کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
10926428 1091842 2010 13 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
ASIC1a channels are activated by endogenous protons during ischemia and contribute to synergistic potentiation of intracellular Ca2+ overload during ischemia and acidosis
موضوعات مرتبط
علوم زیستی و بیوفناوری بیوشیمی، ژنتیک و زیست شناسی مولکولی بیولوژی سلول
پیش نمایش صفحه اول مقاله
ASIC1a channels are activated by endogenous protons during ischemia and contribute to synergistic potentiation of intracellular Ca2+ overload during ischemia and acidosis
چکیده انگلیسی
Acidosis accompanying cerebral ischemia activates acid-sensing ion channels (ASIC) causing increases in intracellular calcium concentration ([Ca2+]i) and enhanced neuronal death. Experiments were undertaken in rat cortical neurons to explore the effects of ASIC1a activation on ischemia-induced [Ca2+]i elevations and whole-cell currents. There was a significant contribution of ASIC1a channels to ischemia-evoked [Ca2+]i increases at pH 7.4, suggesting that ASIC1a channels are activated by endogenous protons during ischemia. The combination of ischemia and acidosis resulted in synergistic increases in [Ca2+]i and plasma membrane currents relative to acidosis or ischemia alone. ASIC1a inhibitors significantly blunted [Ca2+]i increases and a transient current activated by ischemia + acidosis, demonstrating that homomeric ASIC1a channels are involved. However, ASIC1a inhibitors failed to diminish a sustained current activated in response to combined ischemia and acidosis, indicating that acidosis can potentiate ischemia effects through mechanisms other than ASIC1a. The [Ca2+]i overload produced by acidosis and ischemia was not blocked by tetrodotoxin, 2-amino-5-phosphonopentanoic acid or nifedipine. Thus, acidosis and activation of ASIC1a channels during ischemia can promote [Ca2+]i overload in the absence of neurotransmission, independent of NMDA receptor or L-type voltage-gated Ca2+ channel activation. Postsynaptic ASIC1a channels play a critical role in ischemia-induced [Ca2+]i dysregulation and membrane dysfunction.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Cell Calcium - Volume 48, Issue 1, July 2010, Pages 70-82
نویسندگان
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