Department of Biology, University of Mary Hardin-Baylor, 900 College Street, Box 8432., Belton, TX 76513, USA.
Cells. 2020 Sep 27;9(10):2178. doi: 10.3390/cells9102178.
Much interest has been directed towards stem cells, both in basic and translational research, to understand basic stem cell biology and to develop new therapies for many disorders. In general, stem cells can be cultured with relative ease, however, most common culture methods for stem cells employ 2D techniques using plastic. These cultures do not well represent the stem cell niches in the body, which are delicate microenvironments composed of not only stem cells, but also supporting stromal cells, extracellular matrix, and growth factors. Therefore, researchers and clinicians have been seeking optimal stem cell preparations for basic research and clinical applications, and these might be attainable through 3D culture of stem cells. The 3D cultures recapitulate the in vivo cell-to-cell and cell-to-matrix interactions more effectively, and the cells in 3D cultures exhibit many unique and desirable characteristics. The culture of stem cells in 3D may employ various matrices or scaffolds, in addition to the cells, to support the complex structures. The goal of this Special Issue is to bring together recent research on 3D cultures of various stem cells to increase the basic understanding of stem cells and culture techniques, and also highlight stem cell preparations for possible novel therapeutic applications.
人们对干细胞产生了浓厚的兴趣,无论是在基础研究还是转化研究中,都是为了了解干细胞的基本生物学特性,并为许多疾病开发新的治疗方法。一般来说,干细胞可以相对容易地进行培养,然而,大多数常见的干细胞培养方法都采用了使用塑料的二维技术。这些培养方法并不能很好地代表体内的干细胞生态位,干细胞生态位是由不仅是干细胞,还有支持性基质细胞、细胞外基质和生长因子组成的精细微环境。因此,研究人员和临床医生一直在寻找用于基础研究和临床应用的最佳干细胞制剂,而这可能可以通过 3D 培养干细胞来实现。3D 培养更有效地再现了体内细胞-细胞和细胞-基质相互作用,并且 3D 培养中的细胞表现出许多独特和理想的特征。除了细胞之外,3D 培养干细胞还可以使用各种基质或支架来支持复杂的结构。本期特刊的目的是汇集各种干细胞的 3D 培养的最新研究,以增加对干细胞和培养技术的基本了解,并强调干细胞制剂可能有新的治疗应用。