Kim Hyunbum, Kim Yunhye, Park Jihyun, Hwang Nathaniel S, Lee Yun Kyung, Hwang Yongsung
Soonchunhyang Institute of Medi-bio Science (SIMS), Soonchunhyang University, Cheonan-si, Chungcheongnam-do 31151, Korea.
School of Chemical and Biological Engineering, the Institute of Chemical Processes, Seoul National University, Seoul 08826, Korea.
Polymers (Basel). 2019 Jan 26;11(2):209. doi: 10.3390/polym11020209.
The substantial progress made in the field of stem cell-based therapy has shown its significant potential applications for the regeneration of defective tissues and organs. Although previous studies have yielded promising results, several limitations remain and should be overcome for translating stem cell-based therapies to clinics. As a possible solution to current bottlenecks, cell sheet engineering (CSE) is an efficient scaffold-free method for harvesting intact cell sheets without the use of proteolytic enzymes, and may be able to accelerate the adoption of stem cell-based treatments for damaged tissues and organs regeneration. CSE uses a temperature-responsive polymer-immobilized surface to form unique, scaffold-free cell sheets composed of one or more cell layers maintained with important intercellular junctions, cell-secreted extracellular matrices, and other important cell surface proteins, which can be achieved by changing the surrounding temperature. These three-dimensional cell sheet-based tissues can be designed for use in clinical applications to target-specific tissue regeneration. This review will highlight the principles, progress, and clinical relevance of current approaches in the cell sheet-based technology, focusing on stem cell-based therapies for bone, periodontal, skin, and vascularized muscles.
基于干细胞的治疗领域取得的重大进展已显示出其在缺陷组织和器官再生方面的巨大潜在应用价值。尽管先前的研究取得了令人鼓舞的结果,但仍存在一些局限性,要将基于干细胞的疗法转化为临床应用,这些局限性必须克服。作为解决当前瓶颈问题的一种可能方法,细胞片工程(CSE)是一种高效的无支架方法,可在不使用蛋白水解酶的情况下收获完整的细胞片,并且可能能够加速基于干细胞的治疗方法用于受损组织和器官再生的进程。CSE利用温度响应性聚合物固定化表面形成独特的、无支架的细胞片,这些细胞片由一层或多层细胞组成,保留了重要的细胞间连接、细胞分泌的细胞外基质以及其他重要的细胞表面蛋白,这可以通过改变周围温度来实现。这些基于三维细胞片的组织可设计用于临床应用,以实现特定组织的再生。本综述将重点介绍基于细胞片技术的当前方法的原理、进展和临床相关性,重点关注用于骨骼、牙周、皮肤和血管化肌肉的基于干细胞的疗法。