Xu Yingxi, Liu Xianbo, Ahmad Muhammad Arslan, Ao Qiang, Yu Yang, Shao Dan, Yu Tianhao
Department of Clinical Nutrition, Shengjing Hospital of China Medical University, Shenyang, China.
Department of Orthodontics, School and Hospital of Stomatology, China Medical University, Liaoning Provincial Key Laboratory of Oral Diseases, Shenyang, China.
Mater Today Bio. 2024 Jun 13;27:101125. doi: 10.1016/j.mtbio.2024.101125. eCollection 2024 Aug.
Extracellular matrices (ECMs) play a key role in nerve repair and are recognized as the natural source of biomaterials. In parallel to extensively studied tissue-derived ECMs (ts-ECMs), cell-derived ECMs (cd-ECMs) also have the capability to partially recapitulate the complicated regenerative microenvironment of native nerve tissues. Notably, cd-ECMs can avoid the shortcomings of ts-ECMs. Cd-ECMs can be prepared by culturing various cells or even autologous cells under pathogen-free conditions. And mild decellularization can achieve efficient removal of immunogenic components in cd-ECMs. Moreover, cd-ECMs are more readily customizable to achieve the desired functional properties. These advantages have garnered significant attention for the potential of cd-ECMs in neuroregenerative medicine. As promising biomaterials, cd-ECMs bring new hope for the effective treatment of peripheral nerve injuries. Herein, this review comprehensively examines current knowledge about the functional characteristics of cd-ECMs and their mechanisms of interaction with cells in nerve regeneration, with a particular focus on the preparation, engineering optimization, and scalability of cd-ECMs. The applications of cd-ECMs from distinct cell sources reported in peripheral nerve tissue engineering are highlighted and summarized. Furthermore, current limitations that should be addressed and outlooks related to clinical translation are put forward as well.
细胞外基质(ECM)在神经修复中起关键作用,被认为是生物材料的天然来源。与广泛研究的组织衍生ECM(ts-ECM)并行,细胞衍生ECM(cd-ECM)也有能力部分重现天然神经组织复杂的再生微环境。值得注意的是,cd-ECM可以避免ts-ECM的缺点。Cd-ECM可以通过在无菌条件下培养各种细胞甚至自体细胞来制备。轻度脱细胞可以有效去除cd-ECM中的免疫原性成分。此外,cd-ECM更易于定制以实现所需的功能特性。这些优点使cd-ECM在神经再生医学中的潜力备受关注。作为有前景的生物材料,cd-ECM为周围神经损伤的有效治疗带来了新希望。在此,本综述全面审视了关于cd-ECM功能特性及其在神经再生中与细胞相互作用机制的现有知识,特别关注cd-ECM的制备、工程优化和可扩展性。突出并总结了外周神经组织工程中报道的不同细胞来源的cd-ECM的应用。此外,还提出了当前应解决的局限性以及与临床转化相关的展望。