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B P Avner

Publications and source records attributed to B P Avner.

25 records · Page 2Linked to original sources

In vivo desensitization to beta receptor mediated bronchodilator drugs in the rat: decreased beta receptor affinity.

When tracheas were isolated from rats pretreated with isoproterenol (ISO) or terbutaline, they were found to be considerably less sensitive to the relaxant action of ISO than tracheas which were isolated from saline-pretreated rats. The dissociation constant (Kb) for the propranolol-beta receptor complex was determined to be up to 400-fold larger in the tracheas isolated from beta agonist-pretreated rats (1.1 +/- 0.1 X 10(-6) M) than in tracheas isolated from saline-pretreated rats (3.0 +/- 0.3 X 10(-9) M). The longer the duration of pretreatment and the higher the dose of ISO or terbutaline used, the more attenuated was the response of tracheal smooth muscle to ISO, and the greater was the Kb for propranolol-beta receptor complex. These findings provide strong evidence which shows that desensitization, which occurs as a result of in vivo pretreatment with beta agonist drugs, results from pronounced reduction in this affinity of the beta receptors for beta agonist drugs. We observed that the in vivo treatment of rats with aminophylline (Amino), a phosphodiesterase inhibitor, did not affect the responsiveness of their isolated tracheas to either ISO or Amino. In addition, the responsiveness to Amino was determined in tracheal preparations taken from rats desensitized to ISO in vivo. The response to ISO was attenuated and the Kb for the propranolol-beta receptor complex was elevated (1.1 +/- 0.1 X 10(-6) M); however, Amino was half as effective in these tissues as in the saline control tissues. It is postulated, therefore, that the intracellular enzymes controlling the levels of cyclic adenosine monophosphate may be affected by the ISO-induced desensitization process, but are not affected by pretreatment with Amino.

Adrenergic beta-Agonists↗

Mechanism of isoproterenol-induced desensitization of tracheal smooth muscle.

Isolated rat tracheal smooth muscle became considerably less sensitive to the relaxing action of isoproterenol after being incubated with 5 x 10(-6) M isoproterenol for 30 minutes. Pretreatment of the tissue with propranolol, but not with methylprednisolone, clearly reduced the isoproterenol-induced desensitization. This suggested that propranolol by occupying the beta adrenergic receptor prevented isoproterenol from binding to this receptor, thereby preventing the isoproterenol-induced desensitization. Furthermore, an isoproterenol-desensitized tracheal preparation exhibited a diminished sensitivity to other beta agonists, but not to the spasmolytic actions of D600, hydralazine, sodium nitrite and aminophylline. These results suggested that the beta receptor is specifically involved in the desensitization induced by isoproterenol. A highly desensitized tissue could always be made to undergo complete relaxation by exposing it to sufficiently high concentrations of isoproterenol. Thus, there appeared to be no positive indication of a very large change in the apparent intrinsic activity of the isoproterenol in the desensitized tissue. However, the dissociation constant for the propranolol-beta receptor complex in the desensitized tissue was shown to be 180-fold larger than that in the normal tissue. These findings provide strong evidence that one demonstrable cellular change that occurs in the desensitized tissue is a pronounced reduction in the affinity of the beta receptors for isoproterenol.

Adrenergic beta-Agonists↗