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首页> 外文期刊>Journal of biomedical materials research, Part A >Self-assembled smooth muscle cell tissue rings exhibit greater tensile strength than cell-seeded fibrin or collagen gel rings.
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Self-assembled smooth muscle cell tissue rings exhibit greater tensile strength than cell-seeded fibrin or collagen gel rings.

机译:自组装的平滑肌细胞组织环显示出比细胞接种的纤维蛋白或胶原蛋白凝胶环更大的拉伸强度。

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摘要

In this study, we created self-assembled smooth muscle cell (SMC) tissue rings (comprised entirely of cells and cell-derived matrix; CDM) and compared their structure and material properties with tissue rings created from SMC-seeded fibrin or collagen gels. All tissue rings were cultured statically for 7 days in supplemented growth medium (with ε-amino caproic acid, ascorbic acid, and insulin-transferrin-selenium), prior to uniaxial tensile testing and histology. Self-assembled CDM rings exhibited ultimate tensile strength and stiffness values that were two-fold higher than fibrin gel and collagen gel rings. Tensile testing of CDM, fibrin gel and collagen gel rings treated with deionized water to lyse cells showed little to no change in mechanical properties relative to untreated ring samples, indicating that the ECM dominates the measured ring mechanics. In addition, CDM rings cultured in supplemented growth medium were significantly stronger than CDM rings cultured in standard, unsupplemented growth medium. These results illustrate the potential utility of self-assembled cell rings as model CDM constructs for tissue engineering and biomechanical analysis of ECM material properties.
机译:在这项研究中,我们创建了自组装的平滑肌细胞(SMC)组织环(完全由细胞和细胞衍生的基质; CDM组成),并将它们的结构和材料特性与由SMC播种的纤维蛋白或胶原蛋白凝胶制成的组织环进行了比较。在单轴拉伸试验和组织学之前,将所有组织环在补充的生长培养基(带有ε-氨基己酸,抗坏血酸和胰岛素转铁蛋白-硒)中静态培养7天。自组装的CDM环的极限拉伸强度和刚度值比纤维蛋白凝胶和胶原蛋白凝胶环高两倍。用去离子水处理以裂解细胞的CDM,纤维蛋白凝胶和胶原凝胶环的拉伸测试显示,与未处理的环样品相比,机械性能几乎没有变化,这表明ECM在测得的环力学中占主导地位。另外,在补充生长培养基中培养的CDM环明显强于在标准的,未补充的生长培养基中培养的CDM环。这些结果说明了自组装细胞环作为CDM模型构建体的潜在用途,可用于组织工程和ECM材料特性的生物力学分析。

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