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[The early detection of diabetes mellitus and the active dispensary care of 1200 subjects with a genetic predisposition].

Diabetes mellitus (DM) is a metabolic disease with a long-lasting chronic course, attending during its development by complications which affect the state of health and require additional measures from the social and economic point of view. The current strategy consists in the earliest possible detection of disease in groups of population selected according to the existent risk of developing a DM. This action is followed by an active dispensary care and by lessons of health education, aimed at preventing metabolic decompensations and the early occurrence of degenerative chronic complications. Taking into account these considerations in the present paper, authors analyse the possibility of detection of DM in 1,200 subjects genetically predisposed, a special stress being laid on the means of prevention, on the role of active dispensary care and on the place of health education in the therapy of DM and in the prevention of complications of this disease with an invalidating potential.

Adult↗

Effect of diabetic state on co-localization of substance P and serotonin in the gut in animal models.

Changes in the numbers of serotonin- and substance P-immunoreactive (IR) cells occur in several animal models of diabetes. It is not known, however, whether these changes are a result of actual cell loss or are caused by modified gene expression in cells showing co-localization of serotonin and substance P. The pattern of mono- and co-expression of serotonin, as well as of substance P, was therefore investigated in gastrointestinal endocrine cells from animal models of human type 1 and type 2 diabetes, namely non-obese diabetic (NOD) and obese diabetic (ob/ob) mice. Immunocytochemical staining by the avidin-biotin complex method was performed for computerized image analysis of each cell type, and by immunofluorescence double staining to study co-localization. Tissues from antrum, proximal duodenum and distal colon were investigated. Co-localization of serotonin- and substance P-IR was found in all investigated parts of the gut. In antrum, substance P immunoreactivity was found exclusively in serotonin-IR cells. In both NOD and ob/ob mice there was a reduced number of substance P-IR cells, but an unchanged serotonin-IR cell count, which thus tallies with a shut-off of substance P expression in antral enterochromaffin cells. In duodenum, both diabetes models showed a decreased number of serotonin-IR cells. Furthermore there was a decreased number of substance P-IR cells in the type 2 model. The proportion of serotonin-IR cells showing substance P-immuno-reactivity was decreased in both diabetic models, thus indicating a shut-off of substance P-gene expression. However, this does not fully explain the changes in duodenum, but the diabetic state probably affects the number of mono-expressed cells as well. In colon, no change was found in diabetic mice regarding co-localization of substance P and serotonin. However, pre-diabetic NOD mice showed a decreased proportion of substance P in serotonin-IR cells, which might be explained by the increased number of serotonin-IR cells, combined with an unchanged number of substance P-IR cells. In conclusion, diabetic animal models of both type 1 and type 2 appear to have a combination of decreased expression of substance P in serotonin-IR cells of both antrum and duodenum, as well as a change in the number of mono-expressed cells. The pattern in colon, on the other hand, seems to be unaffected.

Animals↗

Effects of short-term metformin treatment on insulin sensitivity of blood glucose and free fatty acids.

AIM: Based on the known effect of metformin (MET) in improving insulin sensitivity in type 2 diabetes, with the scope to focus the effects on glycaemic and free fatty acids (FFA) levels, we studied the effects of a short-term treatment with this drug in obese subjects and obese patients with diabetes or family history of diabetes (FHD). We used a method to allow us to evaluate the possible difference of insulin sensibility with regard to the insulin action on glycaemia and blood FFA, both in the basal state and during oral glucose tolerance test (OGTT). METHODS: Insulin sensitivity was investigated before and after MET treatment (850 mg bid for 10 days) in seven obese subjects with normal glucose tolerance and without FHD and 13 obese patients with diabetes (n=7) or FHD (n=6). By using specifically designed formulae, we calculated four insulin-sensitivity indices (ISI) from basal level (b) and area values (a) (during OGTT) of insulinaemia, glycaemia (gly) or FFA (ffa), namely: ISI (gly)-b, ISI (gly)-a, ISI (ffa)-b and ISI (ffa)-a. RESULTS: In patients with diabetes or FHD, MET improved ISI (gly)-b (0.79 +/- 0.06 vs. 0.59 +/- 0.07, p<0.001) and ISI (gly)-a (0.69 +/- 0.09 vs. 0.51 +/- 0.07, p<0.05), whereas only minor changes occurred for ISI (ffa)-b and ISI (ffa)-a. In contrast, in simple obese subjects, MET induced further deterioration of both ISI (gly)-a (0.47 +/- 0.07 vs. 0.64 +/- 0.10, p<0.01) and ISI (ffa)-a (0.43 +/- 0.07 vs. 0.55 +/- 0.08, p<0.05). Fasting level and total area of lactate were high in the obese patients and were not affected by MET. A statistically significant increase (p<0.01), however, was observed for the 'decremental' area of lactate in obese subjects with diabetes or FHD, which might probably contribute to the reduction of insulin resistance induced by the drug in these patients. CONCLUSIONS: Although the low number of subjects studied precludes absolute conclusions, data would suggest that MET improved ISI towards glucose but not towards FFA, in the diabetic and 'prediabetic' obese patients, whereas worsened it in the obese subjects without FHD. Therefore, the effects of MET would not be secondary to changes of FFA but rather to a primary action of MET on glucose metabolism. Thus, utilization of MET to treat the insulin resistance in obesity is indicated only in the presence of alterations of glucose metabolism or FHD.

