Changes in Treg phenotype may contribute to myocardial hypertrophy in CKD, while B lymphocyte depletion signifies adverse prognosis in heart failure.
The acquired immune system, particularly T cell subsets and B lymphocyte depletion, plays a complex role in the pathogenesis of myocardial remodeling and uremic cardiomyopathy in chronic kidney disease.
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Aberrant signaling pathways of the acquired immune system are implicated in the development of cardiovascular disease (CVD) and chronic kidney disease (CKD) phenotypes. Understanding the complex abnormalities of lymphocyte subpopulations in CKD is a prerequisite for elucidating their implication in uremic cardiomyopathy. T cell subsets display various patterns of association with indices of myocardial function in both experimental and clinical CKD models. The role of Tregs in CVD and CKD has attracted significant research interest. Although experimental data suggest a protective role of Tregs from the development of arterial hypertension- and pressure overload-induced myocardial hypertrophy, there might be a change in the regulatory T cell (Treg) phenotype towards a profibrotic one in the settings of CKD and heart failure. Depletion of B lymphocytes is a hallmark of CKD and heart failure, bearing adverse prognostic significance, yet evidence of B lymphocytes’ involvement in the pathogenesis of myocardial damage is currently lacking. Considering that myocardial remodeling is the final outcome of diverse pathogenic processes targeting the heart, the aim of this review is to present the evidence available up to now regarding the role of acquired immune cells in the pathogenesis of the structural and functional alterations of the myocardium in CKD.
Duni et al. (Mon,) reported a other. Changes in Treg phenotype may contribute to myocardial hypertrophy in CKD, while B lymphocyte depletion signifies adverse prognosis in heart failure.
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