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1.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 1061-1065, 2020.
Article in Chinese | WPRIM | ID: wpr-905436

ABSTRACT

Mitochondria, as the key passway of neuronal apoptosis after ischemia, is closely related to cerebral ischemia-reperfusion injury. Remote ischemic post-conditioning can alleviate cerebral ischemia-reperfusion injury, and its mechanism is related to alleviating mitochondrial injury and improving its dysfunction. In this paper, cytochrome C/caspase, mitophagy, mitochondrial ATP-sensitive K+ channel and mitochondrial permeability transitionpore were reviewed.

2.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 534-539, 2019.
Article in Chinese | WPRIM | ID: wpr-905587

ABSTRACT

Pericytes, endothelial cells (EC), astrocytes and extracellular space together constitute the blood-brain barrier. Pericytes and EC participate in the various regulations of blood-brain barriers through many mechanisms to maintain the stability of neurovascular units (NVU). The injury and repair of NVU involve a lot of signal transduction at molecular levels, and angiogenesis is primarily about the generation and maturation of EC and the supporting adhesion process of pericytes. This article briefly reviewed EC-related angiogenesis signaling pathways in pericytes after NVU ischemic injury.

3.
Chinese Journal of Rehabilitation Theory and Practice ; (12): 534-539, 2019.
Article in Chinese | WPRIM | ID: wpr-905564

ABSTRACT

Pericytes, endothelial cells (EC), astrocytes and extracellular space together constitute the blood-brain barrier. Pericytes and EC participate in the various regulations of blood-brain barriers through many mechanisms to maintain the stability of neurovascular units (NVU). The injury and repair of NVU involve a lot of signal transduction at molecular levels, and angiogenesis is primarily about the generation and maturation of EC and the supporting adhesion process of pericytes. This article briefly reviewed EC-related angiogenesis signaling pathways in pericytes after NVU ischemic injury.

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