首页> 外文期刊>Stroke: A Journal of Cerebral Circulation >Carnitine treatment inhibits increases in cerebral carnitine esters and glutamate detected by mass spectrometry after hypoxia-ischemia in newborn rats.
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Carnitine treatment inhibits increases in cerebral carnitine esters and glutamate detected by mass spectrometry after hypoxia-ischemia in newborn rats.

机译:肉碱治疗抑制新生大鼠缺氧缺血后质谱检测到的脑肉碱和谷氨酸含量的增加。

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摘要

BACKGROUND AND PURPOSE: Cerebral ischemic insults disrupt normal respiratory activity in mitochondria. Carnitine plays an essential role in mitochondrial metabolism and in modulating excess acyl-coenzyme A (acyl-CoA) levels. The effects of cerebral ischemia on carnitine metabolism are not well understood, although the newborn may be particularly vulnerable to carnitine deficiency. We used a newborn rat model of hypoxia-ischemia (HI) to test the hypothesis that HI alters acyl-CoA:CoA homeostasis and that this effect can be prevented by treatment with carnitine. METHODS: A total of 120 postnatal day 7 rats were subjected to 70 minutes of HI after treatment with 16 mmol/kg intraperitoneal l-carnitine or diluent. Carnitine, acylcarnitines, and excitatory amino acids were measured by mass spectrometry, and carnitine acetyl transferase activity, superoxide, and levels of the mitochondrial phospholipid cardiolipin (CL) were measured at 2- and 24-hour recovery. RESULTS: HI and hypoxia were associated with a significant increase in the ratio of acyl-CoA:CoA, which was prevented by treatment with carnitine. Carnitine treatment also prevented increases in glutamate, glycine, superoxide, and decrease of CL. CONCLUSIONS: Carnitine metabolic pathways are compromised in HI and hypoxia. The protective effect of carnitine treatment on HI injury may be attributable to maintaining mitochondrial function.
机译:背景与目的:脑缺血性损伤破坏了线粒体的正常呼吸活动。肉碱在线粒体代谢和调节过量的酰基辅酶A(酰基辅酶A)水平中起着至关重要的作用。尽管新生儿可能特别容易受到肉碱缺乏的影响,但脑缺血对肉碱代谢的影响尚不十分清楚。我们使用了缺氧缺血(HI)新生大鼠模型来测试以下假设:HI会改变酰基辅酶A:CoA的体内稳态,并且可以通过肉碱治疗来预防这种影响。方法:对120只出生后第7天的大鼠在用16 mmol / kg腹腔内左卡尼汀或稀释剂治疗后进行HI 70分钟。通过质谱法测定肉碱,酰基肉碱和兴奋性氨基酸,并在2和24小时恢复时测定肉碱乙酰转移酶活性,超氧化物和线粒体磷脂心磷脂(CL)的水平。结果:HI和缺氧与酰基辅酶A:辅酶A比例的显着增加有关,而肉碱可以预防这种情况。肉碱治疗还防止了谷氨酸,甘氨酸,超氧化物的增加和CL的降低。结论:肉毒碱代谢途径在HI和缺氧中受损。肉碱治疗对HI损伤的保护作用可能归因于维持线粒体功能。

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