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ATP-sensitive potassium channels: a promising target for protecting neurovascular unit function in stroke.

机译:ATP敏感性钾通道:保护中风的神经血管单位功能的有希望的目标。

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1. Stroke is the second most common cause of death and a major cause of disability worldwide. Despite increasing knowledge of the cellular and molecular mechanisms that occur in stroke, there are still large gaps in our understanding that are impeding therapeutic progress. In addition, there are no drugs yet that can be used effectively in stroke patients. 2. In recent years, it has been recognized that stroke is a brain dysfunction that involves multiple cell types and that a purely neurocentric focus or targeting a single point in a single pathway fails to yield sufficient protection. Thus, the concept of the 'neurovascular unit' has emerged as a new paradigm for stroke investigation and therapy. 3. ATP-sensitive potassium (K(ATP)) channels are unique channel proteins that directly couple the metabolic state of a cell to its electrical activity. These channels are found throughout the brain, being found in neurons, glial cells and in the brain vasculature. It is well documented that K(ATP) channels play multifactorial roles in protecting against brain injury induced by hypoxia, ischaemia or metabolic inhibition. 4. In the present review, we focus on the function of the neurovascular units in stroke and review current knowledge regarding K(ATP) channels, with a focus on their potential role in the remodelling of the neurovascular units.
机译:中风是全世界第二大最常见的死亡原因,也是造成残疾的主要原因。尽管对中风中发生的细胞和分子机制的了解有所增加,但在我们的理解中仍然存在很大的差距,这阻碍了治疗的进展。此外,尚无可在中风患者中有效使用的药物。 2.近年来,已经认识到中风是一种涉及多种细胞类型的脑功能障碍,并且单纯以神经为中心的焦点或靶向单一途径中的单个点无法产生足够的保护。因此,“神经血管单元”的概念已成为中风研究和治疗的新范例。 3. ATP敏感性钾(K(ATP))通道是独特的通道蛋白,可直接将细胞的代谢状态与其电活动联系起来。这些通道遍布整个大脑,存在于神经元,神经胶质细胞和大脑脉管系统中。众所周知,K(ATP)通道在防止缺氧,缺血或代谢抑制引起的脑损伤中起多方面的作用。 4.在本综述中,我们重点研究中风中神经血管单位的功能,并综述有关K(ATP)通道的当前知识,重点是其在神经血管单位重塑中的潜在作用。

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