Adult↗

New-onset diabetes and antihypertensive drugs.

Observational studies have provided evidence that a consistent fraction (approximately 15-20%) of hypertensive patients displays a glucose intolerance state that may be aggravated by antihypertensive drug regimens based on thiazide diuretics or beta-blockers. This review examines the relative and absolute diabetogenic effects of antihypertensive drugs, by comparing the impact of 'new' (calcium antagonists, angiotensin-converting enzyme inhibitors and angiotensin II receptor antagonists) versus 'old' (diuretics and beta-blockers) drugs on new-onset diabetes in recent clinical trials. Evidence is provided that compared with diuretics and beta-blockers, new-onset diabetes is less common with 'new' drugs, and that conventional antihypertensive compounds, particularly when combined together, may amplify the natural time-dependent tendency towards the development of this metabolic disease. This paper provides new insights into the potential mechanisms responsible for the phenomenon and the clinical significance of antihypertensive drug-induced diabetes.

Adrenergic beta-Antagonists↗

Normal insulin sensitivity during the phase of glucose intolerance but insulin resistance at the onset of diabetes in the spontaneously diabetic BB rat.

In diabetes-prone BB rats, 30 to 50% of animals undergo autoimmune destruction of the pancreatic B-cells leading to a short period of glucose intolerance, followed by an abrupt onset of diabetes. We have examined whether the glucose intolerance period and the onset of diabetes are associated with changes in insulin sensitivity, using the euglycaemic hyperinsulinaemic clamp coupled with [3-3H] glucose infusion. Glucose intolerant rats were detected by a transient glycosuria one hour after an oral glucose load performed every four days. Insulin sensitivity studied in these rats the day following their detection was normal. Other diabetes-prone BB rats were tested daily and studied on the first day of glycosuria. In the basal state, glucose production was increased in diabetic rats (11.3 +/- 1.1 vs 7.1 +/- 0.8 mg.min-1.kg-1, p less than 0.05). Tissue glucose utilization was similar in diabetic and control rats (8.3 +/- 0.5 vs 7.1 +/- 0.8 mg.min-1.kg-1) despite a three fold higher glycaemia in the diabetic rats. During the hyperinsulinaemic clamps, glycaemia was clamped at 6.1-6.6 mmol/l in diabetic and control rats. A decreased insulin sensitivity was observed in diabetic rats at submaximal (200 microU/ml) and maximal (1500 microU/ml) insulin concentrations for both inhibition of hepatic glucose production and stimulation of glucose utilization. No autoantibodies against insulin could be detected in the plasma of diabetic rats. Plasma concentrations of glucagon, catecholamines, ketone bodies and fatty acids were similar in control and diabetic rats during the clamp studies.(ABSTRACT TRUNCATED AT 250 WORDS)

3-Hydroxybutyric Acid↗

Diabetic nephropathy and end-stage renal disease in Mexican Americans.

Hispanics are the second largest minority group in the United States. Mexican Americans (MAs) are the largest subgroup at 14 million in 1990. MAs have a two- to threefold increased prevalence of non-insulin-dependent diabetes mellitus. Population-based studies of MAs with non-insulin-dependent diabetes have shown that these patients may be more likely than non-Hispanic whites to develop proteinuria and are more likely to develop end-stage renal disease. The reasons for this excess risk are yet to be completely elucidated, but may be due to worse glycemic control, worse blood pressure control when hypertension does occur, worse access to medical care, and/or genetics. When MAs are treated for diabetic end-stage renal disease, they have better survival. Much less data are available for other Hispanic subgroups. From a public health perspective, higher incidence and longer survival as well as relatively young and rapidly growing population predict an increasing burden for MAs if prevention measures are not instituted soon.

