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Biomedical subjects

R L Riepl

Publications and source records attributed to R L Riepl.

At least 19 recordsLinked to original sources

Post-prandial decrease of circulating human ghrelin levels.

Ghrelin, an endogenous ligand of the GH secretagogue-receptor, has recently been shown to stimulate GH secretion and to have orexigenic and adipogenic effects in rodents, but little is known about its regulation and biological function in humans. Gastric motor function is under control of the central nervous system; however, the afferent and efferent loops of this feedback control mechanism remain to be elucidated. In the study presented here we investigated the effect of nutrient intake on circulating human ghrelin levels, and a possible association between ghrelin levels and gastric emptying. Ten healthy volunteers received a standard meal after an overnight fast. Food intake significantly decreased plasma ghrelin levels from 248.5 +/- 15.0 to 179.5 +/- 17.9 fmol/ml (120 min after meal, p=0.047). Gastric emptying half-time (non-invasive 13C-octanoic acid breath test) was correlated with fasting plasma ghrelin levels (r=0.74, p=0.0013). Ghrelin appears to be one possible candidate to provide feedback signaling between nutrient intake, gastric motor function and the central nervous system.

Adult↗

Weight gain decreases elevated plasma ghrelin concentrations of patients with anorexia nervosa.

OBJECTIVE: Ghrelin is a new gastric hormone that has been identified as an endogenous ligand for the growth hormone (GH) secretagogue receptor subtype 1a (GHS-R1a). Ghrelin administration however not only stimulates GH secretion but also induces adiposity in rodents by increasing food intake and decreasing fat utilization. We hypothesized that impaired ghrelin secretion in anorexia nervosa may be involved in the pathogenesis of this eating disorder. To examine this hypothesis and to further investigate the role for ghrelin in regulating energy homeostasis, we analyzed circulating ghrelin levels in patients with anorexia nervosa and examined possible correlations with clinical parameters before and after weight gain. METHODS: Plasma ghrelin levels were measured in overnight fasting plasma samples from 36 female patients with anorexia nervosa (age: 25.0+/-1.2 years, BMI: 15.2+/-0.2 kg/m(2)) before and after weight gain following psychotherapeutic treatment intervention in a psychosomatic institution. Plasma ghrelin levels were also measured in fasting plasma samples from 24 age-matched female controls (31+/-1.4 years, BMI: 22.9+/-0.45 kg/m(2)). For quantification of ghrelin levels a commercially available radioimmunoassay (Phoenix Pharmaceuticals, USA) was used. RESULTS: Fasting plasma ghrelin levels in anorectic patients were significantly higher (1057+/-95 pg/ml) than in normal age-matched female controls (514+/-63 pg/ml n=24, P=0.02). Therapeutic intervention in a psychosomatic institution caused an BMI increase of 14% (P<0.001) leading to a significant decrease in circulating ghrelin levels of 25%, (P=0.001). A significant negative correlation between Deltaghrelin and DeltaBMI was observed (correlation coefficient: -0.47, P=0.005, n=36). CONCLUSION: We show for the first time that fasting plasma levels of the novel appetite-modulating hormone ghrelin are elevated in anorexia nervosa and return to normal levels after partial weight recovery. These observations suggest the possible existence of ghrelin resistance in cachectic states such as caused by eating disorders. Future studies are necessary to investigate putative mechanisms of ghrelin resistance such as a possible impairment of intracellular ghrelin receptor signaling in pathophysiological states presenting with cachexia.

Adolescent↗

Accuracy of 13C-urea breath test in clinical use for diagnosis of Helicobacter pylori infection.

