A histochemical study of cerebral cortical vessels and ganglionic vessels of the caudatoputamen in aging normotensive rats.
- 28 February 1985
- journal article
- research article
- Published by Wolters Kluwer Health in Stroke
- Vol. 16 (2), 285-292
- https://doi.org/10.1161/01.str.16.2.285
Abstract
The goal was to describe the metabolic profile of ganglionic and cortical arteries and arterioles in aging normotensive male rats. Five enzymes indicative of key metabolic pathways in the vessel walls were semiquantitatively evaluated using bright-field histochemical microscopy. Lactate dehydrogenase showed significant reactivity which increased with vessel diameter in cortical and ganglionic vessels in all age groups tested. Succinate dehydrogenase and cytochrome oxidase showed little reactivity in both cortical and ganglionic vessels, suggesting a reduced role for aerobic metabolic pathways. Myosin ATPase reactivity was high in cortical and ganglionic vessels. Only this enzyme showed an increased reactivity that was correlated with the age and diameter of the vessel. Glucose-6-phosphate dehydrogenase reactivity was more pronounced in cortical than ganglionic vessels, suggesting that the hexose-monophosphate-shunt may be more active in the cortical vessels. There were no regional differences in enzyme reactivity throughout the caudatoputamen. In conclusion, both the cortical and ganglionic vessels are metabolically active, with significant anaerobic glycolysis, and reduced, but observable capacity for aerobic metabolism. The decreased myosin ATPase reactivity and the low level of glucose-6-phosphate dehydrogenase reactivity in the ganglionic arterioles of senescent rats may contribute to the susceptibility of these vessels to cerebrovascular accidents.This publication has 13 references indexed in Scilit:
- Ultrastructural observations on bifurcations in rat cerebral arteriesVirchows Archiv B Cell Pathology Including Molecular Pathology, 1980
- Differences in protein synthesized in vivo and in vitro by cells associated with the cerebral microvasculature. A protein synthesized in response to trauma?Neuroscience, 1980
- Age changes at cerebral artery bifurcations and the pathogenesis of berry aneurysmsJournal of the Neurological Sciences, 1980
- The myocardium and its vasculature: a histochemical comparison of the normal and chronically sympathectomized dog heartJournal of Molecular Histology, 1980
- Quantitative changes in regional cerebral blood flow of rats induced by alpha‐and beta‐adrenergic stimulantsActa Physiologica Scandinavica, 1979
- Aging and unusual catecholamine-containing structures in the mouse brainBrain Research, 1979
- A histochemical study of the microvasculature in the left and right cardiac ventricles of the dogThe Anatomical Record, 1978
- Metabolic profiles of canine cerebrovascular tree: a histochemical study.Stroke, 1978
- Electron Microscopic Observations on Human Intracranial ArteriesArchives of Neurology, 1967
- Functional Behaviour of Pial and Cortical Arteries in Conditions of Increased Metabolic Demand from the Cerebral CortexNature, 1967