Diabetes Mellitus, Type 2↗

Locating the site(s) of insulin resistance in patients with nonketotic diabetes mellitus.

Insulin resistance and the ability of insulin to inhibit hepatic glucose production and to increas efficiency of glucose uptake were determined in 24 nonobese individuals: eight subjects with normal oral glucose tolerance, eight patients with chemical diabetes, and eight nonketotic patients with fasting hyperglycemia (greater than 150 mg. per cent). Insulin resistance was estimated by measuring the steady-state plasma glucose response to a continuous infusion of insulin, glucose, epinephrine, and propranolol. This approach permits us to inhibit levels of exogenous insulin, and use the height of the steady-state plasma glucose response as a direct estimate of insulin resistance. The ability of insulin to inhibit hepatic glucose production and to increase efficiency of glucose uptake was calculated from the results of two studies in which a continuous infusion of 3H-2-glucose was used to measure glucose turnover rate. The first study was performed after an overnight fast, under conditions of basal insulin levels, while the second was conducted during the infusion of insulin, glucose, epinephrine, and propranolol. Hepatic glucose production is equal to glucose turnover rate during the basal study and is equal to glucose turnover rate minus the infusion rate of cold glucose during the second study. Glucose uptake in both studies is equal to glucose turnover rate minus urinary glucose loss, and the efficiency of glucose uptake is calculated by dividing glucose uptake by the plasma glucose pool size. The mean (+/- S.E.) steady-state plasma glucose response was 113 +/- 9 mg. per cent in normal subjects, 205 +/- 14 mg. per cent in chemical diabetics, and 346 +/- 30 mg. per cent in patients with fasting hyperglycemia. Thus, insulin resistance exists in monoketotic diabetes, and the greater the degree of glucose intolerance, the greater the insulin resistance. The resistance to the insulin infusion in patients with chemical diabetes seemed to be mainly a function of the inability of insulin to increase efficiency of glucose uptake, since insulin did retain its ability to inhibit glucose production (although not to normal levels). In contrast, the infusion of insulin neither inhibited hepatic glucose production nor increased efficienty of glucose uptake in patients with fasting hyperglycemia. Thus, the insulin resistance that exists in patients with nonketotic diabetes cannot be considered to be a global phenomenon. Significant differences exist in the responsiveness of various tissues to the two general aspects of insulin's action on glucose homeostasis, and these differences provide a physiologic basis for the variations in degree of over-all insulin resistance that are present in the three groups of subjects.

Adult↗

Does diabetic state affect co-localization of peptide YY and enteroglucagon in colonic endocrine cells?

BACKGROUND: Changes in the numbers of PYY- and enteroglucagon-immunoreactive cells in colon of animal models of human diabetes have been reported. As these peptides co-localize in the same cells it is possible that the observed changes are a result of changes in co-localization. METHODS: Animal models of human type 1 and type 2 diabetes, namely the non-obese diabetic (NOD) mouse and the obese (ob/ob) mouse, were studied. As controls for the NOD mice, BALB/cJ mice were used and for ob/ob mice, homozygous lean (+/+) mice were used. Tissue samples from colon were double-immunostained for PYY and enteroglucagon according to the indirect immunofluorescence method. RESULTS: Co-localization of enteroglucagon and PYY was found in colonic endocrine cells in all groups investigated. Compared with controls, pre-diabetic NOD mice showed a decreased proportion of enteroglucagon/PYY co-localization. There was no difference in diabetic NOD mice or diabetic ob/ob mice when compared with controls. CONCLUSIONS: Whereas the number of cells containing solely enteroglucagon and solely PYY increases in pre-diabetic NOD mice, production of enteroglucagon in PYY-immunoreactive cells decreases. Although the numbers of PYY and enteroglucagon cells have been reported to be changed in both diabetic NOD mice and in obese mice, the balance between co-expressing and mono-expressing cells seems to be preserved.

Animals↗

Metabolic state of the pancreas affects end-point titre in the islet cell antibody assay.

