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epsilonPKC confers acute tolerance to cerebral ischemic reperfusion injury.

机译:epsilonPKC赋予对脑缺血再灌注损伤的急性耐受性。

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摘要

In response to mild ischemic stress, the brain elicits endogenous survival mechanisms to protect cells against a subsequent lethal ischemic stress, referred to as ischemic tolerance. The molecular signals that mediate this protection are thought to involve the expression and activation of multiple kinases, including protein kinase C (PKC). Here we demonstrate that epsilonPKC mediates cerebral ischemic tolerance in vivo. Systemic delivery of psiepsilonRACK, an epsilonPKC-selective peptide activator, confers neuroprotection against a subsequent cerebral ischemic event when delivered immediately prior to stroke. In addition, activation of epsilonPKC by psiepsilonRACK treatment decreases vascular tone in vivo, as demonstrated by a reduction in microvascular cerebral blood flow. Here we demonstrate the role of acute and transient epsilonPKC in early cerebral tolerance in vivo and suggest that extra-parenchymal mechanisms, such as vasoconstriction, may contribute to the conferred protection.
机译:响应轻度的缺血性应激,大脑会激发内源性生存机制,以保护细胞免受随后的致命性缺血性应激(称为缺血耐受)的侵害。认为介导这种保护作用的分子信号涉及多种激酶的表达和激活,包括蛋白激酶C(PKC)。在这里,我们证明epsilonPKC在体内介导脑缺血耐受。 psiepsilonRACK(一种epsilonPKC选择性肽激活剂)的全身递送在中风前即刻递送时,可针对随后的脑缺血事件提供神经保护。此外,通过psiepsilonRACK处理激活epsilonPKC会降低体内血管紧张度,如微血管脑血流量减少所证明。在这里,我们证明了急性和短暂性epsilonPKC在体内早期脑耐受中的作用,并暗示实质外机制,例如血管收缩,可能有助于赋予保护作用。

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