Literature DB >> 1465754

Acute effect of inhaled bradykinin on tracheobronchial clearance in normal humans.

R Polosa1, A Hasani, D Pavia, J E Agnew, C K Lai, S W Clarke, S T Holgate.   

Abstract

BACKGROUND: Bradykinin, a nonapeptide that contributes as a mediator to the pathogenesis of asthma, may affect lung mucociliary clearance, as it has been shown to be a potent secretagogue in canine airways and in human nasal mucosa in vivo. To evaluate this possibility the effect of inhaled bradykinin on mucociliary clearance has been studied in 10 healthy volunteers.
METHODS: Subjects attended the laboratory on two occasions to take part in tracheobronchial clearance studies using a non-invasive radioisotopic technique. Inhalation of radioaerosol was followed 30 minutes later by inhalation of either bradykinin (8 mg/ml) or vehicle placebo in a randomised, double blind fashion. After each inhalation the number of coughs was recorded. Whole lung radioactivity was measured every half hour for six hours with two collimated scintillation counters, and a tracheobronchial clearance curve was plotted for each subject on each occasion.
RESULTS: Mucociliary clearance, expressed as the area under the tracheobronchial radioaerosol retention curve calculated for the first six hours (AUC0-6h), was greater in nine out of 10 subjects after inhalation of bradykinin than after placebo. The median values (range) for AUC0-6h were significantly reduced from 126% (78-232%)/h with placebo to 87% (51-133%)/h with bradykinin.
CONCLUSION: It is concluded that acute exposure to inhaled bradykinin accelerates tracheobronchial clearance in normal human airways.

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Year:  1992        PMID: 1465754      PMCID: PMC464107          DOI: 10.1136/thx.47.11.952

Source DB:  PubMed          Journal:  Thorax        ISSN: 0040-6376            Impact factor:   9.139


  36 in total

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Authors:  H Chai; R S Farr; L A Froehlich; D A Mathison; J A McLean; R R Rosenthal; A L Sheffer; S L Spector; R G Townley
Journal:  J Allergy Clin Immunol       Date:  1975-10       Impact factor: 10.793

2.  [Mucociliary transport disturbance after an asthmatic attack].

Authors:  K Kurashima; H Ogawa; T Ohka; M Fujimura; T Matsuda
Journal:  Arerugi       Date:  1990-07

3.  Immediate and late inflammatory responses to ragweed antigen challenge of the peripheral airways in allergic asthmatics. Cellular, mediator, and permeability changes.

Authors:  M C Liu; W C Hubbard; D Proud; B A Stealey; S J Galli; A Kagey-Sobotka; E R Bleecker; L M Lichtenstein
Journal:  Am Rev Respir Dis       Date:  1991-07

4.  Comparative airway response to inhaled bradykinin, kallidin, and [des-Arg9]bradykinin in normal and asthmatic subjects.

Authors:  R Polosa; S T Holgate
Journal:  Am Rev Respir Dis       Date:  1990-12

5.  Bradykinin and respiratory mucous membranes. Analysis of bradykinin binding site distribution and secretory responses in vitro and in vivo.

Authors:  J N Baraniuk; J D Lundgren; H Mizoguchi; D Peden; A Gawin; M Merida; J H Shelhamer; M A Kaliner
Journal:  Am Rev Respir Dis       Date:  1990-03

6.  Mucociliary transport in allergic patients with antigen-induced bronchospasm.

Authors:  R J Mezey; M A Cohn; R J Fernandez; A J Januszkiewicz; A Wanner
Journal:  Am Rev Respir Dis       Date:  1978-10

7.  Neurogenic inflammation, vascular permeability, and mast cells.

Authors:  M L Kowalski; M A Kaliner
Journal:  J Immunol       Date:  1988-06-01       Impact factor: 5.422

8.  Nasal effects of bradykinin and capsaicin: influence on plasma protein leakage and role of sensory neurons.

Authors:  K Rajakulasingam; R Polosa; L C Lau; M K Church; S T Holgate; P H Howarth
Journal:  J Appl Physiol (1985)       Date:  1992-04

9.  Regulatory pathways for the stimulation of canine tracheal ciliary beat frequency by bradykinin.

Authors:  L B Wong; I F Miller; D B Yeates
Journal:  J Physiol       Date:  1990-03       Impact factor: 5.182

10.  Contribution of histamine and prostanoids to bronchoconstriction provoked by inhaled bradykinin in atopic asthma.

Authors:  R Polosa; G D Phillips; C K Lai; S T Holgate
Journal:  Allergy       Date:  1990-04       Impact factor: 13.146

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Journal:  Sci Rep       Date:  2019-10-10       Impact factor: 4.379

2.  Pathogenicity & virulence of Mycoplasma hyopneumoniae.

Authors:  Fernanda M A Leal Zimmer; Jéssica Andrade Paes; Arnaldo Zaha; Henrique Bunselmeyer Ferreira
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