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Biomedical subjects

H P Sauerwein

Publications and source records attributed to H P Sauerwein.

At least 19 recordsLinked to original sources

Dietary carbohydrate deprivation increases 24-hour nitrogen excretion without affecting postabsorptive hepatic or whole body protein metabolism in healthy men.

Because insulin is an important regulator of protein metabolism, we hypothesized that physiological modulation of insulin secretion, by means of extreme variations in dietary carbohydrate content, affects postabsorptive protein metabolism. Therefore, we studied the effects of three isocaloric diets with identical protein content and low-carbohydrate/high-fat (2% and 83% of total energy, respectively), intermediate-carbohydrate/intermediate-fat (44% and 41% of total energy, respectively), and high-carbohydrate/low-fat (85% and 0% of total energy, respectively) content in six healthy men. Whole body protein metabolism was assessed by 24-h urinary nitrogen excretion, postabsorptive leucine kinetics, and fibrinogen and albumin synthesis by infusion of [1-(13)C]leucine and [1-(13)C]valine. The low-carbohydrate/high-fat diet resulted in lower absorptive and postabsorptive plasma insulin concentrations, and higher rates of nitrogen excretion compared with the other two diets: 15.3 +/- 0.9 vs. 12.1 +/- 1.1 (P = 0.03) and 10.8 +/- 0.5 g/24 h (P = 0.005), respectively. Postabsorptive rates of appearance of leucine and of leucine oxidation were not different among the three diets. In addition, dietary carbohydrate content did not affect the synthesis rates of fibrinogen and albumin. In conclusion, eucaloric carbohydrate deprivation increases 24-h nitrogen loss but does not affect postabsorptive protein metabolism at the hepatic and whole body level. By deduction, dietary carbohydrate is required for an optimal regulation of absorptive, rather than postabsorptive, protein metabolism.

Adult↗

[Adipose tissue: an innervated endocrine gland].

Until recently, adipose tissue was considered to function as a passive store of triglycerides and therefore of calories. Fascinating research over the past ten years has altered this traditional perspective. Adipose tissue has been shown to produce hormones. Leptin was discovered in 1994; one of its main functions is to adapt the organism to starvation. Sympathetic nerve fibres were shown to innervate adipose tissue and to facilitate lipolysis leading to the release of glycerol and free fatty acids. In addition, parasympathetic innervation of adipose tissue was recently demonstrated, with anabolic effects. Different sets of autonomic neurons in the brain stem appear to innervate either the abdominal or the subcutaneous fat compartment. This may be the anatomical substrate for the hitherto unexplained regulation of body fat distribution (subcutaneous versus intra-abdominal). Moreover, fat distribution under physiological conditions (sex steroids, glucocorticoids) and pathological conditions (e.g., AIDS lipodystrophy, Cushing syndrome) might be mediated via the central nervous system. The developments in this research area have the potential to increase our insights into the pathogenesis of metabolic disorders such as hypertriglyceridaemia and type-2 diabetes mellitus.

Adipose Tissue↗

Interferon-gamma administration does not affect human thyroid hormone metabolism in the post-surgical euthyroid sick syndrome.

Cytokines are thought to be involved in the pathogenesis the euthyroid sick syndrome. Experimental data from in vitro and animal in vivo studies suggest that interferon-gamma (IFN-gamma) could be another cytokine that might influence thyroid hormone metabolism, although in a previous study in healthy subjects we could not demonstrate an effect of IFN-gamma on thyroid hormone indices. Possibly, however, a non-stressed system is not a representative environment to study the effects of a mediator, which might exert its role during pathological circumstances in which it may interact synergistically with other inflammatory mediators. Therefore, we studied the effects of a single dose of recombinant human IFN-gamma (Immukine, 100 microg/m2, sc) on thyroid hormone concentrations in a placebo-controlled trial in 13 major surgery patients. Basal IFN-gamma levels did not increase. IFN-gamma induced a significant increase in monocyte HLA-DR expression (post-operative 50%; 24 h after IFN-gamma 90%), but did not affect thyroid hormone and thyroid stimulating hormone concentrations. We therefore conclude that IFN-gamma does not appear to be involved in the major changes in thyroid hormone metabolism in patients with non-thyroidal illness.

Aged↗

Glucose metabolism in chronic lung disease.

