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1.
Diabetes Res Clin Pract ; 211: 111663, 2024 May.
Article En | MEDLINE | ID: mdl-38616042

Obesity is associated with low-grade inflammation and insulin resistance (IR). The contribution of adipose tissue (AT) and hepatic inflammation to IR remains unclear. We conducted a study across three cohorts to investigate this relationship. The first cohort consists of six women with normal weight and twenty with obesity. In women with obesity, we found an upregulation of inflammatory markers in subcutaneous and visceral adipose tissue, isolated AT macrophages, and the liver, but no linear correlation with tissue-specific insulin sensitivity. In the second cohort, we studied 24 women with obesity in the upper vs lower insulin sensitivity quartile. We demonstrated that several omental and mesenteric AT inflammatory genes and T cell-related pathways are upregulated in IR, independent of BMI. The third cohort consists of 23 women and 18 men with obesity, studied before and one year after bariatric surgery. Weight loss following surgery was associated with downregulation of multiple immune pathways in subcutaneous AT and skeletal muscle, alongside notable metabolic improvements. Our results show that obesity is characterised by systemic and tissue-specific inflammation. Subjects with obesity and IR show a more pronounced inflammation phenotype, independent of BMI. Bariatric surgery-induced weight loss is associated with reduced inflammation and improved metabolic health.


Inflammation , Insulin Resistance , Obesity , Humans , Insulin Resistance/physiology , Female , Inflammation/metabolism , Obesity/metabolism , Obesity/complications , Male , Adult , Middle Aged , Bariatric Surgery , Adipose Tissue/metabolism , Liver/metabolism , Cohort Studies , Weight Loss/physiology , Body Mass Index , Intra-Abdominal Fat/metabolism
2.
Physiol Behav ; 222: 112936, 2020 08 01.
Article En | MEDLINE | ID: mdl-32417644

The consumption of saturated fat and sucrose can have synergistic effects on the brain that do not occur when either nutrient is consumed by itself. In this study we hypothesize that saturated fat intake modulates glucose handling in the hypothalamus and nucleus accumbens, both brain areas highly involved in the control of food intake. To study this, male Wistar rats were given a free-choice high fat diet (fcHFD) or a control diet for two weeks. During the last seven days rats were given a daily bolus of either a 30% sucrose solution or water. Rats were sacrificed on day eight, 30 minutes after the onset of drinking. mRNA and protein levels of genes involved in glucose handling were assessed in the hypothalamus and nucleus accumbens. We found increased Glut3 and Glut4 mRNA in the hypothalamus of fcHFD-fed rats without an additional effect of the sucrose bolus. In the nucleus accumbens, the sucrose bolus increased Glut3 mRNA and decreased Glut4 mRNA independent of prior diet exposure. The ATP-sensitive potassium channel subunit Kir6.1 in the nucleus accumbens tended to be affected by the synergistic effects of a fcHFD and a sucrose bolus. These data suggest that acute glucose handling in the hypothalamus and nucleus accumbens may be affected by prior high fat exposure.


Diet, High-Fat , Nucleus Accumbens , Animals , Diet, High-Fat/adverse effects , Glucose , Hypothalamus , Male , Rats , Rats, Wistar , Sucrose
3.
Nutr Neurosci ; 22(8): 541-550, 2019 Aug.
Article En | MEDLINE | ID: mdl-29284375

Objectives: The hypothalamus lies adjacent to the third ventricle and is in close proximity with the median eminence (ME), a circumventricular organ with an incomplete blood-brain barrier (BBB) which controls direct entry of nutrients into the brain. The blood-CSF barrier of the hypothalamus shows dynamic changes upon neuroendocrine events and adjusts permeability with the tight junction (TJ) complex. It has been shown that chronic exposure to a high-fat diet (HFD) affects BBB permeability. HFD also induces leptin resistance and alters neuropeptide expression in the arcuate nucleus (Arc) of the hypothalamus starting early during overnutrition. We hypothesized altered integrity of the BBB to occur after exposing rats to a free-choice high-fat high-sugar (fcHFHS) diet for 1 week. Methods: We measured diffusion of Evans blue dye over the ME and assessed expression of the TJ proteins ZO-1, claudin-5, and occludin in the tanycytic wall of the third ventricle. Furthermore, we assessed protein expression of glucose transporter 1 (GLUT-1), which is highly expressed in the Arc-ME complex and facilitates glucose transport over the BBB. Results: fcHFHS-fed rats increased caloric intake compared to control, however, there was no effect of the fcHFHS diet on permeability of the BBB, nor changes in protein expression of tight TJ proteins or GLUT-1. Fasting acutely affects the BBB and we hypothesized that exposure to the fcHFHS diet affects the BBB differently compared to chow after fasting. We did not, however, find any differences in Evans blue diffusion nor protein expression between chow- and fcHFHS-fed rats when fasted overnight. Conclusions: We conclude that short-term consumption of a fcHFHS diet does not change permeability or diffusion in the hypothalamus barrier in ad libitum fed or fasted rats.


