TY - JOUR
T1 - Prevention of cell death by the zinc ion chelating agent TPEN in cultured PC12 cells exposed to Oxygen-Glucose Deprivation (OGD)
AU - Liu, Zhao
AU - Huang, Yue yang
AU - Wang, Yu xiang
AU - Wang, Hong gang
AU - Deng, Fei
AU - Heng, Bin
AU - Xie, Lai hua
AU - Liu, Yan qiang
N1 - Funding Information:
This work was supported by the National Natural Science Foundation of China (No. 31272317 ) and the fund of basic training disciplines by NSFC (No. J1103503 ).
Publisher Copyright:
© 2015 Elsevier GmbH.
PY - 2015/7/1
Y1 - 2015/7/1
N2 - To elucidate the role of Zn2+-associated glutamate signaling pathway and voltage-dependent outward potassium ion currents in neuronal death induced by hypoxia-ischemia, PC12 cells were exposed to Oxygen-Glucose Deprivation (OGD) solution mimicking the hypoxic-ischemic condition in neuron, and the effect of N,N,N',N'-tetrakis (2-pyridylmethyl) ethylenediamine (TPEN), a specific Zn2+ chelating agent on OGD-induced neuronal death was assessed in the present study. The cell survival rate, apoptosis status, potassium channel currents, intracellular free glutamate concentration and GluR2 expression in PC12 cells exposed to OGD in the absence or presence of TPEN for different time were investigated. The results showed that OGD exposure increased apoptosis, reduced the cell viability (P<0.01 at 3h, 6h and 24h, respectively compared to control), changed the voltage-dependent outward potassium ion current (increase at 1h, but decrease at 3h) and decreased the concentration of intracellular glutamate (P<0.05 at 3h and 6h, P<0.01 at 24h respectively compared to control) and GluR2 expression (P<0.05 at 3h, 6h and 24h, respectively compared to control) in PC12 cells. TPEN partially reversed the influence resulted from OGD. These results suggest that OGD-induced cell apoptosis and/or death is mediated by the alteration in glutamate signaling pathway and the voltage-dependent outward potassium ion currents, while TPEN effectively prevent cell apoptosis and/or death under hypoxic-ischemic condition.
AB - To elucidate the role of Zn2+-associated glutamate signaling pathway and voltage-dependent outward potassium ion currents in neuronal death induced by hypoxia-ischemia, PC12 cells were exposed to Oxygen-Glucose Deprivation (OGD) solution mimicking the hypoxic-ischemic condition in neuron, and the effect of N,N,N',N'-tetrakis (2-pyridylmethyl) ethylenediamine (TPEN), a specific Zn2+ chelating agent on OGD-induced neuronal death was assessed in the present study. The cell survival rate, apoptosis status, potassium channel currents, intracellular free glutamate concentration and GluR2 expression in PC12 cells exposed to OGD in the absence or presence of TPEN for different time were investigated. The results showed that OGD exposure increased apoptosis, reduced the cell viability (P<0.01 at 3h, 6h and 24h, respectively compared to control), changed the voltage-dependent outward potassium ion current (increase at 1h, but decrease at 3h) and decreased the concentration of intracellular glutamate (P<0.05 at 3h and 6h, P<0.01 at 24h respectively compared to control) and GluR2 expression (P<0.05 at 3h, 6h and 24h, respectively compared to control) in PC12 cells. TPEN partially reversed the influence resulted from OGD. These results suggest that OGD-induced cell apoptosis and/or death is mediated by the alteration in glutamate signaling pathway and the voltage-dependent outward potassium ion currents, while TPEN effectively prevent cell apoptosis and/or death under hypoxic-ischemic condition.
KW - Hypoxic-ischemic condition
KW - Neuronal death
KW - PC12 cells
KW - TPEN
KW - Zn
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U2 - 10.1016/j.jtemb.2015.03.003
DO - 10.1016/j.jtemb.2015.03.003
M3 - Article
C2 - 26004891
AN - SCOPUS:84940166053
SN - 0946-672X
VL - 31
SP - 45
EP - 52
JO - Journal of Trace Elements in Medicine and Biology
JF - Journal of Trace Elements in Medicine and Biology
ER -