Studies on incidence rates of first‐time colonic diverticular disease are few, and population‐based estimates of lifetime risk are lacking. In this observational study, the incidence, admission rates and lifetime risks of hospitalization and surgery for diverticular disease were investigated.
BackgroundGastroesophageal reflux disease (GERD), the regurgitation of gastric acids often accompanied by heartburn, affects up to 20% of the general population. Genetic predisposition is suspected from twin and family studies but gene-hunting efforts have so far been scarce and no conclusive genome-wide study has been reported. We exploited data available from general population samples, and studied self-reported reflux symptoms in relation to genome-wide single nucleotide polymorphism (SNP) genotypes.MethodsWe performed a GWAS meta-analysis of three independent population-based cohorts from Sweden, Finland, and UK. GERD cases (n=2247) and asymptomatic controls (n=4503) were identified using questionnaire-derived symptom data. Upon stringent quality controls, genotype data for more than 2.5M markers were used for association testing. Bioinformatic characterization of genomic regions associated with GERD included gene-set enrichment analysis (GSEA), in silico prediction of genetic risk effects on gene expression, and computational analysis of drug-induced gene expression signatures using Connectivity Map (cMap).Key resultsWe identified 30 GERD suggestive risk loci (P5x10(-5)), with concordant risk effects in all cohorts, and predicted functional effects on gene expression in relevant tissues. GSEA revealed involvement of GERD risk genes in biological processes associated with the regulation of ion channel and cell adhesion. From cMap analysis, omeprazole had significant effects on GERD risk gene expression, while antituberculosis and anti-inflammatory drugs scored highest among the repurposed compounds.ConclusionsWe report a large-scale genetic study of GERD, and highlight genes and pathways that contribute to further our understanding of its pathogenesis and therapeutic opportunities.
AimsTo report four histological–immunohistochemical oesophagitis phenotypes.MethodsOesophageal biopsies from 311 patients were stained with H&E and with CD3, a T cell marker. Additional immunohistochemical stains (n=413) were performed in 77 cases.ResultsFour histological–immunohistochemical oesophagitis phenotypes were recorded: lymphocytic oesophagitis (LyE, ≥40 CD3+ lymphocytes/HPF in CD3 immunostain), eosinophilic oesophagitis (EoE, ≥15 eosinophils/HPF in H&E stain), lymphocytic infiltration (≤39 CD3+/HPF) and compound lymphocytic oesophagitis–eosinophilic oesophagitis (Co LyE-EoE). At index biopsy, 28.3% (n=88) had LyE, 21.2% (n=66) EoE, 10.6% (n=33) Co LyE-EoE and 39.9% (n=124) lymphocytic infiltration. A persistent oesophagitis phenotype was found in 42.5% (37/87) in the first follow-up biopsy, in 34.4% (21/61) in the second follow-up biopsy and in 48.1% (26/54) in the third follow-up biopsy. Using βF1 immunostain, two different surface T cell receptors were detected in LyE and Co Lye-EoE: one having ≥40 βF1+/HPF (βF1+ high) and the other having <39 βF1+/HPF (βF1+ low).ConclusionsBased on the literature regarding the significance of intraepithelial lymphocytes (IELs) in the initiation of EoE, we submit that the IEL phenotypes in LyE might differ from those found in EoE as they were unable to elicit the same eosinophilic response. Recent studies disclosed that group 2 innate lymphocytes (ILC2s), enriched in EoE, remain undetected in CD3 immunostain as they lack surface markers for T, B, natural killer (NK) or NK T cells. If ILC2s also participate in the lymphocytic infiltration of EoE, then the frequency of cases with Co LyE-EoE here reported might have been much higher. The four oesophagitis phenotypes described are easy to recognise, provided that the dual staining procedure (H&E-CD3) is implemented.
