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Updated: Aug 11, 2026

Spectral Confocal Imaging of Fluorescently tagged Nicotinic Receptors in Knock-in Mice with Chronic Nicotine Administration
Published on: February 10, 2012
Distribution of 3H-nicotine in rat tissues under the influence of simulated microgravity
P Chowdhury1, M E Soulsby, J N Pasley
1Department of Physiology and Biophysics, University of Arkansas for Medical Sciences, Little Rock 72205, USA. Chowdhury Parimal@exchange.uams.edu
Abstract:
Rat tail suspension offers a useful model to reproduce physiologic responses to weightlessness. The present study was conducted in the head-down-tilt (HDT) rat model to assess changes in metabolism of body tissues employing 3H-nicotine. Twelve male rats were used in the study. Half of the rats were tail suspended at 30 degrees for two weeks on a 12/12 light/dark cycle. During this period, body weight, food and fluid intakes were measured. At term, animals were anesthetized and injected i.v. with a solution containing 4 microcuries of nicotine. After 90 min the animals were sacrificed, exsanguinated and tissues (brain, blood, trachea, salivary gland, lung, heart, esophagus, spleen, kidneys and testes) were harvested. The distribution of 3H-nicotine per gram of each tissue was determined and calculated as percent of total injected radioactivity. Final body weights of suspended animals were significantly (P < 0.05) lower than those of controls (309 +/- 21 vs 350 +/- 11 g). 3H-Nicotine was retained in greatest amounts by the kidneys, followed in order by salivary glands, spleen, and gastrointestinal tissues. Compared to non-suspended control, the tissue retention of nicotine in suspended animals was decreased in the following tissues: esophagus (25%), aorta (25%), fundus (25%), trachea (22%), adrenals (18%), spleen (17%), and pancreas (12%). The decreased retention of nicotine in tissues from suspended animals may be indicative of the fluid shifts and changes in blood flow to those tissue beds. The lack of differences in nicotine retention in liver and kidney between control and suspended groups may implicate a normal metabolic function of these organs even under simulated weightlessness.

