Federal Research and Clinical Center of Physical-Chemical Medicine, Federal Medical Biological Agency, Moscow, 119435, Russia.
Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Federal Research and Clinical Center of Physical-Chemical Medicine, Federal Medical Biological Agency, Moscow, 119435, Russia.
Biochemistry (Mosc). 2024 May;89(5):799-816. doi: 10.1134/S0006297924050031.
Induced pluripotent stem cells (iPSCs), capable of differentiating into any cell type, are a promising tool for solving the problem of donor organ shortage. In addition, reprogramming technology makes it possible to obtain a personalized, i.e., patient-specific, cell product transplantation of which should not cause problems related to histocompatibility of the transplanted tissues and organs. At the same time, inconsistent information about the main advantage of autologous iPSC-derivatives - lack of immunogenicity - still casts doubt on the possibility of using such cells beyond immunosuppressive therapy protocols. This review is devoted to immunogenic properties of the syngeneic and autologous iPSCs and their derivatives, as well as to the reasons for dysregulation of their immune tolerance.
诱导多能干细胞(iPSCs)能够分化为任何细胞类型,是解决供体器官短缺问题的有前途的工具。此外,重编程技术使得获得个性化的,即患者特异性的细胞产物成为可能,这种移植不应该引起与移植组织和器官的组织相容性相关的问题。同时,关于自体 iPSC 衍生物的主要优势——免疫原性缺失的不一致信息,仍然让人对超出免疫抑制治疗方案使用此类细胞的可能性产生怀疑。这篇综述致力于同种异体和自体 iPSCs 及其衍生物的免疫原性特性,以及其免疫耐受失调的原因。