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Thioredoxin-1 confines T cell alloresponse and pathogenicity in graft-versus-host disease

免疫学 氧化应激 移植物抗宿主病 造血 细胞因子 癌症研究 活性氧 移植 生物 造血干细胞移植 干细胞 细胞生物学 医学 生物化学 内科学
作者
M. Hanief Sofi,Yongxia Wu,Steven Schutt,Min Dai,Anusara Daenthanasanmak,J Voß,Hung Nguyen,David Bastian,Supinya Iamsawat,Shanmugam Panneer Selvam,Chen Liu,Nilanjana Maulik,Besim Öğretmen,Junfei Jin,Shikhar Mehrotra,Xue‐Zhong Yu
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
卷期号:129 (7): 2760-2774 被引量:32
标识
DOI:10.1172/jci122899
摘要

Oxidative stress is elevated in the recipients of allogeneic hematopoietic transplantation (allo-HCT) and likely contributes to the development of graft-versus-host disease (GVHD). GVHD is characterized by activation, expansion, cytokine production and migration of alloreactive donor T cells, and remains a major cause of morbidity and mortality after allo-HCT. Hence, strategies to limit oxidative stress in GVHD are highly desirable. Thioredoxin1 (Trx1) counteracts oxidative stress by scavenging reactive oxygen species (ROS) and regulating other enzymes that metabolize H2O2. The present study sought to elucidate the role of Trx1 in the pathophysiology of GVHD. Using murine and xenograft models of allogeneic bone marrow transplantation (allo-BMT) and genetic (human Trx1-transgenic, Trx1-Tg) as well as pharmacologic (human recombinant Trx1, RTrx1) strategies; we found that Trx1-Tg donor T cells or administration of the recipients with RTrx1 significantly reduced GVHD severity. Mechanistically, we observed RTrx1 reduced ROS accumulation and cytokine production of mouse and human T cells in response to alloantigen stimulation in vitro. In allo-BMT settings, we found that Trx1-Tg or RTrx1 decreased downstream signaling molecules including NFκB activation and T-bet expression, and reduced proliferation, IFN-γ production and ROS accumulation in donor T cells within GVHD target organs. More importantly, administration of RTrx1 did not impair the graft-versus-leukemia (GVL) effect. Taken together, the current work provides a strong rationale and demonstrates feasibility to target the ROS pathway, which can be readily translated into clinic.

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