Characterization of Histamine Release from the Rat Hypothalamus as Measured by In Vivo Microdialysis
- 1 March 1991
- journal article
- Published by Wiley in Journal of Neurochemistry
- Vol. 56 (3) , 769-774
- https://doi.org/10.1111/j.1471-4159.1991.tb01990.x
Abstract
The release of endogenous histamine (HA) from the hypothalamus of anesthetized rats was measured by in vivo microdialysis coupled with HPLC with fluorescence detection. Freshly prepared Ringer's solution was perfused at a rate of 1 μl/min immediately after insertion of a dialysis probe into the medial hypothalamus, and brain perfusates were collected every 30 min into microtubes containing 0.2 M perchloric acid. The basal HA output was almost constant between 30 min and 7 h after the start of perfusion, with the mean value being 7.1 pg/30 min. Thus, the extracellular HA concentration was assumed to be 7.8 nM, by a calculation from in vitro recovery through the dialysis membrane. Perfusion with a high K+ (100 mM)-containing medium increased the HA output by 170% in the presence of Ca2+. Systemic administration of either thioperamide (5 mg/kg, i.p.), a selective H3 receptor antagonist, or metoprine (10 mg/kg, i.p.), an inhibitor of HA-N-methyltransferase, caused an approximately twofold increase in the HA output 30–60 min after treatment. The combined treatment with thioperamide and metoprine produced a marked increase (650%) in the HA output. The HA output decreased by ∼70% 4–5 h after treatment with α-fluoromethylhistidine (α-FMH; 100 mg/kg, i.p.), an inhibitor of histidine decarboxylase. Furthermore, the effect of combined treatment with thioperamide and metoprine was no longer observed in α-FMH-treated rats. These results suggest that both HA-N-methyltransferase and H3 autoreceptors are involved in maintaining a constant level of extracellular HA and that their blockade effectively results in a higher activity level of the endogenous histaminergic system in the CNS.Keywords
This publication has 40 references indexed in Scilit:
- tele‐Methylhistamine Levels and Histamine Turnover in Nuclei of the Rat Hypothalamus and AmygdalaJournal of Neurochemistry, 1989
- Histamine turnover in the rat hypothalamic nuclei estimated from .ALPHA.-fluoromethylhistidine-induced histamine decrease.The Japanese Journal of Pharmacology, 1989
- Scope and limitations of in vivo brain dialysis: A comparison of its application to various neurotransmitter systemsLife Sciences, 1987
- Neuronal histamine inhibits methamphetamine-induced locomotor hyperactivity in miceNeuroscience Letters, 1984
- Distribution of the histaminergic neuron system in the central nervous system of rats; a fluorescent immunohistochemical analysis with histidine decar☐ylase as a markerBrain Research, 1984
- Regional differences in the turnover of neuronal histamine in the rat brainLife Sciences, 1984
- Auto-inhibition of brain histamine release mediated by a novel class (H3) of histamine receptorNature, 1983
- EFFECTS OF HISTAMINE IMPLANTS IN SEVERAL BRAIN REGIONS ON THE RELEASE OF PROLACTIN IN CONSCIOUS ADULT MALE RATSJournal of Endocrinology, 1981
- Histamine as an extremely potent releaser of vasopressin in the ratCellular and Molecular Life Sciences, 1976
- THE RELEASE OF HISTAMINE FROM TISSUE SLICES OF RAT HYPOTHALAMUS1Journal of Neurochemistry, 1973