The kallikrein-kinin system as a regulator of cardiovascular and renal function

Nour-Eddine Rhaleb1, Xiao-Ping Yang, Oscar A Carretero

  • 1Hypertension and Vascular Research Division, Department of Internal Medicine, Henry Ford Hospital, Detroit, Michigan, USA. nrhaleb1@hfhs.org

Insights

Kinins are crucial for cardiovascular and renal function, potentially opposing hypertension. While their role in hypertension is debated, they mediate beneficial effects of ACE inhibitors and ARBs, protecting against target organ damage.

Area of Science:

  • Endocrinology and Cardiovascular Physiology
  • Renal Function and Hypertension Pathogenesis
  • Neuroendocrinology and Autacoid Signaling

Background:

  • Hormonal systems (autocrine, paracrine, endocrine, neuroendocrine) regulate cardiovascular and renal function.
  • Imbalances in these systems can lead to hypertension and target organ damage.
  • Vasopressor hormones (RAS, aldosterone, catecholamines) are key in blood pressure regulation and hypertension.

Purpose of the Study:

  • To explore the role of kinins, vasodepressor autacoids, in cardiovascular and renal function.
  • To investigate the controversial role of kinins in hypertension pathogenesis.
  • To elucidate kinin involvement in the protective effects of ACE inhibitors and ARBs.

Main Methods:

  • Review of existing literature on kinin generation, effects, and involvement in physiological and pathological processes.
  • Analysis of genetic studies (Utah families, SHR rats) investigating kallikrein gene variations and blood pressure.
  • Examination of data from animal models (B2-KO mice) and pharmacological interventions (ACE inhibitors, ARBs).

Main Results:

  • Kinins are generated from kininogens by kallikreins and mediate effects via various autacoids (e.g., NO).
  • Evidence suggests kinins protect against cardiac ischemia and oppose cardiovascular remodeling.
  • Genetic studies show conflicting results regarding kinins and hypertension risk; KKS deficiency or blockade does not cause hypertension.

Conclusions:

  • Kinins are vital for renal function (papillary blood flow, salt excretion) and cardiovascular protection.
  • They mediate acute antihypertensive effects of ACE inhibitors and contribute to vascular protection.
  • Kinins play a significant role in the beneficial effects of ACE inhibitors and ARBs on target organ damage in hypertension.

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