Cortical Fluoro-Jade Staining and Blunted Adrenomedullary Response to Hypoglycemia after Noncoma Hypoglycemia in Rats
Open Access
- 1 December 2005
- journal article
- research article
- Published by SAGE Publications in Journal of Cerebral Blood Flow & Metabolism
- Vol. 25 (12) , 1645-1655
- https://doi.org/10.1038/sj.jcbfm.9600152
Abstract
Intensive insulin therapy in patients with type 1 diabetes mellitus reduces long-term complications; however, intensive therapy is also associated with a three-fold increase in hypoglycemic episodes. The present study in conscious rats characterizes the physiologic and neuropathologic consequences of a single episode of moderate hypoglycemia. In this model, intravenous insulin is used to reduce plasma glucose to 30 to 35 mg/dL for 75mins. This single hypoglycemic insult acutely induces hypoglycemia-associated autonomic failure (HAAF), with epinephrine responses to hypoglycemia reduced more than 36% from control. Neuropathology after this insult includes the appearance of dying cells, assessed with the marker Fluoro-jade B (FJ). After hypoglycemic insult, FJ+ cells were consistently seen in subdivisions of the medial prefrontal cortex, the orbital cortex, and the piriform cortex. There was a significant correlation between depth of hypoglycemia and number of FJ+ cells, suggesting that there is a critical threshold below which vulnerable cells begin to die. These data suggest that there is a population of cells that are vulnerable to moderate levels of hypoglycemia commonly experienced by patients with insulin-treated diabetes. These cells, which may be neurons, are primarily found in cortical regions implicated in visceral perception and autonomic control, raising the possibility that their loss contributes to clinically reported deficits in autonomic and perceptual responses to hypoglycemia.Keywords
This publication has 48 references indexed in Scilit:
- Fluoro-Jade B Stains Quiescent and Reactive Astrocytes in the Rodent Spinal CordJournal of Neurotrauma, 2003
- Neurodegeneration in the rat hippocampus and striatum after middle cerebral artery occlusionBrain Research, 2002
- In Vivo Measurements of Brain Glucose Transport Using the Reversible Michaelis–Menten Model and Simultaneous Measurements of Cerebral Blood Flow Changes during HypoglycemiaJournal of Cerebral Blood Flow & Metabolism, 2001
- Parasympathetic and sympathetic control of the pancreas: A role for the suprachiasmatic nucleus and other hypothalamic centers that are involved in the regulation of food intakeJournal of Comparative Neurology, 2001
- Hypoglycemia in the Diabetes Control and Complications TrialDiabetes, 1997
- Regional distribution and time-course of calpain activation following kainate-induced seizure activity in adult rat brainBrain Research, 1996
- Cerebral Blood Flow, Plasma Catecholamines, and Electroencephalogram During Hypoglycemia and Recovery After Glucose InfusionJournal of Neurosurgical Anesthesiology, 1994
- The Effect of Intensive Treatment of Diabetes on the Development and Progression of Long-Term Complications in Insulin-Dependent Diabetes MellitusNew England Journal of Medicine, 1993
- Cerebral blood flow during chronic hypoglycemia in the ratBrain Research, 1988
- The distribution of hypoglycemic brain damageActa Neuropathologica, 1984