UNLABELLED: The 13C-urea breath test (UBT) is a noninvasive test for diagnosis of Helicobacter pylori infection of gastric mucosa. The aim of this prospective study was to assess the accuracy of a simple UBT in clinical routine use. METHODS: The study population comprised of 100 patients (49 f, 51 m) requiring diagnostic upper GI endoscopy. One biopsy specimen was taken from the gastric antrum, body and fundus, respectively, for standard histological examination and one additional specimen from each location was transformed into transport medium for cultivation of H. pylori. After vaccination of the culture plates the biopsies were tested for urease activity (UAT). After recovery from endoscopy the patients had to pass an one liter endexspiratory breath sample before and 15 min after drinking 200 ml orange juice, pH 3.6, containing 75 mg of 13C-urea. 13CO2 was measured in the breath samples using isotope-selective nondispersive infrared spectrometry. RESULTS: Defining gold standard groups with all biopsy tests (from antrum and corpus) positive or negative the 13CO2 delta over baseline (DOB) cut-off level of UBT was set at 6.5/1000 in order to best discriminate positive from negative patients (ROC analysis). UBT was positive in 37% of all subjects. Taken UAT and histological examination together (positive when both tests were positive) UBT displayed a sensitivity of 92%, a specificity of 94%, a positive predictive value of 89%, and a negative predictive value of 94%. When including the results of culture sensitivity and negative predictive value reached almost 100%. The mean of the 13CO2-DOB values from H. pylori-positive duodenal or gastric ulcer patients did not differ from controls (H. pylori-positive patients without lesions). The 13CO2-DOB values of the ulcer group were correlated significantly with the active inflammatory component of gastritis in antrum, corpus, and fundus. CONCLUSION: UBT with this setup detects H. pylori infection in clinical routine use with high accuracy. The increase of exhaled 13CO2 does not predict ulcer disease but reflects the degree of active inflammation of gastric mucosa.

Biopsy↗

Pancreatic bicarbonate response to intraduodenal tryptophan in dogs: role of muscarinic M1-receptors and cholecystokinin.

CONCLUSIONS: In dogs, 1. Activation of cholecystokinin-receptors is needed for an adequate pancreatic bicarbonate response to secretin; 2. Cholinergic nerve fibers ending on M1-receptors are probably of little or no importance for the bicarbonate response to secretin in the given dose; 3. The bicarbonate response to tryptophan, given with a secretin background, is controlled by cholinergic M1-fibers and by cholecystokinin; 4. M1-fibers mainly mediate the bicarbonate response to low loads of tryptophan, whereas cholecystokinin controls the response to low and high loads of tryptophan; and 5. Both mediators interact in a synergistic manner. METHODS: In six conscious dogs with chronic gastric and duodenal fistulas, we compared the action of the M1-receptor antagonist telenzepine (20.25-81.0 nmol/kg/h), the cholecystokinin-receptor antagonist L-364,718 (0.025-0.1 mg/kg/h), and combinations of both on the pancreatic bicarbonate response to graded loads of intraduodenal tryptophan (0.37-10.0 mmol/h), given against a background of secretin (20.5 pmol/kg/h). RESULTS: Secretin significantly (p < 0.05) stimulated the pancreatic bicarbonate output above basal levels. All doses of L-374,718, but not telenzepine, significantly decreased the bicarbonate response to secretin by up to 64%. Additional administration of telenzepine together with L-364,718 had no further inhibitory effect on the secretin-stimulated bicarbonate output as compared to L-364,718 given alone. All loads of tryptophan significantly increased the bicarbonate output over that seen with secretin alone (= incremental bicarbonate response to tryptophan). Telenzepine significantly decreased the incremental bicarbonate response to the two lower loads (0.37-1.1 mmol/h) of tryptophan (by 82-124%); L-364,718 decreased the incremental bicarbonate response to all loads of tryptophan (by 50-118%). The incremental bicarbonate output, as well as the 180-min integrated bicarbonate response to all loads of tryptophan, were abolished by all combinations of both antagonists.

Animals↗

Delayed colonic transit times in amyotrophic lateral sclerosis assessed with radio-opaque markers.

Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disorder, characterized by progressive loss of motor neurons. However, ALS has been recognized to involve several non-motor systems, subclinically. Cardiac and sudomotor autonomic involvement in ALS has been described. Recently, delayed gastric emptying was reported. The aim of this study was to assess colonic transit time in patients with ALS. Therefore, measurement of total and segmental colonic transit times using radio-opaque markers was performed in 14 patients with ALS and 14 healthy age-matched volunteers. Multiple-ingestion, single-radiograph technique was used. Segmental and colonic transit times were calculated from the number of retained markers. Nine of 14 patients with ALS showed markedly delayed colonic transit times if compared to healthy controls. Colonic transit in ALS patients was significantly delayed in the right and left colon; the rectosigmoid transit did not show major delay. The colonic transit times did not correlate with bulbar involvement, Norris score, walking disability or duration of the disease. In summary, colonic dysfunction in ALS may be a result of inactivity or inadequate fiber intake. However, it also may represent a gastrointestinal autonomic involvement due to nerval degeneration. Considering ALS as a multisystem disorder including the autonomic nervous system may have implications for research into pathogenesis and therapy of neurodegenerative disease.

