Kasravi Mohammadreza, Ahmadi Armin, Babajani Amirhesam, Mazloomnejad Radman, Hatamnejad Mohammad Reza, Shariatzadeh Siavash, Bahrami Soheyl, Niknejad Hassan
Department of Pharmacology, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, 1985711151, Iran.
Gastroenterology and Liver Diseases Research Center, Research Institute for Gastroenterology and Liver Diseases, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Biomater Res. 2023 Feb 9;27(1):10. doi: 10.1186/s40824-023-00348-z.
Tissue-engineered decellularized extracellular matrix (ECM) scaffolds hold great potential to address the donor shortage as well as immunologic rejection attributed to cells in conventional tissue/organ transplantation. Decellularization, as the key process in manufacturing ECM scaffolds, removes immunogen cell materials and significantly alleviates the immunogenicity and biocompatibility of derived scaffolds. However, the application of these bioscaffolds still confronts major immunologic challenges. This review discusses the interplay between damage-associated molecular patterns (DAMPs) and antigens as the main inducers of innate and adaptive immunity to aid in manufacturing biocompatible grafts with desirable immunogenicity. It also appraises the impact of various decellularization methodologies (i.e., apoptosis-assisted techniques) on provoking immune responses that participate in rejecting allogenic and xenogeneic decellularized scaffolds. In addition, the key research findings regarding the contribution of ECM alterations, cytotoxicity issues, graft sourcing, and implantation site to the immunogenicity of decellularized tissues/organs are comprehensively considered. Finally, it discusses practical solutions to overcome immunogenicity, including antigen masking by crosslinking, sterilization optimization, and antigen removal techniques such as selective antigen removal and sequential antigen solubilization.
组织工程去细胞细胞外基质(ECM)支架在解决供体短缺以及传统组织/器官移植中细胞引起的免疫排斥方面具有巨大潜力。去细胞化作为制造ECM支架的关键过程,可去除免疫原性细胞材料,并显著减轻衍生支架的免疫原性和生物相容性。然而,这些生物支架的应用仍然面临重大的免疫挑战。本综述讨论了损伤相关分子模式(DAMPs)和抗原之间的相互作用,它们是先天性和适应性免疫的主要诱导因子,有助于制造具有理想免疫原性的生物相容性移植物。它还评估了各种去细胞化方法(即凋亡辅助技术)对引发参与排斥同种异体和异种去细胞支架的免疫反应的影响。此外,还全面考虑了关于ECM改变、细胞毒性问题、移植物来源和植入部位对去细胞组织/器官免疫原性贡献的关键研究结果。最后,它讨论了克服免疫原性的实际解决方案,包括通过交联进行抗原屏蔽、优化灭菌以及抗原去除技术,如选择性抗原去除和顺序抗原溶解。