Blood-Brain Barrier/metabolism , Diet, High-Fat , Dietary Sugars/administration & dosage , Hypothalamus/metabolism , Tight Junction Proteins/metabolism , Animals , Choice Behavior , Claudin-5/metabolism , Fasting , Male , Occludin/metabolism , Rats, Wistar , Third Ventricle/metabolism , Zonula Occludens-1 Protein/metabolism
4.
Clin Transl Gastroenterol ; 9(5): 155, 2018 05 25.
Article En | MEDLINE | ID: mdl-29799027

BACKGROUND: Gut microbiota-derived short-chain fatty acids (SCFAs) have been associated with beneficial metabolic effects. However, the direct effect of oral butyrate on metabolic parameters in humans has never been studied. In this first in men pilot study, we thus treated both lean and metabolic syndrome male subjects with oral sodium butyrate and investigated the effect on metabolism. METHODS: Healthy lean males (n = 9) and metabolic syndrome males (n = 10) were treated with oral 4 g of sodium butyrate daily for 4 weeks. Before and after treatment, insulin sensitivity was determined by a two-step hyperinsulinemic euglycemic clamp using [6,6-2H2]-glucose. Brown adipose tissue (BAT) uptake of glucose was visualized using 18F-FDG PET-CT. Fecal SCFA and bile acid concentrations as well as microbiota composition were determined before and after treatment. RESULTS: Oral butyrate had no effect on plasma and fecal butyrate levels after treatment, but did alter other SCFAs in both plasma and feces. Moreover, only in healthy lean subjects a significant improvement was observed in both peripheral (median Rd: from 71 to 82 µmol/kg min, p < 0.05) and hepatic insulin sensitivity (EGP suppression from 75 to 82% p < 0.05). Although BAT activity was significantly higher at baseline in lean (SUVmax: 12.4 ± 1.8) compared with metabolic syndrome subjects (SUVmax: 0.3 ± 0.8, p < 0.01), no significant effect following butyrate treatment on BAT was observed in either group (SUVmax lean to 13.3 ± 2.4 versus metabolic syndrome subjects to 1.2 ± 4.1). CONCLUSIONS: Oral butyrate treatment beneficially affects glucose metabolism in lean but not metabolic syndrome subjects, presumably due to an altered SCFA handling in insulin-resistant subjects. Although preliminary, these first in men findings argue against oral butyrate supplementation as treatment for glucose regulation in human subjects with type 2 diabetes mellitus.


Adipose Tissue, Brown/drug effects , Adipose Tissue, Brown/metabolism , Butyrates/administration & dosage , Glucose/metabolism , Insulin Resistance/physiology , Metabolic Syndrome/metabolism , Thinness/metabolism , Administration, Oral , Adult , Bile Acids and Salts/metabolism , Energy Metabolism , Fatty Acids, Volatile/blood , Fatty Acids, Volatile/metabolism , Feces/chemistry , Fluorodeoxyglucose F18 , Gastrointestinal Microbiome , Humans , Liver/metabolism , Male , Metabolic Syndrome/drug therapy , Pilot Projects , Positron Emission Tomography Computed Tomography , Radiopharmaceuticals , Young Adult
5.
Article En | MEDLINE | ID: mdl-29735021

Glucocorticoid treatment decreases liver insulin sensitivity and may modify fatty acid metabolism. We investigated the influence of oral prednisolone on indices for de novo lipogenesis (DNLi), stearoyl-CoA desaturase (SCDi) and Δ6-desaturase (D6Di) activity in healthy males. In addition, we explored whether the changes may be associated with prednisolone-induced changes in glucose and lipid metabolism and insulin sensitivity. Thirty-two healthy young males (mean ±â€¯SD age 22 ±â€¯3 years, BMI 22.4 ±â€¯1.7 kg/m2) were allocated to receive prednisolone 7.5 mg/day (PRED7.5; n = 12), prednisolone 30 mg/day (PRED30; n = 12), or placebo (n = 8) in a randomized double-blind fashion for 2 weeks. Fatty acid compositions of plasma cholesteryl esters (CE), phospholipids (PL) and triglycerides (TG) were measured at baseline and on day 14. DNLi, SCDi and D6Di were estimated from product/precursor ratios in CE, with DNLi primary deriving from 16:1ω7/18:2ω6, SCDi from 16:1ω7/16:0 and D6Di from 22:6ω3/20:5ω3. Ratios were also assessed in PL and TG. In CE, PRED30 increased DNLi by 51.2 [95%CI 14.8; 87.6]%, increased SCDi by 48.6 [18.7; 78.5]%, and decreased D6Di by 57.7 [-91.8; -23.5]% (p ≤ 0.01 for all, compared to placebo). The prednisolone-induced increases in DNLi and SCDi were positively correlated with insulin sensitivity (r = 0.35 and 0.50, respectively). Similar results were found in PL and TG. Prednisolone dose-dependently increases DNLi and SCDi and decreases D6Di in plasma CE, PL and TG in healthy males after 2 weeks. The observed unfavorable effects on fatty acid metabolism were related to the induction of glucocorticoid-induced insulin resistance.


