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创伤性脊髓损伤微环境的空间多组学分析:叙事性综述。

Spatial multi-omics analysis of the microenvironment in traumatic spinal cord injury: a narrative review.

机构信息

School of Rehabilitation Medicine, Capital Medical University, Beijing, China.

Department of Rehabilitation, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangzhou, China.

出版信息

Front Immunol. 2024 Aug 29;15:1432841. doi: 10.3389/fimmu.2024.1432841. eCollection 2024.

Abstract

Traumatic spinal cord injury (tSCI) is a severe injury to the central nervous system that is categorized into primary and secondary injuries. Among them, the local microenvironmental imbalance in the spinal cord caused by secondary spinal cord injury includes accumulation of cytokines and chemokines, reduced angiogenesis, dysregulation of cellular energy metabolism, and dysfunction of immune cells at the site of injury, which severely impedes neurological recovery from spinal cord injury (SCI). In recent years, single-cell techniques have revealed the heterogeneity of multiple immune cells at the genomic, transcriptomic, proteomic, and metabolomic levels after tSCI, further deepening our understanding of the mechanisms underlying tSCI. However, spatial information about the tSCI microenvironment, such as cell location and cell-cell interactions, is lost in these approaches. The application of spatial multi-omics technology can solve this problem by combining the data obtained from immunohistochemistry and multiparametric analysis to reveal the changes in the microenvironment at different times of secondary injury after SCI. In this review, we systematically review the progress of spatial multi-omics techniques in the study of the microenvironment after SCI, including changes in the immune microenvironment and discuss potential future therapeutic strategies.

摘要

创伤性脊髓损伤(tSCI)是一种严重的中枢神经系统损伤,可分为原发性损伤和继发性损伤。其中,继发性脊髓损伤导致脊髓局部微环境失衡,包括细胞因子和趋化因子的积累、血管生成减少、细胞能量代谢失调以及损伤部位免疫细胞功能障碍,严重阻碍了脊髓损伤(SCI)的神经功能恢复。近年来,单细胞技术揭示了 tSCI 后多个免疫细胞在基因组、转录组、蛋白质组和代谢组水平上的异质性,进一步加深了我们对 tSCI 发病机制的理解。然而,这些方法丢失了 tSCI 微环境的空间信息,如细胞位置和细胞间相互作用。空间多组学技术的应用可以通过结合免疫组织化学和多参数分析获得的数据来解决这个问题,从而揭示 SCI 后继发性损伤不同时间点微环境的变化。在本文中,我们系统地回顾了空间多组学技术在 SCI 后微环境研究中的进展,包括免疫微环境的变化,并讨论了潜在的未来治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d87/11390538/05c349172755/fimmu-15-1432841-g001.jpg

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