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1.
Neurogastroenterol Motil ; 19(9): 761-8, 2007 Sep.
Article in English | MEDLINE | ID: mdl-17727395

ABSTRACT

Our goal was to examine the relationship between early life trauma and the development of visceral hypersensitivity in later life in irritable bowel syndrome (IBS). Rat pups underwent neonatal conditioning: (i) paired odour-shock, where odour is a predictable shock signal, (ii) unpaired odour-shock, where odour is an unpredictable shock signal or (iii) control odour-only with odour presentations and handling without shock. At maturity, colorectal sensitivity was measured as a visceromotor behavioural response. In adulthood, colorectal distension (CRD) induced a pressure-dependent increase in the number of abdominal muscle contractions all three experimental groups. However, compared to animals that had received control odour-only presentations in infancy, there was an attenuated response to CRD in animals previously exposed to neonatal predictable shock pups and an exaggerated response in the animals previously exposed to neonatal unpredictable shock. Adult responses to CRD were altered by infant experience with shock trauma. However, depending on the context of that early life trauma, there are major differences between the long-term effects of that early life trauma on colonic sensitivity compared to controls. These results strengthen the link between early life trauma and adult IBS, and suggest that unpredictable trauma is a critical factor for later life disorders.


Subject(s)
Hyperalgesia/physiopathology , Irritable Bowel Syndrome/physiopathology , Stress, Psychological/physiopathology , Animals , Animals, Newborn , Conditioning, Classical , Fear/physiology , Female , Male , Manometry , Odorants , Rats , Time Factors
2.
Lipids ; 35(4): 437-44, 2000 Apr.
Article in English | MEDLINE | ID: mdl-10858029

ABSTRACT

Soluble fibers such as guar gum (GG) may exert cholesterol-lowering effects. It is generally accepted that bile acid (BA) reabsorption in portal blood is reduced, thus limiting the capacity of BA to down-regulate liver cholesterol 7alpha-hydroxylase, the rate-limiting enzyme of BA synthesis. In the present work, rats were adapted to fiber-free (FF) or 5% GG diets (supplemented or not with 0.25% cholesterol), to investigate various aspects of enterohepatic BA cycling. GG in the diet at a level of 5% elicited a significant lowering of plasma cholesterol during the absorptive period, in cholesterol-free (-13%) or 0.25% cholesterol (-20%) diet conditions. In rats adapted to the GG diets, the small intestinal and cecal BA pools and the ileal vein-artery difference for BA were markedly enhanced; reabsorption in the cecal vein was also enhanced in these rats. [14C]Taurocholate absorption, determined in perfused ileal segments, was not significantly different in rats adapted to the FF or GG diet, suggesting that a greater flux of BA in the ileum might support a greater ileal BA reabsorption in rats adapted to the GG diet. In contrast, capacities for [14C]cholate absorption from the cecum at pH 6.5 were higher in rats adapted to the GG diet than to the FF diet. Acidification of the bulk medium in isolated cecum (from pH 7.1 down to pH 6.5 or 5.8) or addition of 100 mM volatile fatty acids was also found to stimulate cecal [14C]cholate absorption. These factors could contribute to accelerated cecal BA absorption in rats fed the GG diet. The effects of GG on steroid fecal excretion thus appear to accompany a greater intestinal BA absorption and portal flux to the liver. These results suggest that some mechanisms invoked to explain cholesterol-lowering effect of fibers should be reconsidered.


Subject(s)
Bile Acids and Salts/metabolism , Cholesterol/blood , Dietary Fiber/pharmacology , Galactans/pharmacology , Intestinal Absorption , Mannans/pharmacology , Animals , Arteries , Bile Acids and Salts/blood , Carbon Radioisotopes , Cecum/blood supply , Cecum/metabolism , Cholesterol, Dietary/pharmacology , Hydrogen-Ion Concentration , Ileum/blood supply , Intestine, Small/metabolism , Kinetics , Male , Plant Gums , Rats , Rats, Wistar , Taurocholic Acid/metabolism , Veins
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