Department of Cellular and Molecular Physiology, Institute of Translational Medicine, University of Liverpool, Nuffield Building, Crown Street, Liverpool, L69 3BX, UK.
Department of Biochemistry, Institute of Integrative Biology, University of Liverpool, Crown Street, Liverpool, L69 7ZB, UK.
Adv Mater. 2019 Apr;31(17):e1807521. doi: 10.1002/adma.201807521. Epub 2019 Mar 13.
The development of extracellular matrix mimetics that imitate niche stem cell microenvironments and support cell growth for technological applications is intensely pursued. Specifically, mimetics are sought that can enact control over the self-renewal and directed differentiation of human pluripotent stem cells (hPSCs) for clinical use. Despite considerable progress in the field, a major impediment to the clinical translation of hPSCs is the difficulty and high cost of large-scale cell production under xeno-free culture conditions using current matrices. Here, a bioactive, recombinant, protein-based polymer, termed ZT , is presented that closely mimics human plasma fibronectin and serves as an economical, xeno-free, biodegradable, and functionally adaptable cell substrate. The ZT substrate supports with high performance the propagation and long-term self-renewal of human embryonic stem cells while preserving their pluripotency. The ZT polymer can, therefore, be proposed as an efficient and affordable replacement for fibronectin in clinical grade cell culturing. Further, it can be postulated that the ZT polymer has significant engineering potential for further orthogonal functionalization in complex cell applications.
人们强烈追求开发细胞外基质模拟物,以模拟龛干细胞微环境并支持细胞生长,从而实现技术应用。具体而言,人们正在寻找可以控制人类多能干细胞(hPSC)自我更新和定向分化的模拟物,以用于临床应用。尽管该领域取得了相当大的进展,但 hPSC 临床转化的主要障碍是在无动物培养条件下使用当前基质进行大规模细胞生产的难度和高成本。在这里,提出了一种生物活性的、重组的、基于蛋白质的聚合物,称为 ZT,它非常类似于人血浆纤维连接蛋白,并作为一种经济、无动物、可生物降解和功能适应性的细胞底物。ZT 基底物以高性能支持人类胚胎干细胞的繁殖和长期自我更新,同时保持其多能性。因此,可以提出 ZT 聚合物作为临床级细胞培养中纤维连接蛋白的有效且经济实惠的替代品。此外,可以假设 ZT 聚合物在复杂细胞应用的进一步正交功能化方面具有重要的工程潜力。