Quantification of islet cell antibodies is used increasingly to evaluate pre-clinical Type 1 (insulin-dependent) diabetes mellitus. If expression of the antigen(s) reacting with islet cell antibodies varies depending upon the functional state of the pancreatic islets, this may partly explain differences in assay sensitivity between laboratories. To address this question we altered Beta-cell function in Osborn-Mendel rats, by dietary manipulation prior to killing. Rats were fed chow (n = 7) or a high sucrose/high fat "cafeteria" diet (n = 8) or were fasted for 18 h (n = 6) until immediately prior to killing. Using frozen sections of these rat pancreata in the indirect immunofluorescent test for islet cell antibodies, we determined the end-point titre for 18 sera in which islet cell antibodies had been previously quantified in our standard human pancreas assay. These sera included ten positive sera and eight normal negative control sera. The four most strongly positive sera gave significantly higher end-point titres on "cafeteria" diet-fed pancreata and lower titres on fasted pancreata (p less than 0.04 to 0.002). None of non-diabetic control sera were positive on any substrate. These data suggest that islet antigen expression is increased when Beta-cell function is increased by dietary manipulation. Improved sensitivity in the islet cell antibody assay might be possible by altering Beta-cell function before or immediately after pancreas collection.

Animals↗

Adiponectin in childhood and adolescent obesity and its association with inflammatory markers and components of the metabolic syndrome.

CONTEXT: Adiponectin levels are lower in obese children and adolescents, whereas markers of inflammation and proinflammatory cytokines are higher. Hypoadiponectinemia may contribute to the low-grade systemic chronic inflammatory state associated with childhood obesity. OBJECTIVE: We investigated whether C-reactive protein (CRP), the prototype of inflammation, is related to adiponectin levels independently of insulin resistance and adiposity. DESIGN, SETTING, PARTICIPANTS, AND MAIN OUTCOME MEASURES: In a multiethnic cohort of 589 obese children and adolescents, we administered a standard oral glucose tolerance test and obtained baseline measurements for adiponectin, plasma lipid profile, CRP, IL-6, and leptin. RESULTS: Stratifying the cohort into quartiles of adiponectin levels and adjusting for potential confounding variables, such as age, gender, ethnicity, body mass index z-score, pubertal status, and insulin sensitivity, the present study revealed that low levels of adiponectin are associated not only with higher CRP levels, but also with components of the metabolic syndrome, such as low high-density lipoprotein cholesterol and a high triglyceride-to-high-density-lipoprotein ratio. CONCLUSIONS: The link between adiponectin levels and a strong marker of inflammation, CRP, is independent of insulin resistance and adiposity in obese children and adolescents. Adiponectin may be one of the signals linking inflammation and obesity. Thus, adiponectin may function as a biomarker of the metabolic syndrome in childhood obesity.

Adiponectin↗

Risk factors for development of pre-diabetic state from normal glucose regulation.

As a strategy to prevent the progression of diabetes mellitus, it is important to screen out the subjects who will develop a pre-diabetic state (PDS) in the future. To find out the potential risk factors for PDS, we employed the values of fasting plasma glucose and hemoglobin A1c (HbA1c), which are routinely measured in our health checkup. We selected 3,879 individuals who had normal glucose regulation at both fasting plasma glucose < 6.1 mmol/l and HbA1c < 5.5% in 1997 and investigated whether they would develop PDS in the next 5 years. PDS is defined at fasting plasma glucose >or= 6.1 mmol/l and HbA1c >or= 5.5%. Among 3,879 individuals, 21 developed PDS and 2,128 maintained normal glucose regulation in 2001. The remaining 1,730 subjects fit one of the two criteria for PDS. The parameters measured in 1997, including fasting plasma glucose, HbA1c, triglyceride, alanine aminotransferase, gamma-glutamyltranspeptidas, cholinesterase, uric acid, red blood cells, hemoglobin, percent body fat and diastolic blood pressure, were significantly higher in the individuals who developed PDS than in those who maintained normal glucose regulation. On the other hand, hematocrit was significantly lower in PDS than in normal glucose regulation. Logistic regression analysis identified alanine aminotransferase >or= 40 U/l, triglyceride >or= 1.69 mmol/l, low-density lipoprotein cholesterol >or= 3.62 mmol/l and hematocrit < 38% as valuable factors for predicting the development of PDS. The present study demonstrates that the subjects with high risks for PDS could be identified from several clinical parameters and that they should be encouraged to improve their living habits not to develop diabetes mellitus.

