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Diabetes is associated with long‐term complications in the brain and reduced cognitive ability. Vitamin D3 (VD3) appears to be involved in the amelioration of hyperglycaemia in streptozotocin (STZ)‐induced diabetic rats. Our aim was to analyse the potential of VD3 in avoiding brain damage through evaluation of acetylcholinesterase (AChE), Na+K+‐adenosine triphosphatase (ATPase) and delta aminolevulinate dehydratase (δ‐ALA‐D) activities and thiobarbituric acid reactive substance (TBARS) levels from cerebral cortex, as well as memory in STZ‐induced diabetic rats. Animals were divided into eight groups (n = 5): control/saline, control/metformin (Metf), control/VD3, control/Metf + VD3, diabetic/saline, diabetic/Metf, diabetic/VD3 and diabetic/Metf + VD3. Thirty days after treatment, animals were submitted to contextual fear‐conditioning and open‐field behavioural tests, after which they were sacrificed and the cerebral cortex was dissected. Our results demonstrate a significant memory deficit, an increase in AChE activity and TBARS levels and a decrease in δ‐ALA‐D and Na+K+‐ATPase activities in diabetic rats when compared with the controls. Treatment of diabetic rats with Metf and VD3 prevented the increase in AChE activity when compared with the diabetic/saline group. In treated diabetic rats, the decrease in Na+K+‐ATPase was reverted when compared with non‐treated rats, but the increase in δ‐ALA‐D activity was not. VD3 prevented diabetes‐induced TBARS level and improved memory. Our results show that VD3 can avoid cognitive deficit through prevention of changes in important enzymes such as Na+K+‐ATPase and AChE in cerebral cortex in type 1 diabetic rats. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   
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Summary Mycobacterium aurum L1 and Xanthobacter autotrophicus GJ10 were characterized with respect to their potential use in the biological treatment of waste gases containing vinyl chloride (VC) and 1,2-dichloroethane (DE). VC at a concentration of 125 g m –3 in the gas phase was not toxic but DE at 22 g m –3 already resulted in a decreased growth rate. Kinetic properties of washed cells were determined and chemostat cultures were run to optimize the medium for VC removal. Using a mixed culture of the two strains, simultaneous removal and mineralization of VC and DE was demonstrated. The affinity constants of growing cells found for the two substrates are, however, significantly higher than the maximal allowable concentrations of VC and DE in waste gases. Correspondence to: S. Hartmans  相似文献   
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