Department of Pathology and Molecular and Cell Based Medicine, Icahn School of Medicine at Mount Sinai, New York, New York, USA.
GOFARR Laboratory for Organ Regenerative Research and Cell Therapeutics in Urology, Saban Research Institute, Division of Urology, Children's Hospital Los Angeles, Los Angeles, California, USA; Department of Urology, Keck School of Medicine, University of Southern California, Los Angeles, CA, USA.
Kidney Int. 2022 Jan;101(1):131-136. doi: 10.1016/j.kint.2021.09.004. Epub 2021 Sep 20.
Analysis of the transcriptional profile of graft biopsies represents a promising strategy to study T cell-mediated-rejection (TCMR), also known as acute cellular rejection. However, bulk RNA sequencing of graft biopsies may not capture the focal nature of acute rejection. Herein, we used the whole exome GeoMX Digital Space Profiling platform to study five tubular and three glomerular regions of interest in the kidney graft biopsy from a patient with a chronic-active TCMR episode and in analogous areas from two different normal kidney control biopsies. All kidney sections were from paraffin blocks. Overall, inflammatory genes were significantly upregulated in the tubular areas of the TCMR biopsy and showed an enrichment for gene-ontology terms associated with T-cell activation, differentiation, and proliferation. Enrichment analysis of the 100 genes with the highest coefficient of variation across the TCMR tubular regions of interest revealed that these highly variable genes are involved in kidney development and injury and interestingly do not associate with the 2019 Banff classification pathology scores within the individual regions of interest. Spatial transcriptomics allowed us to unravel a previously unappreciated variability across different areas of the TCMR biopsy related to the graft response to the alloimmune attack, rather than to the immune cells. Thus, our approach has the potential to decipher clinically relevant, new pathogenic mechanisms, and therapeutic targets in acute cellular rejection and other kidney diseases with a focal nature.
对移植活检组织的转录谱进行分析是研究 T 细胞介导的排斥反应(TCMR)的一种很有前途的策略,TCMR 也被称为急性细胞排斥反应。然而,对移植活检组织进行批量 RNA 测序可能无法捕捉到急性排斥反应的局灶性。在此,我们使用全外显子 GeoMX Digital Space Profiling 平台,研究了一名慢性活跃性 TCMR 患者移植肾活检组织中五个管状和三个肾小球感兴趣区域,以及两个不同正常肾对照活检组织中类似的区域。所有的肾切片均来自石蜡块。总体而言,在 TCMR 活检的管状区域中,炎症基因显著上调,并表现出与 T 细胞激活、分化和增殖相关的基因本体论术语富集。对 TCMR 管状感兴趣区域中变异系数最高的 100 个基因的富集分析表明,这些高度可变的基因参与肾脏发育和损伤,有趣的是,它们与个别感兴趣区域内的 2019 年 Banff 分类病理学评分无关。空间转录组学使我们能够揭示 TCMR 活检不同区域之间以前未被认识到的与同种异体免疫攻击引起的移植物反应相关的变异性,而不是与免疫细胞相关的变异性。因此,我们的方法有可能在急性细胞排斥反应和其他具有局灶性的肾脏疾病中,揭示临床相关的新发病机制和治疗靶点。