出版信息

ACS Appl Mater Interfaces. 2020 Jan 15;12(2):2162-2170. doi: 10.1021/acsami.9b22103. Epub 2020 Jan 2.

Abstract

Fiber-shaped cellular constructs have attracted increasing attention in the regeneration of blood vessels, nerve networks, and skeletal myofibers. Nevertheless, the generation of functional fiber-shaped cellular constructs suffers from limited appropriate microfiber-based fabrication approaches and the maintenance of regenerated tissue functions. Herein, we demonstrate a silicone-tube-based coagulant bath free method to fabricate tens of centimeters long cell-laden microfibers using single UV exposure without pretreatment of nozzles or microchannels. By modulating the exposure time, the gelatin methacrylate microfibers with tissue-like microstructures and mechanical properties are obtained. Then, a culture system integrated with a pillar well-array based stretching device is used to apply uniaxial stretching with various strain ratios in situ to cell-laden microfibers in a 60 mm petri dish. Cells with improved spreading, elongation, and alignment are obtained under uniaxial stretching. Moreover, the promotional effects of uniaxial stretching on the differentiation of C2C12 myoblasts, the formation, and contractility of myofibers become more pronounced with increasing strain ratio and achieve saturation level as strain ratio up to ∼35%.

摘要

纤维状细胞构建体在血管、神经网络和骨骼肌纤维的再生中受到了越来越多的关注。然而,功能性纤维状细胞构建体的产生受到有限的合适基于微纤维的制造方法和再生组织功能的维持的限制。在此,我们展示了一种基于硅酮管的凝固浴自由方法,使用单次紫外曝光,无需对喷嘴或微通道进行预处理,即可制造数十厘米长的细胞负载微纤维。通过调节曝光时间,可以获得具有组织样微观结构和机械性能的明胶甲基丙烯酸盐微纤维。然后,使用集成有基于柱子的井阵列的拉伸装置的培养系统,在 60mm 培养皿中对细胞负载微纤维进行原位的各向异性拉伸,施加不同的应变比。在各向异性拉伸下,细胞的铺展、伸长和排列得到改善。此外,随着应变比的增加,各向异性拉伸对 C2C12 成肌细胞分化、肌纤维形成和收缩力的促进作用变得更加明显,并在应变比达到约 35%时达到饱和水平。

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