BACKGROUND:In animal and human studies glucagon-like peptide-2 (GLP-2) has been shown to increase blood flow in the superior mesenteric artery and the portal vein. This study describes the effect of GLP-2 measured directly on the intestinal mucosal blood flow by laser Doppler flowmetry (LDF) in end-jejunostomy short bowel syndrome (SBS) patients.METHODS:In five SBS patients with end-jejunostomy a specially designed laser Doppler probe was inserted into the stoma nipple, and blood flow measured directly on the jejunal mucosa for 105 min in relation to no treatment, systemic saline infusion, topical adrenaline application and a subcutaneous injection of 800 μg native GLP-2.RESULTS:The GLP-2 injection increased jejunal mucosal blood flow by 79±37% compared to conditions, where no treatment was given (p<0.001). The significant effect was present at least 105 min. Systemic saline infusion and topical, mucosal adrenaline application did not affect mucosal microcirculation.CONCLUSIONS:GLP-2 raises jejunal microcirculation in SBS patients with end-jejunostomy. This may explain the redness and increase in the end-jejunostomy nipple size imminently after commencing GLP-2 injections. The potential beneficial effects of this GLP-2-mediated increase of blood flow in the mesenteric bed should be investigated in clinical conditions other than the short bowel syndrome.
Microscopic colitis, comprising collagenous colitis and lymphocytic colitis, is epitomized by chronic watery diarrhea, endoscopically normal colonic mucosa, and characteristic histopathological features. Reports on chromoendoscopic findings in microscopic colitis are scarce and in this paper we describe such findings. We have examined 13 patients with microscopic colitis by means of chromoendoscopy with indigo carmine 0.2%-0.5%. In all 13 cases continuous mucosal changes were seen, with disappearance of innominate grooves or with irregularity of grooves. The segmental distribution of abnormal chromoendoscopic findings corresponded almost completely with the microscopic features. A diffuse mosaic pattern was found in five of 10 cases of collagenous colitis and in all three cases of lymphocytic colitis. Uneven surface was seen in four cases of collagenous colitis, one of collagenous colitis in remission, and one of lymphocytic colitis, and a nodular surface was recorded in five cases of collagenous colitis but in none of the lymphocytic colitis cases. If these findings can be reproduced in larger series of microscopic colitis cases, the need for biopsies as a diagnostic tool might be restricted to patients where chromoendoscopy shows clear mucosal changes, thereby saving costs and limiting possible complications associated with multiple biopsies.
BACKGROUND:Colon cancer and diverticular disease are most common in the Western world and their incidences tend to increase with advancing age. The association between the diseases remains unclear.AIM:To analyse the risk of colon cancer after hospitalisation for diverticular disease.METHODS:Nationwide case-control study. A total of 41,037 patients with colon cancer during 1992-2006, identified from the Swedish Cancer Register were included. Each case was matched with two control subjects. From the Swedish Inpatient Register, cases and control subjects hospitalised for diverticular disease were identified. Odds ratios (OR) and confidence intervals for receiving a diagnosis of colon cancer after hospital discharge for diverticular disease were calculated. Colon cancer mortality was compared between patients with or without diverticular disease.RESULTS:Within 6months after an admission due to diverticular disease, OR of having a colon cancer diagnosis were up to 31.49 (19.00-52.21). After 12 months, there was no increased risk. The number of discharges for diverticular disease did not affect the risk. Colon cancer mortality did not differ between patients with and without diverticular disease.CONCLUSIONS:Diverticular disease does not increase the risk of colon cancer in the long term, and a history of diverticular disease does not affect colon cancer mortality. The increased risk of colon cancer within the first 12months after diagnosing diverticular disease is most likely due to surveillance and misclassification. Examination of the colon should be recommended after a primary episode of symptomatic diverticular disease.
Background Glucose‐dependent insulinotropic polypeptide (GIP) and glucagon‐like peptide‐1 (GLP‐1) are major incretins with important effects on glucoregulatory functions. The aim of this study was to investigate effects of GIP and GLP‐1 on gastric emptying and appetite after a mixed meal, and effects on insulin secretion and glucose disposal in humans.
