Scinovex
articleTop 1% cited

Anatomical and functional demonstration of a multisynaptic suprachiasmatic nucleus adrenal (cortex) pathway

European Journal of Neuroscience · 1999 · Vol. 11(5) · pp. 1535–1544
Ruud M. BuijsJoke WortelJoop J. van HeerikhuizeMatthijs G.P. FeenstraGert J. Ter HorstHerms J. RomijnAndries Kalsbeek

Abstract

In view of mounting evidence that the suprachiasmatic nucleus (SCN) is directly involved in the setting of sensitivity of the adrenal cortex to ACTH, the present study investigated possible anatomical and functional connections between SCN and adrenal. Transneuronal virus tracing from the adrenal revealed first order labelling in neurons in the intermedio-lateral column of the spinal cord that were shown to receive an input from oxytocin fibres and subsequently second-order labelling in neurons of the autonomic division of the paraventricular nucleus. The latter neurons were shown to receive an input from vasopressin or vasoactive intestinal peptide (VIP) containing SCN efferents. The true character of this SCN input to second-order neurons was also demonstrated by the fact that third-order labelling was present within the SCN, vasopressin or VIP neurons. The functional presence of the SCN-adrenal connection was demonstrated by a light-induced fast decrease in plasma corticosterone that could not be attributed to a decrease in ACTH. Using intact and SCN-lesioned animals, the immediate decrease in plasma corticosterone was only observed in intact animals and only at the beginning of the dark period. This fast decrease of corticosterone was accompanied by constant basal levels of blood adrenaline and noradrenaline, and is proposed to be due to a direct inhibition of the neuronal output to the adrenal cortex by light-mediated activation of SCN neurons. As a consequence, it is proposed that the SCN utilizes neuronal pathways to spread its time of the day message, not only to the pineal, but also to other organs, including the adrenal, utilizing the autonomic nervous system.

Neuroendocrine regulation and behaviorCircadian rhythm and melatoninStress Responses and CortisolSuprachiasmatic nucleusVasoactive intestinal peptideInternal medicineEndocrinologyVasopressinCorticosteroneNeuroscienceHypothalamusNucleusAdrenal cortex

MeSH terms

Adrenal CortexAdrenocorticotropic HormoneAnimalsCircadian RhythmCorticosteroneDarknessDenervationEpinephrineLightingMaleMelatoninNeural PathwaysNorepinephrineParaventricular Hypothalamic NucleusPhotic Stimulation
Citations
483
FWCI
30.96
field-weighted impact
References
54
Percentile
100%
vs. same field & year
Citations per year
Cited by
Central and Peripheral Circadian Clocks in Mammals
Annual Review of Neuroscience · 2012 · 2,200 citations
Circadian rhythms in the hypothalamo–pituitary–adrenal (HPA) axis
Molecular and Cellular Endocrinology · 2011 · 364 citations
Circadian system, sleep and endocrinology
Molecular and Cellular Endocrinology · 2011 · 386 citations
Glucocorticoids and the circadian clock
Journal of Endocrinology · 2008 · 481 citations
References
Intra- and extrahypothalamic vasopressin and oxytocin pathways in the rat
Cell and Tissue Research · 1978 · 1,028 citations
A retinohypothalamic projection in the rat
The Journal of Comparative Neurology · 1972 · 1,277 citations
Intra- and extrahypothalamic vasopressin and oxytocin pathways in the rat
Cell and Tissue Research · 1978 · 823 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.