Scott Louie, Jurewicz Izabela, Jeevaratnam Kamalan, Lewis Rebecca
School of Veterinary Medicine, University of Surrey, Guildford, Surrey GU2 7AL, UK.
Department of Physics, University of Surrey, Guildford, Surrey GU2 7XH, UK.
Bioengineering (Basel). 2021 Jun 9;8(6):80. doi: 10.3390/bioengineering8060080.
Cardiovascular disease is currently the top global cause of death, however, research into new therapies is in decline. Tissue engineering is a solution to this crisis and in combination with the use of carbon nanotubes (CNTs), which have drawn recent attention as a biomaterial, could facilitate the development of more dynamic and complex in vitro models. CNTs' electrical conductivity and dimensional similarity to cardiac extracellular proteins provide a unique opportunity to deliver scaffolds with stimuli that mimic the native cardiac microenvironment in vitro more effectively. This systematic review aims to evaluate the use and efficacy of CNTs for cardiac tissue scaffolds and was conducted according to the Preferred Reporting Items for Systematic Reviews and Meta-Analysis (PRISMA) guidelines. Three databases were searched: PubMed, Scopus, and Web of Science. Papers resulting from these searches were then subjected to analysis against pre-determined inclusion and quality appraisal criteria. From 249 results, 27 manuscripts met the criteria and were included in this review. Neonatal rat cardiomyocytes were most commonly used in the experiments, with multi-walled CNTs being most common in tissue scaffolds. Immunofluorescence was the experimental technique most frequently used, which was employed for the staining of cardiac-specific proteins relating to contractile and electrophysiological function.
心血管疾病目前是全球首要死因,然而,针对新疗法的研究却在减少。组织工程是解决这一危机的方法,并且与碳纳米管(CNTs)的使用相结合,碳纳米管作为一种生物材料最近受到关注,它可以促进更具动态性和复杂性的体外模型的开发。碳纳米管的导电性以及与心脏细胞外蛋白质在尺寸上的相似性提供了一个独特的机会,能够更有效地在体外提供带有模拟天然心脏微环境刺激的支架。本系统评价旨在评估碳纳米管在心脏组织支架中的应用及效果,并按照系统评价和Meta分析的首选报告项目(PRISMA)指南进行。检索了三个数据库:PubMed、Scopus和科学网。然后根据预先确定的纳入标准和质量评估标准对这些检索结果中的论文进行分析。从249个结果中,有27篇手稿符合标准并被纳入本综述。新生大鼠心肌细胞在实验中最常被使用,多壁碳纳米管在组织支架中最为常见。免疫荧光是最常用的实验技术,用于对与收缩和电生理功能相关的心脏特异性蛋白质进行染色。