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Biomedical subjects

L F Van Gaal

Publications and source records attributed to L F Van Gaal.

At least 19 recordsLinked to original sources

Among inflammation and coagulation markers, PAI-1 is a true component of the metabolic syndrome.

OBJECTIVE: To investigate whether leukocyte count, fibrinogen, von Willebrand factor (vWF) and plasminogen activator inhibitor-1 activity (PAI-1) are increased in subjects with the metabolic syndrome as defined by the National Cholesterol Education Program-Adult Treatment Panel III (NCEP-ATPIII) and the World Health Organisation (WHO). DESIGN: Cross-sectional study. SUBJECTS: A total of 520 overweight and obese subjects: 379 women and 141 men, visiting the weight management clinic of a University Hospital. SUBJECTS AND MEASUREMENTS: Waist circumference, triglycerides, HDL cholesterol, blood pressure and fasting glucose were determined, and the presence or absence of the metabolic syndrome according to the NCEP-ATPIII criteria was assessed. In 349 subjects, data on the waist-to-hip ratio (WHR) and albumin excretion rate were available and the WHO criteria were applied. Insulin resistance was defined using the HOMA-IR index. RESULTS: Subjects with the metabolic syndrome according to the NCEP-ATPIII criteria had significantly higher levels of leukocyte count (P < 0.001) and PAI-1 (P < 0.001), while no significant differences were found for fibrinogen or vWF (P > 0.05). Using the WHO criteria, similar results were found except for vWF, where higher levels were found in subjects with the metabolic syndrome. When subjects were classified according to the number of components of the metabolic syndrome, levels of leukocyte count, vWF and PAI-1 activity were significantly different (P < 0.05). In logistic regression analysis PAI-1, gender and leukocyte count were independent determinants of the metabolic syndrome (P < 0.001). CONCLUSION: Evidence for being a true component of the metabolic syndrome is strong for PAI-1, less for leukocyte count and weak for vWF and fibrinogen.

Adult↗

New approaches for the management of patients with multiple cardiometabolic risk factors.

Therapeutic strategies currently available for the management of cardiometabolic risk factors focus mainly on individual factors, and do not target the underlying cause of cardiovascular and metabolic diseases. The Rimonabant-in-Obesity (RIO) programme consists of four 1-2 yr Phase III trials, RIO-Europe, RIO-Lipids, RIO-North America (NA), and RIO-Diabetes, designed to assess the efficacy and safety of rimonabant in the treatment of multiple cardiometabolic risk factors in 6600 overweight/obesity patients. After 1 yr, results from the RIO-NA anci RIO-Europe trials, showed that treatment with rimonabant 20mg/day improved HDL-C (p< 0.001), triglycerides (p< 0.001), fasting insulin (p< 0.001) and insulin resistance (p=0.002 and p< 0.001 for RIO-Europe and RIO-NA, respectively) compared to placebo. The results of both studies also showed significant and sustained mean reductions in waist circumference (p< 0.001), and weight (p< 0.001) for rimonabant 20 mg/day compared with placebo. Similar improvements were seen in the RIO-Lipids trial at 1 yr and these results were consistently maintained over 2 yr in RIO-NA. The RIO-Europe and RIO-NA trials showed that improvements in HDL-C and TG levels with rimonabant over 1 yr, compared with bodyweight, were beyond that attributable to weight loss alone [40 and 55% for HDL-C and triglyceride (TG), respectively for RIO-Europe and 58 and 47%, respectively for RIO-NA]. Additionally, in RIO-NA, changes in fasting insulin and homeostasis model assessment insulin resistance (HOMA-IR), were beyond weight loss alone (50 and 51%, respectively). Rimonabant was well tolerated and the majority of adverse events reported were mild and transient, and occurred early in the treatment period. Rimonabant, the first cannabinoid receptor type 1 (CB1) receptor blocker, reduces weight and waist circumference, and improves lipid and glucose metabolism.

Cannabinoid Receptor Modulators↗

Initiating oral glucose-lowering therapy with metformin in type 2 diabetic patients: an evidence-based strategy to reduce the burden of late-developing diabetes complications.