Chronic disease in general induces insulin resistance on glucose metabolism on hepatic and peripheral levels. Hypoxia in healthy subjects, induced by chronic altitude exposure, stimulates glucose production with decreased hepatic insulin sensitivity, but increases peripheral insulin sensitivity. Chronic obstructive lung disease (COPD) is a chronic inflammatory disease characterised by chronic or intermittent hypoxia. Therefore theoretically, COPD can be a chronic disease with unique features in peripheral insulin sensitivity. In this literature review the available data on glucose metabolism in COPD and cystic fibrosis are discussed in relation to this potential unique feature of increased peripheral insulin sensitivity despite the existence of chronic disease. The scarce data do not refute this possibility, but better studies aimed at exploring the influence of the degree of hypoxia on peripheral insulin sensitivity in chronic lung disease are necessary to unravel the role of oxygen in the regulation of peripheral glucose metabolism.

Cystic Fibrosis↗

Ischaemic heart disease in Turkish migrants with type 2 diabetes mellitus in The Netherlands: wait for the next generation?

OBJECTIVE: To study the prevalence of ischaemic heart disease in Turkish and Surinam-Asian migrants with type 2 diabetes mellitus in the Netherlands as compared with Europeans. METHODS: In a consecutive case-control study, 59 Turkish and 62 Surinam-Asian patients were compared with 185 Europeans referred to a diabetes clinic for treatment of type 2 diabetes in the period 1992 to 1998. Main outcome measures were ischaemic heart disease and its associated risk factors. RESULTS: The prevalence of ischaemic heart disease was lower (9%) in the Turks (p < 0.02), but higher (29%) in the Surinam-Asians compared with the Europeans (23%). The Turks (52 +/- 10 years) and Surinam-Asians (46 +/- 12 years) were younger than the Europeans (64 +/- 11 years, p < 0.001). Body mass index was 32 +/- 5 (p < 0.001) in the Turks, 27 +/- 5 in the Surinam-Asians (p < 0.05) and 29 +/- 5 in the Europeans. Turkish patients smoked less (23%, p < 0.05) and used less alcohol (4%, p < 0.05) than the Europeans. Proteinuria was found in 24% of the Turks (p < 0.05), 37% of the Surinam-Asians (NS) and 46% of the Europeans. In univariate analysis ischaemic heart disease was related to Turkish origin, OR 0.34 (0.14-0.83) p < 0.02, to Surinam-Asian origin, OR 1.84 (1.00-3.38) p = 0.05, and smoking, OR 1.78 (1.18-2.68) p < 0.01. Other variables were not related to ischaemic heart disease. Multivariate analysis in a model with ethnicity and smoking showed significant relations between ischaemic heart disease and Turkish ethnicity, OR 0.19 (0.06-0.65) p = 0.007, Surinam-Asian origin, OR 2.77 (1.45-5.28) p = 0.002, and smoking, OR 1.79 (1.20-2.66) p = 0.004. CONCLUSION: Type 2 diabetes mellitus in different ethnic groups results in a significant difference in incidence of ischaemic heart disease. The most remarkable finding is a low incidence of ischaemic heart disease in the Turkish patients with type 2 diabetes, independent of smoking. The high prevalence of ischaemic heart disease in young migrant Asians with diabetes is confirmed.

Case-Control Studies↗

Lipodystrophy in HIV-1-positive patients is associated with insulin resistance in multiple metabolic pathways.

BACKGROUND: Treatment for HIV-1 infection is complicated by fat redistribution (lipodystrophy). This is associated with insulin resistance concerning glucose uptake. Our aim was to characterize glucose metabolism more comprehensively in HIV-1-infected patients with lipodystrophy. We assessed glucose disposal and its pathways, glucose production, plasma free fatty acid (FFA) levels, and the degree to which these parameters could be suppressed by insulin. METHODS: Six HIV-1-infected men on protease inhibitor-based HAART with lipodystrophy (HIV+LD) were studied. The results were compared with those in six matched healthy male volunteers. Insulin sensitivity was quantified by hyperinsulinemic euglycaemic clamp. Glucose production and uptake were assessed by tracer dilution employing 6,6D(2)-glucose. RESULTS: At post-absorptive insulin concentrations, glucose production was 47% higher in HIV+LD than controls (P = 0.025). During clamp, glucose production was suppressed by 53% in HIV+LD, but by 85% in controls (P = 0.004). Glucose disposal increased in both groups, but by only 27% in HIV+LD versus 201% in controls (P = 0.004). Consequently, insulin-stimulated total glucose disposal was lower in HIV+LD patients (P = 0.006). Non-oxidative glucose disposal as percentage of total disposal did not differ significantly between groups (63% in HIV+LD and 62% in controls). Baseline plasma FFA concentrations were higher (0.60 versus 0.35 mmol/l; P = 0.024), whereas FFA decline during hyperinsulinemia was less (65 versus 85%; P = 0.01) in HIV+LD versus controls. CONCLUSIONS: Post-absorptive glucose production is increased in HIV-1-infected patients with lipodystrophy. Moreover, both the ability of insulin to suppress endogenous glucose production and lipolysis, and to stimulate peripheral glucose uptake and its metabolic pathways is reduced, indicating severe resistance concerning multiple effects of insulin.

