Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones

Increasing evidence implicates prolonged intestinal transit (slow transit constipation) in the pathogenesis of conventional gallbladder stones (GBS), and that of gallstones induced by long...

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Main Authors: R Hermon Dowling, Martin J Veysey, Stephen P Pereira, S Hyder Hussaini, Linzi A Thomas, John AH Wass, Gerard M Murphy
Format: Article
Language:English
Published: Hindawi Limited 1997-01-01
Series:Canadian Journal of Gastroenterology
Online Access:http://dx.doi.org/10.1155/1997/532036
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spelling doaj-a24e6a3e046c4b00ac5c8a30ca8c9f322020-11-24T22:09:48ZengHindawi LimitedCanadian Journal of Gastroenterology0835-79001997-01-01111576410.1155/1997/532036Role of Intestinal Transit in the Pathogenesis of Gallbladder StonesR Hermon Dowling0Martin J Veysey1Stephen P Pereira2S Hyder Hussaini3Linzi A Thomas4John AH Wass5Gerard M Murphy6Gastroenterology Unit, Guy’s Hospital & Campus, UMDS of Guy’s & St Thomas’ Hospital, London, UKGastroenterology Unit, Guy’s Hospital & Campus, UMDS of Guy’s & St Thomas’ Hospital, London, UKGastroenterology Unit, Guy’s Hospital & Campus, UMDS of Guy’s & St Thomas’ Hospital, London, UKGastroenterology Unit, Guy’s Hospital & Campus, UMDS of Guy’s & St Thomas’ Hospital, London, UKGastroenterology Unit, Guy’s Hospital & Campus, UMDS of Guy’s & St Thomas’ Hospital, London, UKDepartment of Endocrinology, John Radcliffe Hospital and Oxford University, Oxford, UKGastroenterology Unit, Guy’s Hospital & Campus, UMDS of Guy’s & St Thomas’ Hospital, London, UKIncreasing evidence implicates prolonged intestinal transit (slow transit constipation) in the pathogenesis of conventional gallbladder stones (GBS), and that of gallstones induced by long term octreotide (OT) treatment. Both groups of GBS patients have multiple abnormalities in the lipid composition and physical chemistry of their gallbladder bile - associated with, and possibly due to, an increased proportion of deoxycholic acid (DCA) (percentage of total bile acids). In turn, this increase in the percentage of DCA seems to be a consequence of prolonged colonic transit. Thus, in acromegalic patients OT treatment significantly prolongs large bowel transit time (LBTT) and leads to an associated increase of the percentage of DCA in fasting serum (and, by implication, in gallbladder bile). LBTT is linearly related to the percentage of DCA in fasting serum and correlates significantly with DCA input (into the enterohepatic circulation) and DCA pool size. However, these adverse effects of OT can be overcome by the concomitant use of the prokinetic drug cisapride, which normalizes LBTT and prevents the rise in the percentage of serum DCA. Therefore, in OT-treated patients and other groups at high risk of developing stones, it may be possible to prevent GBS formation with the use of intestinal prokinetic drugs.http://dx.doi.org/10.1155/1997/532036
collection DOAJ
language English
format Article
sources DOAJ
author R Hermon Dowling
Martin J Veysey
Stephen P Pereira
S Hyder Hussaini
Linzi A Thomas
John AH Wass
Gerard M Murphy
spellingShingle R Hermon Dowling
Martin J Veysey
Stephen P Pereira
S Hyder Hussaini
Linzi A Thomas
John AH Wass
Gerard M Murphy
Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones
Canadian Journal of Gastroenterology
author_facet R Hermon Dowling
Martin J Veysey
Stephen P Pereira
S Hyder Hussaini
Linzi A Thomas
John AH Wass
Gerard M Murphy
author_sort R Hermon Dowling
title Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones
title_short Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones
title_full Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones
title_fullStr Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones
title_full_unstemmed Role of Intestinal Transit in the Pathogenesis of Gallbladder Stones
title_sort role of intestinal transit in the pathogenesis of gallbladder stones
publisher Hindawi Limited
series Canadian Journal of Gastroenterology
issn 0835-7900
publishDate 1997-01-01
description Increasing evidence implicates prolonged intestinal transit (slow transit constipation) in the pathogenesis of conventional gallbladder stones (GBS), and that of gallstones induced by long term octreotide (OT) treatment. Both groups of GBS patients have multiple abnormalities in the lipid composition and physical chemistry of their gallbladder bile - associated with, and possibly due to, an increased proportion of deoxycholic acid (DCA) (percentage of total bile acids). In turn, this increase in the percentage of DCA seems to be a consequence of prolonged colonic transit. Thus, in acromegalic patients OT treatment significantly prolongs large bowel transit time (LBTT) and leads to an associated increase of the percentage of DCA in fasting serum (and, by implication, in gallbladder bile). LBTT is linearly related to the percentage of DCA in fasting serum and correlates significantly with DCA input (into the enterohepatic circulation) and DCA pool size. However, these adverse effects of OT can be overcome by the concomitant use of the prokinetic drug cisapride, which normalizes LBTT and prevents the rise in the percentage of serum DCA. Therefore, in OT-treated patients and other groups at high risk of developing stones, it may be possible to prevent GBS formation with the use of intestinal prokinetic drugs.
url http://dx.doi.org/10.1155/1997/532036
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