Chen Weiwei, Nie Min, Gan Jingjing, Xia Nan, Wang Dandan, Sun Lingyun
Department of Rheumatology and Immunology Nanjing Drum Tower Hospital Medical School Nanjing University Nanjing China.
Department of Rheumatology and Immunology The First Affiliated Hospital of Anhui Medical University Hefei China.
Smart Med. 2024 Feb 18;3(1):e20230038. doi: 10.1002/SMMD.20230038. eCollection 2024 Feb.
Cell sheet technology has emerged as a novel scaffold-free approach for cell-based therapies in regenerative medicine. Techniques for harvesting cell sheets are essential to preserve the integrity of living cell sheets. This review provides an overview of fundamental technologies to fabricate cell sheets and recent advances in cell sheet-based tissue engineering. In addition to the commonly used temperature-responsive systems, we introduce alternative approaches, such as ROS-induced, magnetic-controlled, and light-induced cell sheet technologies. Moreover, we discuss the modification of the cell sheet to improve its function, including stacking, genetic modification, and vascularization. With the significant advances in cell sheet technology, cell sheets have been widely applied in various tissues and organs, including but not limited to the lung, cornea, cartilage, periodontium, heart, and liver. This review further describes both the preclinical and clinical applications of cell sheets. We believe that the progress in cell sheet technology would further propel its biomedical applications.
细胞片技术已成为再生医学中一种新型的无支架细胞治疗方法。收获细胞片的技术对于保持活细胞片的完整性至关重要。本综述概述了制造细胞片的基础技术以及基于细胞片的组织工程的最新进展。除了常用的温度响应系统外,我们还介绍了其他方法,如活性氧诱导、磁控和光诱导细胞片技术。此外,我们讨论了细胞片的改性以改善其功能,包括堆叠、基因修饰和血管化。随着细胞片技术的重大进展,细胞片已广泛应用于各种组织和器官,包括但不限于肺、角膜、软骨、牙周组织、心脏和肝脏。本综述进一步描述了细胞片的临床前和临床应用。我们相信细胞片技术的进步将进一步推动其生物医学应用。