Peptide tyrosine-tyrosine (PYY) is a prandially controlled hormone in endocrine ileal and colonic mucosa cells. In plasma, PYY appears as full-length PYY1-36 and truncated PYY3-36. Both have different pharmacological profile, and PYY3-36 seems to inhibit food intake. We aimed at investigating the effect of intravenously administered PYY1-36 and PYY3-36 on gastric emptying and short-term metabolic control. Eight healthy adults were studied in single-blinded, randomized design. At separate occasions, intravenous infusion of saline, PYY1-36 or PYY3-36 (0.8 pmol kg(-1) min(-1)) and a radio-labelled omelette were given. Gastric emptying (scintigraphy), appetite ratings (VAS), and plasma concentrations of insulin, glucose, GLP-1 and PYY were measured. PYY3-36 and PYY1-36 both inhibited gastric emptying, PYY3-36 most effectively. Half-emptying time was prolonged from 63.1 +/- 5.2 (saline) to 87.0 +/- 11.5 min (PYY3-36), whereas retention at 120 min was 2.5 +/- 1.4% for saline, 10.7 +/- 4.4 for PYY1-36 and 15.8 +/- 4.4 for PYY3-36. Neither form influenced glucose or GLP-1 concentrations, but both decreased the postprandial rise in insulin. PYY3-36 induced nausea (VAS increase 47.5 +/- 22.6 mm) and decreased prospective consumption (VAS change 39.5 +/- 7.7 mm). In conclusion, PYY3-36's reducing effect upon food intake might be mediated by a decreased gastric emptying rate. (C) 2009 Elsevier B.V. All rights reserved.
Incretin hormones often display inhibitory actions on gut motility. The aim of this study was to investigate if altered responsiveness to glucose-dependent insulinotropic peptide (GIP) and glucagon-like peptide-1 (GLP-1) as regards insulin release and small bowel motility could bring further clarity to the pathophysiology of diabetes in the Goto-Kakizaki (GK) rat. The isolated perfused pancreas was studied in male GK and Wistar rats (controls) under euglycemic and hyperglycemic conditions. Glucose-dependent insulinotropic peptide (10 nmol L(-1)) or GLP-1 (10 nmol L(-1)) were added to the medium and perfusate was collected and analysed for insulin. Moreover, GK and Wistar rats were supplied with bipolar electrodes in the small bowel and myoelectric activity was recorded during intravenous administration of GIP (1-400 pmol kg(-1) min(-1)) or GLP-1 (0.1-20 pmol kg(-1) min(-1)). Finally, tissue was collected from GK and Wistar rats for RNA extraction. Under euglycemia, GIP and GLP-1 stimulated the initial insulin response by 10-fold in GK rats (P < 0.05). At later hyperglycemia, the insulin response to GIP and GLP-1 was blunted to about one-third compared with controls (P < 0.05). In the bowel GLP-1 was about 2.6-16.7 times more potent than GIP in abolishing the migrating myoelectric complex in the GK and control rats. Polymerase chain reaction (PCR) showed GIP and GLP-1 receptor gene expression in pancreatic islets and in small bowel. The initially high, but later low insulin responsiveness to stimulation with GIP and GLP-1 along with inhibition of small bowel motility in the GK rat indicates a preserved incretin response on motility in diabetes type 2.
Glucagon-like peptide-1 (GLP-1) is released after food intake to act as an incretin. GLP-1 also inhibits gastric emptying and increases satiety. In rats, GLP-1 inhibits small bowel motility. Our aim was to study the effects of GLP-1 on gastrointestinal motility in healthy subjects and patients with irritable bowel syndrome (IBS). Antro-duodeno-jejunal manometry was carried out during a 4-h control period with saline, followed by a 4-h period with intravenous GLP-1 (healthy: 0.7 and 1.2 pmol kg(-1) min(-1) (n = 16); IBS, 1.2 and 2.5 pmol kg(-1) min(-1) (n = 14). Plasma was analysed for GLP-1 and gut hormones, and gut tissue expression of GLP-1 receptor was studied. In healthy subjects, GLP-1 0.7 pmol kg(-1) min(-1) reduced the migrating motor complexes (MMCs) from a median of 2 (range 2-3) to 0.5 (0-2), and motility index from 4.9 +/- 0.1 to 4.3 +/- 0.3 ln Sigma(mmHg*s min(-1)) in jejunum, while GLP-1 1.2 pmol kg(-1) min(-1) diminshed MMCs from 2 (2-3) to 1.5 (1-2.5), and motility index from 5.2 +/- 0.2 to 4.4 +/- 0.2. In IBS patients, GLP-1 1.2 pmol kg(-1) min(-1) reduced the MMCs from 2.5 (2-3.5) to 1 (0-1.5) without affecting motility index. At 2.5 pmol kg(-1) min(-1) GLP-1 decreased MMCs from 2 (1.5-3) to 1 (0.5-1.5), and motility index from 5.2 +/- 0.2 to 4.0 +/- 0.5. Motility responses to GLP-1 were similar in antrum and duodenum. Presence of the GLP-1 receptor in the gut was verified by reverse transcriptase PCR. In conclusion, the gut peptide GLP-1 decreases motility in the antro-duodeno-jejunal region and inhibits the MMC in healthy subjects and IBS patients.
