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比沙可啶体外增强人结肠肌肉张力

Increased Tone of the Human Colon Muscle by Bisacodyl In Vitro.

作者信息

Min Yang Won, Ko Eun-Ju, Kim Jeong Hwan, Lee Ji Yeon, Kim Hee Cheol, Lee Woo Yong, Rhee Poong-Lyul

机构信息

Department of Medicine, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea.

Biomedical Research Institute, Samsung Medical Center, Sungkyunkwan University School of Medicine, Seoul, Korea.

出版信息

J Neurogastroenterol Motil. 2018 Apr 30;24(2):317-323. doi: 10.5056/jnm17063.

Abstract

BACKGROUND/AIMS: Although bisacodyl is a widely administered laxative, its underlying mechanism of action remains generally unknown. This study focuses on investigating the effects of bisacodyl on the human colon muscle contraction, and elucidating its mechanism of action.

METHODS

Sigmoid colon muscle strips (20 longitudinal and 18 circular muscles) were obtained from 20 subjects who underwent colectomy for colon cancer. Isometric force measurements were calculated in response to electrical field stimulation (EFS, 0.3 milliseconds in trains of 10 Hz for 20 seconds, 150 V). Peak and nadir (tone) during and after EFS, were measured in a controlled state, and after sequential addition of bisacodyl (1 μM), atropine (1 μM), N-nitro-L-arginine (L-NNA, 100 μM), MRS2500 (1 μM), and tetrodotoxin (TTX, 1 μM) to the organ bath.

RESULTS

Transient phasic contractions were observed during EFS, and after cessation of EFS. In the longitudinal muscles, nadir during EFS, and tone after EFS, significantly increased after addition of bisacodyl, and persisted after sequential addition of atropine, L-NNA, MRS2500, and TTX, indicating a direct action of bisacodyl on the smooth muscle. In the second experiment, pretreatment of TTX abolished EFS-induced phasic contractions. Although no phasic contraction was produced after perfusion of bisacodyl, tone was increased, thereby supporting evidence of a direct mechanism of action of bisacodyl on the colon smooth muscle.

CONCLUSIONS

Bisacodyl increases the tone of longitudinal muscle in the human sigmoid colon through a direct action on the smooth muscle. Further study is warranted to investigate the neural mechanism of action of bisacodyl.

摘要

背景/目的:尽管比沙可啶是一种广泛使用的泻药,但其潜在作用机制仍普遍不明。本研究聚焦于探究比沙可啶对人结肠肌肉收缩的影响,并阐明其作用机制。

方法

从20例因结肠癌接受结肠切除术的患者获取乙状结肠肌条(20条纵行肌和18条环行肌)。在受控状态下,以及在向器官浴依次添加比沙可啶(1 μM)、阿托品(1 μM)、N-硝基-L-精氨酸(L-NNA,100 μM)、MRS2500(1 μM)和河豚毒素(TTX,1 μM)后,计算电场刺激(EFS,10 Hz串刺激,持续20秒,150 V,脉冲宽度0.3毫秒)诱发的等长力测量值。测量EFS期间及之后的峰值和最低点(张力)。

结果

在EFS期间及EFS停止后观察到短暂的相性收缩。在纵行肌中,添加比沙可啶后EFS期间的最低点及EFS后的张力显著增加,在依次添加阿托品、L-NNA、MRS2500和TTX后仍持续存在,表明比沙可啶对平滑肌有直接作用。在第二个实验中,TTX预处理消除了EFS诱发的相性收缩。尽管灌注比沙可啶后未产生相性收缩,但张力增加,从而支持比沙可啶对结肠平滑肌有直接作用机制的证据。

结论

比沙可啶通过直接作用于平滑肌增加人乙状结肠纵行肌的张力。有必要进一步研究比沙可啶的神经作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74f9/5885731/ea0d59cb6b9b/jnm-24-317f1.jpg

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