Miami Project to Cure Paralysis, Department of Neurological Surgery, University of Miami School of Medicine, Miami, FL.
University of Miami Neuroscience Graduate Program, Miami, FL.
J Exp Med. 2021 Aug 2;218(8). doi: 10.1084/jem.20210040. Epub 2021 Jun 16.
The wound healing process that occurs after spinal cord injury is critical for maintaining tissue homeostasis and limiting tissue damage, but eventually results in a scar-like environment that is not conducive to regeneration and repair. A better understanding of this dichotomy is critical to developing effective therapeutics that target the appropriate pathobiology, but a major challenge has been the large cellular heterogeneity that results in immensely complex cellular interactions. In this study, we used single-cell RNA sequencing to assess virtually all cell types that comprise the mouse spinal cord injury site. In addition to discovering novel subpopulations, we used expression values of receptor-ligand pairs to identify signaling pathways that are predicted to regulate specific cellular interactions during angiogenesis, gliosis, and fibrosis. Our dataset is a valuable resource that provides novel mechanistic insight into the pathobiology of not only spinal cord injury but also other traumatic disorders of the CNS.
脊髓损伤后发生的伤口愈合过程对于维持组织内稳态和限制组织损伤至关重要,但最终会导致类似于疤痕的环境,不利于再生和修复。更好地理解这种二分法对于开发针对适当病理生物学的有效治疗方法至关重要,但主要挑战一直是导致极其复杂的细胞相互作用的巨大细胞异质性。在这项研究中,我们使用单细胞 RNA 测序来评估构成小鼠脊髓损伤部位的几乎所有细胞类型。除了发现新的亚群外,我们还使用受体-配体对的表达值来鉴定预测在血管生成、神经胶质增生和纤维化过程中调节特定细胞相互作用的信号通路。我们的数据集是一个有价值的资源,为脊髓损伤以及中枢神经系统的其他创伤性疾病的病理生物学提供了新的机制见解。