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Hemispheric lateralization of a molecular signal for pain modulation in the amygdala

机译:杏仁核中用于调节疼痛的分子信号的半球偏侧化

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摘要

The extracellular signal-regulated kinase (ERK) cascade has been shown to be a key modulator of pain processing in the central nucleus of the amygdala (CeA) in mice. ERK is activated in the CeA during persistent inflammatory pain and this activation is both necessary and sufficient to induce peripheral tactile hypersensitivity. Interestingly, biochemical studies show that inflammation-induced ERK activation in the CeA only occurs in the right, but not the left hemisphere. This inflammation-induced ERK activation in the right CeA is independent of the side of peripheral inflammation, suggesting that there is a dominant role of the right hemisphere in the modulation of pain by ERK activation in the CeA. However, the functional significance of this biochemical lateralization has yet to be determined. In the present study, we tested the hypothesis that modulation of pain by ERK signaling in the CeA is functionally lateralized. We acutely blocked ERK activation in the CeA by infusing the MEK inhibitor U0126 into the right or the left hemisphere and then measured the behavioral effects on inflammation-induced mechanical hypersensitivity in mice. Our results show that blockade of ERK activation in the right, but not the left CeA, decreases inflammation-induced peripheral hypersensitivity independent of the side of peripheral injury. These findings demonstrate that modulation of pain by ERK signaling in the CeA is functionally lateralized to the right hemisphere, suggesting a dominant role of the right amygdala in pain processing.
机译:细胞外信号调节激酶(ERK)级联已被证明是小鼠杏仁核(CeA)中央核中疼痛过程的关键调节剂。在持续的炎性疼痛期间,CeA中的ERK被激活,这种激活对于诱导周围触觉超敏反应既必要又充分。有趣的是,生化研究表明,CeA中炎症诱导的ERK激活仅发生在右半球,而不发生在左半球。右CeA中这种炎症诱导的ERK激活与周围炎症无关,这表明右半球在CeA中ERK激活引起的疼痛调节中起主要作用。但是,这种生化侧向化的功能意义尚未确定。在本研究中,我们测试了以下假设:在CeA中通过ERK信号传导调节疼痛是功能性的。我们通过向右半球或左半球注入MEK抑制剂U0126来急性阻断CeA中的ERK活化,然后测量其对小鼠炎症诱发的机械性超敏反应的行为影响。我们的结果表明,右侧而非左侧CeA的ERK激活受阻可降低炎症诱导的外周超敏反应,而与外周损伤侧无关。这些发现表明,在CeA中通过ERK信号传导进行的疼痛调节在功能上偏于右半球,表明右杏仁核在疼痛处理中起主导作用。

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