A major aim of glucose-lowering therapy in people with diabetes is to delay or prevent the late-developing complications of diabetes that threaten the quality and duration of life. While intensive interventions to control hyperglycaemia may impair well-being to some extent, the balance of quality of life is usually highly positive. Diet and exercise therapy remains the cornerstone of management, and should usually be given a trial alone first. However, the magnitude and duration of benefit from this intervention is insufficient for most people. More frequent, early, use of metformin is an evidence-based strategy for reducing the risk of adverse outcomes of diabetes in people with type 2 diabetes with sub-optimal glucose control on lifestyle measures alone. This has been recognised in recent evidenced-based guidelines from the UK National Institute for Clinical Excellence and from Diabetes UK, which now support the use of metformin as initial pharmacological therapy for all people without contraindications to the drug. Other national and local guideline committees should consider updating their recommendations on diabetes management in line with these findings.

Body Mass Index↗

Rationale and options for combination therapy in the treatment of Type 2 diabetes.

Pharmacological therapy for Type 2 (non-insulin-dependent) diabetes mellitus aims at controlling hyperglycaemia to delay or prevent complications associated with the disease. Most patients with Type 2 diabetes present with both stimulated insulin deficiency and insulin resistance. In general, the former can manifest as postprandial hyperglycaemia and the latter as fasting hyperglycaemia, though a definitive association has not been established. Emerging data show a high failure rate of long-term monotherapy and establishes the significance of mealtime glycaemia and the role of postprandial glucose excursions in the development and progression of vascular complications. To overcome such failures of monotherapy and to address the different underlying defects of the pathology of Type 2 diabetes, a combined therapy of oral antidiabetic agents with complementary modes of action should be considered. Currently used oral antidiabetic agents such as sulphonylureas, biguanides (metformin) and the thiazolidinediones (rosiglitazone, pioglitazone) commonly target fasting hyperglycaemia and have limited additive effects on postprandial glycaemia. In contrast, alpha-glucosidase inhibitors can reduce postprandial hyperglycaemia but gastrointestinal side effects restrict their use. The development of new agents to control postprandial glucose excursions could be considered as an additional objective for the management of Type 2 diabetes. To this end new short-acting enhancers of insulin secretion such as repaglinide (benzoic acid derivative) and nateglinide (amino acid derivative) have been developed. The combination of such agents with other complementary modes of action, e.g. an insulin sensitizer, could target better major underlying defects of Type 2 diabetes and thereby provide a better approach for controlling the entire glycaemic risk.

Blood Glucose↗

Addition of rosiglitazone to metformin is most effective in obese, insulin-resistant patients with type 2 diabetes.

AIM: These analyses were undertaken to evaluate the efficacy of the insulin sensitizer rosiglitazone (RSG) when added to the therapy of obese type 2 diabetes mellitus patients (T2DM) taking near-maximal doses (2.5 g/day) of metformin (MET). In obese, insulin-resistant patients with T2DM who are inadequately controlled on MET, the addition of an agent that reduces insulin resistance may be a more rational and innovative approach than the addition of an insulin secretagogue. METHODS: Data were pooled from two double-blind studies of RSG added to 2.5 g/day MET, involving a total of 550 T2DM patients. Patients were categorized as non-overweight, overweight and obese according to their baseline BMI using WHO criteria (<25 kgm(-2), 25-30 kgm(-2), >30 kgm(-2) respectively). RESULTS: RSG improved glycaemia (HbA1c) and fasting plasma glucose (FPG) to a clinically significant extent in all three subgroups but the effect was most pronounced in the obese patients. Improvements in HOMA estimates of insulin resistance and beta-cell function were also greatest in the obese patients (4 mg: -16% and +19%; 8 mg: -37% and + 33% respectively), as were reductions in fasting insulin. The profile of adverse events was not demonstrably different in obese patients from the non-obese. CONCLUSIONS: In obese type 2 diabetic patients inadequately controlled on MET alone, addition of rosiglitazone improves glycaemic control, insulin sensitivity and beta-cell function to a clinically important extent.