Abdominal Pain↗

Gastric emptying following pylorus-preserving Whipple and duodenum-preserving pancreatic head resection in patients with chronic pancreatitis.

BACKGROUND: After pylorus-preserving Whipple (PPW), delayed gastric emptying (DGE) is reported in up to 50% of these patients. We analyzed gastric emptying and hormonal adaptation of cholecystokinin (CCK), pancreatic polypeptide (PP), and gastrin following two surgical procedures for chronic pancreatitis (CP): the PPW and the duodenum-preserving pancreatic head resection (DPPHR). METHODS: Ten patients underwent DPPHR and 10 underwent PPW for CP. Preoperatively and 10 days and 6 months postoperatively, gastric emptying (paracetamol absorption test) and CCK, gastrin, and PP were measured using a test meal stimulation. RESULTS: The area under the serum paracetamol time curve for 0 to 120 minutes (AUC) showed no preoperative difference. Ten days postoperatively, the AUC was significantly reduced (P <0.05) after PPW but not after DPPHR. Six months postoperatively, AUC was comparable with the preoperative findings in DPPHR and PPW. The integrated 180-minute PP release was significantly reduced 10 days and 6 months postoperatively in both groups. The integrated 180-minute CCK release was decreased 10 days after PPW, but failed to be significant (P = 0.053). Gastrin levels were postoperatively unchanged. CONCLUSION: Following DPPHR we found no delay in gastric emptying. In contrast, DGE occurs early after PPW. Our data may help explain the slower recovery in PPW patients with regard to weight gain and relief from pain, which may be due to the functional alteration of gastric emptying and motility after this type of surgery.

Acetaminophen↗

Alcoholic beverages produced by alcoholic fermentation but not by distillation are powerful stimulants of gastric acid secretion in humans.

BACKGROUND: The effect of commonly ingested alcoholic beverages on gastric acid output and release of gastrin in humans is unknown. AIM AND METHODS: In 16 healthy humans the effect of some commonly ingested alcoholic beverages produced by fermentation plus distillation (for example, whisky, cognac, calvados, armagnac, and rum) or by alcoholic fermentation (beer, wine, champagne, martini, and sherry) on gastric acid output and release of gastrin was studied. Gastric acid output was determined by the method of intragastric titration. Plasma gastrin was measured using a specific radioimmunoassay. RESULTS: None of the alcoholic beverages produced by fermentation plus distillation had any significant effect on gastric acid output and release of gastrin compared with control (isotonic glucose and distilled water). Alcoholic beverages produced only by fermentation significantly (p < 0.05) increased the gastric acid output by 57% to 95% of maximal acid output (MAO) and release of gastrin up to 5.1-fold compared with control. If beer, wine, and sherry were distilled, only their remaining parts increased gastric acid output by 53% to 76% of MAO and increased release of gastrin up to 4.3-fold compared with control. CONCLUSIONS: (1) Alcoholic beverages produced by fermentation but not by distillation are powerful stimulants of gastric acid output and release of gastrin; (2) the alcoholic beverage constituents that stimulate gastric acid output and release of gastrin are most probably produced during the process of fermentation and removed during the following process of distillation.

Adult↗

Effects of telenzepine and L-364,718 on canine pancreatic secretion before and after vagotomy.

