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Neurochemical Abnormalities in Brains of Renal Failure Patients Treated by Repeated Hemodialysis
Authors:Thomas L. Perry  Voon Wee Yong  Stephen J. Kish  Masatoshi Ito  James G. Foulks  William J. Godolphin  Vincent P. Sweeney
Affiliation:Department of Pharmacology and Therapeutics, The University of British Columbia, Vancouver, Toronto, Canada;Department of Pathology, The University of British Columbia, Toronto, Canada;Department of Medicine, The University of British Columbia, Toronto, Canada;Clarke Institute of Psychiatry, Toronto, Canada
Abstract:We examined autopsied brain from 10 patients with end-stage renal failure who had undergone repeated hemodialysis. Eight had classic symptoms, and two had suggestive symptoms of dialysis encephalopathy. Findings were compared with those in autopsied brain from control adults who had never been hemodialyzed. Mean gamma-aminobutyric acid (GABA) contents were significantly reduced in frontal and occipital cortex, cerebellar cortex, dentate nucleus, caudate nucleus, and medial-dorsal thalamus of the hemodialyzed patients, the reduction being greater than 40% in cerebral cortex and thalamus. Choline acetyltransferase activity was reduced by 25-35% in three cortical regions in the hemodialyzed patients. These two abnormalities were observed in the brain of each hemodialyzed patient, regardless of whether or not the patient died with unequivocal dialysis encephalopathy. Pyridoxal phosphate contents were substantially reduced in brains of the hemodialyzed patients, but metabolites of noradrenaline, 3,4-dihydroxyphenylethylamine (dopamine), and 5-hydroxytryptamine (serotonin) were present in normal amounts. Aluminum levels were abnormally high in frontal cortical gray matter in the hemodialyzed patients. Although this study does not clarify the role played by aluminum toxicity in the pathogenesis of dialysis encephalopathy, the abnormalities we found suggest the need for further neurochemical investigations in this disorder.
Keywords:Dialysis encephalopathy    Hemodialysis    Brain aluminum    γ-Aminobutyric acid    Choline acetyltransferase    Pyridoxal phosphate
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