Anti-Inflammatory Agents/pharmacology , Linoleoyl-CoA Desaturase/genetics , Lipid Metabolism/drug effects , Lipogenesis/drug effects , Prednisolone/pharmacology , Stearoyl-CoA Desaturase/genetics , Administration, Oral , Adult , Blood Glucose/drug effects , Cholesterol Esters/blood , Double-Blind Method , Drug Administration Schedule , Gene Expression , Healthy Volunteers , Humans , Insulin Resistance , Linoleoyl-CoA Desaturase/blood , Lipid Metabolism/genetics , Lipogenesis/genetics , Male , Phospholipids/blood , Stearoyl-CoA Desaturase/blood , Triglycerides/blood
6.
Int J Obes (Lond) ; 42(2): 156-162, 2018 02.
Article En | MEDLINE | ID: mdl-28811653

BACKGROUND: Several human and rodent studies suggest that in addition to the amount of energy consumed, timing of food intake contributes to body weight regulation. Consuming most energy in the morning has favorable effects on weight loss and weight maintenance. Whether this also affects glucose metabolism and liver fat independently from weight loss is unknown. OBJECTIVE: We hypothesized that during weight loss, consuming most energy in the morning improves insulin sensitivity and reduces hepatic fat content more than consuming most energy in the evening. METHODS: Twenty-three obese insulin resistant men (age 59.9±7.9 years, body mass index 34.4±3.8 kg m-2) followed a 4-week hypocaloric diet intervention with either 50% of daily energy consumed in the morning (BF group) or evening (D group). Insulin sensitivity, measured with a two-step hyperinsulinemic euglycemic clamp using a glucose tracer, intrahepatic triglycerides (IHTG), measured using magnetic resonance spectroscopy, and resting energy expenditure (REE) were assessed before and after the diet intervention. RESULTS: Meal macronutrient composition and weight loss (6.5±1.5% vs 6.2±1.9%, respectively, P=0.70) did not differ between the BF and D groups. Endogenous glucose production (P⩽0.001), hepatic and peripheral insulin sensitivity (P=0.002; P=0.001, respectively) as well as IHTG content (P⩽0.001) all significantly improved with weight loss, but were not different between the BF and D groups. In addition, both groups decreased REE and respiratory quotient equally. CONCLUSIONS: During weight loss, consuming most energy in the morning instead of the evening does not have additional beneficial effects on insulin sensitivity and IHTG content. These results do not support weight independent effects of meal timing on glucose metabolism and IHTG in hypocaloric conditions in obese men.


Blood Glucose/metabolism , Insulin Resistance/physiology , Liver/metabolism , Meals , Obesity/metabolism , Triglycerides/metabolism , Weight Loss/physiology , Aged , Diet, Reducing , Energy Intake/physiology , Energy Metabolism/physiology , Glucose Clamp Technique , Humans , Liver/diagnostic imaging , Magnetic Resonance Spectroscopy , Male , Middle Aged , Obesity/prevention & control , Treatment Outcome
7.
Aliment Pharmacol Ther ; 46(3): 266-273, 2017 08.
Article En | MEDLINE | ID: mdl-28613003

BACKGROUND: High-output enterocutaneous fistula or enterostomies can cause intestinal failure. There is a wide variety of options in medical management of patients with high output. AIM: To systematically review the literature on available pharmacotherapy to reduce output and to propose an algorithm for standard of care. METHODS: Relevant databases were systematically reviewed to identify studies on pharmacotherapy for reduction in (high-) output enterostomies or fistula. Randomised controlled trials and within subjects controlled prospective trials were included. An algorithm for standard of care was generated based on the outcomes of the systematic review. RESULTS: Two studies on proton pump inhibitors, six on anti-motility agents, three on histamine receptor antagonists, one on an α2- receptor agonist and eight on somatostatin (analogues) were included. One study examined a proton pump inhibitor and a histamine receptor antagonist within the same patients. Overall, we found evidence for the following medical therapies to be effective: omeprazole, loperamide and codeine, ranitidine and cimetidine. On the basis of these outcomes and clinical experience, we proposed an algorithm for standard of care which consists of high-dose proton pump inhibitors combined with high-dose loperamide as the first step followed by addition of codeine in case of insufficient output reduction. So far, there is insufficient evidence for the standard use of somatostatin (analogues). CONCLUSIONS: The available evidence on the efficacy of medication to reduce enterostomy or enterocutaneous fistula output is hampered by low quality studies. We propose an algorithm for standard of care output reduction in these patients.


Enterostomy/methods , Proton Pump Inhibitors/therapeutic use , Somatostatin/analogs & derivatives , Humans , Omeprazole/therapeutic use , Randomized Controlled Trials as Topic , Ranitidine/administration & dosage , Somatostatin/administration & dosage
8.
Int J Obes (Lond) ; 41(8): 1288-1294, 2017 08.
Article En | MEDLINE | ID: mdl-28465607