In six conscious dogs we compared the action of the M1-receptor antagonist telenzepine (20.25-81.0 nmol.kg-1.h-1), the cholecystokinin (CCK) antagonist L-364,718 (0.025-0.1 mg.kg-1.h-1), and combinations of both on the pancreatic secretory response to intraduodenal tryptophan, given against a secretin background before and after truncal vagotomy. Before vagotomy, the higher doses of telenzepine and of L-364,718 significantly (P < 0.05) decreased the protein response to tryptophan by up to 97%. After vagotomy, all doses of L-364,718 abolished the protein response, whereas telenzepine had no further effect. Before and after vagotomy, all combinations abolished the protein response. The plasma CCK-like immunoreactivity basally, during secretin, and in response to tryptophan was not altered by vagotomy, telenzepine, and/or L-364,718. These findings indicate that in dogs 1) potentiation exists between M1 receptors and CCK for stimulation of the pancreatic enzyme response to intraduodenal tryptophan, 2) the cholinergic fibers of the enteropancreatic reflex activated by tryptophan run within the vagus nerves and end at least in part on M1 receptors, 3) CCK acts in part independently of the vagal nerves, and 4) the CCK release by intestinal tryptophan is not influenced by vagotomy, telenzepine, and/or L-364,718.

Animals↗

Mediators of exocrine pancreatic secretion induced by intraduodenal application of bile and taurodeoxycholate in man.

The aim of the study was to investigate whether cholecystokinin, neurotensin, and cholinergic mechanisms act as mediators of bile salt-stimulated exocrine pancreatic secretion. Ten fasting healthy subjects provided with a double-lumen tube received 2, 4, and 6 g cattle bile and 200, 400, and 600 mg Na-taurodeoxycholate (TDC) into the duodenum at 65-min intervals, respectively. The application of TDC was repeated in another 10 subjects after intravenous bolus injection of 2.5 micrograms/kg b.w. atropine followed by continuous infusion of 5 micrograms/kg.h. Secretions of volume, bicarbonate, trypsin, and lipase were determined in 10-min fractions of duodenal juice. Plasma samples were analysed for cholecystokinin-like immunoreactivity (CCK-LI) and neurotensin with radioimmunoassays. Volume, bicarbonate, trypsin, and lipase secretion rates were significantly increased by 4 g and 6 g bile and by all doses of TDC. Incremental volume and bicarbonate output was dose-dependently enhanced by bile and TDC, and trypsin and lipase output by bile. Atropine significantly decreased the baseline values and all responses to TDC. Plasma concentrations and integrated CCK-LI and neurotensin significantly increased after 4 and 6 g bile and after 400 and 600 mg TDC. Atropine did not significantly influence peptide release. It is concluded that both hydrokinetic and ecbolic pancreatic secretion stimulated by intraduodenal bile and TDC are dependent on a cholinergic tone. CCK and probably also neurotensin act as further mediators of the ecbolic effect.

Animals↗

Effect of intraduodenal taurodeoxycholate and L-phenylalanine on pancreatic secretion and on gastroenteropancreatic peptide release in man.

Intraduodenally applied bile salts and essential amino acids are known to stimulate exocrine pancreatic secretion. There are contradictory reports, however, about an interaction of both stimuli with respect to pancreatic function. The intention of the study was to compare the effects of equimolar amounts of taurodeoxycholate and L-phenylalanine used singularly and combined on pancreatic secretion and on gastroenteropancreatic peptide release. In 12 healthy subjects, 0.8 mmol of Na-taurodeoxycholate (410 mg) and L-phenylalanine (130 mg) were separately and combined applied into the duodenum in a randomized order. Volume, bicarbonate, trypsin, lipase, and amylase secretion as well as cholecystokinin, pancreatic polypeptide, and somatostatin plasma levels were measured. Volume and bicarbonate secretion was significantly enhanced by taurodeoxycholate. The effect was stronger compared to L-phenylalanine. The increase of enzyme secretion was comparable. After combined application, the ecbolic effect was insignificantly smaller, whereas the hydrokinetic effect was between those of the single stimuli. Plasma levels of cholecystokinin, pancreatic polypeptide, and somatostatin rose concomitantly with the pancreatic response. On an equimolar basis taurodeoxycholate results in a stronger hydrokinetic effect than L-phenylalanine. Their ecbolic effects, however, are comparable. In addition to cholinergic mechanisms, as indicated by the PP release observed, cholecystokinin may also act as a mediator. In combined application, the stimuli interfere with each other. Somatostatin and pancreatic polypeptide are not responsible for this mutual inhibition.

