首页> 外文期刊>Nanoscale Research Letters >Carbon Nanohorns Promote Maturation of Neonatal Rat Ventricular Myocytes and Inhibit Proliferation of Cardiac Fibroblasts: a Promising Scaffold for Cardiac Tissue Engineering
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Carbon Nanohorns Promote Maturation of Neonatal Rat Ventricular Myocytes and Inhibit Proliferation of Cardiac Fibroblasts: a Promising Scaffold for Cardiac Tissue Engineering

机译:碳纳米角促进新生大鼠心室肌细胞的成熟和抑制心脏成纤维细胞的增殖:心脏组织工程的有希望的支架。

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摘要

Cardiac tissue engineering (CTE) has developed rapidly, but a great challenge remains in finding practical scaffold materials for the construction of engineered cardiac tissues. Carbon nanohorns (CNHs) may be a potential candidate due to their special structure and properties. The purpose of this study was to assess the effect of CNHs on the biological behavior of neonatal rat ventricular myocytes (NRVMs) for CTE applications. CNHs were incorporated into collagen to form growth substrates for NRVMs. Transmission electron microscopy (TEM) observations demonstrated that CNHs exhibited a good affinity to collagen. Moreover, it was found that CNH-embedded substrates enhanced adhesion and proliferation of NRVMs. Immunohistochemical staining, western blot analysis, and intracellular calcium transient measurements indicated that the addition of CNHs significantly increased the expression and maturation of electrical and mechanical proteins (connexin-43 and N-cadherin). Bromodeoxyuridine staining and a Cell Counting Kit-8 assay showed that CNHs have the ability to inhibit the proliferation of cardiac fibroblasts. These findings suggest that CNHs can have a valuable effect on the construction of engineered cardiac tissues and may be a promising scaffold for CTE.
机译:心脏组织工程学(CTE)迅速发展,但是在寻找用于构建工程化心脏组织的实用支架材料方面仍面临巨大挑战。碳纳米角(CNHs)可能因其特殊的结构和性能而成为潜在的候选者。这项研究的目的是评估CNH对CTE应用对新生大鼠心室肌细胞(NRVM)生物学行为的影响。将CNH掺入胶原蛋白中以形成NRVM的生长底物。透射电子显微镜(TEM)观察表明,CNH对胶原蛋白表现出良好的亲和力。此外,发现嵌入CNH的底物增强了NRVM的粘附和增殖。免疫组织化学染色,蛋白质印迹分析和细胞内钙瞬变测量结果表明,添加CNH会显着增加电气和机械蛋白(连接蛋白43和N-钙粘蛋白)的表达和成熟。溴脱氧尿苷染色和Cell Counting Kit-8分析表明CNH具有抑制心脏成纤维细胞增殖的能力。这些发现表明,CNHs可对工程化的心脏组织的构建产生有价值的影响,并且可能是有希望的CTE支架。

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