BACKGROUND/OBJECTIVES: Insulin resistance of adipose tissue is an important feature of obesity-related metabolic disease. However, assessment of lipolysis in humans requires labor-intensive and expensive methods, and there is limited validation of simplified measurement methods. We aimed to validate simplified methods for the quantification of adipose tissue insulin resistance against the assessment of insulin sensitivity of lipolysis suppression during hyperinsulinemic-euglycemic clamp studies. SUBJECTS/METHODS: We assessed the insulin-mediated suppression of lipolysis by tracer-dilution of [1,1,2,3,3-2H5]glycerol during hyperinsulinemic-euglycemic clamp studies in 125 overweight or obese adults (85 men, 40 women; age 50±11 years; body mass index 38±7 kg m-2). Seven indices of adipose tissue insulin resistance were validated against the reference measurement method. RESULTS: Low-dose insulin infusion resulted in suppression of the glycerol rate of appearance ranging from 4% (most resistant) to 85% (most sensitive), indicating a good range of adipose tissue insulin sensitivity in the study population. The reference method correlated with (1) insulin-mediated suppression of plasma glycerol concentrations (r=0.960, P<0.001), (2) suppression of plasma non-esterified fatty acid (NEFA) concentrations (r=0.899, P<0.001), (3) the Adipose tissue Insulin Resistance (Adipo-IR) index (fasting plasma insulin-NEFA product; r=-0.526, P<0.001), (4) the fasting plasma insulin-glycerol product (r=-0.467, P<0.001), (5) the Adipose Tissue Insulin Resistance Index (fasting plasma insulin-basal lipolysis product; r=0.460, P<0.001), (6) the Quantitative Insulin Sensitivity Check Index (QUICKI)-NEFA index (r=0.621, P<0.001), and (7) the QUICKI-glycerol index (r=0.671, P<0.001). Bland-Altman plots showed no systematic errors for the suppression indices but proportional errors for all fasting indices. Receiver-operator characteristic curves confirmed that all indices were able to detect adipose tissue insulin resistance (area under the curve ⩾0.801, P<0.001). CONCLUSIONS: Adipose tissue insulin sensitivity (that is, the antilipolytic action of insulin) can be reliably quantified in overweight and obese humans by simplified index methods. The sensitivity and specificity of the Adipo-IR index and the fasting plasma insulin-glycerol product, combined with their simplicity and acceptable agreement, suggest that these may be most useful in clinical practice.


Adipose Tissue/metabolism , Insulin Resistance , Metabolic Syndrome/metabolism , Obesity/metabolism , Overweight/metabolism , Adipose Tissue/drug effects , Adult , Body Mass Index , Female , Glucose Clamp Technique , Humans , Hypoglycemic Agents/therapeutic use , Insulin/therapeutic use , Lipolysis/drug effects , Male , Metabolic Syndrome/drug therapy , Metabolic Syndrome/physiopathology , Middle Aged , Obesity/complications , Obesity/physiopathology , Overweight/complications , Overweight/physiopathology , Reference Values
9.
Neurosci Lett ; 637: 85-90, 2017 01 10.
Article En | MEDLINE | ID: mdl-27888043

The brain is well known to regulate blood glucose, and the hypothalamus and hindbrain, in particular, have been studied extensively to understand the underlying mechanisms. Nuclei in these regions respond to alterations in blood glucose concentrations and can alter glucose liver output or glucose tissue uptake to maintain blood glucose concentrations within strict boundaries. Interestingly, several cortico-limbic regions also respond to alterations in glucose concentrations and have been shown to project to hypothalamic nuclei and glucoregulatory organs. For instance, electrical stimulation of the shell of the nucleus accumbens (sNAc) results in increased circulating concentrations of glucose and glucagon and activation of the lateral hypothalamus (LH). Whether this is caused by the simultaneous increase in serotonin release in the sNAc remains to be determined. To study the effect of sNAc serotonin on systemic glucose metabolism, we implanted bilateral microdialysis probes in the sNAc of male Wistar rats and infused fluoxetine, a serotonin reuptake inhibitor, or vehicle after which blood glucose, endogenous glucose production (EGP) and glucoregulatory hormones were measured. Fluoxetine in the sNAc for 1h significantly increased blood glucose concentrations without an effect on glucoregulatory hormones. This increase was accompanied by a higher EGP in the fluoxetine infused rats compared to the controls. These data provide further evidence for a role of sNAc-serotonin in the regulation of glucose metabolism.


Blood Glucose/metabolism , Fluoxetine/pharmacology , Glucose/metabolism , Nucleus Accumbens/drug effects , Selective Serotonin Reuptake Inhibitors/pharmacology , Animals , Fluoxetine/administration & dosage , Hypothalamus/drug effects , Hypothalamus/metabolism , Male , Microdialysis/methods , Nucleus Accumbens/metabolism , Rats, Wistar , Serotonin/metabolism , Selective Serotonin Reuptake Inhibitors/administration & dosage
10.
Diabetes Metab ; 42(6): 416-423, 2016 Dec.
Article En | MEDLINE | ID: mdl-27262368

AIM: Vitamin D deficiency has been proposed to be involved in obesity-induced metabolic disease. However, data on the relationship between 25-hydroxycholecalciferol (25(OH)D) and insulin resistance have been inconsistent, and few studies have investigated the active vitamin D metabolite, 1,25-dihydroxycholecalciferol (1,25(OH)2D). This study aimed to determine the relationship between circulating levels of both 25(OH)D and 1,25(OH)2D and direct measures of glucose metabolism and insulin action in obese women. METHODS: Serum levels of 25(OH)D and 1,25(OH)2D, and glucose metabolism and tissue-specific insulin action, as assessed in the basal state and during a two-step euglycaemic-hyperinsulinaemic clamp study with [6,6-2H2]glucose infusion, were measured in 37 morbidly obese women (age: 43±10 years; body mass index: 44±6kg/m2). RESULTS: Sixteen subjects had circulating 25(OH)D levels<50nmol/L, consistent with vitamin D deficiency, and 21 had normal 25(OH)D levels. There were no differences in either baseline characteristics or parameters of glucose metabolism and insulin action between the groups. Serum 25(OH)D, but not 1,25(OH)2D, was negatively correlated with both body mass index (r=-0.42, P=0.01) and total body fat (r=-0.46, P<0.01). Neither 25(OH)D nor 1,25(OH)2D levels were related to any measured metabolic parameters, including fasting glucose, fasting insulin, basal endogenous glucose production, and hepatic, adipose-tissue and skeletal muscle insulin sensitivity. CONCLUSION: Obesity was associated with lower levels of circulating 25(OH)D, but not with the hormonally active metabolite 1,25(OH)2D. Neither 25(OH)D nor 1,25(OH)2D were related to glucose metabolism and tissue-specific insulin sensitivity in obese women, suggesting that vitamin D does not play a major role in obesity-related insulin resistance.