Adult↗

Fatty acid and amino acid modulation of glucose cycling in isolated rat hepatocytes.

We studied the influence of glucose/glucose 6-phosphate cycling on glycogen deposition from glucose in fasted-rat hepatocytes using S4048 and CP320626, specific inhibitors of glucose-6-phosphate translocase and glycogen phosphorylase respectively. The effect of amino acids and oleate was also examined. The following observations were made: (1) with glucose alone, net glycogen production was low. Inhibition of glucose-6-phosphate translocase increased intracellular glucose 6-phosphate (3-fold), glycogen accumulation (5-fold) without change in active (dephosphorylated) glycogen synthase (GSa) activity, and lactate production (4-fold). With both glucose 6-phosphate translocase and glycogen phosphorylase inhibited, glycogen deposition increased 8-fold and approached reported in vivo rates of glycogen deposition during the fasted-->fed transition. Addition of a physiological mixture of amino acids in the presence of glucose increased glycogen accumulation (4-fold) through activation of GS and inhibition of glucose-6-phosphatase flux. Addition of oleate with glucose present decreased glycolytic flux and increased the flux through glucose 6-phosphatase with no change in glycogen deposition. With glucose 6-phosphate translocase inhibited by S4048, oleate increased intracellular glucose 6-phosphate (3-fold) and net glycogen production (1.5-fold), without a major change in GSa activity. It is concluded that glucose cycling in hepatocytes prevents the net accumulation of glycogen from glucose. Amino acids activate GS and inhibit flux through glucose-6-phosphatase, while oleate inhibits glycolysis and stimulates glucose-6-phosphatase flux. Variation in glucose 6-phosphate does not always result in activity changes of GSa. Activation of glucose 6-phosphatase flux by fatty acids may contribute to the increased hepatic glucose production as seen in Type 2 diabetes.

Adenosine Triphosphate↗

Subnormal response of plasma glucose concentration to glucagon despite adequate glycogenolysis: the importance of kinetic measurements.

The plasma glucose concentration response to a glucagon bolus is considered an important diagnostic tool in hypoglycemia of unknown origin. The response of plasma glucose concentration to glucagon can however also be misleading in the differential diagnosis. In a 3-week-old male infant suffering recurrent severe preprandial hypoglycemia and dependent on continuous i.v. glucose infusion, extensive diagnostic screening including a liver biopsy did not lead to a diagnosis. Based on an insufficient glycemic response (twice) to a glucagon bolus, a disorder of glycogenolysis was suspected. Glucose production and gluconeogenesis were measured (glycogenolysis calculated) during diminishing i.v. glucose infusion and after a glucagon bolus. Reducing glucose infusion resulted in a steep increase in glycogenolysis and gluconeogenesis, maintaining total glucose turnover (production plus infusion) constant at +/-9 mg x kg(-1) x min(-1) (+/-60% gluconeogenesis, +/-40% glycogenolysis). Plasma glucose concentration however decreased from 4.9 mmol/l to 3.4 mmol/l. Glucagon increased glucose production by 50% but resulted in only a minor increase in glucose concentration. Conclusion. As glucose concentration depends on the balance between glucose production and utilization (uptake), facilitated glucose uptake rather than impaired glycogenolysis explains the hypoglycemic episodes in this patient. A subnormal response of plasma glucose to glucagon therefore does not necessarily imply a disturbance in glycogenolysis. In cases of hypoglycemia of unknown origin, measurement of glucose kinetics with stable isotopes is indicated.

Blood Glucose↗

Interferon-gamma administration after abdominal surgery rescues antigen-specific helper T cell immune reactivity.