Adult↗

Leptin levels in type 2 diabetes: associations with measures of insulin resistance and insulin secretion.

Interactions between leptin and insulin have been shown previously, in vitro and in vivo. In this study, we evaluate the associations of leptin levels with insulin secretion and insulin sensitivity in type 2 diabetes. Fasting leptin levels, HbA 1c, glucose, insulin, C-peptide, intact and des-31,32-proinsulin were measured in 100 non-insulin-treated type 2 diabetic patients. Glucose, insulin and C-peptide were measured 2 hours after an oral glucose load. Insulin resistance and beta-cell function were calculated using HOMA. Leptin levels were found to be associated with all measures of beta-cell secretion: with fasting and 2 hours insulin and C-peptide, with intact and des-31,32-proinsulin concentrations, and with beta-cell secretion estimated with HOMA. This association was independent of age and body fat in women, but in men, associations with insulin and C-peptide weakened after controlling for fat mass, whereas those with intact and des-31,32-proinsulin disappeared. Fasting insulin and C-peptide levels were also significant in multiple regression analyses, besides gender and fat mass. Insulin resistance, as assessed by HOMA, was strongly correlated with leptin, also after correction for age and fat mass in both genders. We conclude that, besides fat mass and gender - the main determinants for leptin levels in type 2 diabetic subjects as in healthy subjects - insulin secretion and the degree of insulin resistance also seem to contribute significantly to leptin levels.

Adipose Tissue↗

Helicobacter pylori, parietal cell antibodies and autoimmune gastropathy in type 1 diabetes mellitus.

BACKGROUND: Fifteen to 20% of type 1 diabetic patients exhibit parietal cell antibodies (PCA), which are associated with autoimmune gastritis, hypochlorhydria, iron deficiency and pernicious anaemia. AIM: To examine whether Helicobacter pylori infection could explain the high prevalence of PCA and autoimmune gastropathy in diabetes. If so, H. pylori eradication could prevent autoimmune gastritis. METHODS: In 229 type 1 diabetics (M/F: 135/94; age: 41 +/- 12 years) PCA were measured. H. pylori infection was assessed by serology, urea breath test in all and by histology (updated Sydney system) in 88 subjects. Pentagastrin tests were performed in 42 patients. RESULTS: Sixty-nine patients were PCA-positive. H. pylori infection was present in 72 patients and was negatively associated with HLA-DQA1*0103-B1*0603 (OR=0.12, P=0.015) and positively with DQA1*0501-B1*0201 (OR=1.9, P=0.032). PCA-positivity was linked to HLA-DQA1*0501-B1*0301 (OR=3.9, P=0.017). A link between H. pylori and PCA was observed when PCA-positivity was defined as a titre > or = 1/20 (OR=2.0, P=0.03), but not if > or =1/40 was the cut-off point. PCA-positivity, but not H. pylori infection, was associated with iron deficiency anaemia (OR=2.7, P=0.008), pernicious anaemia (OR= 33.5, P < 0.0001), hypochlorhydria (OR=12.1, P=0.0008) and autoimmune gastritis (OR=12.5, P < 0.0001). CONCLUSIONS: The HLA-bound susceptibility of H. pylori and PCA differed. PCA-positivity but not ongoing H. pylori infection is associated with autoimmune gastritis. Low titres of PCA might reflect H. pylori infection rather than autoimmune gastropathy.

Adult↗

Obesity, haemostasis and the fibrinolytic system.

