Emerging role of neurotensin in regulation of the cardiovascular system

Eur J Pharmacol. 2015 Sep 5:762:184-92. doi: 10.1016/j.ejphar.2015.05.025. Epub 2015 May 21.

Abstract

There is increasing evidence in support of an important role played by neurotensin (NT), a tridecapeptide originally found in bovine hypothalamus, in regulation of cardiovascular system. Elevated systemic levels of NT may contribute to pathogenesis of acute circulatory disoders, and predict the risk for cardiovascular morbidity and mortality in population-based studies. Within cardiovascular system, NT-containing neural fibers are found in close contact with atrial and ventricular cardiac myocytes, cardiac conduction system, intracardiac ganglia, as well as coronary vessels in humans and various animal species. The density of NT-immunoreactive innervation is reduced in cardiac disease. NT produces a variety of cardiovascular actions including effects on heart rate, myocardial contractility, systemic blood pressure, coronary vascular tone, venous smooth muscle tone, and regional blood flow in gastrointestinal tract, cutaneous and adipose tissue. NT could trigger cardiovascular reflexes by stimulating primary visceral afferents synaptically connected with preganglionic sympathetic neurons at the spinal cord. Structural determinants of biological activity of NT reside primarily in the C-terminal portion of its molecule which is responsible for receptor activation. NT effects are mediated via activation of NT receptors, or produced indirectly via stimulation of release of various endogenous neuromodulators/neurotransmitters such as histamine, catecholamines and prostaglandins. Three subtypes of NT receptor (NTS1, NTS2 and NTS3) have been shown to be expressed in the myocardium. NTS1, a high-affinity NT binding site coupled to phospholipase C-inositoltrisphosphate transduction pathway, is thought to mediate NT-induced cardiovascular responses.

Keywords: Cardiovascular system; Neurotensin.

Publication types

  • Review

MeSH terms

  • Animals
  • Cardiovascular Physiological Phenomena / drug effects
  • Cardiovascular System / drug effects
  • Cardiovascular System / innervation
  • Cardiovascular System / metabolism*
  • Drug Discovery
  • Humans
  • Neurotensin / chemistry
  • Neurotensin / metabolism*
  • Receptors, Neurotensin / metabolism

Substances

  • Receptors, Neurotensin
  • Neurotensin