Literature DB >> 24562545

Are there any functional differences of the enteric nervous system between the right-sided diverticular colon and the left-sided diverticular colon? An in vitro study.

Ryouichi Tomita1.   

Abstract

PURPOSE: To evaluate functional differences of the enteric nervous system (ENS) in patients between right-side colonic diverticula (RCD) and left-sided colonic diverticula (LCD), the author compared the ENS responses between RCD and LCD.
METHODS: Ten specimens were obtained from 10 patients with RCD, and 16 specimens were taken from 16 LCD. As a control, twenty-two specimens of right-sided normal colon (RNC) were obtained from 22 colonic cancers. Twenty-four specimens of left sided normal colon (LNC) were obtained from 24 colonic cancers. A mechanography was used to evaluate in vitro muscle responses to electrical field stimulation (EFS) before and after treatment with various autonomic nerve blockers.
RESULTS: Before blockade of the adrenergic and cholinergic nerves, the incidences of contraction via cholinergic nerve in the colons with diverticula were significantly greater than those in the normal colons (right-sided colon; p = 0.0022, left-sided colon; p < 0.0001). There were no significant differences between RNC and LNC (p = 0.3606), and between RCD and LCD (p = 0.7684). After the blockade of adrenergic and cholinergic nerves, the incidence of relaxation via non-adrenergic non-cholinergic inhibitory (NANC) nerve in the normal colons was significantly greater than that in the diverticular colons (right-sided colon; p = 0.0435, left-sided colon; p = 0.0034). There were no significant differences between RNC and LNC (p = 0.2909) and between RCD and LCD (p = 0.9464).
CONCLUSION: Cholinergic nerves were dominant in bilateral diverticular colon compared with bilateral normal colon. NANC inhibitory nerves were dominant in bilateral normal colon compared with bilateral diverticular colon. There were also no functional differences of the ENS between RCD and LCD.

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Year:  2014        PMID: 24562545     DOI: 10.1007/s00384-014-1837-7

Source DB:  PubMed          Journal:  Int J Colorectal Dis        ISSN: 0179-1958            Impact factor:   2.571


  30 in total

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2.  Effects of transmural field stimulation in isolated smooth muscle of human rectum and internal anal sphincter.

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3.  Physiological studies on nitric oxide in the right sided colon of patients with diverticular disease.

Authors:  R Tomita; K Tanjoh; S Fujisaki; M Fukuzawa
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4.  Usefulness of colonic motility study in identifying patients at risk for complicated diverticular disease.

Authors:  C Cortesini; D Pantalone
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Review 5.  Pathogenesis of colonic diverticular disease.

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6.  Neural contractions in colonic strips from patients with diverticular disease: role of endocannabinoids and substance P.

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Review 7.  Epidemiology and pathogenesis of diverticular disease.

Authors:  Charles P Heise
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8.  Epidemiological evaluation of colonic diverticulosis and dietary fiber in Japan.

Authors:  A Munakata; S Nakaji; H Takami; H Nakajima; S Iwane; S Tuchida
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Review 9.  Diet, ageing and genetic factors in the pathogenesis of diverticular disease.

Authors:  Daniel Martin Commane; Ramesh Pulendran Arasaradnam; Sarah Mills; John Cummings Mathers; Mike Bradburn
Journal:  World J Gastroenterol       Date:  2009-05-28       Impact factor: 5.742

Review 10.  Diverticular disease of the colon.

Authors:  Neil Stollman; Jeffrey B Raskin
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  4 in total

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Review 2.  Morphologic Basis for Developing Diverticular Disease, Diverticulitis, and Diverticular Bleeding.

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3.  Colonic Diverticulosis Is Not Associated With Painful Abdominal Symptoms in a US Population.

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4.  A Hypothesis for Examining Skeletal Muscle Biopsy-Derived Sarcolemmal nNOSμ as Surrogate for Enteric nNOSα Function.

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Journal:  Front Med (Lausanne)       Date:  2015-07-28
  4 in total

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