Hama Rikako, Reinhardt James W, Ulziibayar Anudari, Watanabe Tatsuya, Kelly John, Shinoka Toshiharu
Center for Regenerative Medicine, The Abigail Wexner Research Institute, Nationwide Children's Hospital, 700 Children's Drive, Columbus, OH 43205, USA.
Department of Biotechnology and Life Science, Graduate School of Engineering, Tokyo University of Agriculture and Technology, 2-24-16 Naka-Cho, Koganei 184-8588, Japan.
Biomimetics (Basel). 2023 Mar 22;8(1):130. doi: 10.3390/biomimetics8010130.
Inducing tissue regeneration in many skin defects, such as large traumatic wounds, burns, other physicochemical wounds, bedsores, and chronic diabetic ulcers, has become an important clinical issue in recent years. Cultured cell sheets and scaffolds containing growth factors are already in use but have yet to restore normal skin tissue structure and function. Many tissue engineering materials that focus on the regeneration process of living tissues have been developed for the more versatile and rapid initiation of treatment. Since the discovery that cells recognize the chemical-physical properties of their surrounding environment, there has been a great deal of work on mimicking the composition of the extracellular matrix (ECM) and its three-dimensional network structure. Approaches have used ECM constituent proteins as well as morphological processing methods, such as fiber sheets, sponges, and meshes. This review summarizes material design strategies in tissue engineering fields, ranging from the morphology of existing dressings and ECM structures to cellular-level microstructure mimicry, and explores directions for future approaches to precision skin tissue regeneration.
近年来,在许多皮肤缺损(如大面积创伤性伤口、烧伤、其他物理化学性伤口、褥疮和慢性糖尿病溃疡)中诱导组织再生已成为一个重要的临床问题。含有生长因子的培养细胞片和支架已经在使用,但尚未恢复正常的皮肤组织结构和功能。为了更通用和快速地开始治疗,人们已经开发了许多专注于活组织再生过程的组织工程材料。自从发现细胞能够识别其周围环境的化学物理性质以来,人们在模拟细胞外基质(ECM)的组成及其三维网络结构方面做了大量工作。这些方法使用了ECM组成蛋白以及形态学处理方法,如纤维片、海绵和网。本文综述了组织工程领域的材料设计策略,从现有敷料的形态和ECM结构到细胞水平的微观结构模拟,并探讨了未来精确皮肤组织再生方法的方向。