Na+/Ca2+ exchanger 2 is neuroprotective by exporting Ca2+ during a transient focal cerebral ischemia in the mouse

Authors
Jeon, DaejongChu, KonJung, Keun-HwaKim, ManhoYoon, Byung-WooLee, C. JustinOh, UhtaekShin, Hee-Sup
Issue Date
2008-05
Publisher
ELSEVIER SCI LTD
Citation
CELL CALCIUM, v.43, no.5, pp.482 - 491
Abstract
Na+/Ca2+ exchanger (NCX), by mediating Na+ and Ca2+, fluxes bi-directionally, assumes a role in controlling the Ca2+ homeostasis in the ischemic brain. It has been suggested that the three isoforms of NCX (NCX1, 2 and 3) may be differentially involved in permanent cerebral ischemia. However, the role of NCX2 has not been defined in ischemic reperfusion injury after a transient focal cerebral ischemia. Furthermore, it is not known whether NCX2 imports or exports intracellular Ca2+([Ca2+](i)) following ischemia and reperfusion. To define the role of NCX2 in ischemia and reperfusion, we examined mice lacking NCX2, in vivo and in vitro. After an in vitro ischemia, a significantly slower recovery in population spike amplitudes, a sustained elevation of [Ca2+](i) and an increased membrane depolarization were developed in the NCX2-deficient hippocampus. Moreover, a transient focal cerebral ischemia in vivo produced a larger infarction and more cell death in the NCX2-deficient mouse brain. In particular, in the wild type brain, NCX2-expressing neurons were largely spared from cell death after ischemia. Our results suggest that NCX2 exports Ca2+ in ischemia and thus protects neuronal cells from death by reducing [Ca2+](i) in the adult mouse brain. (c) 2007 Elsevier Ltd. All rights reserved.
Keywords
SODIUM-CALCIUM EXCHANGE; NA+-CA2+ EXCHANGER; BRAIN-REGIONS; RAT-BRAIN; IN-VITRO; EXPRESSION; NCX3; ISOFORMS; NEURONS; CLONING; SODIUM-CALCIUM EXCHANGE; NA+-CA2+ EXCHANGER; BRAIN-REGIONS; RAT-BRAIN; IN-VITRO; EXPRESSION; NCX3; ISOFORMS; NEURONS; CLONING; cerebral ischemia; Na+/Ca2+ exchanger; NCX2-deficient mice; [Ca2+](i); population spike; membrane depolarization
ISSN
0143-4160
URI
https://pubs.kist.re.kr/handle/201004/133519
DOI
10.1016/j.ceca.2007.08.003
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KIST Article > 2008
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