Blood Glucose/metabolism , Calcifediol/metabolism , Calcitriol/metabolism , Obesity, Morbid/epidemiology , Obesity, Morbid/metabolism , Adult , Cohort Studies , Female , Glucose Clamp Technique , Humans , Middle Aged , Vitamin D Deficiency
11.
J Thromb Haemost ; 14(7): 1364-73, 2016 07.
Article En | MEDLINE | ID: mdl-27122107

UNLABELLED: Essentials Sparse or outdated studies focus on thrombotic and bleeding risk in home parenteral nutrition (HPN). 236 HPN patients followed at a single center for a total of 684 patient-years were evaluated. Rates of venous thrombosis and major bleeding, and prevalence of vena cava syndrome are provided. Anticoagulants might reduce thrombosis risk, but population-specific safety concerns remain. SUMMARY: Background Home parenteral nutrition (HPN) is necessary for patients with intestinal failure. Recurrent catheter-related thrombosis (CRT) is common, leading to infectious complications, pulmonary embolism, vascular access loss and intestinal transplantation. The efficacy and safety of anticoagulants are unknown in this setting and based on sparse and low-quality observational data. Objectives Our aim was to estimate the incidence of thromboembolic, bleeding and anticoagulant-related complications in HPN patients, and evaluate risk factors for first venous thrombosis (VT). Methods This retrospective cohort study included all adult patients followed for long-term HPN at our center between 1986 and 2014. Primary outcomes were symptomatic objectively diagnosed VT, encompassing CRT and venous thromboembolism, and major bleeding. Secondary outcomes were vena cava syndrome and heparin-induced thrombocytopenia or hypersensitivity. Results A total of 236 patients were included (median HPN duration, 17 months) and 136 received anticoagulants at HPN onset (57.6%). Overall, the annual incidence of first VT was 11.4% (95% confidence interval [95% CI], 8.6-14.7%); VT was associated with a personal history of thrombosis (adjusted hazard ratio, 2.22; 95% CI, 1.06-4.64), whereas anticoagulation seemed to account only for a mild protection (adjusted hazard ratio, 0.72; 95% CI, 0.36-1.44). The annual incidence of major bleeding was 4.3% for patients on anticoagulants vs. 1.8% for those off anticoagulants. Vena cava syndrome developed in 20.7% of patients with VT. One patient had isolated heparin-induced thrombocytopenia (0.6%) and four had heparin hypersensitivity (2.5%). Conclusions Patients on HPN have a significant risk of venous thrombosis, major bleeding and vena cava syndrome. Anticoagulants might reduce thrombosis risk, but population-specific safety concerns remain.


Hemorrhage/complications , Parenteral Nutrition, Home/adverse effects , Thromboembolism/complications , Adult , Anticoagulants/chemistry , Anticoagulants/therapeutic use , Catheterization, Central Venous/adverse effects , Female , Hemorrhage/epidemiology , Heparin/adverse effects , Humans , Male , Middle Aged , Proportional Hazards Models , Pulmonary Embolism/complications , Retrospective Studies , Superior Vena Cava Syndrome/complications , Superior Vena Cava Syndrome/epidemiology , Thrombocytopenia/chemically induced , Thromboembolism/epidemiology , Thrombosis/complications , Thrombosis/epidemiology , Treatment Outcome , Venous Thromboembolism/complications
12.
Br J Surg ; 103(6): 701-708, 2016 May.
Article En | MEDLINE | ID: mdl-26999497

BACKGROUND: Type 2 acute intestinal failure is characterized by the need for parenteral nutrition (PN) for several months, and is typically caused by complications of abdominal surgery with enteric fistulas or proximal stomas. This study aimed to evaluate clinical management according to quality indicators established by the Association of Surgeons of Great Britain and Ireland. METHODS: Consecutive patients with type 2 intestinal failure referred to a specialized centre were analysed. Outcomes included the rate of discontinuation of PN, morbidity and mortality. RESULTS: Eighty-nine patients were analysed, of whom 57 had an enteric fistula, 29 a proximal stoma (6 with distal fistulas), and three had intestinal failure owing to other causes. One patient was deemed inoperable, and nine patients died from underlying illness during initial management. Before reconstructive surgery, 94 per cent (65 of 66 operated and 3 patients scheduled for surgery) spent the period of rehabilitation at home. Discontinuation of PN owing to restoration of enteral autonomy was achieved in 65 (73 per cent) of 89 patients. Seven patients developed a recurrent fistula, which was successfully managed with a further operation in four, resulting in successful fistula takedown in 41 of 44 patients undergoing fistula resection. Three patients (5 per cent) died in hospital after reconstructive surgery. The overall mortality rate in this series, including preoperative deaths from underlying diseases, was 16 per cent (14 patients). CONCLUSION: Intestinal failure care and reconstructive surgery resulted in successful discontinuation of PN in the majority of patients, although disease-related mortality was considerable.


