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Altered Anesthetic Sensitivity of Mice Lacking Ndufs4 a Subunit of Mitochondrial Complex I

机译:小鼠改变麻醉敏感性缺乏Ndufs4线粒体复合物I的一个亚基

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摘要

Anesthetics are in routine use, yet the mechanisms underlying their function are incompletely understood. Studies in vitro demonstrate that both GABAA and NMDA receptors are modulated by anesthetics, but whole animal models have not supported the role of these receptors as sole effectors of general anesthesia. Findings in C. elegans and in children reveal that defects in mitochondrial complex I can cause hypersensitivity to volatile anesthetics. Here, we tested a knockout (KO) mouse with reduced complex I function due to inactivation of the Ndufs4 gene, which encodes one of the subunits of complex I. We tested these KO mice with two volatile and two non-volatile anesthetics. KO and wild-type (WT) mice were anesthetized with isoflurane, halothane, propofol or ketamine at post-natal (PN) days 23 to 27, and tested for loss of response to tail clamp (isoflurane and halothane) or loss of righting reflex (propofol and ketamine). KO mice were 2.5 - to 3-fold more sensitive to isoflurane and halothane than WT mice. KO mice were 2-fold more sensitive to propofol but resistant to ketamine. These changes in anesthetic sensitivity are the largest recorded in a mammal.
机译:麻醉剂已被常规使用,但其功能的机理尚不完全清楚。体外研究表明,GABAA和NMDA受体均受麻醉剂调节,但整个动物模型均不支持这些受体作为全身麻醉的唯一效应物的作用。秀丽隐杆线虫和儿童中的发现表明,线粒体复合体I的缺陷会导致对挥发性麻醉剂过敏。在这里,我们测试了由于Ndufs4基因失活而使复合体I功能降低的基因敲除(KO)小鼠,该基因编码复合体I的一个亚基。我们用两种挥发性和两种非挥发性麻醉剂测试了这些KO小鼠。在出生后(PN)第23至27天,用异氟烷,氟烷,丙泊酚或氯胺酮麻醉KO和野生型(WT)小鼠,并测试其对尾巴钳制(异氟烷和氟烷)的反应丧失或对正反射力的丧失(异丙酚和氯胺酮)。 KO小鼠对异氟烷和氟烷的敏感度是WT小鼠的2.5-3倍。 KO小鼠对丙泊酚的敏感性高2倍,但对氯胺酮具有抗药性。麻醉敏感性的这些变化是哺​​乳动物中记录的最大变化。

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