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Effect of propylthiouracil‐induced hypothyroidism on membranes of adult rat brain
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AbstractThe effect of hypothyroidism on the lipid composition of myelin and synaptosomes isolated from adult rat brain was investigated. The animals were made hypothyroid by adding 0.05% propyl‐2‐thiouracil to their drinking water for four weeks. This pathological state resulted in a significant increase in the relative percentage of choline glycerophospholipids in synaptosomes with a concomitant decrease in ethanolamine glycerophospholipids as compared to controls. In myelin, hypothyroidism significantly influenced only the relative percentage of sulfatides. The effect of the hypothyroid state on mature brain was also reflected in changes in the membrane fatty acid composition. Myelin and synaptosomes showed an increase in arachidonic (20∶4) and eicosatrienoic (20∶3) acids and an increase in the fatty acid unsaturation index. Furthermore, the 20∶4/20∶3 and 20∶3/18∶2 ratios were lower and higher, respectively, in treated animals. The data indicate that hypothyroidism affects the lipid composition of synaptosomes and myelin even though the effects were less pronounced in myelin. The lipid changes observed in hypothyroidism may be of physiological significance, as it is well known that lipid composition modulates various membrane‐bound enzymes, transporters and receptors.
Title: Effect of propylthiouracil‐induced hypothyroidism on membranes of adult rat brain
Description:
AbstractThe effect of hypothyroidism on the lipid composition of myelin and synaptosomes isolated from adult rat brain was investigated.
The animals were made hypothyroid by adding 0.
05% propyl‐2‐thiouracil to their drinking water for four weeks.
This pathological state resulted in a significant increase in the relative percentage of choline glycerophospholipids in synaptosomes with a concomitant decrease in ethanolamine glycerophospholipids as compared to controls.
In myelin, hypothyroidism significantly influenced only the relative percentage of sulfatides.
The effect of the hypothyroid state on mature brain was also reflected in changes in the membrane fatty acid composition.
Myelin and synaptosomes showed an increase in arachidonic (20∶4) and eicosatrienoic (20∶3) acids and an increase in the fatty acid unsaturation index.
Furthermore, the 20∶4/20∶3 and 20∶3/18∶2 ratios were lower and higher, respectively, in treated animals.
The data indicate that hypothyroidism affects the lipid composition of synaptosomes and myelin even though the effects were less pronounced in myelin.
The lipid changes observed in hypothyroidism may be of physiological significance, as it is well known that lipid composition modulates various membrane‐bound enzymes, transporters and receptors.
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