PHD2 Deletion in CD8 + T Cells Worsens TAC-Induced Cardiac Inflammation, Heart Failure, and Pulmonary Remodeling

炎症 细胞毒性T细胞 心力衰竭 心室重构 心脏病学 CD8型 内科学 免疫学 医学 免疫系统 化学 生物化学 体外
作者
Lihong Pan,Xiaochen He,Rui Xu,Umesh Bhattarai,Dongzhi Wang,Hao Wang,Ziru Niu,Heng Zeng,John S. Clemmer,Joshua S. Speed,Jian‐Xiong Chen,Yingjie Chen
出处
期刊:Hypertension [Lippincott Williams & Wilkins]
卷期号:82 (11): 2040-2054
标识
DOI:10.1161/hypertensionaha.125.25284
摘要

BACKGROUND: Cardiac inflammation is a key driver of cardiac fibrosis and heart failure. Cytotoxic CD8⁺ T cells play important roles in modulating inflammatory responses, especially during infections and autoimmune diseases. HIFs (hypoxia-inducible factors) regulate CD8⁺ T cell function and cardiac remodeling. However, the role of HIF in CD8⁺ T cells during heart failure development remains unclear. METHODS: We generated CD8⁺ T cell-specific PHD2 (prolyl hydroxylase domain protein 2)-deficient mice (PHD2 CKO ), in which HIF bioavailability is increased due to the loss of PHD2. PHD2 CKO and wild-type littermates were subjected to pressure overload via transverse aortic constriction. Cardiac function, inflammation, and CD8⁺ T cell responses were assessed. CD8⁺ T cell metabolism was analyzed using Seahorse assays to measure extracellular acidification rate and oxygen consumption rate. HIF1α and HIF2α protein levels were measured by Western blotting. RESULTS: Under baseline conditions, PHD2 deletion in CD8⁺ T cells had no effect on heart function or effector molecule expression. Following transverse aortic constriction, PHD2 CKO mice showed exacerbated cardiopulmonary inflammation, fibrosis, and dysfunction. These effects were associated with enhanced CD8⁺ T cell activation and cytokine production. In vitro, PHD2-deficient CD8⁺ T cells exhibited increased glycolysis (extracellular acidification rate), reduced oxidative phosphorylation (oxygen consumption rate), and elevated HIF1α—but not HIF2α—levels. Pharmacological inhibition of HIF1α, but not HIF2α, reversed these metabolic and functional changes. CONCLUSIONS: PHD2 deletion in CD8⁺ T cells aggravates cardiopulmonary remodeling after pressure overload by enhancing CD8⁺ T cell activation and cytokine release via a HIF1α-dependent mechanism.
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