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Archives of Physiology and Biochemistry
The Journal of Metabolic Diseases
Volume 126, 2020 - Issue 3
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Original Articles

Arecoline plays dual role on adrenal function and glucose-glycogen homeostasis under thermal stress in mice

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Pages 214-224 | Received 28 Jun 2018, Accepted 02 Aug 2018, Published online: 13 Oct 2018
 

Abstract

Arecoline has biomedical importance, but it has untoward side effects on endocrine functions. The aim is to investigate its role on adrenal activity under thermal stress by ultrastructural and hormonal parameters in mice. Cold (4 °C) or heat (37 °C) stress, or arecoline (10 mg/kg body wt), each for 7 days in cold or heat stress stimulated adrenocortical activity ultrastructurally with an elevation of corticosterone level. Adrenomedullary activity was suppressed in cold stress with depletion of catecholamine levels. In heat stress, adrenomedullary activity was stimulated ultrastructurally with an elevation of catecholamine levels. Arecoline treatment alone, or in cold or heat stress suppressed adrenomedullary activity, judged by ultrastructural and hormonal parameters. Arecoline treatment caused hypoglycemia with an elevation of glycogen level, but cold or heat stress, or arecoline treatment in thermal stress caused hyperglycemia, with a fall in glycogen profile. Thus, arecoline in thermal stress plays a dual role on adrenal function and glucose-glycogen homeostasis in mice.

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Funding

This work was supported by the Emeritus Fellowship Grant (No. F(0).6–6/2003/SA-II) of the University Grants Commission, Govt. of India, New Delhi, awarded to Professor B.R. Maiti of the Department of Zoology, University of Calcutta

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