ArticleBritish journal of pharmacology2001
Vasoconstrictor activity of novel endothelin peptide, ET-1(1 - 31), in human mammary and coronary arteries in vitro.
Article in British journal of pharmacology, 2001. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 13 papers.
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13 citing papers in PubMed, 35 citations in OpenAlex.
- Research progress on the molecular mechanisms of tanshinone IIA in the treatment of cardiovascular and cerebrovascular diseases (Review).International journal of molecular medicine · 2026Review
- ET-1 as a Sex-Specific Mechanism Impacting Age-Related Changes in Vascular Function.Frontiers in aging · 2021Review
- Endothelin.Pharmacological reviews · 2016Review
- Endothelin@25 - new agonists, antagonists, inhibitors and emerging research frontiers: IUPHAR Review 12.British journal of pharmacology · 2014Review
- Endothelin-2, the forgotten isoform: emerging role in the cardiovascular system, ovarian development, immunology and cancer.British journal of pharmacology · 2013Review
- Modulators of the vascular endothelin receptor in blood pressure regulation and hypertension.Current molecular pharmacology · 2011Review
- The cardiovascular physiology and pharmacology of endothelin-1.Advances in pharmacology (San Diego, Calif.) · 2010Review
- Mast cells: pivotal players in cardiovascular diseases.Current cardiology reviews · 2008Article
- The vascular endothelin system in hypertension--recent patents and discoveries.Recent patents on cardiovascular drug discovery · 2006Review
- Endothelins and their inhibition in the human skin microcirculation: ET[1-31], a new vasoconstrictor peptide.British journal of clinical pharmacology · 2004Article
- Endothelin-1-induced venous contraction is maintained in DOCA-salt hypertension; studies with receptor agonists.British journal of pharmacology · 2002Article
- Comparison of vasodilators in human internal mammary artery: ghrelin is a potent physiological antagonist of endothelin-1.British journal of pharmacology · 2002Article
- Big ET-1 processing into vasoactive peptides in arteries and veins.Vascular pharmacologyArticle
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Authors and funding
3 authors at 3 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
1. The ability of the putative chymase product of big endothelin-1 (big ET-1), ET-1(1 - 31), to constrict isolated endothelium-denuded preparations of human coronary and internal mammary artery was determined. 2. pD2 values in coronary and mammary artery respectively were 8.21+/-0.12 (n=14) and 8.55+/-0.11 (n=12) for ET-1, 6.74+/-0.11 (n=16) and 7.10+/-0.08 (n=16) for ET-1(1 - 31) and 6.92+/-0.10 (n=15) and 7.23+/-0.11 (n=12) for big ET-1. ET-1(1 - 31) was significantly less potent than ET-1 (P<0.001, Student's t-test) and equipotent with big ET-1. 3. Vasoconstrictor responses to 100 - 700 nM ET-1(1 - 31) were significantly (P<0.05, Student's paired t-test) attenuated by the ET(A) antagonist PD156707 (100 nM). 4. There was no effect of the ECE inhibitor PD159790 (30 microM), the ECE/NEP inhibitor phosphoramidon (100 microM) or the serine protease inhibitor chymostatin (100 microM) on ET-1(1 - 31) responses in either artery. 5. Radioimmunoassay detected significant levels of mature ET in the bathing medium of coronary (1.6+/-0.5 nM, n=14) and mammary (2.1+/-0.6 nM, n=14) arteries, suggesting that conversion of ET-1(1 - 31) to ET-1 contributed to the observed vasoconstriction. 6. ET-1(1 - 31) competed for specific [(125)I]-ET-1 binding to ET(A) and ET(B) receptors in human left ventricle with a pooled K(D) of 71.6+/-7.0 nM (n=3). 7. Therefore, in human arteries the novel peptide ET-1(1 - 31) mediated vasoconstriction via activation of the ET(A) receptor. The conversion of ET-1(1 - 31) to ET-1, by an as yet unidentified protease, must contribute wholly or partly to the observed constrictor response. Chymase generated ET-1(1 - 31) may therefore represent an alternative precursor for ET-1 production in the human vasculature.
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