Obese patients are at risk for the development of cardiovascular diseases, which can in part be explained by disturbances in the haemostatic and fibrinolytic systems. Indeed, obese subjects tend to have higher values of fibrinogen, factor VII, factor VIII, von Willebrand factor and plasminogen activator inhibitor compared to non-obese subjects. Abdominal obesity, in particular, has been shown to be associated with disturbances in fibrinogen, factor VIII and von Willebrand factor, while less consistent results have been found for factor VII. Recently it has been demonstrated that the adipocyte itself is able to produce plasminogen activator inhibitor-1, possibly explaining the high levels found in obesity. Different studies have investigated the association between haemostatic and fibrinolytic parameters and the insulin resistance syndrome, often present in obese subjects. Fibrinogen has been found to be related to insulin, but it has been suggested that this relationship is not independent of the accompanying inflammatory reaction. Results from studies on the relationship between insulin resistance and factor VII, factor VIII and von Willebrand factor levels are inconsistent. In contrast, plasminogen activator inhibitor-1 has been found to correlate with all components of the insulin resistance syndrome, and can be considered as a true component of this metabolic syndrome. Weight loss seems to have a beneficial effect on factor VII--probably mediated through a reduction in triglycerides. Data on factor VIII and von Willebrand factor are scarce but weight loss does not seem to have an effect. Fibrinogen does not seem to be reduced by modest weight loss and a more substantial weight loss seems necessary to lower fibrinogen levels. In contrast, both modest and substantial weight loss have been found to significantly reduce plasminogen activator inhibitor-1 levels. In conclusion, the increased cardiovascular risk observed in obesity could in part be explained by the association between insulin resistance and components of the fibrinolytic and haemostatic systems. Whether this relationship is truly causal or indirect needs to be elucidated further.

Blood Coagulation Factors↗

Low-density lipoprotein receptor gene mutation analysis and clinical correlation in Belgian hypercholesterolaemics.

It is generally believed that patients with familial hypercholesterolaemia (FH) have a higher cardiovascular risk than hypercholesterolaemics without a defect in the low-density lipoprotein receptor (LDLR) gene. However, no conclusive evidence to support this view has yet been presented. We investigated this aspect in Belgian hyperlipidaemics as part of a comprehensive effort to determine the impact of FH in this population. DNA samples of 98 unrelated Belgian patients with a family history of autosomal dominant hypercholesterolaemia were screened for mutations in the LDLR gene, after exclusion of known mutations causing familial defective apolipoprotein B-100 (FDB). Eight of the 22 distinct LDLR gene mutations identified in 27 subjects have not previously been described in other populations. As expected, the mutation-positive patients had a significantly worse lipid profile than the mutation-negative subjects (p<0.05), but this did not correlate with clinical cardiovascular status. In conclusion, the presence of a mutation in the LDLR gene was not a reliable predictor of cardiovascular risk in the hyperlipidaemic subjects included in this study. However, it is possible that prolonged exposure to the high levels of LDL cholesterol in genetically proven FH patients will in future cause a higher incidence of coronary heart disease. Our data may reflect the genetic heterogeneity of inherited hypercholesterolaemia, recently shown to be caused by several major genes.

Adolescent↗

Repaglinide improves blood glucose control in sulphonylurea-naive type 2 diabetes.

The prandial glucose regulator repaglinide has a rapid onset of action, a short half-life and is metabolised mainly by the liver. Here we report the findings of a 10-week, double-blind, parallel, placebo controlled, randomised trial with repaglinide in 25 diet-treated, sulphonylurea-naïve patients with Type 2 diabetes. Repaglinide was titrated, based on capillary blood glucose, from 0.5 mg to a maximum of 4 mg, preprandially with breakfast and dinner. After 10 weeks, repaglinide was associated with a decrease in HbA(1c) of 2.3%Hb relative to the placebo group (P=0.018). This reflected a 30% decrease within the repaglinide group from a mean HbA(1c) of 7.0 to 4.9%Hb (P<0.002). Repaglinide was also associated with a decrease in fructosamine, by 0.88 mmol/l, relative to placebo (P<0.001), with a 20% decrease (from 3.80 to 3.04 mmol/l) within the repaglinide group (P<0.001). Fasting and postprandial blood glucose concentrations decreased in association with repaglinide by 3.6 and 6.4 mmol/l, respectively, relative to placebo (P<0.001 in each case). Within the repaglinide group fasting and postprandial blood glucose decreased by 3.9 and 6.2 mmol/l, respectively (P<0.001 in each case). The number of patients reporting hypoglycaemia in the repaglinide group was similar to placebo (15 vs. 20, respectively; NS). Test meal assessments confirmed that repaglinide effectively controls glucose levels by stimulating mealtime insulin secretion. Fasting serum insulin concentration was not raised compared to baseline or placebo during repaglinide therapy, albeit that fasting glucose levels were decreased by repaglinide. Twice-daily meal-related insulin secretagogue therapy with repaglinide, a new short and rapid-acting prandial glucose regulator, is capable of improving all measures of glycaemic control without increased hypoglycaemia or fasting hyperinsulinaemia.

