Zeng Wendy R, Beh Siew-Joo, Bryson-Richardson Robert J, Doran Pauline M
Faculty of Science, Engineering and Technology, Swinburne University of Technology, PO Box 218, Hawthorn, Melbourne, Victoria, 3122, Australia.
School of Biological Sciences, Monash University, Melbourne, Victoria, Australia.
Biotechnol Bioeng. 2017 Sep;114(9):2142-2148. doi: 10.1002/bit.26331. Epub 2017 Jun 6.
The hearts of adult zebrafish (Danio rerio) are capable of complete regeneration in vivo even after major injury, making this species of particular interest for understanding the growth and differentiation processes required for cardiac tissue engineering. To date, little research has been carried out on in vitro culture of adult zebrafish cardiac cells. In this work, progenitor-rich cardiospheres suitable for cardiomyocyte differentiation and myocardial regeneration were produced from adult zebrafish hearts. The cardiospheres contained a mixed population of c-kit and Mef2c cells; proliferative peripheral cells of possible mesenchymal lineage were also observed. Cellular outgrowth from cardiac explants and cardiospheres was enhanced significantly using conditioned medium harvested from cultures of a rainbow trout cell line, suggesting that fish-specific trophic factors are required for zebrafish cardiac cell expansion. Three-dimensional culture of zebrafish heart cells in fibrous polyglycolic acid (PGA) scaffolds was carried out under dynamic fluid flow conditions. High levels of cell viability and cardiomyocyte differentiation were maintained within the scaffolds. Expression of cardiac troponin T, a marker of differentiated cardiomyocytes, increased during the first 7 days of scaffold culture; after 15 days, premature disintegration of the biodegradable scaffolds led to cell detachment and a decline in differentiation status. This work expands our technical capabilities for three-dimensional zebrafish cardiac cell culture with potential applications in tissue engineering, drug and toxicology screening, and ontogeny research. Biotechnol. Bioeng. 2017;114: 2142-2148. © 2017 Wiley Periodicals, Inc.
成年斑马鱼(Danio rerio)的心脏即使在遭受重大损伤后仍能够在体内完全再生,这使得该物种对于理解心脏组织工程所需的生长和分化过程具有特别的研究价值。迄今为止,针对成年斑马鱼心脏细胞的体外培养研究较少。在这项研究中,从成年斑马鱼心脏中制备出了适合心肌细胞分化和心肌再生的富含祖细胞的心肌球。这些心肌球包含c-kit和Mef2c细胞的混合群体;还观察到了可能具有间充质谱系的增殖性外周细胞。使用从虹鳟鱼细胞系培养物中收获的条件培养基,可显著增强心脏外植体和心肌球的细胞生长,这表明斑马鱼心脏细胞的扩增需要鱼类特异性的营养因子。在动态流体流动条件下,将斑马鱼心脏细胞在纤维状聚乙醇酸(PGA)支架中进行三维培养。支架内维持了较高水平的细胞活力和心肌细胞分化。分化心肌细胞的标志物心肌肌钙蛋白T的表达在支架培养的前7天增加;15天后,可生物降解支架的过早崩解导致细胞脱离和分化状态下降。这项工作扩展了我们对斑马鱼心脏细胞进行三维培养的技术能力,在组织工程、药物和毒理学筛选以及个体发育研究中具有潜在应用价值。《生物技术与生物工程》2017年;114卷:2142 - 2148页。© 2017威利期刊公司