Amylases↗

Effect of beer, yeast-fermented glucose, and ethanol on pancreatic enzyme secretion in healthy human subjects.

The effect of beer, ethanol (4% v/v), and corresponding volumetric (water), caloric (glucose 5.76% w/v), and osmotic (glucose 11.5% w/v) control solutions on pancreatic enzyme output and release of gastrin and cholecystokinin (CCK) were studied in six healthy human subjects. As a simpler model of beer, yeast-fermented glucose solution (11.5% w/v) was also studied and compared with unfermented glucose (11.5% w/v). Among the control solutions, the two glucose solutions, but not water, significantly (P < 0.05) increased the 150-min integrated trypsin and amylase output over basal levels. Beer and fermented glucose caused a significantly higher increase in trypsin and amylase output compared to water or glucose. Ethanol (4% v/v) failed to stimulate pancreatic enzyme output. Fermented glucose and beer, but not the control solutions, significantly increased plasma gastrin levels above basal values. Isotonic and hypertonic glucose, beer, and fermented glucose significantly increased plasma levels of cholecystokinin (CCK), but the effect was significantly higher after hypertonic glucose than after isotonic glucose, beer, or fermented glucose. Ethanol and water had no effect on plasma levels of gastrin and CCK. We conclude that: (1) in the doses studied intragastric beer and fermented glucose but not ethanol (4% v/v) stimulate pancreatic enzyme output and release of gastrin and CCK; (2) the lack of effect of ethanol indicates that nonalcoholic ingredients of beer and fermented glucose are responsible for this stimulatory effect; and (3) CCK could be one of the major mediators of the stimulation of pancreatic enzyme output after ingestion of beer and fermented glucose.

Adult↗

Suppression of vagus-mediated pancreatic polypeptide release by the mu-opiate receptor agonist loperamide in man.

1. Morphine suppresses the release of pancreatic polypeptide, a hormone under vagal cholinergic control. The intention of the study was to detect whether the mu-opiate receptor agonist loperamide is also able to inhibit pancreatic polypeptide release, and to define its site of action. 2. In groups of healthy subjects (n = 6 each) stimulation of pancreatic polypeptide was assessed in five different tests: (i) insulin-hypoglycaemia; (ii) modified sham feeding; (iii) intravenous infusion of the cholecystokinin analogue ceruletide; (iv) injection of corticotropin releasing hormone; (v) infusion of the muscarinic acetylcholine agonist bethanechol. All tests were performed after oral application of either a placebo or loperamide (16 mg), tests (ii) and (iii) were repeated with loperamide in smaller doses (2 and 6 mg), with loperamide plus naloxone, with naloxone alone, and with infusion of atropine. Plasma concentrations of pancreatic polypeptide were measured radioimmunologically. 3. Release of pancreatic polypeptide in test (i) to (iv) was completely blocked by 16 mg loperamide, whereas bethanechol-stimulated release (test 5) was not influenced. Tests (ii) and (iii) showed that the inhibition was dose-dependent and could be attenuated by naloxone. The inhibitory effect of loperamide was comparable with that of atropine. 4. We conclude that loperamide causes a dose-dependent inhibition of pancreatic polypeptide release mediated by vagal-cholinergic pathways, but does not have an atropine-like peripheral action.

Adult↗

Comparison of the effects of the M1-receptor antagonist telenzepine and the CCK-receptor antagonist loxiglumide on the pancreatic secretory response to intraduodenal tryptophan in dogs.

