Abstract
The decapeptide kallidin-10, substance P and angiotensin increased the resistance of guinea-pig lungs to inflation; lysine- or arginine-vasopressin and oxytocin were inactive. Acetylsalicylate antagonized this action of kallidin-10, as it does that of bradykinin, but it failed to antagonize substance P or angiotensin. Bradykinin also increased resistance to inflation of rabbit lungs and, to a lesser extent, rat lungs. It caused a relatively slow contraction of guinea-pig tracheal and bronchial muscle in vitro, but it did not contract isolated rabbit, dog or human bronchus. The relative potencies of different substances on different bronchial test preparations, and also in different species, were not parallel.
Keywords
BRONCHI/pharmacology
HYPERTENSIN/pharmacology
KALLIKREIN/pharmacology
OXYTOCICS/pharmacology
PEPTIDES/pharmacology
VASOPRESSIN/pharmacology
MeSH Terms
Angiotensin Amide/pharmacology
Angiotensins
Animals
Arginine Vasopressin
Bradykinin
Bronchi/pharmacology
Dogs
Guinea Pigs
Humans
Kallidin
Kallikreins/pharmacology
Lung
Male
Muscle, Smooth
Oxytocics/pharmacology
Oxytocin
Peptides/pharmacology
Prostate
Rabbits
Rats
Substance P
Trachea
Urethra
Vasopressins/pharmacology
Chemicals
Angiotensins
Oxytocics
Peptides
Vasopressins
Arginine Vasopressin
Substance P
Kallidin
Oxytocin
Angiotensin Amide
Kallikreins
Bradykinin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
BHOOLA K D
COLLIER H O
SCHACHTER M
SHORLEY P G
References (5)
5 references, click to expand
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The action of drugs on isolated human bronchial chains.
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PMID: 14904894
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Analgesic antipyretic drugs as antagonists of bradykinin.
Br J Pharmacol Chemother. 1960 Dec;15:601-10
PMID: 13694701
-
The bronchoconstrictor action of bradykinin in the guinea-pig.
Br J Pharmacol Chemother. 1960 Jun;15:290-7
PMID: 13811230
-
The synthesis of a biologically active decapeptide having the structure proposed for kallidin II.
Biochem Biophys Res Commun. 1961 Nov 20;6:210-2
PMID: 14479512
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[Isolation and structure of kallidine].
Hoppe Seylers Z Physiol Chem. 1961 Nov 24;326:174-6
PMID: 14006206