Literature DB >> 170335

The role of cyclic AMP in the chemotactic responsiveness and spontaneous motility of rabbit peritoneal neutrophils. The inhibition of neutrophil movement and the elevation of cyclic AMP levels by catecholamines, prostaglandins, theophylline and cholera toxin.

I Rivkin, J Rosenblatt, E L Becker.   

Abstract

Agents known to affect intracellular levels of cyclic AMP in many diverse systems have been tested for their effect on the chemotaxis induced by Escherichia coli culture filtrates, spontaneous motility and cyclic AMP levels of rabbit peritoneal neutrophils. Prostaglandin E1 and A1 but not prostaglandin F2alpha increased neutrophil cyclic AMP levels and, correspondingly, only the former two prostaglandins inhibited chemotaxis. Nevertheless, a quantitative relationship between prostaglandin stimulation of cyclic AMP and inhibition of chemotaxis could not be found. Epinephrine, isoproterenol, and, to a much lesser extent, norepinephrine increased neutrophil cyclic AMP through beta adrenergic stimulation. Only epinephrine and isoproterenol inhibited chemotaxis, but the inhibition was variable and not related to the ability of these catecholamines to increase intracellular cyclic AMP. Cholera toxin increased neutrophil cyclic AMP after a 30-min lag period which paralled its inhibitory effect on chemotaxis and spontaneous motility. However, the effect on chemotaxis require 50 ng/ml of toxin whereas the effect on cyclic AMP was manifested at 2 ng/ml of toxin. Prior to 30-min preincubation there was no effect of even 1250 ng/ml of toxin on either cyclic AMP or chemotaxis. Choleragenoid prevented the effects of toxin on both cyclic AMP and chemotaxis. The bacterial chemotactic factor obtained from E. coli culture filtrates did not effect a measurable change in levels of neutrophil cyclic AMP. The data indicate that even though cyclic AMP is not, in the main sequence of events, triggering the chemotactic response, increases in neutrophil cyclic AMP may modulate the movement and thus the chemotactic responsiveness of the neutrophil.

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Year:  1975        PMID: 170335

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  54 in total

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5.  Interaction of polymorphonuclear neutrophils with Escherichia coli. Effect of enterotoxin on phagocytosis, killing, chemotaxis, and cyclic AMP.

Authors:  M J Bergman; R L Guerrant; F Murad; S H Richardson; D Weaver; G L Mandell
Journal:  J Clin Invest       Date:  1978-02       Impact factor: 14.808

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7.  Neutrophil aggregation and degranulation. Effect of arachidonic acid.

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8.  Measuring neutrophil speed and directionality during chemotaxis, directly from a droplet of whole blood.

Authors:  Anh N Hoang; Caroline N Jones; Laurie Dimisko; Bashar Hamza; Joseph Martel; Nikola Kojic; Daniel Irimia
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9.  Stimulus specificity of prostaglandin inhibition of rabbit polymorphonuclear leukocyte lysosomal enzyme release and superoxide anion production.

Authors:  J C Fantone; W A Marasco; L J Elgas; P A Ward
Journal:  Am J Pathol       Date:  1984-04       Impact factor: 4.307

10.  Aggregation of human polymorphonuclear leucocytes during phagocytosis of bacteria.

Authors:  P A Henricks; M E van der Tol; J Verhoef
Journal:  Immunology       Date:  1984-08       Impact factor: 7.397

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