Antigen-induced activation of T cells is determined by many factors. Among these factors are (i) the number of T-cell receptors (TCRs) triggered by TCR ligands on antigen-presenting cells (APCs), and (ii) the intrinsic cellular threshold for activation. T-cell receptor triggering is optimized by adhesion molecules that form the interaction site between T cells and APCs, i.e. the immunological synapse. In addition, signals through co-stimulatory molecules lower the intrinsic T-cell activation threshold. Immunosuppressive agents and traumatic events such as major operative procedures change physiological T-cell responses. Depressed immune functions after surgery are presumed to render patients more susceptible to pathogens. Interferon-gamma (IFNgamma) is a type II homodimeric cytokine with multiple immunostimulatory properties. Several studies have been performed to assess the effects of IFNgamma treatment in patients in need of increased immune reactivity. However, until now, the effect of IFNgamma on human antigen specific CD4(pos) T-cell reactivity after surgically-induced immunosuppression has not been reported. Therefore, a comparative trial of recombinant human (rh) IFNgamma versus placebo in patients after abdominal surgery was initiated. Antigen-specific helper T cell immune reactivity was assessed by antigen-induced cytokine production, intracellular cytokine staining and flow cytometry. A single dose of rhIFNgamma rescued down-modulation of antigen-specific CD4(pos) T-cell reactivity, concomitant with an up-regulation of TCR-ligands on antigen-presenting cells. Selected patients may benefit from the immunostimulatory properties of rhIFNgamma administration in vivo.

Abdomen↗

Isocaloric carbohydrate deprivation induces protein catabolism despite a low T3-syndrome in healthy men.

Dietary carbohydrate content is a major factor determining endocrine and metabolic regulation. The aim of this study was to evaluate the relation between thyroid hormone levels and metabolic parameters during eucaloric carbohydrate deprivation. We measured thyroid hormone levels, resting energy expenditure (by indirect calorimetry) and urinary nitrogen excretion in six healthy males after 11 days of three isocaloric diets containing 15% of energy equivalents as protein and 85%, 44% and 2% as carbohydrates. In contrast to the high and intermediate carbohydrate diets, carbohydrate deprivation decreased plasma T3 values (1.78 +/- 0.09 and 1.71 +/- 0.07 vs. 1.33 +/- 0.05 nmol/l, respectively, P < 0.01), whereas reverse T3, T3 uptake and free T4 levels increased simultaneously compared to the other two diets. TSH values were not different among the three diets. Although dietary carbohydrate content did not influence resting energy expenditure, carbohydrate deprivation increased urinary nitrogen excretion (10.91 +/- 0.67 and 12.79 +/- 1.14 vs. 15.89 +/- 1.10 g/24 h, respectively, P = 0.03). Eucaloric carbohydrate deprivation increases protein catabolism despite decreased plasma T3 levels. Because it has previously been shown that starvation decreases plasma T3 levels, resting energy expenditure and nitrogen excretion, these discordant endocrine and metabolic changes following carbohydrate deprivation indicate that the effects of starvation on endocrine and metabolic regulation are not merely the result of carbohydrate deprivation.

Adult↗

Interferon-gamma in healthy subjects: selective modulation of inflammatory mediators.

BACKGROUND: It is suggested that interferon-gamma (IFN-gamma), like other cytokines, is a mediator in the host inflammatory response, which could be of importance in the pathophysiology of sepsis. The role of IFN-gamma in human host inflammatory responses, however, has not been studied. DESIGN: In a placebo-controlled trial we studied the acute effects of IFN-gamma administration on host inflammatory mediators in healthy men: i.e. the cytokine/chemokine cascade system, acute-phase proteins, activation markers of the innate cellular immunity and coagulation/fibrinolysis parameters. RESULTS: IFN-gamma increased plasma levels of interleukin-6 (IL-6), IL-8 and IFN-gamma-inducible protein-10 (IP-10) (P < 0.05), but did not affect plasma levels of other cytokines (IL-4, IL-10, tumour necrosis factor-alpha, IL-12p40/p70). Plasma concentrations of C-reactive protein and secretory phospholipase A2 both increased (P < 0.05). Plasma levels of the leucocyte activation marker elastase-alpha1-antitrypsin complexes increased after IFN-gamma administration (P < 0.05), IFN-gamma increased the percentage of high-affinity Fcgamma-receptor (FcgammaRI) -positive neutrophils (P < 0.05), but did not affect the mean fluorescence intensity of FcgammaRI on neutrophils. Procoagulant and profibrinolytic effects of IFN-gamma were evidenced by increased plasma levels of prothrombin fragment F1 + F2, tissue-plasminogen activator and plasmin-alpha2-antiplasmin complexes (P < 0.05). CONCLUSION: We conclude that IFN-gamma selectively affects host inflammatory mediators in humans.

Acute-Phase Proteins↗

Review article: Regulation of glucose production with special attention to nonclassical regulatory mechanisms: a review.