Aim: To investigate the effects of members of the pancreatic polypeptide family on migrating myoelectric complexes in rats in vivo.Methods: Rats were supplied with bipolar electrodes at 5 (duodenum), 15 and 25 cm (jejunum) distal to pylorus for electromyography. The natural ligands neuropeptide Y, pancreatic polypeptide, peptide YY1-36 and peptide YY3-36 were infused IV at doses of 0.5-400 pmol kg(-1) min(-1). The mechanisms of action were studied after pre-treatment with N-omega-nitro-L-arginine (L-NNA) 1 mg kg(-1), guanethidine 3 mg kg(-1) and in bilaterally vagotomized animals.Results: PP inhibited myoelectrical activity dose-dependently in both the duodenum (ED50 5.8 pmol kg(-1) min(-1)) and jejunum (2.6 pmol kg(-1) min(-1)). PYY1-36 and PYY3-36 also had inhibitory effect in the jejunum (4.4 and 130 pmol kg(-1) min(-1), respectively). PYY1-36 had no significant effect in the duodenum, whereas PYY3-36 stimulated myoelectrical activity at the highest doses. NPY was without effect. In the jejunum neither L-NNA, guanethidine or vagotomy had any significant influence on the inhibitory effects of PP, PYY1-36 and PYY3-36. In the duodenum, the effect of PP was inhibited by guanethidine, but not L-NNA or vagotomy. The stimulatory effect of PYY3-36 in the duodenum was blocked by L-NNA and vagotomy, whereas guanethidine was without effect.Conclusion: Peptides of the PP family modulate small bowel motility differentially. Whereas their general effect is inhibitory in the jejunum, the mixing duodenal compartment is stimulated by PYY3-36, suggested to reflect receptor distribution distinction in the gut. This implicates distribution of distinct receptors in the gut being activated by either peptide. (c) 2006 Elsevier B.V. All rights reserved.
BACKGROUND:The timing of the migrating motor complexes (MMC) at food intake may influence gastric emptying and release of regulatory hormones. This report studies the relationships between phases I (motor quiescence) and II (intermediate frequency contractions) of MMC and prandial gut hormone response.MATERIALS AND METHODS:Seven fasting volunteers ingested a meal during phase I or II of MMC verified by manometry, using paracetamol as a marker for gastric emptying. Blood was sampled before, during and 210 min after food intake for analysis of ghrelin, motilin, insulin and paracetamol.RESULTS:The basal level of ghrelin during phase I was 127.5 +/- 25.4 pmol L(-1) and during phase II was 132.4 +/- 24.8 pmol L(-1). After food intake during phase I, ghrelin fell to 77.2 +/- 10 pmol L(-1); in phase II it fell to 82.7 +/- 17.8 pmol L(-1) within 60 min and returned to baseline levels after 120 min. Baseline levels of motilin were 16 +/- 2 pmol L(-1) and 18 +/- 3 pmol L(-1) during phases I and II, respectively. After food, motilin decreased to 8.5 +/- 0.7 pmol L(-1) and 8.7 +/- 1.0 pmol L(-1) within 60 min and returned to baseline after 90 min. Insulin levels in phases I and II were 8.1 +/- 1.2 mU L(-1) and 8.6 +/- 0.7 mU L(-1), respectively, reaching 138.9 +/- 35.6 mU L(-1) and 167.4 +/- 30.0 mU L(-1) at 45 min postprandially.CONCLUSIONS:The nutritional status of the gastrointestinal tract at food intake had only a limited impact on plasma ghrelin. After food intake, plasma ghrelin drops, similar to motilin, and resumes preprandial levels within 120 min.