Alanine Transaminase↗

High frequency of pre-diabetes, undiagnosed diabetes and metabolic syndrome among overweight Arabs in Israel.

BACKGROUND: Increased insulin resistance, which is associated with obesity, is believed to underlie the development of metabolic syndrome. It is also known to increase the risk for the development of glucose intolerance and type 2 diabetes. Both conditions are recognized as causing a high rate of cardiovascular morbidity and mortality. OBJECTIVES: To assess the prevalence of metabolic syndrome and different glucose intolerance states in healthy, overweight Arab individuals attending a primary healthcare clinic in Israel. METHODS: We randomly recruited 95 subjects attending a primary healthcare clinic who were healthy, overweight (body mass index > 27) and above the age of 40. Medical and family history was obtained and anthropometric parameters were measured. Blood chemistry and oral glucose tolerance test were performed after overnight fasting. RESULTS: Twenty-seven percent of the subjects tested had undiagnosed type 2 diabetes according to WHO criteria, 42% had impaired fasting glucose and/or impaired glucose tolerance and only 31% had a normal OGTT. Metabolic syndrome was found in 48% according to criteria of the U.S. National Cholesterol Education Program, with direct correlation of this condition with BMI and insulin resistance calculated by homeostasis model assessment. Subjects with metabolic syndrome had a higher risk for abnormality in glucose metabolism, and the more metabolic syndrome components the subject had the higher was the risk for abnormal glucose metabolism. Metabolic syndrome predicted the result of OGTT with 0.67 sensitivity and 0.78 specificity. When combined with IFG, sensitivity was 0.83 and specificity 0.86 for predicting the OGTT result. CONCLUSIONS: According to our initial evaluation approximately 70% of the overweight Arab population in Israel has either metabolic syndrome or abnormal glucose metabolism, indicating that they are at high risk to develop type 2 diabetes and cardiovascular morbidity and mortality. This population is likely to benefit from an intervention program.

Arabs↗

Impaired glucose tolerance and impaired fasting glucose.

Impaired glucose tolerance and impaired fasting glucose form an intermediate stage in the natural history of diabetes mellitus. From 10 to 15 percent of adults in the United States have one of these conditions. Impaired glucose tolerance is defined as two-hour glucose levels of 140 to 199 mg per dL (7.8 to 11.0 mmol) on the 75-g oral glucose tolerance test, and impaired fasting glucose is defined as glucose levels of 100 to 125 mg per dL (5.6 to 6.9 mmol per L) in fasting patients. These glucose levels are above normal but below the level that is diagnostic for diabetes. Patients with impaired glucose tolerance or impaired fasting glucose have a significant risk of developing diabetes and thus are an important target group for primary prevention. Risk factors for diabetes include family history of diabetes, body mass index greater than 25 kg per m2, sedentary lifestyle, hypertension, dyslipidemia, history of gestational diabetes or large-for-gestational-age infant, and polycystic ovary syndrome. Blacks, Latin Americans, Native Americans, and Asian-Pacific Islanders also are at increased risk for diabetes. Patients at higher risk should be screened with a fasting plasma glucose level. When the diagnosis of impaired glucose tolerance or impaired fasting glucose is made, physicians should counsel patients to lose 5 to 7 percent of their body weight and engage in moderate physical activity for at least 150 minutes per week. Drug therapy with metformin or acarbose has been shown to delay or prevent the onset of diabetes. However, medications are not as effective as lifestyle changes, and it is not known if treatment with these drugs is cost effective in the management of impaired glucose tolerance.

Blood Glucose↗

Beta-cell dysfunction in first-degree relatives of patients with non-insulin-dependent diabetes mellitus.

