脑损伤中线粒体氧化应激的机制:从病理生理学到治疗学。

Oxygen (Basel, Switzerland) Pub Date : 2023-06-01 Epub Date: 2023-04-07 DOI:10.3390/oxygen3020012
Andrew Nguyen, Anjali B Patel, Ivelina P Kioutchoukova, Michael J Diaz, Brandon Lucke-Wold
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引用次数: 0

摘要

线粒体氧化应激与各种形式的脑损伤有关,包括创伤性和非创伤性脑损伤。由于其氧化需求,大脑密切依赖于线粒体的功能。然而,在 ROS 及其对后遗症的影响方面,这些损伤的发展仍存在明显的异质性。其中包括创伤性损伤,如创伤性脑损伤和继发的颅内出血。从另一个角度看,这些损伤也可能是由于感染、肿瘤或自发性出血(中风、动脉瘤)等其他病因造成的。在临床上,治疗方式也可能会根据每种损伤及其在 ROS 背景下的独特进展而有所调整。因此,在本综述中,作者强调了线粒体 ROS 在各种脑损伤中的作用,同时强调了每种脑损伤的共同和独特因素。最后,作者还介绍了目前的治疗方法以及新兴疗法在治疗脑损伤中的活性氧方面所起的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Mechanisms of Mitochondrial Oxidative Stress in Brain Injury: From Pathophysiology to Therapeutics.

Mitochondrial oxidative stress has been implicated in various forms of brain injury, both traumatic and non-traumatic. Due to its oxidative demand, the brain is intimately dependent on its mitochondrial functioning. However, there remains appreciable heterogeneity in the development of these injuries regarding ROS and their effect on the sequelae. These include traumatic insults such as TBIs and intracranial hemorrhaging secondary to this. In a different vein, such injuries may be attributed to other etiologies such as infection, neoplasm, or spontaneous hemorrhage (strokes, aneurysms). Clinically, the manner of treatment may also be adjusted in relation to each injury and its unique progression in the context of ROS. In the current review, then, the authors highlight the role of mitochondrial ROS in various forms of brain injury, emphasizing both the collective and unique elements of each form. Lastly, these narratives are met with the current therapeutic landscape and the role of emerging therapies in treating reactive oxygen species in brain injuries.

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