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Carbon nanotube scaffolds as emerging nanoplatform for myocardial tissue regeneration: A review of recent developments and therapeutic implications

机译:碳纳米管支架作为心肌组织再生的新出现纳米载体:近期发展和治疗意义的综述

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Myocardial infarction (cardiac tissue death) is among the most prevalent causes of death among the cardiac patients due to the inability of self-repair in cardiac tissues. Myocardial tissue engineering is regarded as one of the most realistic strategies for repairing damaged cardiac tissue. However, hindrance in transduction of electric signals across the cardiomyocytes due to insulating properties of polymeric materials worsens the clinical viability of myocardial tissue engineering. Aligned and conductive scaffolds based on Carbon nanotubes (CNT) have gained remarkable recognition due to their exceptional attributes which provide synthetic but viable micro-environment for regeneration of engineered cardiomyocytes. This review presents an overview and critical analysis of pharmaceutical implications and therapeutic feasibility of CNT based scaffolds in improving the cardiac tissue regeneration and functionality. The expository analysis of the available evidence revealed that inclusion of single-or multi-walled CNT into fibrous, polymeric, and elastomeric scaffolds results in significant improvement in electrical stimulation and signal transduction through cardiomyocytes. Moreover, incorporation of CNT in engineering scaffolds showed a greater potential of augmenting cardiomyocyte proliferation, differentiation, and maturation and has improved synchronous beating of cardiomyocytes. Despite promising ability of CNT in promoting functionality of cardiomyocytes, their presence in scaffolds resulted in substantial improvement in mechanical properties and structural integrity. Conclusively, this review provides new insight into the remarkable potential of CNT aligned scaffolds in improving the functionality of engineered cardiac tissue and signifies their feasibility in cardiac tissue regenerative medicines and stem cell therapy.
机译:心肌梗死(心脏组织死亡)是心脏患者中最普遍的死亡原因是由于心脏组织中的无能自我修复。心肌组织工程被认为是修复受损心脏组织的最现实的策略之一。然而,由于聚合物材料的绝缘性能导致穿过心肌细胞的电信号的障碍恶化了心肌组织工程的临床活力。由于其特殊属性,基于碳纳米管(CNT)的对准和导电支架基于碳纳米管(CNT)具有显着的识别,其提供了用于再生工程心肌细胞的合成但可行的微环境。本综述概述了基于CNT基层的药物影响和治疗可行性在改善心脏组织再生和功能方面的概述和批判性分析。可用证据的展示性分析显示,将单壁或多壁的CNT含为纤维,聚合物和弹性体支架导致通过心肌细胞的电刺激和信号转导的显着改善。此外,在工程支架中掺入CNT表现出增强心肌细胞增殖,分化和成熟的更大潜力,并改善了心肌细胞的同步搏动。尽管CNT在促进心肌细胞的功能方面具有有希望的能力,但它们在支架中的存在导致机械性能和结构完整性的显着提高。结论,本综述对CNT对齐支架的显着潜力提供了新的洞察力在改善工程心脏组织的功能,并意味着它们在心脏组织再生药物和干细胞疗法中的可行性。

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