Published February 1988 | Version v1
Journal article

Histological localization of methylmercury in mouse brain and kidney by emulsion autoradiography of 203Hg

  • 1. Univ. of Rochester School of Medicine and Dentistry, NY (USA)

Description

Some investigators have abandoned the use of 203Hg emulsion autoradiography in favor of chemical methods of microscopic localization of mercury. However, recent studies indicate that the latter methods identify only inorganic mercury, or some product of inorganic mercury, making them of little or no value for studies of methylmercury toxicity. Doubts about the use of 203Hg for microscopic localization arose because of the high maximum energy of its emissions and the concern that its latent images might be confounded with silver grains produced by chemical reactions between tissue Hg and the silver supplied by photographic emulsions. Examination of the spectrum of emissions from 203Hg demonstrates that its maximum energy emissions are rare. The mean energy of 203Hg emissions is in the 50-ke V range and the modal emissions are close to 0 ke V, indicating sufficient low energy emissions for autoradiography. In preliminary experiments, methylmercury content of mouse brain was shown to be stable through the steps of tissue processing for plastic sections. A direct comparison of autoradiographic grain counts from tissue treated with cold or hot methylmercury demonstrated that no grains above background were produced in the absence of nuclear emissions--only hot samples affected emulsion. In the kidneys of mice killed 24 hr after dosing, grains were most numerous over cortical tubules and significantly less numerous over glomeruli. In the cerebellum, the molecular layer was significantly more heavily labeled than the granular layer. The number of grains was greatly increased in every region by increasing the specific activity of the methylmercury dosing solution while holding the dose of methylmercury constant

Additional details

Publishing Information

Journal Title
Toxicol. Appl. Pharmacol.
Journal Volume
92
Journal Issue
2
Series
Toxicol. Appl. Pharmacol.
Journal Page Range
224-234
ISSN
0041-008X
CODEN
TXAPA