Decoding Single-cell Landscape and Intercellular Crosstalk in the Transplanted Liver

生物 串扰 免疫系统 梅尔特克 肝移植 细胞内 细胞 移植 细胞生物学 免疫学 医学 信号转导 内科学 遗传学 物理 光学 受体酪氨酸激酶
作者
Haitao Huang,Ruihan Chen,Yimou Lin,Jingyu Jiang,Feng Shi,Xueyou Zhang,Cheng Zhang,Qinghua Ji,Hui Chen,Haiyang Xie,Shusen Zheng,Qi Ling
出处
期刊:Transplantation [Ovid Technologies (Wolters Kluwer)]
卷期号:107 (4): 890-902 被引量:7
标识
DOI:10.1097/tp.0000000000004365
摘要

Liver transplantation (LT) is the most effective treatment for various end-stage liver diseases. However, the cellular complexity and intercellular crosstalk of the transplanted liver have constrained analyses of graft reconstruction after LT.We established an immune-tolerated orthotopic LT mouse model to understand the physiological process of graft recovery and intercellular crosstalk. We employed single-cell RNA sequencing and cytometry by time-of-flight to comprehensively reveal the cellular landscape.We identified an acute and stable phase during perioperative graft recovery. Using single-cell technology, we made detailed annotations of the cellular landscape of the transplanted liver and determined dynamic modifications of these cells during LT. We found that 96% of graft-derived immune cells were replaced by recipient-derived cells from the preoperative to the stable phase. However, CD206 + MerTK + macrophages and CD49a + CD49b - natural killer cells were composed of both graft and recipient sources even in the stable phase. Intriguingly, the transcriptional profiles of these populations exhibited tissue-resident characteristics, suggesting that recipient-derived macrophages and natural killer cells have the potential to differentiate into 'tissue-resident cells' after LT. Furthermore, we described the transcriptional characteristics of these populations and implicated their role in regulating the metabolic and immune remodeling of the transplanted liver.In summary, this study delineated a cell atlas (type-proportion-source-time) of the transplanted liver and shed light on the physiological process of graft reconstruction and graft-recipient crosstalk.
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