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Timing versus duration Determinants of anesthesia-induced developmental apoptosis in the young mammalian brain

机译:在幼哺乳动物脑中麻醉引起的发育凋亡的时间与持续时间决定因子

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Rapidly accumulating evidence indicates that clinically used general anesthesia causes massive, widespread neu-roapoptotic degeneration in the developing mammalian brain. Susceptibility to anesthesia-induced neurotoxicity has been documented in rats, mice, guinea pigs, primates, and in this study, piglets; in short, anesthesia-induced developmental neuroapoptosis is not species-dependent. Our findings with piglets, like those in other immature mammals, demonstrate that relatively short exposure to anesthesia is just as detrimental to species with long periods of synaptogenesis as it is to those with short periods of synaptogenesis. However, the highly reproducible findings in different species also indicate that the timing of exposure to anesthesia is critically important; that is, brain regions that are at the peak of synaptogenesis are most vulnerable even when the exposure to anesthesia is relatively brief. Because the peak of synaptogenesis is characterized by intense, highly programmed neuronal communication that is vital for the survival and proper function of immature neurons, we conclude that anesthesia causes severe distur-bances in the fine equilibrium between excitatory and inhibitory neurotransmission in the developing mammalian brain, ultimately leading to neuronal redundancy and death.
机译:迅速累积的证据表明,临床使用的全身麻醉导致哺乳动物脑中发生巨大,广泛的新罗布凋亡变性。对大鼠,小鼠,豚鼠,灵长类动物和本研究中的大鼠,小鼠,豚鼠,灵长类动物和仔猪,对麻醉引起的神经毒性的易感性已记录在大鼠,小鼠,豚鼠中;简而言之,麻醉诱导的发育神经缺陷不是物种依赖性。我们与仔猪的发现,如其他未成熟哺乳动物的发现表明,对麻醉的相对短暂的暴露是对具有长期突触周期的物种,因为它是突触短期内的那些。然而,不同物种中的高度可重复的发现还表明暴露于麻醉的时序至关重要;也就是说,即使在对麻醉暴露相对简短的情况下,突触峰的脑区也是最脆弱的。因为突触峰的峰是具有强烈的,高度编程的神经元通信,这对于未成熟神经元的存活和适当功能至关重要,我们得出结论,麻醉导致哺乳动物脑中兴奋性和抑制性神经递血之间的细平衡严重趋势,最终导致神经元冗余和死亡。

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