In six conscious dogs with chronic gastric and pancreatic fistulas we compared the action of different doses (20.25 to 81.0 nmol/kg/h) of the muscarinic M1-receptor antagonist telenzepine, the cholecystokinin (CCK) antagonist loxiglumide (2.5 to 10.0 mg/kg/h) and several combinations of both drugs on the pancreatic secretory response to intraduodenal perfusion of graded loads of tryptophan (0.37-10.0 mmol/h) given against a background of secretin (20.5 pmol/kg/h i.v.). Except for 20.25 nmol/kg/h telenzepine, all tested doses of telenzepine and/or loxiglumide decreased the 180-min integrated bicarbonate response to tryptophan by 55 to 119%. Except of 20.25 nmol/kg/h telenzepine and/or 2.5 mg/kg/h loxiglumide, all tested doses of telezepine and/or loxiglumide inhibited the tryptophan stimulated integrated pancreatic protein responses by 54 to 88%. While telenzepine mainly inhibited the bicarbonate and protein response to the lower loads of tryptophan (0.37-1.1 mmol/h), loxiglumide decreased the response to all loads of tryptophan. The inhibition evoked by the combinations of telenzepine and loxiglumide was not significantly greater than that by single infusion of either drug. The CCK plasma levels basally and in response to tryptophan were not significantly altered by telenzepine and/or loxiglumide. These findings indicate that (1) both enteropancreatic cholinergic reflexes and the hormone CCK are mediators of the protein response to intraduodenal trytophan (2) enteropancreatic cholinergic reflexes are probably the dominant mediators of the response to low amounts of tryptophan, whereas CCK is the major mediator of the response to high loads of tryptophan, (3) the two mediators seem to act independently of each other, and (4) the release of CCK by intestinal trytophan is not influenced by telenzepine or loxiglumide.

Animals↗

Decreased substance P levels in rectal biopsies from patients with slow transit constipation.

OBJECTIVE: Previous studies in patients with chronic constipation found abnormalities in the nervous tissue of the large intestine, predominantly in the muscularis externa. Since there is evidence that the nervous system of mucosa and submucosa is also involved in the control of colonic motility we investigated the contents of vasoactive intestinal polypeptide (VIP), somatostatin and substance P in rectal biopsies of patients with slow colonic transit constipation. DESIGN AND METHODS: Twenty-two patients (17 females, 5 males) with chronic slow transit constipation (oro-anal transit with radio-opaque markers on high fibre diet > 70 h) and long-term use of laxatives, and 20 controls (12 females, 8 males) with no history of constipation, were included in this study. Large rectal biopsy specimens including the submucosa were obtained from 5 cm above the dentate line and frozen in liquid nitrogen. After microdissection of the biopsies into mucosa and submucosa the neuropeptides were extracted by boiling and homogenizing the tissue in acetic acid and determined using validated radioimmunoassays. RESULTS: Patients with slow transit constipation showed, compared to healthy controls, significantly lower levels of the excitatory neurotransmitter substance P in the mucosa and submucosa of rectal biopsies. There was no difference between the two groups concerning the levels of the inhibitory neurotransmitters, VIP and somatostatin. CONCLUSION: Slow transit constipation is associated with abnormalities of the substance P content of the enteric nervous system of mucosa and submucosa. This seems not to be related to chronic laxative use, since anthranoids cause a reduction in the levels of inhibitory neurotransmitters (VIP, somatostatin), but not of substance P, in the rat colon.

Biopsy↗

M1 muscarinic mechanisms regulate intestinal-phase gallbladder physiology in humans.

The contribution of muscarinic receptor subtypes to biliary control mechanisms is unclear. We investigated stimulated gallbladder function and release of associated hormones during M1-receptor blockade. Following a double-blind, randomized, crossover protocol, healthy volunteers each received placebo and telenzepine, a selective M1-receptor antagonist, as 2-h background infusion. Gallbladder contraction (by ultrasonography), bilirubin output, and release of cholecystokinin (CCK) and pancreatic polypeptide (PP) were assessed during increasing doses of endogenous (intraduodenal nutrient) and exogenous (hormonal) stimulation. All parameters were stimulated in a dose-dependent manner on placebo days. Contractile and secretory responses to low-dose caerulein (CCK analogue) were inhibited by 60-80% under telezepine, whereas high-dose (supraphysiological) stimulation overrode this effect. Similar inhibition was achieved during nutrient stimulation. CCK plasma levels rose during endogenous and exogenous stimulation but were unaffected by M1 blockade, whereas stimulated PP release was completely inhibited (> 100% decrease), reflecting suppressed vagal tone. Selective M1-receptor blockade inhibits the physiological response of the gallbladder in humans; this effect cannot be attributed to suppressed CCK release. Our findings support the hypothesis that CCK acts at the gallbladder via cholinergic nerves under physiological conditions. Viewed with our previous observations, nonselective antagonism of biliary function by atropine is primarily mediated through M1 muscarinic pathways.

Adult↗