CANLI
Yükleniyor Veriler getiriliyor…
/ Atıflar / Detay

Atıf Detayı

Kurum makalesi · Scopus üzerinden alınan atıf kaydı

Kurumun Atıf Alan Makalesi
Atıf Alan Yayın
Zinc Metabolism and Metallothioneins
Biological Trace Element Research Cilt 183 ss. 22-31
Scopus Toplam 186 atıf DOI
Among the trace elements, zinc is one of the most used elements in biological systems. Zinc is found in the structure of more than 2700 enzymes, including hydrolases, transferases, oxyreductases, ligases, isomerases, and lyases. Not surprisingly, it is present in almost all body cells. Preserving the stability and integrity of biological membranes and ion channels, zinc is also an intracellular regulator and provides structural support to proteins during molecular interactions. It acts as a structural element in nucleic acids or other gene-regulating proteins. Metallothioneins, the low molecular weight protein family rich in cysteine groups, are involved significantly in numerous physiological and pathological processes including particularly oxidative stress. A critical role of metallothioneins (MT) is to bind zinc with high affinity and to serve as an intracellular zinc reservoir. By releasing free intracellular zinc when needed, MTs mediate the unique physiological roles of zinc. MT expression is induced by zinc elevation, and thus, zinc homeostasis is maintained. That MT mediates the effects of zinc, besides having strong radical scavenging effects, points to the critical part it plays in oxidative stress. The present review aims to give information on metallothioneins, which have critical importance in the metabolism and molecular pathways of zinc.
Atıf Kaynağı
Atıf Yapan Yayın
The effect of zinc supplementation on Max Vo2 and lactate levels in sedentary people
Biointerface Research in Applied Chemistry Cilt 8 ss. 3446-3448
Scopus Havuzumuzda 1 atıf almış
Results of previous studies have shown that exercise influences zinc metabolism. The importance of zinc intake by diet in athletes has been emphasized and it has been argued that zinc deficiency in the diet can have unfavorable effects on performance. The present study aims to investigate how zinc supplementation affects Max VO2 and lactate levels in sedentary people. The study included 10 male students who were not actively involved in sports. All subjects were supplemented with oral zinc sulfate (3mg/kg/day) for 4 weeks. Max VO2 and lactate levels of all subjects were determined before and after zinc supplementation. Max VO2 values of the subjects as measured after 4 weeks of zinc supplementation were numerically higher than the values measured before the supplementation, but the two values were not statistically different. Lactate levels, on the other hand, were found significantly lower after the supplementation, when compared to the levels before supplementation (p<0,05). Results of our study demonstrate that 4-week zinc supplementation leads to a significant decrease in lactate levels and delays exhaustion. Zinc supplementation can improve muscle strength and metabolism in physical activity. Consequently, physiological doses of zinc supplementation can be useful for performance.
Atıf Yapan Makale Bilgileri
Kurumlar (2)
Gazi Üniversitesi Ankara, Turkey
Selçuk Üniversitesi Selçuklu, Turkey