Intestinal Diseases/therapy , Parenteral Nutrition/statistics & numerical data , Acute Disease , Aged , Female , Humans , Intestinal Diseases/mortality , Intestines , Male , Middle Aged , Retrospective Studies , Treatment Outcome
13.
Psychol Med ; 46(8): 1707-17, 2016 06.
Article En | MEDLINE | ID: mdl-26984412

BACKGROUND: In rodents, the striatal dopamine (DA) system and the (hypo)thalamic serotonin (5-HT) system are involved in the regulation of feeding behavior. In lean humans, little is known about the relationship between these brain neurotransmitter systems and feeding. We studied the relationship between striatal DA transporters (DAT) and diencephalic 5-HT transporters (SERT), behavioral tasks and questionnaires, and food intake. METHOD: We measured striatal DAT and diencephalic SERT binding with [123I]FP-CIT SPECT in 36 lean male subjects. Visual attention bias for food (detection speed and distraction time) and degree of impulsivity were measured using response-latency-based computer tasks. Craving and emotional eating were assessed with questionnaires and ratings of hunger by means of VAS scores. Food intake was assessed through a self-reported online diet journal. RESULTS: Striatal DAT and diencephalic SERT binding negatively correlated with food detection speed (p = 0.008, r = -0.50 and p = 0.002, r = -0.57, respectively), but not with food distraction time, ratings of hunger, craving or impulsivity. Striatal DAT and diencephalic SERT binding did not correlate with free choice food intake, whereas food detection speed positively correlated with total caloric intake (p = 0.001, r = 0.60), protein intake (p = 0.01, r = 0.44), carbohydrate intake (p = 0.03, r = 0.39) and fat intake (p = 0.06, r = 0.35). CONCLUSIONS: These results indicate a role for the central 5-HT and DA system in the regulation of visual attention bias for food, which contributes to the motivation to eat, in non-obese, healthy humans. In addition, this study confirms that food detection speed, measured with the latency-based computer task, positively correlates with total food and macronutrient intake.


Attentional Bias , Brain/metabolism , Dopamine Plasma Membrane Transport Proteins/metabolism , Food , Serotonin Plasma Membrane Transport Proteins/metabolism , Brain/diagnostic imaging , Craving , Eating , Humans , Hunger , Impulsive Behavior , Iodine Radioisotopes , Male , Radiopharmaceuticals , Single Photon Emission Computed Tomography Computed Tomography , Tropanes , Visual Perception , Young Adult
14.
Clin Nutr ; 35(1): 225-229, 2016 Feb.
Article En | MEDLINE | ID: mdl-25660415

BACKGROUND & AIMS: Exact data on Dutch patients with chronic intestinal failure (CIF) and after intestinal transplantation (ITx) have been lacking. To improve standard care of these patients, a nationwide collaboration has been established. Objectives of this study were obtaining an up-to-date prevalence of CIF and characterizing these patients using the specially developed multicenter web-based Dutch Registry of Intestinal Failure and Intestinal Transplantation (DRIFT). METHODS: Cross-sectional study. CIF was defined as type 3 intestinal failure in which >75% of nutritional requirements were given as home parenteral nutrition (HPN) for ≥ 4 weeks in children and >50% for ≥3 months in adults. All patients with CIF receiving HPN care by the three Dutch specialized centers on January 1, 2013 and all ITx patients were registered in DRIFT (https://drift.darmfalen.nl). RESULTS: In total, 195 patients with CIF (158 adults, 37 children) were identified, of whom 184 were registered in DRIFT. The Dutch point prevalence of CIF was 11.62 per million (12.24 for adults, 9.56 for children) on January 1, 2013. Fifty-seven patients (31%) had one or more indications for ITx, while 12 patients actually underwent ITx since its Dutch introduction. Four patients required transplantectomy of their intestinal graft and 3 intestinal transplant patients died. CONCLUSION: The multicenter registry DRIFT revealed an up-to-date prevalence of CIF and provided nationwide insight into the patients with CIF during HPN and after ITx in the Netherlands. DRIFT will facilitate the multicenter monitoring of individual patients, thereby supporting multidisciplinary care and decision-making.


