Journal of Cerebral Blood Flow & Metabolism · 2009 · 144 citations · 36 references
NeuroregenerationDevelopmental BiologyHippocampal NeurogenesisNeurophysiologyPhysiologyNeurogenesis OccursNeuropharmacologyNeurogenesisNeuroprotectionNeuroscienceNeurologyZinc Transporter 3MedicineNeurochemistryNeural Stem CellSocial Sciences
In the adult brain, neurogenesis occurs in the subgranular zone of the dentate gyrus (DG), where high levels of vesicular zinc are localized in the presynaptic terminals. To determine whether zinc has a role in modulating hippocampal neurogenesis under normal or pathologic conditions, we manipulated the level of vesicular zinc experimentally. To reduce hippocampal vesicular zinc, rats were either fed a zinc-deficient diet or treated with a zinc chelator, clioquinol (CQ). The number of progenitor cells and immature neurons was decreased significantly in the DG after 6 weeks of dietary zinc deprivation. Conversely, the number of progenitor cells and immature neurons was restored after a 2-week reversal to a normal zinc-containing diet. Similarly, a 1-week treatment with the zinc chelator, CQ, reduced the number of progenitor cells. The results of our previous study showed that hypoglycemia increased hippocampal neurogenesis. This study shows that zinc chelation reduced hypoglycemia-induced progenitor cell proliferation and neurogenesis. Finally, the role of vesicular zinc on neurogenesis was further assessed in zinc transporter 3 (ZnT3) gene deleted mice. Zinc transporter 3 knockout (KO) mice had significantly fewer proliferating progenitor cells and immature neurons after hypoglycemia. Our data provide converging evidence in support of the essential role zinc has in modulating hippocampal neurogenesis.
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The Role of Zinc in Selective Neuronal Death After Transient Global Cerebral Ischemia
Jae‐Young Koh, Sang Won Suh, Byoung Joo Gwag et al. · Science · 1996 · 1.1K citations