质量细胞仪
免疫系统
免疫学
巨细胞病毒
流式细胞术
T细胞
先天免疫系统
获得性免疫系统
病毒学
人巨细胞病毒
疱疹病毒科
生物
病毒
病毒性疾病
表型
生物化学
基因
作者
Laura Donadeu,Thomas Jouve,Sofia Bin,Susan Hartzell,Elena Crespo,Alba Torija,Marta Jarque,Delphine Kervella,José M Zuniga,Weijia Zhang,Zeguo Sun,Alberto Verlato,Mónica Martínez-Gallo,Cristina Font-Miñarro,Maria Meneghini,Néstor Toapanta,Irina B. Torres,Joana Sellarés,Manel Perelló,Hannah Kaminski
标识
DOI:10.1016/j.kint.2024.03.027
摘要
Cytomegalovirus (CMV) infection is associated with poor kidney transplant outcomes. While innate and adaptive immune cells have been implicated in its prevention, an in-depth characterization of the in vivo kinetics of multiple cell subsets and their role in protecting against CMV infection has not been achieved. Here, we performed high-dimensional immune phenotyping by mass cytometry, and functional assays, on 112 serially collected samples from CMV seropositive kidney transplant recipients. Advanced unsupervised deep learning analysis was used to assess immune cell populations that significantly correlated with prevention against CMV infection and anti-viral immune function. Prior to infection, kidney transplant recipients who developed CMV infection showed significantly lower CMV-specific cell-mediated immune (CMI) frequencies than those that did not. A broad diversity of circulating cell subsets within innate and adaptive immune compartments were associated with CMV infection or protective CMV-specific CMI. While percentages of CMV (tetramer-stained)-specific T cells associated with high CMI responses and clinical protection, circulating CD3+CD8midCD56+ NK-T cells overall strongly associated with low CMI and subsequent infection. However, three NK-T cell subsets sharing the CD11b surface marker associated with CMV protection and correlated with strong anti-viral CMI frequencies in vitro. These data were validated in two external independent cohorts of kidney transplant recipients. Thus, we newly describe the kinetics of a novel NK-T cell subset that may have a protective role in post-transplantation CMV infection. Our findings pave the way to more mechanistic studies aimed at understanding the function of these cells in protection against CMV infection.Graphical abstract
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