Is there a central role for the cerebral endothelium and the vasculature in the brain response to conditioning stimuli?

Conditioning medicine Pub Date : 2018-08-01 Epub Date: 2018-08-31
Jianming Xiang, Anuska V Andjelkovic, Ningna Zhou, Ya Hua, Guohua Xi, Michael M Wang, Richard F Keep
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Abstract

A variety of conditioning stimuli (e.g. ischemia or hypoxia) can protect against stroke-induced brain injury. While most attention has focused on the effects of conditioning on parenchymal injury, there is considerable evidence that such stimuli also protect the cerebrovasculature, including the blood-brain barrier. This review summarizes the data on the cerebrovascular effects of ischemic/hypoxic pre-, per- and post-conditioning and the mechanisms involved in protection. It also addresses some important questions: Are the cerebrovascular effects of conditioning just secondary to reduced parenchymal injury? How central is endothelial conditioning to overall brain protection? For example, is endothelial conditioning sufficient or necessary for the induction of brain protection against stroke? Is the endothelium crucial as a sensor/transducer of conditioning stimuli?

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在大脑对条件刺激的反应中,脑内皮和血管系统是否起着核心作用?
多种条件刺激(如缺血或缺氧)可以防止中风引起的脑损伤。虽然大多数注意力都集中在条件反射对脑实质损伤的影响上,但有相当多的证据表明,这种刺激也能保护脑血管系统,包括血脑屏障。本文综述了缺血/缺氧前、中和后适应对脑血管的影响及其保护机制的研究进展。它还解决了一些重要的问题:调节的脑血管作用是否只是次要的,以减少脑实质损伤?内皮调节对整个大脑保护有多重要?例如,内皮调节是否足以或必须诱导脑保护防止中风?内皮作为调节刺激的传感器/换能器至关重要吗?
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Targeting leukotriene biosynthesis to prevent atherosclerotic cardiovascular disease. Commentary: Can astrocytic mitochondria therapy be used as antioxidant conditioning to protect neurons? Preclinical evaluation of circadian rhythm in ischemic stroke outcomes. Conditioning medicine for ischemic and hemorrhagic stroke. Mitochondria as the memory of preconditioning.
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