Area Under Curve↗

Polymorphisms in the leptin receptor gene, body composition and fat distribution in overweight and obese women.

OBJECTIVE: Leptin is an adipocyte-secreted hormone involved in body weight regulation, acting through the leptin receptor, localised centrally in the hypothalamus as well as peripherally, amongst others on adipose tissue. The aim of this study was to evaluate whether polymorphisms in the leptin receptor (LEPR) gene were related to obesity and body fat distribution phenotypes, such as waist and hip circumferences and the amount of visceral and subcutaneous fat. METHODS: Three known LEPR polymorphisms, Lys109Arg, Gln223Arg and Lys656Asn, were typed on genomic DNA of 280 overweight and obese women (body mass index (BMI)>25), aged 18-60 y. General linear model (GLM) analyses were performed in 198 pre- and 82 postmenopausal women, adjusting the data for age and menopausal state, plus fat mass for the fat distribution phenotypes. RESULTS: No associations were found between the LEPR polymorphisms and BMI or fat mass. In postmenopausal women, carriers of the Asn656 allele had increased hip circumference (P=0.03), total abdominal fat (P=0.03) and subcutaneous fat (P=0.04) measured by CT scan. Total abdominal fat was also higher in Gln223Gln homozygotes (P=0.04). Also in postmenopausal women, leptin levels were higher in Lys109Lys homozygotes (P=0.02). CONCLUSION: In conclusion, polymorphisms in the leptin receptor gene are associated with levels of abdominal fat in postmenopausal overweight women. Since body fat distribution variables were adjusted for fat mass, these results suggest that DNA sequence variations in the leptin receptor gene play a role in fat topography and may be involved in the predisposition to abdominal obesity.

Adipose Tissue↗

The importance of obesity in diabetes and its treatment with sibutramine.

Weight gain is a known risk factor for the development of type 2 diabetes and even modest weight reduction can reduce the risk of developing diabetes, so controlling body weight is an important public health goal in the fight against diabetes and its comorbidities. Weight reduction is also a cornerstone of diabetes management, improving glycaemic control and reducing other risk factors associated with this disease. Pharmacotherapies such as sibutramine contribute to the management of type 2 diabetes in overweight and obese patients.

Appetite Depressants↗

Overweight, obesity, and blood pressure: the effects of modest weight reduction.

Several large epidemiological studies have shown an association between body mass index and blood pressure in normal weight and overweight patients. Weight gain in adult life especially seems to be an important risk factor for the development of hypertension. Weight loss has been recommended for the obese hypertensive patient and has been shown to be the most effective nonpharmacological treatment approach. However, long-term results of weight loss programs are disappointing with people often regaining most of the weight initially lost. In recent years, a modest weight loss, defined as a weight loss of 5% to 10% of baseline weight, has received increasing attention as a new treatment strategy for overweight and obese patients. A more gradual and moderate weight loss is more likely to be maintained over a longer period of time. Several studies have confirmed the blood pressure-lowering effect of a modest weight loss in both hypertensive and nonhypertensive patients. A modest weight loss can normalize blood pressure levels even without reaching ideal weight. In patients taking antihypertensive medication, a modest weight loss has been shown to lower or even discontinue the need for antihypertensive medication. In patients with high normal blood pressure, a modest weight loss can prevent the onset of frank hypertension. The blood pressure-lowering effect of weight loss is most likely a result of an improvement in insulin sensitivity and a decrease in sympathetic nervous system activity and occurs independent of salt restriction. In conclusion, a modest weight loss that can be maintained over a longer period of time is a valuable treatment goal in hypertensive patients.

