首页> 外文期刊>The Journal of Physiology >Loss of visceral pain following colorectal distension in an endothelin-3 deficient mouse model of Hirschsprung's disease.
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Loss of visceral pain following colorectal distension in an endothelin-3 deficient mouse model of Hirschsprung's disease.

机译:在Hirschsprung病的内皮素3缺陷型小鼠模型中,大肠扩张后内脏疼痛的丧失。

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Endothelin peptides and their endogenous receptors play a major role in nociception in a variety of different organs. They also play an essential role in the development of the enteric nervous system. Mice with deletions of the endothelin-3 gene (lethal spotted mice, ls/ls) develop congenital aganglionosis. However, little is known about how nociception might be affected in the aganglionic rectum of mice deficient in endothelin-3. In this study we investigated changes in spinal afferent innervation and visceral pain transmission from the aganglionic rectum in ls/ls mice. Electromyogram recordings from anaesthetized ls/ls mice revealed a deficit in visceromotor responses arising from the aganglionic colorectum in response to noxious colorectal distension. Loss of visceromotor responses (VMRs) in ls/ls mice was selective, as no reduction in VMRs was detected after stimulation of the bladder or somatic organs. Calcitonin gene related peptide (CGRP) immunoreactivity, retrograde neuronal tracing and extracellular afferent recordings from the aganglionic rectum revealed decreased colorectal spinal innervation, combined with a reduction in mechanosensitivity of rectal afferents. The sensory defect in ls/ls mice is primarily associated with changes in low threshold wide dynamic range rectal afferents. In conclusion, disruption of endothelin 3 gene expression not only affects development and function of the enteric nervous system, but also specific classes of spinal rectal mechanoreceptors, which are required for visceral nociception from the colorectum.
机译:内皮素肽及其内源性受体在多种不同器官的伤害感受中起主要作用。它们在肠神经系统的发育中也起着至关重要的作用。内皮素3基因缺失的小鼠(致命小鼠,ls / ls)发展为先天性神经节病。但是,关于内皮素3缺乏症小鼠的神经节性直肠中伤害感受的影响可能知之甚少。在这项研究中,我们调查了ls / ls小鼠中来自神经节直肠的脊髓传入神经支配和内脏痛传递的变化。麻醉的ls / ls小鼠的肌电图记录显示,由坏疽性结节扩张引起的节节性结肠菌引起的内脏运动反应不足。 ls / ls小鼠的内脏运动反应(VMRs)丧失是选择性的,因为在刺激膀胱或体器官后未检测到VMR降低。降钙素基因相关肽(CGRP)的免疫反应,逆行神经元示踪和来自神经节性直肠的细胞外传入记录显示,结直肠脊髓神经支配的减少,以及直肠传入的机械敏感性降低。 ls / ls小鼠的感觉缺陷主要与低阈值宽动态范围直肠传入神经的变化有关。总之,内皮素3基因表达的破坏不仅影响肠神经系统的发育和功能,而且还影响特定种类的脊髓直肠机械感受器,这是结肠直肠内脏伤害感受所必需的。

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