» Articles » PMID: 2355220

Gallium-67 As a Potential Marker for Aluminium Transport in Rat Brain: Implications for Alzheimer's Disease

Overview
Journal J Neurochem
Specialties Chemistry
Neurology
Date 1990 Jul 1
PMID 2355220
Citations 7
Authors
Affiliations
Soon will be listed here.
Abstract

Evidence of a link between aluminium and Alzheimer's disease, parkinsonism-dementia of Guam, and dialysis encephalopathy raises questions regarding the role of this element in the pathogenesis of these conditions. Therefore, we have investigated the use of gallium-67 (67Ga) as a marker for brain uptake of aluminium. The binding of 67Ga to plasma proteins has been studied, and the blood-brain barrier permeability and autoradiographic distribution of this isotope in rat brain determined in vivo. The autoradiographic distribution of 125I-Fe-transferrin receptors in rat brain has also been determined in vitro. Results show that 67Ga was bound to plasma transferrin, entered the brain with a blood-brain barrier permeability of 2.48 x 10(-6) ml/min/g, and showed a marked regional distribution that was very similar to that of 125I-Fe-transferrin receptors. Our data suggest that the vulnerability of the hippocampus, amygdala, and cerebral cortex in conditions such as those mentioned above may be partly due to an increased uptake and deposition of aluminium in these regions by the iron transport system.

Citing Articles

A first-principles study on potential chelation agents and indicators of Alzheimer's disease.

Wang B, Luo X RSC Adv. 2022; 10(58):35574-35581.

PMID: 35515673 PMC: 9056942. DOI: 10.1039/d0ra06855a.


Production of a novel bioflocculant MNXY1 by Klebsiella pneumoniae strain NY1 and application in precipitation of cyanobacteria and municipal wastewater treatment.

Nie M, Yin X, Jia J, Wang Y, Liu S, Shen Q J Appl Microbiol. 2011; 111(3):547-58.

PMID: 21679283 PMC: 4385668. DOI: 10.1111/j.1365-2672.2011.05080.x.


Expression of the ubiquitin genes in brain of normal and Fe/Dextran injected rats.

Adamo A, Moreno M, Carrasco A, Pasquini J Neurochem Res. 1997; 22(4):345-50.

PMID: 9130243 DOI: 10.1023/a:1027335021812.


Uptake of 75-Selenium into the central nervous system of the rat.

Pullen R, Schofield M, Markham A, Lough J, Menton K Neurochem Res. 1995; 20(10):1141-6.

PMID: 8746798 DOI: 10.1007/BF00995376.


65zinc uptake from blood into brain and other tissues in the rat.

Pullen R, Franklin P, Hall G Neurochem Res. 1990; 15(10):1003-8.

PMID: 2077425 DOI: 10.1007/BF00965746.