Recent advances in intestinal smooth muscle research: from muscle strips and single cells, via ICC networks to whole organ physiology and assessment of human gut motor dysfunction.

Q3 Medicine
Jan D Huizinga
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引用次数: 0

Abstract

Gastrointestinal smooth muscle research has evolved from studies on muscle strips to spatiotemporal mapping of whole organ motor and electrical activities. Decades of research on single muscle cells and small sections of isolated musculature from animal models has given us the groundwork for interpretation of human in vivo studies. Human gut motility studies have dramatically improved by high-resolution manometry and high-resolution electrophysiology. The details that emerge from spatiotemporal mapping of high-resolution data are now of such quality that hypotheses can be generated as to the physiology (in healthy subjects) and pathophysiology (in patients) of gastrointestinal (dys) motility. Such interpretation demands understanding of the musculature as a super-network of excitable cells (neurons, smooth muscle cells, other accessory cells) and oscillatory cells (the pacemaker interstitial cells of Cajal), for which mathematical modeling becomes essential. The developing deeper understanding of gastrointestinal motility will bring us soon to a level of precision in diagnosis of dysfunction that is far beyond what is currently available.

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肠道平滑肌研究的最新进展:从肌条和单细胞,到 ICC 网络,再到整个器官生理学和人体肠道运动功能障碍评估。
胃肠道平滑肌研究已从对肌肉条带的研究发展到对整个器官运动和电活动的时空映射。数十年来对单个肌肉细胞和动物模型离体肌肉小切片的研究为我们解释人体活体研究奠定了基础。通过高分辨率测压和高分辨率电生理学研究,人体肠道运动研究有了显著改善。从高分辨率数据的时空映射中得出的细节现在已经达到了一定的质量,可以对胃肠道(运动障碍)的生理学(健康人)和病理生理学(病人)提出假设。这种解释要求将肌肉组织理解为由可兴奋细胞(神经元、平滑肌细胞、其他附属细胞)和振荡细胞(Cajal 的起搏间质细胞)组成的超级网络,而数学建模对此至关重要。随着对胃肠道运动的深入了解,我们很快就能对功能障碍进行精确诊断,而这种诊断的精确度将远远超过目前的水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Smooth Muscle Research
Journal of Smooth Muscle Research Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
2.30
自引率
0.00%
发文量
7
审稿时长
10 weeks
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