Hepatic glycogenolysis and gluconeogenesis are essential processes for the prevention of hypoglycemia during short-term starvation. As has been calculated from stable isotope studies, gluconeogenesis accounts for approximately 35% to 50% of total basal glucose production, glycogenolysis for the other 50% to 65%. In long-term starvation, the kidney also contributes to glucose production by gluconeogenesis. Glucose production is regulated by the interaction of different regulatory mechanisms, eg, by glucoregulatory hormones, glucose itself, and gluconeogenic substrates. In the last decades, more insight has been gained into the importance of the autonomous nervous system and the existence of an extensive paracrine network in the liver that seems to exert a potent glucoregulatory role as well. This review is focused on the regulation of hepatic glucose production by the autonomous nervous system and the paracrine network, with special emphasis on studies carried out in human subjects.

Autonomic Nervous System↗

Aminophylline stimulates insulin secretion in patients with type 2 diabetes mellitus.

In healthy subjects, paracrine factors partly regulate insulin secretion and basal endogenous glucose production. Administration of pentoxifylline, an adenosine receptor antagonist, inhibits transiently endogenous glucose production in healthy humans without any changes in glucoregulatory hormone concentrations. To evaluate the modulatory role of adenosine on endogenous glucose production and basal insulin secretion in type 2 diabetes, aminophylline, a potent adenosine receptor antagonist, was administered intravenously to 5 patients with type 2 diabetes mellitus in a saline-controlled study. Endogenous glucose production was measured before and during 6 hours after administration of aminophylline/saline by primed, continuous infusion of [6,6-(2)H(2)]glucose. During both experiments, the decrease in plasma glucose concentration was similar (16% v 18% from basal, not significant [NS]). After aminophylline administration, basal endogenous glucose production was transiently inhibited within 15 minutes to 70% from basal, whereas it did not change significantly in the control experiment (P =.02). The inhibition of glucose production coincided with stimulation of insulin secretion to 144% from basal 90 minutes after the administration of aminophylline (P =.008). In the control experiment insulin secretion decreased gradually by 29% during 6 hours. We conclude that aminophylline inhibits endogenous glucose production in type 2 diabetes by stimulation of insulin secretion. Paracrine factors, such as adenosine, may be involved in the regulation of basal insulin secretion in type 2 diabetes mellitus.

Aged↗

Alterations in glucose metabolism in non-endocrine disease: potential implication for wasting.

Diseases like sepsis, AIDS and cancer can induce an increase in endogenous glucose production. Sepsis and cancer induce insulin resistance whereas increased insulin sensitivity is found in AIDS. Non-oxidative glucose disposal is increased in sepsis and cancer but normal in AIDS. These differences in glucose metabolism between these three diseases characterized by wasting preclude energy-requiring changes in glucose metabolism as the common denominator for wasting in all three diseases. Moreover, the energy requirements of the changes in glucose metabolism induced by cancer and sepsis are rather small. Consequently, alterations in glucose metabolism are pathophysiological epiphenomena rather than a cause of wasting in disorders like sepsis, cancer and AIDS.

Acquired Immunodeficiency Syndrome↗

Towards implementation of optimum nutrition and better clinical nutrition support.

Clinical Nutrition Support--defined as nutrition for hospitalized patients suffering from metabolic stress--plays a limited role in the therapeutic routine of the physician. This is not surprising as most research in the field of clinical nutrition is disappointing with regard to the objective outcomes: morbidity and mortality. These reflections advocate a more 'pharmaceutical approach' to nutrition in order to perform more proper studies on the potential effectiveness of this treatment modality. To provide all patients in the Academic Medical Centre (AMC) in Amsterdam, The Netherlands, with optimum clinical nutrition support, a Nutrition Support Team (NST) was established in 1996. This NST is coaching the dieticians and physicians in the AMC regarding clinical nutrition support. In practice this coaching consists of providing clear guidelines on what is supposed to be optimum nutrition, a basic course in parenteral nutrition and further continuous education. The concept of optimum nutrition is spread by the NST through various ways of education, both nationally and internationally. For adults, optimum nutrition is defined as the amount of protein, that stimulates whole body protein synthesis maximally (1.7 g/kg actual body weight) and covers anabolic energy need (35 kcal/kg actual body weight). The dietician is considered to be the expert in the field of optimum nutrition by oral, enteral or parenteral route. The Dietetic Department has increased its influence in the care of the patient by placing nutritional status and care on the chart of the patient's treatment. To provide optimal Nutrition Support for children and severe ill patients (Intensive care department) specialized teams were started which were co-ordinated by the central NST. The central NST has a co-ordinating and educating role, while the Specialized Nutrition Support Teams (Specialized NST) construct guidelines, undertake research and provide continuous optimum nutrition care.

Dietetics↗