Senior Researcher, Laboratory of Biomaterials and Tissue Constructions; A. Tsyb Меdical Radiological Research Centre - Branch of the National Medical Research Radiological Centre of the Ministry of Health of the Russian Federation, 10 Zhukova St., Obninsk, 249036, Russia.
Head of the Laboratory of Biomaterials and Tissue Constructions; A. Tsyb Меdical Radiological Research Centre - Branch of the National Medical Research Radiological Centre of the Ministry of Health of the Russian Federation, 10 Zhukova St., Obninsk, 249036, Russia.
Sovrem Tekhnologii Med. 2022;14(3):57-68. doi: 10.17691/stm2022.14.3.07. Epub 2022 May 28.
In recent years, decellularized tissues have evolved into a new, full-fledged platform for the creation of tissue-engineered constructions. Extracellular matrix (ECM) of each tissue provides a unique tissue-specific microenvironment for resident cells with the structure and biochemical signaling required for their functioning. The decellularized ECM (dECM) has been established to influence cell differentiation. The review provides recent data on the composition and functions of the ECM, methods for obtaining decellularized tissues, and their application in tissue engineering depending on their physical form (scaffold, powder, or hydrogel). The effect of the matrix source, decellularization and sterilization techniques on dECM composition has been considered. Regulatory mechanisms of cell differentiation by the extracellular matrix are discussed. Differences in the protein composition of the native and decellularized materials are presented. Application of dECM in the bioink composition for regeneration of various tissues using bioprinting technologies is also considered. It has been concluded that successful application of dECM in tissue engineering and regenerative medicine requires a permanent and biologically suitable dECM source, optimized tissue decellularization protocols, improved mechanical properties of dECM-derived bioinks, and prevention of immunological reaction of the organism.
近年来,去细胞组织已发展成为组织工程构建的一个全新的成熟平台。每个组织的细胞外基质 (ECM) 为驻留细胞提供了独特的组织特异性微环境,具有其功能所需的结构和生化信号。去细胞细胞外基质 (dECM) 已被确立为影响细胞分化的因素。本综述提供了 ECM 的组成和功能、获得去细胞组织的方法以及根据其物理形式(支架、粉末或水凝胶)在组织工程中的应用的最新数据。还考虑了基质来源、去细胞化和消毒技术对 dECM 组成的影响。讨论了细胞外基质对细胞分化的调控机制。介绍了天然和去细胞材料的蛋白质组成差异。还考虑了将 dECM 应用于使用生物打印技术再生各种组织的生物墨水组成中。结论认为,要成功地将 dECM 应用于组织工程和再生医学中,需要一个永久性的、具有生物适宜性的 dECM 来源、优化的组织去细胞化方案、提高 dECM 衍生生物墨水的机械性能以及防止机体的免疫反应。