Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0011854 (type 1 diabetes)
20,749 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Recently the definition, the pathophysiology and even the clinical utility of metabolic syndrome (MS) have been discussed. The risk induced by each component of the metabolic syndrome is higher than the risk induced by MS alone. MS alone is, in fact, a weaker predictor of cardiovascular disease than diabetes. New criteria to define the metabolic syndrome have been proposed, as adipokines, CRP and PAI-1. IGFBP-1 is related to hyperinsulinemia/insulin resistance and to the risk of diabetes and fatal ischemic heart disease development. IGF/IGFBP system could be a link between insulin resistance and cardiovascular disease. RBP-4 can attenuate insulin signalling in skeletal muscle and induce hepatic gluconeogenesis. The belief that insulin-resistance is the main cause of MS could change in favour of the adipose tissue dysfunction. The most common cause of a reduced capacity of the adipose tissue to store fats is the increased dietary intake, also present in lipodistrophy, type 1 diabetes mellitus and polycystic ovarian syndrome. The adipose tissue production of adipokines and cytokines (such as IL-6, TNF-alpha and TGF-beta) and the excessive lipid flux towards muscles, heart and liver (Ectopic fat storage syndrome) contribute to the MS genesis and to an increased cardiovascular risk. The comprehension of adipose tissue dysfunction mechanisms offers new possibilities of prevention and therapy.
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PMID:[Metabolic syndrome: from insulin resistance to adipose tissue dysfunction]. 1849 27

Atrial fibrillation (AF) is the most common disorder of cardiac rhythm and is responsible for substantial morbidity and mortality in general population. A recent community-based observational study revealed that diabetes and/or hypertension were associated with the development of AF. However, there is no definite evidence to show that patients with type 1 diabetes have an increased risk for the development of AF. These findings suggest that hyperglycemia per se may not explain the positive association between diabetes and AF. Growing body of evidence supports the presence of insulin resistance as the fundamental pathophysiological disturbance responsible for the metabolic syndrome, a constellation of metabolic disorders such as hypertension, dyslipidemia, and obesity that raise the risk for diabetes mellitus and cardiovascular diseases. Further, several clinical trials have shown that the renin-angiotensin system (RAS) plays an important role in the pathogenesis of insulin resistance. These observations suggest that insulin resistance could account for the increased risk for AF in the patients with diabetes and/or hypertension and that the interruption of the RAS may be a promising therapeutic strategy for preventing the development of AF. In the first part of this paper, we review clinical studies to support the concept that angiotensin II type 1 receptor blockers (ARBs) could prevent the development of AF in insulin resistant patients and discuss the possible underlying mechanisms. In the second part, we discuss the potential utility of telmisartan, a unique ARB with peroxisome proliferator-activated receptor-gamma (PPAR-gamma)-modulating activity, for blocking the development of AF in patients with insulin resistance.
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PMID:Possible molecular mechanisms by which angiotensin II type 1 receptor blockers (ARBs) prevent the development of atrial fibrillation in insulin resistant patients. 1879 76

A low educational level and a poor socioeconomic status could be associated with increased risk for chronic diseases. The aim of the study was to evaluate the relationship between the educational level and cardiometabolic risk in adult patients with type 1 diabetes (n = 437; age: 38.0 +/- 10.4 years, duration of diabetes: 19.2 +/- 11.1 years; x +/- SD). Educational levels were classified as low [primary school, n = 56 (12.8%)], middle [high school, n = 251 (57.4%)] or high [university, n = 130 (29.7%)]. The prevalence rate of the metabolic syndrome proved to be higher in patients with low versus high educational levels (ATP-III criteria: 42.9 vs. 21.5%, P = 0.0006). Antihypertensive treatment and cardiovascular diseases were more prevalent in patients with low versus high educational level (46.4 vs. 26.2%, P = 0.01; 12.5 vs. 2.3%, P = 0.02; respectively). Overall glycemic control was worse in patients with low versus high educational level (HbA(lc): 8.8 +/- 1.6 vs. 7.9 +/- 1.4%; P = 0.0006). Patients with low versus high educational level differed significantly regarding smoking habits (smokers: 28.6 vs. 11.6%; P = 0.01) and regular physical activity (5.4 vs. 33.1%; P = 0.0001). Higher prevalence rate of certain cardiometabolic risk factors was associated with low educational level in middle-aged type 1 diabetic patients with relatively long duration of diabetes; therefore, these patients should have priority when preventing cardiovascular complications.
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PMID:Cardiometabolic risk and educational level in adult patients with type 1 diabetes. 1884 47