Adult↗

Gastric parietal cell antibodies are associated with glutamic acid decarboxylase-65 antibodies and the HLA DQA1*0501-DQB1*0301 haplotype in Type 1 diabetes mellitus. Belgian Diabetes Registry.

AIMS: To assess the prevalence of thyrogastric autoimmunity in relation to age, sex, beta-cell antibody status and HLA DQ haplotypes in Type 1 diabetes mellitus. METHODS: One hundred and seventy-one patients with Type 1 diabetes mellitus were studied (male/female 86/85; mean age 19 +/- 11 years; duration of diabetes 5 +/- 4 years). Islet cell antibodies (ICA) and parietal cell antibodies (PCA) were measured using indirect immunofluorescence; glutamic acid decarboxylase-65 antibodies (GADA) by radiobinding assay and thyroid peroxidase antibodies (TPO) with an immunoradiometric assay (IRMA). RESULTS: The majority of subjects (81.3%) showed one or more autoantibodies. The prevalence rates were: GADA 64.9%, ICA 46.2%, PCA 19.9% and TPO 19.3%. Patients with ICA+ > or = 3 years after diagnosis had a higher prevalence of GADA (P = 0.03, odds ratio (OR) 2.66) and thyrogastric antibodies (P = 0.05, OR 2.23) than subjects ICA- after 3 years. PCA+ patients were older (P = 0.04), had a higher prevalence of GADA (P = 0.005, OR 3.89) and TPO (P = 0.05, OR 2.50) than PCA- subjects. Logistic regression analysis showed that PCA status was determined by the HLA DQA1*0501-DQB1*0301 haplotype (beta = 2.94, P = 0.04) and GADA status (beta = 2.44, P = 0.041). CONCLUSIONS: Thyrogastric antibodies are highly prevalent in Type 1 diabetes mellitus, especially in patients with persisting ICA. Screening for gastric autoimmunity is particularly advised in patients who are positive for GADA and for the HLA DQA1*0501-DQB1*0301 haplotype.

Adolescent↗

Human leptin: from an adipocyte hormone to an endocrine mediator.

Leptin is a mainly adipocyte-secreted protein that was discovered 5 years ago. Most of the research following this discovery focused on the role of leptin in body weight regulation, aiming to illuminate the pathophysiology of human obesity. However, more and more data are emerging that leptin is not only important in the regulation of food intake and energy balance, but that it also has a function as a metabolic and neuroendocrine hormone. It is now clear that it is especially involved in glucose metabolism, as well as in normal sexual maturation and reproduction. Besides this, interactions with the hypothalamic-pituitary-adrenal, thyroid and GH axes and even with haematopoiesis and the immune system have also been described. It has been shown that leptin secretion by the adipocyte is partly regulated by other hormones, such as insulin, cortisol, and sex steroids, mainly testosterone. Also, other hormones like thyroid hormone and GH are possibly involved in leptin synthesis. Leptin itself exerts effects on different endocrine axes, mainly on the hypothalamic-pituitary-gonadal axis and on insulin metabolism, but also on the hypothalamic-pituitary-adrenal, thyroid and GH axes. Leptin may thus be considered a new endocrine mediator, besides its obvious role in body weight regulation.

Adipocytes↗

Promising new approaches to the management of obesity.

The pathophysiology of obesity is complex with many different pathways involved. A better understanding of these weight-regulating mechanisms has lead to the identification of new targets for anti-obesity agents. Most attention has been given to the centrally acting neuropeptides regulating food intake. Leptin, playing a key-role, exerts its action through several neuropeptides such as neuropeptide Y, alpha-melanocyte stimulating hormone and agouti related protein. Cocaine- and amphetamine-regulated transcript peptide and the orexins are the latest discovered peptides acting at the level of the hypothalamus. Targets for new drugs acting on peptides secreted from the periphery are cholecystokinin and glucagon-like peptide 1. Another potential target in the treatment of obesity is increasing energy expenditure via beta3 adrenoceptors or uncoupling proteins. These new pharmacological agents in development could be valuable adjuncts to more traditional treatment strategies such as dietary treatment, behavioural/psychological counselling and physical activity.

Behavior Therapy↗