Intestinal Diseases/epidemiology , Intestines/transplantation , Organ Transplantation , Registries , Adult , Child , Chronic Disease , Cross-Sectional Studies , Female , Humans , Internet , Intestinal Diseases/surgery , Intestines/physiopathology , Male , Netherlands/epidemiology , Nutritional Requirements , Parenteral Nutrition, Home , Postoperative Complications/therapy , Prevalence
15.
Int J Obes (Lond) ; 39(12): 1703-9, 2015 Dec.
Article En | MEDLINE | ID: mdl-26155920

BACKGROUND/OBJECTIVES: Insulin resistance is the major contributor to cardiometabolic complications of obesity. We aimed to (1) establish cutoff points for insulin resistance from euglycemic hyperinsulinemic clamps (EHCs), (2) identify insulin-resistant obese subjects and (3) predict insulin resistance from routinely measured variables. SUBJECTS/METHODS: We assembled data from non-obese (n=112) and obese (n=100) men who underwent two-step EHCs using [6,6-(2)H2]glucose as tracer (insulin infusion dose 20 and 60 mU m(-2) min(-1), respectively). Reference ranges for hepatic and peripheral insulin sensitivity were calculated from healthy non-obese men. Based on these reference values, obese men with preserved insulin sensitivity or insulin resistance were identified. RESULTS: Cutoff points for insulin-mediated suppression of endogenous glucose production (EGP) and insulin-stimulated glucose disappearance rate (Rd) were 46.5% and 37.3 µmol kg(-)(1) min(-)(1), respectively. Most obese men (78%) had EGP suppression within the reference range, whereas only 12% of obese men had Rd within the reference range. Obese men with Rd <37.3 µmol kg(-1) min(-1) did not differ from insulin-sensitive obese men in age, body mass index (BMI), body composition, fasting glucose or cholesterol, but did have higher fasting insulin (110±49 vs 63±29 pmol l(-1), P<0.001) and homeostasis model assessment of insulin resistance (HOMA-IR) (4.5±2.2 vs 2.7±1.4, P=0.004). Insulin-resistant obese men could be identified with good sensitivity (80%) and specificity (75%) from fasting insulin >74 pmol l(-1). CONCLUSIONS: Most obese men have hepatic insulin sensitivity within the range of non-obese controls, but below-normal peripheral insulin sensitivity, that is, insulin resistance. Fasting insulin (>74 pmol l(-1) with current insulin immunoassay) may be used for identification of insulin-resistant (or metabolically unhealthy) obese men in research and clinical settings.


Adipose Tissue, White/metabolism , Blood Glucose/metabolism , Hypoglycemic Agents/blood , Insulin Resistance , Insulin/blood , Liver/metabolism , Adult , Body Mass Index , Fasting/metabolism , Glucose Clamp Technique , Humans , Hypoglycemic Agents/therapeutic use , Insulin/therapeutic use , Male , Middle Aged , Muscle, Skeletal/metabolism , Netherlands/epidemiology , Obesity , Predictive Value of Tests , Reference Values
16.
Neuroscience ; 301: 155-67, 2015 Aug 20.
Article En | MEDLINE | ID: mdl-26047725

It is evident that eating in misalignment with the biological clock (such as in shift work, eating late at night and skipping breakfast) is associated with increased risk for obesity and diabetes. The biological clock located in the suprachiasmatic nucleus dictates energy balance including feeding behavior and glucose metabolism. Besides eating and sleeping patterns, glucose metabolism also exhibits clear diurnal variations with higher blood glucose concentrations, glucose tolerance and insulin sensitivity prior to waking up. The daily variation in plasma glucose concentrations in rats, is independent of the rhythm in feeding behavior. On the other hand, feeding itself has profound effects on glucose metabolism, but differential effects occur depending on the time of the day. We here review data showing that a disturbed diurnal eating pattern results in alterations in glucose metabolism induced by a disrupted circadian clock. We first describe the role of central serotonin on feeding behavior and glucose metabolism and subsequently describe the effects of central serotonin on the circadian system. We next explore the interaction between the serotonergic system and the circadian clock in conditions of disrupted diurnal rhythms in feeding and how this might be involved in the metabolic dysregulation that occurs with chronodisruption.


Circadian Rhythm , Feeding Behavior/physiology , Metabolic Diseases/physiopathology , Serotonin/physiology , Animals , Blood Glucose/metabolism , Energy Metabolism , Humans , Suprachiasmatic Nucleus/physiology , Suprachiasmatic Nucleus/physiopathology
17.
Int J Obes (Lond) ; 39(7): 1151-60, 2015 Jul.
Article En | MEDLINE | ID: mdl-25801691

BACKGROUND/OBJECTIVES: Obesity has been associated with both changes in adipose tissue lipid metabolism and inflammation. A key class of lipid-derived signalling molecules involved in inflammation are the prostaglandins. In this study, we aimed to determine how obesity affects the levels of prostaglandins within white adipose tissue (WAT) and determine which cells within adipose tissue produce them. To avoid the effects of cellular stress on prostaglandin levels, we developed a multivariate statistical approach in which metabolite concentrations and transcriptomic data were integrated, allowing the assignment of metabolites to cell types. SUBJECTS/METHODS: Eicosanoids were measured by liquid chromatography-tandem mass spectrometry and mRNA levels using real-time PCR. Eicosanoid levels and transcriptomic data were combined using principal component analysis and hierarchical clustering in order to associate metabolites with cell types. Samples were obtained from C57Bl/6 mice aged 16 weeks. We studied the ob/ob genetically obese mouse model and diet-induced obesity model. We extended our results in mice to a cohort of morbidly obese humans undergoing bariatric surgery. RESULTS: Using our modelling approach, we determined that prostglandin D2 (PGD2) in adipose tissue was predominantly produced in macrophages by the haematopoietic isoform of prostaglandin D synthase (H-Pgds). Analysis of sub-fractionated WAT confirmed that H-Pgds was expressed in adipose tissue macrophages (ATMs). Furthermore, H-Pgds expression in ATMs isolated from lean and obese mice was consistent with it affecting macrophage polarisation. Functionally, we demonstrated that H-PGDS-produced PGD2 polarised macrophages toward an M2, anti-inflammatory state. In line with a potential anti-inflammatory role, we found that H-PGDS expression in ATMs was positively correlated with both peripheral insulin and adipose tissue insulin sensitivity in humans. CONCLUSIONS: In this study, we have developed a method to determine the cellular source of metabolites within an organ and used it to identify a new role for PGD2 in the control of ATM polarisation.


