Bilateral lesions of suprachiasmatic nuclei affect circadian rhythms in [3H]‐thymidine incorporation into deoxyribonucleic acid in mouse intestinal tract, mitotic index of corneal epithelium, and serum corticosterone
- 1 March 1983
- journal article
- research article
- Published by Wiley in The Anatomical Record
- Vol. 205 (3) , 239-249
- https://doi.org/10.1002/ar.1092050302
Abstract
Investigations into the role of the suprachiasmatic nuclei (SCN) in the coordination of circadian rhythms have presented differing results. Several reports have shown that ablation of the suprachiasmatic nuclei (SCNA) alters the phase and amplitude of rhythms but does not abolish them. The present study investigates the effect of SCNA on the rhythms in cell proliferation in various regions of the intestinal tract as measured by the incorporation of [3H]‐thymidine into deoxyribonucleic acid, in the mitotic activity of the corneal epithelium, and in serum corticosterone levels. The study involved mice with verified lesions of the SCN (six to 13 mice per time point) and control groups of both sham‐operated and unoperated mice (seven of each per time point). The mice were killed in groups that represented seven time points over a single 24 hr span (3 hr intervals with the 0800 hr sampled both at start and end of the series). The tissues examined were the tongue, esophagus, gastric stomach, and colon for DNA synthesis, the corneal epithelium for mitotic index, and blood serum for corticosterone level. The most consistent result of SCNA was a phase advance in the rhythms in cell proliferation in the tongue, esophagus, gastric stomach, colon, and corneal epithelium. A reduction in rhythm amplitude occurred in the tongue, esophagus, and corneal epithelium; however, there was an amplitude increase for the stomach, colon, and serum corticosterone. The mesor (rhythm‐adjusted mean) was increased by SCNA in all tissues except the corneal epithelium. These findings further support the role of the suprachiasmatic nuclear area in the control of rhythms in cell proliferation and corticosterone production, by acting as a “phaseresetter” and as a modulator of rhythm amplitude.This publication has 19 references indexed in Scilit:
- Loss of a circadian adrenal corticosterone rhythm following suprachiasmatic lesions in the ratPublished by Elsevier ,2003
- Suprachiasmatic nucleus and circadian core temperature rhythm in the ratJournal of Thermal Biology, 1980
- Amplitude-reduction and acrophase-advance of circadian mitotic rhythm in corneal epithelium of mice with bilaterally lesioned suprachiasmatic nucleiThe Anatomical Record, 1980
- The Physiology of Circadian PacemakersAnnual Review of Physiology, 1978
- Loss of circadian rhythmicity in body temperature and locomotor activity following suprachiasmatic lesions in the ratJournal of Interdisiplinary Cycle Research, 1977
- Suprachiasmatic Nuclear Lesions Do Not Abolish Food-Shifted Circadian Adrenal and Temperature RhythmicityScience, 1977
- Induction of Persistent Estrus by Electrolytic Lesions Placed Neonatally in the Hypothalamus of the Female RatEndocrinologia Japonica, 1977
- Loss of circadian rhythm in sleep-wakefulness cycle in the rat by suprachiasmatic nucleus lesionsBrain Research, 1975
- Septal efferents in the catExperimental Neurology, 1966
- A rapid method of intracranial electrode localization using unstained frozen sectionsElectroencephalography and Clinical Neurophysiology, 1964