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The role of zinc in the endocrine system
Pakistan Journal of Pharmaceutical Sciences Cilt 32 ss. 231-239
Scopus Toplam 126 atıf
Zinc is essential in the regulation of a variety of physiological and biochemical events in the organism. It plays a critical role in maintaining the cell membrane integrity, protein-carbohydrate-lipid metabolism, immune system, wound injury and in the regulation of a number of other biological processes associated with normal growth and development. Physiological and biochemical levels of many hormones are affected by zinc metabolism. Therefore, growth impairment, hypogonadism, and some endocrine diseases are associated with the deficiency of zinc. These effects of zinc are considered versatile. Zinc increases the synthesis of the growth hormone and its number of receptors; thus, it is an important mediator in the binding of this hormone to its receptor. Found in a large quantity in the pancreas tissue, zinc has a part in the regulation of the effect of insulin. Zinc is involved to much more thyroid hormone metabolism such as hormone synthesis, receptor activity, conversion of T4 to T3, and production of carrier proteins. The low levels of zinc and high levels of leptin in obese individuals point to a critical relationship between zinc and leptin. Zinc is related to enzyme activity to melatonin synthesis. Melatonin has regulatory activity for zinc absorption from gastrointestinal system. Zinc particularly affects the conversion of testosterone to dihydrotestosterone, as 5α-reductase that is involved in this conversion is a zinc-dependent enzyme. In consideration of these relations, zinc is accepted to play critical roles in the endocrine system. The aim of the current review is to draw attention to the effects of zinc on the endocrine system.
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The Effect of Vitamin E Supplementation on Brain Tissue Element Levels in Epileptic Rats
Archives Italiennes De Biologie Cilt 160 ss. 44-55
Scopus Havuzumuzda Open Access 3 atıf almış
The aim of this study was to investigate how the application of vitamin E affected the levels of chemical elements in the brain tissues of epilepsy-induced rats. 40 adult Wistar male rats were separated into 4 equal groups: Group 1: control, Group 2: vitamin E; Group 3: penicillin to induce epileptic form activity and Group 4: penicillin + vitamin E. After three months of treatment, an Atomic Absorption Spectrophotometer was used to analyze the presence of the elements in brain tissue sections (brain, brainstem, and cerebellum) of the decapitated animals. The levels of magnesium in the groups that received vitamin E (G2 and 4) were significantly higher than in the control group (G1) and the first epilepsy group (G3) (p<0.05). Chrome and zinc levels in brain, brainstem, and cerebellum tissue of the two epilepsy groups (G3–4) decreased significantly compared to the control group (G1) and the vitamin E group (G2) (p<0.05). The levels of copper in the brainstem and lead in the cerebellum of the first epilepsy group (G3) were higher than in all other groups (p<0.05). The results showed that the application of vitamin E in experimental epilepsy may have a limited effect on element metabolism in brain tissue. A decline in zinc levels in the brain, brainstem and cerebellum tissues in epilepsy groups constitutes another result of our study. This should be examined further to determine whether decreased levels of zinc play a role in epilepsy pathogenesis.
Atıf Yapan Makale Bilgileri
Kurumlar (3)
Bursa Uludağ Üniversitesi Bursa, Turkey
Ondokuz Mayis University, Medical School Samsun, Turkey
Selçuk Tip Fakültesi Konya, Turkey