The dramatic rise in the incidence and prevalence of type 2 diabetes mellitus in the pediatric and adolescent populations has been associated with the ongoing epidemic of overweight, obesity, insulin resistance, and metabolic syndrome seen in these age groups. Although the majority of pediatric patients diagnosed with diabetes are still classified as having type 1 diabetes, almost 50% of patients with diabetes in the pediatric age range (under 18 years) may have type 2 diabetes. Screening of high-risk patients for diabetes and prediabetes is important. Prompt diagnosis and accurate diabetes classification facilitate appropriate and timely treatment and may reduce the risk for complications. This is especially important in children because lifestyle interventions may be successful and the lifelong risk for complications is greatest. Treatment usually begins with dietary modification, weight loss, and a structured program of physical exercise. Oral antidiabetic agents are added when lifestyle intervention alone fails to maintain glycemic control. Given the natural history of type 2 diabetes, most if not all patients will eventually require insulin therapy. In those requiring insulin, improved glycemic control and reduced frequency of hypoglycemia can be achieved with insulin analogs. It is common to add insulin therapy to existing oral therapy only when oral agents no longer provide adequate glycemic control.
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PMID:Diabetes screening, diagnosis, and therapy in pediatric patients with type 2 diabetes. 1892 36

Natural product berberine (BBR) has been reported to have hypoglycemic and insulin-sensitizing activities; however, its mechanism remains unclear. This study was designed to investigate the molecular mechanism of BBR against insulin resistance. Here, we identify insulin receptor (InsR) as a target of BBR to increase insulin sensitivity. In cultured human liver cells, BBR increased InsR messenger RNA (mRNA) and protein expression in a dose- and time-dependent manner. Berberine increased InsR expression in the L6 rat skeletal muscle cells as well. Berberine-enhanced InsR expression improved cellular glucose consumption only in the presence of insulin. Silencing InsR gene with small interfering RNA or blocking the phosphoinositol-3-kinase diminished this effect. Berberine induced InsR gene expression through a protein kinase C (PKC)-dependent activation of its promoter. Inhibition of PKC abolished BBR-caused InsR promoter activation and InsR mRNA transcription. In animal models, treatment of type 2 diabetes mellitus rats with BBR lowered fasting blood glucose and fasting serum insulin, increased insulin sensitivity, and elevated InsR mRNA as well as PKC activity in the liver. In addition, BBR lowered blood glucose in KK-Ay type 2 but not in NOD/LtJ type 1 diabetes mellitus mice that were insulin deficient. Our results suggest that BBR is a unique natural medicine against insulin resistance in type 2 diabetes mellitus and metabolic syndrome.
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PMID:Berberine reduces insulin resistance through protein kinase C-dependent up-regulation of insulin receptor expression. 1905 38

Recent work shows a high prevalence of low testosterone and inappropriately low LH and FSH concentrations in type 2 diabetes. This syndrome of hypogonadotrophic hypogonadism (HH) is associated with obesity, and other features of the metabolic syndrome (obesity and overweight, hypertension and hyperlipidemia) in patients with type 2 diabetes. However, the duration of diabetes or HbA1c were not related to HH. Furthermore, recent data show that HH is also observed frequently in patients with the metabolic syndrome without diabetes but is not associated with type 1 diabetes. Thus, HH appears be related to the two major conditions associated with insulin resistance: type 2 diabetes and the metabolic syndrome. CRP concentrations have been shown to be elevated in patients with HH and are inversely related to plasma testosterone concentrations. This inverse relationship between plasma free testosterone and CRP concentrations in patients with type 2 diabetes suggests that inflammation may play an important role in the pathogenesis of this syndrome. This is of interest since inflammatory mechanisms may have a cardinal role in the pathogenesis of insulin resistance. It is relevant that in the mouse, deletion of the insulin receptor in neurons leads to HH in addition to a state of systemic insulin resistance. It has also been shown that insulin facilitates the secretion of gonadotrophin releasing hormone (GnRH) from neuronal cell cultures. Thus, HH may be the result of insulin resistance at the level of the GnRH secreting neuron. Low testosterone concentrations in type 2 diabetic men have also been related to a significantly lower hematocrit and thus to an increased frequency of mild anemia. Low testosterone concentrations are also related to an increase in total and regional adiposity, and to lower bone density. This review discusses these issues and attempts to make the syndrome relevant as a clinical entity. Clinical trials are required to determine whether testosterone replacement alleviates symptoms related to sexual dysfunction, and features of the metabolic syndrome, insulin resistance and inflammation.
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PMID:Hypogonadotrophic hypogonadism in type 2 diabetes, obesity and the metabolic syndrome. 1907 78

