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Biochemical and functional characterization of endothelin peptides with special reference to vascular effects

A Hemsén1

  • 1Department of Pharmacology, Karolinska Institutet, Stockholm, Sweden.

Acta Physiologica Scandinavica. Supplementum
|January 1, 1991
PubMed

Insights

Endothelin (ET-LI) is present in human and porcine tissues, with ET-1 being dominant. This study investigates ET-LI release, receptor subtypes, and vascular effects, revealing its potent vasoconstrictive and vasodilatory roles.

Area of Science:

  • Cardiovascular Physiology
  • Endocrinology
  • Molecular Biology

Background:

  • Endothelin (ET-LI) is a potent vasoactive peptide with significant physiological roles.
  • Understanding the distribution, release, and receptor interactions of ET-LI is crucial for cardiovascular research.

Purpose of the Study:

  • To detect and characterize Endothelin-1 (ET-1), ET-2, ET-3, and big ET-1 in porcine and human tissues.
  • To investigate the transient release of ET-LI during physiological stress.
  • To identify and characterize endothelin receptors (ETA and ETB) and their signaling pathways.
  • To evaluate the in vivo and in vitro vascular effects of ET-1 and ET-3.

Main Methods:

  • Immunohistochemistry was used to detect ET-LI in various tissues.
  • Plasma ET-LI levels were measured during endotoxin infusion and asphyxia in pigs.
  • Receptor binding assays and inositol phosphate (IP) turnover assays were performed.
  • In vivo vasoconstriction/vasodilation studies in pigs and in vitro studies on human vessels and bronchi were conducted.

Main Results:

  • ET-1 was the predominant form in porcine and human tissues, with ET-3 found in porcine kidney and spinal cord. VIC and ET-2 were not detected.
  • Transient ET-LI release was observed from the porcine spleen during endotoxin infusion and asphyxia. High levels were found in human amniotic fluid and umbilical plasma at birth.
  • Specific ETA and ETB receptors were identified, with ETA predominant in the spleen and renal artery, and ETB in the renal medulla and placenta. Both receptor subtypes were present in the lung.
  • ET-1 was a potent vasoconstrictor in the porcine kidney and spleen, and in human coronary, pulmonary, and umbilical vessels. ET-1 and ET-3 acted as vasodilators in the bronchial circulation.

Conclusions:

  • ET-LI, particularly ET-1, is widely distributed in human and porcine tissues and is released during specific physiological conditions.
  • Distinct tissue-specific distributions of ETA and ETB receptors suggest differential roles in regulating vascular tone.
  • ET-1 exhibits potent vasoconstrictive effects in various vascular beds, while both ET-1 and ET-3 can induce vasodilation in the bronchial circulation, highlighting complex vascular actions.

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