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首页> 外文期刊>Advances in Experimental Medicine and Biology >Indirect opioid actions on inspiratory pre-Botzinger complex neurons in newborn rat brainstem slices.
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Indirect opioid actions on inspiratory pre-Botzinger complex neurons in newborn rat brainstem slices.

机译:阿片类药物对新生大鼠脑干切片中吸气前Botzinger复杂神经元的间接作用。

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摘要

Findings in newborn mouse brainstem slices led to the hypothesis that depression of breathing by opioids is caused by postsynaptic K(+) channel-mediated hyperpolarization of rhythmogenic inspiratory neurons of the pre-Botzinger complex (preBotC). Subsequent observations in newborn en bloc medullas and juvenile rats in vivo indicated that excitatory drive from retrotrapezoid nucleus/parafacial respiratory group (RTN/pFRG) neurons partly counters opioid-evoked inspiratory inhibition. Our recent study in newborn rat en bloc medullas supports the latter hypothesis, whereas we found in that report that inspiratory preBotC neurons constituting the interface with the RTN/pFRG are not hyperpolarized by opioids. Here, we show that opioids also do not hyperpolarize preBotC neurons in "calibrated" newborn rat slices. This supports the previous hypothesis by us and others that opioids rather target inspiratory networks indirectly, likely primarily via presynaptic mechanisms.
机译:在新生小鼠脑干切片中的发现导致这样的假设,即阿片类药物导致的呼吸抑制是由Botzinger前复合体(preBotC)的节律性吸气神经元的突触后K(+)通道介导的超极化引起的。随后在新生的整体髓质和幼年大鼠体内进行的观察表明,梯形后核/面呼吸组(RTN / pFRG)神经元的兴奋驱动部分抵消了阿片类药物引起的吸气抑制。我们最近对新生大鼠全髓髓质的研究支持了后者的假说,而我们在该报告中发现,构成与RTN / pFRG界面的吸气性preBotC神经元不会被阿片类药物超极化。在这里,我们显示阿片类药物也不会使“校准”新生大鼠切片中的preBotC神经元超极化。这支持了我们和其他人先前的假设,即阿片类药物可能主要通过突触前机制间接地靶向吸气网络。

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