Akiyama Y
Institute of Advanced Biomedical Engineering and Science, Tokyo Women's Medical University, TWIns, Tokyo, Japan.
Cyborg Bionic Syst. 2021 Feb 3;2021:5738457. doi: 10.34133/2021/5738457. eCollection 2021.
Temperature-responsive cell culture surfaces, which modulate cell attachment/detachment characteristics with temperature, have been used to fabricate cell sheets. Extensive study on fabrication of cell sheet with the temperature-responsive cell culture surface, manipulation, and transplantation of the cell sheet has established the interdisciplinary field of cell sheet engineering, in which engineering, biological, and medical fields closely collaborate. Such collaboration has pioneered cell sheet engineering, making it a promising and attractive technology in tissue engineering and regenerative medicine. This review introduces concepts of cell sheet engineering, followed by designs for the fabrication of various types of temperature-responsive cell culture surfaces and technologies for cell sheet manipulation. The development of various methods for the fabrication of temperature-responsive cell culture surfaces was also summarized. The availability of cell sheet engineering for the treatment and regeneration of damaged human tissue has also been described, providing examples of the clinical application of cell sheet transplantation in humans.
温度响应性细胞培养表面可随温度调节细胞附着/脱离特性,已被用于制造细胞片。对利用温度响应性细胞培养表面制造细胞片、细胞片的操作及移植进行的广泛研究,确立了细胞片工程这一跨学科领域,其中工程学、生物学和医学领域紧密协作。这种协作开创了细胞片工程,使其成为组织工程和再生医学中一项有前景且具吸引力的技术。本综述介绍细胞片工程的概念,随后阐述用于制造各类温度响应性细胞培养表面的设计以及细胞片操作技术。还总结了制造温度响应性细胞培养表面的各种方法的发展情况。此外,也描述了细胞片工程在受损人体组织治疗和再生方面的实用性,并列举了细胞片移植在人体临床应用的实例。