CONTEXT:Ghrelin is produced primarily by enteroendocrine cells in the gastric mucosa and increases gastric emptying in patients with gastroparesis.MAIN OBJECTIVE:The objective of the study was to evaluate the effect of ghrelin on gastric emptying, appetite, and postprandial hormone secretion in normal volunteers.DESIGN:This was a randomized, double-blind, crossover study.SUBJECTS:Subjects included normal human volunteers and patients with GH deficiency.INTERVENTION:Intervention included saline or ghrelin (10 pmol/kg.min) infusion for 180 min after intake of a radioactively labeled omelette (310 kcal) or GH substitution in GH-deficient patients.MAIN OUTCOME MEASURES:Measures consisted of gastric empty-ing parameters and postprandial plasma levels of ghrelin, cholecystokinin, glucagon-like peptide-1, peptide YY, and motilin.RESULTS:The emptying rate was significantly faster for ghrelin (1.26 +/- 0.1% per minute), compared with saline (0.83% per minute) (P < 0.001). The lag phase (16.2 +/- 2.2 and 26.5 +/- 3.8 min) and half-emptying time (49.4 +/- 3.9 and 75.6 +/- 4.9 min) of solid gastric emptying were shorter during ghrelin infusion, compared with infusion of saline (P < 0.001). The postprandial peak in plasma concentration for cholecystokinin and glucagon-like peptide-1 occurred earlier and was higher during ghrelin infusion. There was no significant effect of ghrelin on plasma motilin or peptide YY. There was no difference in gastric emptying before and after GH substitution.CONCLUSION:Our results demonstrate that ghrelin increases the gastric emptying rate in normal humans. The effect does not seem to be mediated via GH or motilin but may be mediated by the vagal nerve or directly on ghrelin receptors in the stomach. Ghrelin receptor agonists may have a role as prokinetic agents.
Orexin A (OXA) increases food intake and inhibits fasting small bowel motility in rats. The aim of this study was to examine the effect of exogenous OXA and endogenous OXA on gastric emptying, acid secretion, glucose metabolism and distribution of orexin immunoreactivity in the stomach. Rats equipped with a gastric fistula were subjected to intravenous (IV) infusion of OXA or the selective orexin-1 receptor (OX1R) antagonist SB-334867-A during saline or pentagastrin infusion. Gastric emptying was studied with a liquid non-nutrient or nutrient, using 51Cr as radioactive marker. Gastric retention was measured after a 20-min infusion of OXA or SB-334867-A. Plasma concentrations of OXA, insulin, glucagon, glucose and gastrin were studied. Immunohistochemistry against OXA, OX1R and gastrin in gastric tissue was performed. OXA alone had no effect on either acid secretion or gastric emptying. SB-334867-A inhibited both basal and pentagastrin-induced gastric acid secretion and increased gastric retention of the liquid nutrient, but not PEG 4000. Plasma gastrin levels were unchanged by IV OXA or SB-334867-A. Plasma OXA levels decreased after intake of the nutrient meal and infusion of the OX1R antagonist. Only weak effects were seen on plasma glucose and insulin by OXA. Immunoreactivity to OXA and OX1R were found in the mucosa, myenteric cells bodies and varicose nerve fibers in ganglia and circular muscle of the stomach. In conclusion, endogenous OXA influences gastric emptying of a nutrient liquid and gastric acid secretion independent of gastrin. This indicates a role for endogenous OXA, not only in metabolic homeostasis, but also in the pre-absorptive processing of nutrients in the gut.
BACKGROUND AND AIM:Glucagon-like peptide-2 (GLP-2) and peptide YY (PYY) are produced in endocrine L-cells of the intestine and secreted in response to food intake. GLP-2 has a trophic effect on the intestinal epithelium, whereas PYY has pro-absorptive effects. It can be speculated that, in inflammatory bowel disease (IBD), the production and secretion of GLP-2 and PYY could be affected as a part of a regulatory mechanism. Therefore, tissue levels and meal-stimulated secretion of GLP-2 and PYY were studied in IBD patients and compared to controls. METHODS:Outpatients with IBD and control patients were included. Mucosal biopsies were taken from the ileum and colon and the content of GLP-2 and PYY was measured. After colonoscopy the patients took a mixed meal and plasma was collected for 90 min for plasma measurements of GLP-2 and PYY. RESULTS:Tissue levels of GLP-2 in control patients were highest in the terminal ileum (407+/-82 pmol/g tissue, n=10), whereas PYY was highest in the rectum (919+/-249 pmol/g tissue, n=10). In IBD patients with acute inflammation, the content of GLP-2 was similar to controls, whereas PYY was decreased to 72.1+/-17.7% (P=0.03, n=13) of control values. Neither the fasting plasma levels nor the meal responses of GLP-2 and PYY differed between controls and IBD patients. CONCLUSION:The similar responses of GLP-2 and PYY in patients and controls do not support the suggestion that L-cell secretion is altered in IBD. The decreased tissue PYY concentrations may contribute to the diarrhoea of some of these patients.
