首页> 外文期刊>Hypertension: An Official Journal of the American Heart Association >Mineralocorticoid Receptor Deficiency in T Cells Attenuates Pressure Overload-Induced Cardiac Hypertrophy and Dysfunction Through Modulating T-Cell Activation
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Mineralocorticoid Receptor Deficiency in T Cells Attenuates Pressure Overload-Induced Cardiac Hypertrophy and Dysfunction Through Modulating T-Cell Activation

机译:T细胞中的矿物皮质激素受体缺乏通过调节T细胞活化来衰减压力过载诱导的心脏肥大和功能障碍

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摘要

Although antagonists of mineralocorticoid receptor (MR) have been widely used to treat heart failure, the underlying mechanisms are incompletely understood. Recent reports show that T cells play important roles in pathologic cardiac hypertrophy and heart failure. However, it is unclear whether and how MR functions in T cells under these pathologic conditions. We found that MR antagonist suppressed abdominal aortic constriction-induced cardiac hypertrophy and decreased the accumulation and activation of CD4(+) and CD8(+) T cells in mouse heart. T-cell MR knockout mice manifested suppressed cardiac hypertrophy, fibrosis, and dysfunction compared with littermate control mice after abdominal aortic constriction. T-cell MR knockout mice had less cardiac inflammatory response, which was illustrated by decreased accumulation of myeloid cells and reduced expression of inflammatory cytokines. Less amounts and activation of T cells were observed in the heart of T-cell MR knockout mice after abdominal aortic constriction. In vitro studies showed that both MR antagonism and deficiency repressed activation of T cells, whereas MR overexpression elevated activation of T cells. These results demonstrated that MR blockade in T cells protected against abdominal aortic constriction-induced cardiac hypertrophy and dysfunction. Mechanistically, MR directly regulated T-cell activation and modulated cardiac inflammation. Targeting MR in T cells specifically may be a feasible strategy for more effective treatment of pathologic cardiac hypertrophy and heart failure.
机译:尽管矿物质激素受体(MR)的拮抗剂已被广泛用于治疗心力衰竭,但潜在机制不完全理解。最近的报道显示,T细胞在病理心脏肥大和心力衰竭中发挥着重要作用。然而,目前尚不清楚在这些病理条件下的T细胞中的是否以及如何在T细胞中起作用。我们发现拮抗剂MR抑制腹主动脉诱导的心脏肥大,并降低小鼠心脏中CD4(+)和CD8(+)T细胞的积累和激活。 T细胞Mr敲除小鼠表现出抑制的心脏肥大,纤维化和功能障碍与腹主动脉造成后的凋落小鼠相比。 T细胞Mr敲除小鼠具有较少的心脏炎症反应,其通过降低骨髓细胞的积累和炎性细胞因子的表达减少而说明。在腹主动脉缩窄后在T细胞Mr敲除小鼠的心脏中观察到少量和活化T细胞。体外研究表明,对拮抗症和缺乏抑制的T细胞的激活,而过度表达先生升高了T细胞的活化。这些结果表明,在抗腹主动脉诱导的心脏肥大和功能障碍中保护T细胞MR阻断。机械地,MR直接调节T细胞活化和调节心脏炎症。靶向T细胞MR特异性可能是一种可行的策略,以便更有效地治疗病理心脏肥大和心力衰竭。

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  • 作者单位

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Univ Chinese Acad Sci Chinese Acad Sci Inst Nutrit Sci Shanghai Inst Biol Sci Beijing Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Shanghai Jiao Tong Univ Sch Med Shanghai Key Lab Stomatol Shanghai Peoples R China;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

    Shanghai Jiao Tong Univ Dept Cardiol Shanghai Chest Hosp Shanghai Peoples R China;

    Tianjin Med Univ Dept Pharmacol Sch Basic Med Sci Tianjin Peoples R China;

    Ninth Peoples Hosp Sch Stomatol Shanghai Res Inst Stomatol Lab Oral Microbiol Shanghai Peoples;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 心脏、血管(循环系)疾病;
  • 关键词

    cardiac hypertrophy; heart failure; mineralocorticoid receptor; T cells; T-cell activation;

    机译:心脏肥大;心力衰竭;矿物质激素受体;T细胞;T细胞活化;

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