To analyse the relationship between age, glucose tolerance, beta-cell function, and insulin sensitivity in preclinical states of non-insulin-dependent (Type 2) diabetes mellitus (NIDDM), we have done a cross-sectional, age-stratified analysis of 86 non-diabetic first-degree relatives of NIDDM patients and 49 controls with similar age, sex, and BMI. A 5 mg kg ideal body weight-1 min-1 for 60 min of continuous infusion of glucose with model assessment (CIGMA) of serum glucose and C-peptide values at the end of the infusion was used to determine glucose tolerance and beta-cell function. Insulin sensitivity was estimated by modelling basal serum glucose and insulin values. Relatives and controls were divided into tertiles on the basis of age. Relatives had higher basal (5.3 vs 5 mmol l-1, p = 0.02) and achieved serum glucose (9.1 vs 8.4 mmol l-1, p = 0.01), lower beta-cell function (128 vs 145%, p = 0.007), and lower insulin sensitivity (37 vs 43%, p = 0.002). Beta-cell function declined with age in relatives (from 139% in young subjects to 134% in intermediate subjects and to 111% in older subjects, p = 0.002) and this decline was associated with an increase in basal serum glucose (from 5.1 to 5.3 and to 5.7 mmol l-1, p = 0.000) and achieved glucose (from 8.3 to 9.1 and to 9.3 mmol l-1, p = 0.038), without significant changes in insulin sensitivity. These trends were observed even after the exclusion of subjects with mild glucose intolerance. We conclude that both beta-cell dysfunction and insulin resistance are present in first-degree relatives of NIDDM. The progression of beta-cell dysfunction and glucose intolerance with age suggests that beta-cell dysfunction is the key factor in the apparition and progression of the disease.

Adolescent↗

[Steps toward the primary prevention of type II diabetes mellitus. Various epidemiological considerations].

Non-insulin-dependent diabetes mellitus (NIDDM), or type II diabetes is rapidly becoming one of the most common chronic disease in the United States and worldwide, with more than 7% of the adult population affected. NIDDM is even more common in the elderly and in minority population including Hispanic Americans, African Americans, Asian and Pacific Island Americans, and Native Americans. In these populations, NIDDM may be present in 10% to as much as 50% of the adult population. However diagnosed NIDDM is only the tip of the iceberg of an epidemic of glucose intolerance. Impaired glucose intolerance (IGT) is even more prevalent that NIDDM; and in addition to be a major risk factor for the development of NIDDM, IGT is associated with an increased risk of macrovascular disease. Recent advances in research into the etiology and natural history of diabetes have increased the knowledge to such an extent that primary prevention of NIDDM is becoming a reality. This primary prevention can be implemented a) through a population strategy, i.e. changing the lifestyle and environmental determinants that are known to be risk factors for diabetes, and b) through high-risk strategy, i.e. targeting preventive measures only at those specific individuals or groups that are at high risk for the future development of NIDDM. The latter is the strategy of the Diabetes Prevention Program (DDP), a clinical study sponsored by the National Institute of Diabetes and Digestive and Kidney Disease in USA. Twenty five centers were selected to participate in this program. The purpose of DPP is prevent or delay the development of NIDDM in those persons who are at high risk because they have IGT. DPP will also evaluate if the interventions selected to prevent the development of NIDDM can decrease the frequency of cardiovascular events and the occurrence and magnitude of the cardiovascular risk factors that accompany NIDDM and IGT. Four thousand volunteers will be recruited from populations known to be at particular high risk fo IGT and NIDDM including the following: elderly, overweight individuals, persons with family history of NIDDM, women with history of gestational diabetes, and minority populations. In order to be eligible, persons who are older than 25 years will have to demonstrate IGT with plasma glucose levels 100-139 mg/dl fasting and 140-199 mg/dL two hours after a 75 g OGTT. Three study intervention were selected based on their potential efficacy in ameliorating abnormal glucose metabolism in IGT and on their safety and tolerable profile of side-effects. The interventions include: intensive lifestyle intervention which focuses on a healthy diet to achieve and maintain at least a 7% loss of body weight and an increase in caloric expenditure of at least 700 kcal per week. The drug therapy interventions include the biguanide metformin and the thiazolidinedione troglizatone. Standard life-style recommendations, which include conventional instructions regarding diet and exercise, will be provided to all participants, including a placebo treated group which will serve as the control group for the study. After randomization, participants will have quarterly evaluations and have, in addition, a fasting plasma glucose at semi-annual visits and a 75 g OGTT at annual visits. All participants will be followed for three years after the study-wide closing date for recruitment, resulting in 3 to 6 years of participant follow-up. The primary outcome is the development of NIDDM according to WHO criteria (fasting plasma glucose level 140 mg/dL or 2-hour plasma glucose 200 mg/dL after a 75 g OGTT). Secondary outcome will focus en cardiovascular disease and its risk factors and change of glycemia, insulin secretion and sensitivity, obesity, physical activity and nutrient intake, quality of life, and the occurrence of adverse events.

Adult↗