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在缺乏Cajal间质细胞的情况下,结肠中一氧化氮介导的嘌呤神经递质释放抑制作用丧失。

Loss of nitric oxide-mediated inhibition of purine neurotransmitter release in the colon in the absence of interstitial cells of Cajal.

作者信息

Durnin Leonie, Lees Andrea, Manzoor Sheerien, Sasse Kent C, Sanders Kenton M, Mutafova-Yambolieva Violeta N

机构信息

Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, Nevada; and.

Sasse Surgical Associates, Reno, Nevada.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2017 Nov 1;313(5):G419-G433. doi: 10.1152/ajpgi.00045.2017. Epub 2017 Jul 13.

Abstract

Regulation of colonic motility depends on the integrity of enteric inhibitory neurotransmission mediated by nitric oxide (NO), purine neurotransmitters, and neuropeptides. Intramuscular interstitial cells of Cajal (ICC-IM) and platelet-derived growth factor receptor-α-positive (PDGFRα) cells are involved in generating responses to NO and purine neurotransmitters, respectively. Previous studies have suggested a decreased nitrergic and increased purinergic neurotransmission in ( ) mice that display lesions in ICC-IM along the gastrointestinal tract. However, contributions of NO to these phenotypes have not been evaluated. We used small-chamber superfusion assays and HPLC to measure the spontaneous and electrical field stimulation (EFS)-evoked release of nicotinamide adenine dinucleotide (NAD)/ADP-ribose, uridine adenosine tetraphosphate (Up4A), adenosine 5'-triphosphate (ATP), and metabolites from the tunica muscularis of human, monkey, and murine colons and circular muscle of monkey colon, and we tested drugs that modulate NO levels or blocked NO receptors. NO inhibited EFS-evoked release of purines in the colon via presynaptic neuromodulation. Colons from , and mice displayed augmented neural release of purines that was likely due to altered nitrergic neuromodulation. Colons from mice demonstrated decreased nitrergic and increased purinergic relaxations in response to nerve stimulation. mouse colons demonstrated reduced expression and reduced NO release. Our results suggest that enhanced purinergic neurotransmission may compensate for the loss of nitrergic neurotransmission in muscles with partial loss of ICC. The interactions between nitrergic and purinergic neurotransmission in the colon provide novel insight into the role of neurotransmitters and effector cells in the neural regulation of gastrointestinal motility. This is the first study investigating the role of nitric oxide (NO) and intramuscular interstitial cells of Cajal (ICC-IM) in modulating neural release of purines in colon. We found that NO inhibited release of purines in human, monkey, and murine colons and that colons from ( ) mice, which present with partial loss of ICC-IM, demonstrated augmented neural release of purines. Interactions between nitrergic and purinergic neurotransmission may affect motility in disease conditions with ICC-IM deficiencies.

摘要

结肠运动的调节依赖于由一氧化氮(NO)、嘌呤神经递质和神经肽介导的肠内抑制性神经传递的完整性。肌内 Cajal 间质细胞(ICC-IM)和血小板衍生生长因子受体-α 阳性(PDGFRα)细胞分别参与对 NO 和嘌呤神经递质产生反应。先前的研究表明,在胃肠道 ICC-IM 有损伤的( )小鼠中,含氮能神经传递减少而嘌呤能神经传递增加。然而,NO 对这些表型的作用尚未得到评估。我们使用小室灌流测定法和高效液相色谱法来测量人、猴和鼠结肠肌层以及猴结肠环行肌中烟酰胺腺嘌呤二核苷酸(NAD)/ADP-核糖、四磷酸尿苷腺苷(Up4A)、三磷酸腺苷(ATP)及其代谢产物的自发释放和电场刺激(EFS)诱发释放,并测试了调节 NO 水平或阻断 NO 受体的药物。NO 通过突触前神经调节抑制结肠中 EFS 诱发的嘌呤释放。来自 、 和 小鼠的结肠显示出嘌呤的神经释放增加,这可能是由于含氮能神经调节改变所致。来自 小鼠的结肠在神经刺激下显示出含氮能舒张减少和嘌呤能舒张增加。 小鼠结肠显示 表达减少和 NO 释放减少。我们的结果表明,增强的嘌呤能神经传递可能补偿 ICC 部分缺失的肌肉中含氮能神经传递的丧失。结肠中含氮能和嘌呤能神经传递之间的相互作用为神经递质和效应细胞在胃肠运动神经调节中的作用提供了新的见解。这是第一项研究一氧化氮(NO)和肌内 Cajal 间质细胞(ICC-IM)在调节结肠中嘌呤神经释放作用的研究。我们发现 NO 抑制人、猴和鼠结肠中嘌呤的释放,并且来自 ( )小鼠(其 ICC-IM 部分缺失)的结肠显示出嘌呤的神经释放增加。含氮能和嘌呤能神经传递之间的相互作用可能会影响 ICC-IM 缺乏的疾病状态下的运动。

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