Selenite influence on calcium metabolism of the rat lens

Calcium is an important factor in many cellular activities and in the maintenance of structural integrity of membranes. Calcium accumulation in the rat lens above the normal physiological range (0.11 µmol/g wet weight) has been associated with formation of cataracts. Selenite is known to influence t...

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Main Author: Batra, Renu
Other Authors: Biochemistry and Nutrition
Format: Others
Language:en_US
Published: Virginia Polytechnic Institute and State University 2017
Subjects:
Online Access:http://hdl.handle.net/10919/76409
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spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-764092020-09-29T05:41:00Z Selenite influence on calcium metabolism of the rat lens Batra, Renu Biochemistry and Nutrition LD5655.V855 1984.B393 Calcium -- Metabolism Cataract Calcium is an important factor in many cellular activities and in the maintenance of structural integrity of membranes. Calcium accumulation in the rat lens above the normal physiological range (0.11 µmol/g wet weight) has been associated with formation of cataracts. Selenite is known to influence the histological characteristics of the lens and also alter important biochemical functions. In the selenite induced cataract calcium levels increase as much as 5-fold above normal, the increase preceding appearance of mature opacity by 24 hours. Calcium in the lens rapidly exchanges with labelled calcium in the incubation medium and. establishes equilibrium within 30 minutes. Selenite, accumulated in lens in vivo, causes a 5-6 fold increase in lens calcium over controls during a 24 hour incubation in modified Hank's medium at 37°C. In vitro lmM selenite in the culture medium results in a 15-fold increase in lens calcium, a 17-fold increase in sodium/potassium ratio, and a 60% increase in lens hydration. Efflux of calcium from in vivo and in vitro selenite-treated lens is not impaired. The lens retains the capability to transport 3-4 fold greater calcium over controls from lenses which have accumulated excess calcium in the presence of selenite. In vivo selenite treatment results in a 2.5-fold increase only of extracellular water. In in vitro selenite-treated lenses, however, there is a 2.6-fold increase in extracellular water and a 1.8-fold increase of intracellular water. Selenite treatment of the lenses in vivo and in vitro causes a greater influx of calcium into the lens. Calcium accumulation may act in a nonspecific manner altering lens biochemical functions, membranes and structure, causing development of relationships between selenite induced lens fiber opacities. cataract and cell the associated changes in lens calcium content further validates this model for studying the biochemical changes which impact cataract formation. Master of Science 2017-03-10T21:43:26Z 2017-03-10T21:43:26Z 1984 Thesis Text http://hdl.handle.net/10919/76409 en_US OCLC# 11541690 In Copyright http://rightsstatements.org/vocab/InC/1.0/ ix, 99 leaves application/pdf application/pdf Virginia Polytechnic Institute and State University
collection NDLTD
language en_US
format Others
sources NDLTD
topic LD5655.V855 1984.B393
Calcium -- Metabolism
Cataract
spellingShingle LD5655.V855 1984.B393
Calcium -- Metabolism
Cataract
Batra, Renu
Selenite influence on calcium metabolism of the rat lens
description Calcium is an important factor in many cellular activities and in the maintenance of structural integrity of membranes. Calcium accumulation in the rat lens above the normal physiological range (0.11 µmol/g wet weight) has been associated with formation of cataracts. Selenite is known to influence the histological characteristics of the lens and also alter important biochemical functions. In the selenite induced cataract calcium levels increase as much as 5-fold above normal, the increase preceding appearance of mature opacity by 24 hours. Calcium in the lens rapidly exchanges with labelled calcium in the incubation medium and. establishes equilibrium within 30 minutes. Selenite, accumulated in lens in vivo, causes a 5-6 fold increase in lens calcium over controls during a 24 hour incubation in modified Hank's medium at 37°C. In vitro lmM selenite in the culture medium results in a 15-fold increase in lens calcium, a 17-fold increase in sodium/potassium ratio, and a 60% increase in lens hydration. Efflux of calcium from in vivo and in vitro selenite-treated lens is not impaired. The lens retains the capability to transport 3-4 fold greater calcium over controls from lenses which have accumulated excess calcium in the presence of selenite. In vivo selenite treatment results in a 2.5-fold increase only of extracellular water. In in vitro selenite-treated lenses, however, there is a 2.6-fold increase in extracellular water and a 1.8-fold increase of intracellular water. Selenite treatment of the lenses in vivo and in vitro causes a greater influx of calcium into the lens. Calcium accumulation may act in a nonspecific manner altering lens biochemical functions, membranes and structure, causing development of relationships between selenite induced lens fiber opacities. cataract and cell the associated changes in lens calcium content further validates this model for studying the biochemical changes which impact cataract formation. === Master of Science
author2 Biochemistry and Nutrition
author_facet Biochemistry and Nutrition
Batra, Renu
author Batra, Renu
author_sort Batra, Renu
title Selenite influence on calcium metabolism of the rat lens
title_short Selenite influence on calcium metabolism of the rat lens
title_full Selenite influence on calcium metabolism of the rat lens
title_fullStr Selenite influence on calcium metabolism of the rat lens
title_full_unstemmed Selenite influence on calcium metabolism of the rat lens
title_sort selenite influence on calcium metabolism of the rat lens
publisher Virginia Polytechnic Institute and State University
publishDate 2017
url http://hdl.handle.net/10919/76409
work_keys_str_mv AT batrarenu seleniteinfluenceoncalciummetabolismoftheratlens
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