Adipose Tissue/metabolism , Chromatography, Liquid , Eicosanoids/metabolism , Inflammation/metabolism , Macrophages/metabolism , Obesity/metabolism , Prostaglandin D2/metabolism , Adipogenesis , Animals , Diet , Disease Models, Animal , Humans , Lipid Metabolism , Mice , Mice, Inbred C57BL , Mice, Obese
18.
Endocr Connect ; 4(2): 86-91, 2015 Jun.
Article En | MEDLINE | ID: mdl-25712898

The water deprivation test is the gold standard test to differentiate central or nephrogenic diabetes insipidus (DI) from primary polydipsia (PP) in patients with polyuria and polydipsia. Few studies have addressed the diagnostic performance of this test. The aim of this retrospective cohort study was to evaluate the diagnostic performance of the standard water deprivation test, including plasma arginine vasopressin (AVP) measurements, in 40 consecutive patients with polyuria. We compared initial test results with the final clinical diagnosis, i.e., no DI, central DI, or nephrogenic DI. The median length of follow-up was 8 years. In a subset of ten patients, the novel marker copeptin (CP) was measured in plasma. Using the final diagnosis as a gold standard, a threshold for urine osmolality of >800 mOsmol/kg after water deprivation yielded a sensitivity and specificity of 96 and 100%, respectively, for diagnosing PP. Sensitivity increased to 100% if the cut-off value for urine osmolality was set at 680 mOsmol/kg. Plasma AVP levels did not differ between patient groups and did not differentiate among central DI, nephrogenic DI, or PP. In all three patients with central DI, plasma CP was <2.5 pmol/l with plasma osmolality >290 mOsmol/kg, and >2.5 pmol/l in patients without DI. The optimal cut-off value for differentiating PP from DI during a water deprivation test was urine osmolality >680 mOsmol/kg. Differentiating between central and nephrogenic DI should be based on clinical judgment as AVP levels did not discriminate.

19.
Obesity (Silver Spring) ; 21(6): 1143-7, 2013 Jun.
Article En | MEDLINE | ID: mdl-23913729

OBJECTIVE: Bariatric surgery has rapid metabolic effects on glucose metabolism before the occurrence of clinically significant weight loss. This suggests an acute effect of the surgery itself, e.g., resulting from bypassing the nutrient flow from the proximal gastrointestinal tract. Rapid effects of Roux-en-Y gastric bypass surgery (RYGB) on glucose metabolism were defined. DESIGN AND METHODS: Glucose metabolism and total triglyceride hydrolysis in the basal state and during a hyperinsulinemic euglycemic clamp using stable isotopes 2 weeks were studied before and after RYGB. RESULTS: Eighteen pre-menopausal women scheduled for RYGB were included. 2 weeks after RYGB median weight loss was 7.8 kg. Basal insulin and glucose levels decreased after surgery. Endogenous glucose production (EGP) was lower after surgery. In addition, insulin levels were lower during the clamp after surgery, suggesting enhanced clearance. Hepatic and peripheral insulin sensitivity did not change. Free fatty acid (FFA) levels increased after surgery both in the basal state and during the first step of the clamp. Total triglyceride hydrolysis did not change in the basal state and tended to be higher during hyperinsulinemia. CONCLUSIONS: Within 2 weeks, RYGB reduces basal EGP as well as insulin and glucose levels without an acute beneficial effect on hepatic or peripheral insulin sensitivity. The latter may be explained by higher rates of lipolysis and exposure to FFA induced by the hypocaloric state.


Gastric Bypass , Insulin Resistance/physiology , Liver/metabolism , Adult , Blood Glucose/metabolism , Body Composition , Body Mass Index , Calorimetry, Indirect , Energy Metabolism , Fatty Acids, Nonesterified/metabolism , Female , Glucose Clamp Technique , Humans , Insulin/blood , Lipid Metabolism , Middle Aged , Obesity/surgery , Premenopause , Rest , Triglycerides/metabolism , Weight Loss
20.
Neth J Med ; 71(1): 4-9, 2013 Jan.
Article En | MEDLINE | ID: mdl-23482295

The global obesity epidemic is also affecting the Netherlands, paralleled by a proportional increase in the number of morbidly obese persons. Bariatric surgery has been included as a treatment for morbid obesity in the Dutch Guideline for Obesity (2008). Nonetheless, bariatric surgery is applied in only a limited number of morbidly obese subjects in the Netherlands. Based on the most recent literature and Dutch statistics, this review provides a summary of current knowledge on the impact of obesity on health and health care and highlights the effective role of bariatric surgery in reducing this threat to public health.


Bariatric Surgery/methods , Obesity, Morbid/surgery , Humans , Treatment Outcome
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