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短暂性脑缺血对雌性大鼠大脑中动脉线粒体的有害影响。

Detrimental effects of transient cerebral ischemia on middle cerebral artery mitochondria in female rats.

机构信息

Department of Pharmacology, Tulane University School of Medicine, New Orleans, Louisiana.

Tulane Brain Institute, Tulane University, New Orleans, Louisiana.

出版信息

Am J Physiol Heart Circ Physiol. 2022 Dec 1;323(6):H1343-H1351. doi: 10.1152/ajpheart.00346.2022. Epub 2022 Nov 11.

Abstract

Mitochondrial numbers and dynamics in brain blood vessels differ between young male and female rats under physiological conditions, but how these differences are affected by stroke is unclear. In males, we found that mitochondrial numbers, possibly due to mitochondrial fission, in large middle cerebral arteries (MCAs) increased following transient middle cerebral artery occlusion (tMCAO). However, mitochondrial effects of stroke on MCAs of female rats have not been studied. To address this disparity, we conducted morphological, biochemical, and functional studies using electron microscopy, Western blot, mitochondrial respiration, and Ca sparks activity measurements in MCAs of female, naïve or sham Sprague-Dawley rats before and 48 h after 90 min of tMCAO. Adverse changes in mitochondrial characteristics and the relationship between mitochondria and sarcoplasmic reticulum (SR) in MCAs were present on both sides. However, mitochondria and mitochondrial/SR associations were often within the range of normal appearance. Mitochondrial protein levels were similar between ipsilateral (ipsi) and contralateral (contra) sides. Nonrespiratory oxygen consumption, maximal respiration, and spare respiratory capacity were similar between ipsi and contra but were reduced compared with sham. Basal respiration, proton leak, and ATP production were similar among MCAs. Ca sparks activity increased in sham and ipsi MCAs exposed to a mitochondrial ATP-sensitive potassium channel opener: diazoxide. Our results show that tMCAO has effects on mitochondria in MCAs on both the ipsi and contra sides. Mitochondrial responses of cerebral arteries to tMCAO in females are substantially different from responses seen previously in male rats suggesting the need for specific sex-based therapies. We propose that differences in mitochondrial characteristics of males and females, including mitochondrial morphology, respiration, and calcium sparks activity contribute to sex differences in protective and repair mechanisms in response to transient ischemia-reperfusion.

摘要

在生理条件下,年轻雄性和雌性大鼠的脑血管中线粒体数量和动力学存在差异,但这些差异如何受到中风的影响尚不清楚。在雄性大鼠中,我们发现大脑中动脉(MCA)中的线粒体数量(可能由于线粒体裂变)在短暂性大脑中动脉闭塞(tMCAO)后增加。然而,中风对雌性大鼠 MCA 中线粒体的影响尚未研究。为了解决这一差异,我们使用电子显微镜、Western blot、线粒体呼吸和 Ca 火花活性测量,在雌性、未处理或假手术 Sprague-Dawley 大鼠的 MCA 中进行形态学、生物化学和功能研究,在 tMCAO 前和 90 分钟后 48 小时。在 MCA 的两侧都存在线粒体特征的不利变化以及线粒体与肌浆网(SR)之间的关系。然而,线粒体和线粒体/SR 之间的联系通常在正常范围之内。同侧(ipsi)和对侧(contra)侧的线粒体蛋白水平相似。ipsi 和 contra 的非呼吸性耗氧量、最大呼吸和备用呼吸能力相似,但与假手术相比有所降低。基础呼吸、质子泄漏和 ATP 产生在 MCA 之间相似。在暴露于线粒体三磷酸腺苷敏感性钾通道开放剂:二氮嗪的 sham 和 ipsi MCA 中,Ca 火花活性增加。我们的结果表明,tMCAO 对 MCA 中的线粒体有影响,无论同侧还是对侧。雌性大鼠大脑动脉对 tMCAO 的线粒体反应与之前在雄性大鼠中观察到的反应有很大不同,这表明需要针对特定性别进行治疗。我们提出,雄性和雌性之间的线粒体特征差异,包括线粒体形态、呼吸和钙火花活性,有助于对短暂性缺血再灌注的保护和修复机制的性别差异。

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