Regulation and impact of cardiac lymphangiogenesis in pressure-overload-induced heart failure

Coraline Heron1, Anais Dumesnil1, Mahmoud Houssari1

  • 1Faculty of Pharmacy and Medicine, Normandy University, UniRouen, Inserm (Institut National de la Santé et de la Recherche Médicale) UMR1096 (EnVI Laboratory), FHU CARNAVAL, Rouen, France.

Insights

Poor cardiac lymphangiogenesis, or lymphatic vessel growth, accelerates heart failure (HF) development following pressure overload. Enhancing lymphatic function may be a therapeutic target for preventing HF progression.

Area of Science:

  • Cardiovascular Biology
  • Lymphatic Biology
  • Pathophysiology of Heart Failure

Background:

  • Cardiac lymphatics are crucial for heart health, and inadequate lymphatic expansion contributes to heart failure (HF) post-myocardial infarction.
  • The role of lymphangiogenesis in non-ischaemic cardiomyopathy due to pressure overload is not well understood.

Purpose of the Study:

  • To investigate cardiac lymphangiogenesis in response to pressure overload (transversal aortic constriction - TAC).
  • To determine the impact of inhibiting lymphangiogenesis on cardiac function, inflammation, and fibrosis.
  • To compare lymphangiogenesis in different mouse strains and in human heart failure samples.

Main Methods:

  • Cardiac function assessed by echocardiography.
  • Cardiac hypertrophy, lymphatics, inflammation, edema, and fibrosis analyzed via immunohistochemistry, flow cytometry, and gene expression.
  • VEGFR3 signaling inhibition used to impair cardiac lymphangiogenesis in mice.

Main Results:

  • VEGFR3 signaling is essential for preventing cardiac lymphatic rarefaction post-TAC.
  • Inhibition of lymphangiogenesis increased cardiac immune cells and perivascular fibrosis, accelerating left ventricular dilation and dysfunction.
  • While cardiac lymphatic density increased in human HF, lymphatic size decreased, particularly in dilated cardiomyopathy.

Conclusions:

  • Endogenous lymphangiogenesis limits pressure-overload-induced cardiac inflammation and fibrosis, delaying HF development.
  • Poor cardiac lymphangiogenesis under pressure overload conditions may accelerate HF progression.
  • The functional impact of lymphatic remodeling in human HF requires further investigation.
Abstract

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