Functional and Structural Investigation of Myenteric Neurons in the Human Colon

Kristin Elfers , Alina Sophia Sehnert , Alexander Wagner , Ulrich Zwirner , Helena Linge , Ulf Kulik , Daniel Poehnert , Markus Winny , Benjamin Gundert , Heiko Aselmann , Gemma Mazzuoli-Weber
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Abstract

Background and Aims

The enteric nervous system independently controls gastrointestinal function including motility, which is primarily mediated by the myenteric plexus, therefore also playing a crucial role in functional intestinal disorders. Live recordings from human myenteric neurons proved to be challenging due to technical difficulties. Using the neuroimaging technique, we are able to record human colonic myenteric neuronal activity and investigate their functional properties in a large cohort of patients.

Methods

Activity from myenteric neurons in wholemount preparations of different sampling sites of fresh, human colonic tissue was recorded using neuroimaging with the voltage sensitive dye 1-(3-sulfanatopropyl)-4-[beta[2-(di-n-octylamino)-6-naphthyl]vinyl]pyridinium betaine. Neuronal responses were analyzed following stimulation with nicotine and serotonin (5-HT) for differences based on the donor’s age, the disorder indicative for surgery and the colonic region. Immunohistochemistry was performed to calculate the total neuronal numbers.

Results

Stimulation with nicotine and 5-HT elicited reproducible action potential discharge in a proportion of human myenteric neurons. The responses to 5-HT were significantly greater in tissues from older patients and from those with inflammatory disorders, while neuronal activity to nicotinergic stimulation was comparable in all patients. Neuronal numbers declined with rising patient’s age and was highest in the sigmoid colon.

Conclusion

Neuroimaging with 1-(3-sulfanatopropyl)-4-[beta[2-(di-n-octylamino)-6-naphthyl]vinyl]pyridinium betaine was successfully adapted to record reproducible responses from human colonic myenteric neurons upon pharmacological stimulation. Evidence exists for an impact of age and inflammation on the serotonergic neuronal signaling and for differences in neuronal numbers in the distinct colonic regions as well as a neuronal decrease with age.

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人结肠肌群神经元的功能和结构研究。
背景与目的:肠神经系统独立控制胃肠功能,包括胃肠运动,而胃肠运动主要由肌肠丛介导,因此在功能性肠道疾病中也起着至关重要的作用。由于技术上的困难,从人类肌肠神经元的实时记录被证明是具有挑战性的。利用神经成像技术,我们能够记录人类结肠肌神经活动,并在一大群患者中研究它们的功能特性。方法:用电压敏感染料1-(3-磺胺基)-4-[β[2-(二-正辛基氨基)-6-萘基]乙烯基]甜菜碱神经显像记录新鲜人结肠组织不同取样部位的全量制剂中肌肠神经元的活性。在尼古丁和5-羟色胺(5-HT)刺激下分析神经元反应,以观察供体年龄、手术指示性疾病和结肠区域的差异。采用免疫组化方法计算神经元总数。结果:尼古丁和5-羟色胺刺激可引起部分人肌间神经元重复性动作电位放电。老年患者和炎症性疾病患者的组织对5-HT的反应明显更大,而所有患者对尼古丁能刺激的神经元活动是相似的。神经元数量随着患者年龄的增长而下降,其中乙状结肠的神经元数量最多。结论:1-(3-磺胺丙基)-4-[β[2-(二-正辛胺)-6-萘基]乙烯基]甜菜碱吡啶神经显像技术可用于记录人类结肠肌肠神经元在药物刺激下的可重复性反应。有证据表明,年龄和炎症对血清素能神经元信号的影响,以及不同结肠区域神经元数量的差异,以及神经元随着年龄的增长而减少。
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Gastro hep advances
Gastro hep advances Gastroenterology
CiteScore
0.80
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0.00%
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审稿时长
64 days
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