Ghrelin is a gut peptide that is secreted from the stomach and stimulates food intake. There are ghrelin receptors throughout the gut and intracerebroventricular ghrelin has been shown to increase gastric acid secretion. The aim of the present study was to examine the effects of peripherally administered ghrelin on gastric emptying of a non-nutrient and nutrient liquid, as well as, basal and pentagastrin-stimulated gastric acid secretion in awake rats. In addition, gastric contractility was studied in vitro. Rats equipped with a gastric fistula were subjected to an intravenous infusion of ghrelin (10–500 pmol kg− 1 min− 1) during saline or pentagastrin (90 pmol kg− 1 min− 1) infusion. After administration of polyethylene glycol (PEG) 4000 with 51Cr as radioactive marker, or a liquid nutrient with 51Cr, gastric retention was measured after a 20-min infusion of ghrelin (500 pmol kg− 1 min− 1). In vitro isometric contractions of segments of rat gastric fundus were studied (10− 9 to 10− 6 M). Ghrelin had no effect on basal acid secretion, but at 500 pmol kg− 1 min− 1 ghrelin significantly decreased pentagastrin-stimulated acid secretion. Ghrelin had no effect on gastric emptying of the nutrient liquid, but significantly increased gastric emptying of the non-nutrient liquid. Ghrelin contracted fundus muscle strips dose-dependently (pD2 of 6.93 ± 0.7). Ghrelin IV decreased plasma orexin A concentrations and increased plasma somatostatin concentrations. Plasma gastrin concentrations were unchanged during ghrelin infusion. Thus, ghrelin seems to not only effect food intake but also gastric motor and secretory function indicating a multifunctional role for ghrelin in energy homeostasis.
Energy balance is a metabolic state that exists when total body energy expenditure equals dietary energy intake. Even though this energy balance is usually fine tuned, in some individuals there is an imbalance between energy intake and expenditure, resulting in obesity. In fact, obesity is today a worldwide public health problem; in some areas in the USA more than 25% of the population are obese (body mass index; BMI /30 kg m ). Obesity and insulin resistance, which appear as a common feature of obesity, are intimately associated with various medical complications and illnesses, such as hypertension, diabetes mellitus type 2, cancer, ischaemic heart disease and osteoarthritis, among others. Early experiments in animals with lesions in different hypothalamic nuclei, suggested that a satiety centre was localized in the baso-medial hypothalamus [1], while the lateral part was considered to be the hunger centre [2]. In addition, both the arcuate nucleus and the periventricular nuclei are important centres in the control of food intake, while the nucleus of the solitary tract (NTS) in the brainstem should serve as gateway for signals from the gastrointestinal (GI) tract to the hypothalamic level [3]. As early as 1952, G. C. Kennedy postulated that the maximum daily intake of food during hyperphagia was determined by some delimiting factor in addition to hypothalamic mechanisms [4]. Today, we know that the control of feeding not only involves the central nervous system (CNS), but also the adrenal glands, the pancreas and the GI tract. In addition, recent work has shown that adipose tissue has an important part in the regulation of food intake as adipocytes elaborate and release a number of endocrine and paracrine mediators, including leptin, adiponectin, resistin and tumour necrosis factor-a, which have all been shown to influence appetite and food intake [5]. The current obesity epidemic has not escaped the Gastroenterological Society. At the Digestive Disease Week 2004, much interest was taken in the GI regulation of food intake and its relationship to the obesity problem. The aim of this review is to present our current knowledge of GI signalling involved in the control of food intake. However, several other actions and agents, such as blood glucose and insulin, circulating free fatty acids, catecholamines and 5-hydroxytryptamine (5-HT) and hormones produced by adipose tissue, such as leptin, adiponectin and resistin may contribute in the regulation of food intake.