Gestational diabetes mellitus (GDM) is defined as glucose intolerance with onset or first recognition during pregnancy. Data from Western countries suggest that the prevalence of GDM is increasing, being almost 10% of pregnancies and probably reflecting the global obesity epidemic. The majority of women with GDM seem to have beta-cell dysfunction that appears on a background of chronic insulin resistance already present before pregnancy. In less than 10% of GDM patients, defects of beta-cell function can be due to autoimmune destruction of pancreatic beta-cells, as in type 1 diabetes, or caused by monogenic mutations, as in several MODY subtypes. Diagnostic criteria for GDM vary worldwide and there are no clear-cut plasma glucose cut-off values for identifying women at a higher risk of developing macrosomia or other fetal complications. Because the oral glucose tolerance test (OGTT) is restricted to high risk individuals, 40% of GDM cases are left undiagnosed. Therefore, in high risk populations almost universal screening is recommended; only women considered to have very low risk do not need screening. Diet and exercise are the key elements in the treatment of GDM. If necessary, either insulin, certain oral hypoglycemic agents or combinations can be used to achieve normoglycemia. After delivery, women with GDM and their offspring have an increased risk for developing the metabolic syndrome and type 2 diabetes. Thus, pregnancy may act as a "stress test", revealing a woman's predisposition to T2D and providing opportunities for focused prevention of important chronic diseases.
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PMID:Gestational diabetes: pathogenesis and consequences to mother and offspring. 1929 Mar 80

The increasing prevalence of type 2 diabetes is associated with increasing health costs, especially for the treatment of cardiovascular disease. The development of new treatment modalities requires animal models that mimic the range of pathophysiological changes seen in diabetic humans. Dietary fructose intake has been linked to the increase in insulin resistance as part of the metabolic syndrome; fructose-fed rats develop type 2 diabetes. This study has characterized the cardiovascular changes in young adult male Wistar rats fed a 61% fructose diet for 16 weeks. Our results extend the reported changes of hypertension, lipid abnormalities, impaired glucose tolerance and impaired oxidative defense to include ventricular dilatation with hypertrophy and decreased contractile function, together with increased inflammatory cell infiltration into the ventricular myocardium, resulting in excessive collagen deposition and an increased stiffness of the left ventricle. However, endothelial dysfunction, tactile allodynia as a symptom of peripheral neuropathy and retinopathy are not present in these rats, in contrast to the streptozotocin-induced model of type 1 diabetes. Thus, fructose feeding mimics many, but not all, of the symptoms of type 2 diabetes in humans.
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PMID:Evaluation of the chronic complications of diabetes in a high fructose diet in rats. 1937 56

It has recently been demonstrated that > or = one-third of men with type 2 diabetes mellitus have low testosterone concentrations associated with inappropriately low luteinizing hormone and follicle-stimulating hormone concentrations. Hypogonadotropic hypogonadism in men with type 2 diabetes is associated with obesity but not duration of diabetes, elevated glycosylated hemoglobin, or the presence of microvascular complications of diabetes. Recent data show that hypogonadotropic hypogonadism is also observed frequently in nondiabetics with the metabolic syndrome or obesity, but it is not associated with type 1 diabetes. Low testosterone concentrations in men with type 2 diabetes have also been related to a higher C-reactive protein concentrations, lower hematocrit, increased total and regional adiposity, lower bone mineral density, and erectile dysfunction. This article discusses the pathophysiology of hypogonadotropic hypogonadism in men with type 2 diabetes and its signs and symptoms. Clinical trials are required to determine whether testosterone replacement therapy alleviates insulin resistance, inflammation, and symptoms related to sexual dysfunction care.
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PMID:Hypogonadotropic hypogonadism in men with type 2 diabetes. 1949 39

Since having been cloned in 1984, IL-1beta has been the subject of over 22,000 citations in Pubmed, among them over 800 reviews. This is because of its numerous effects. IL-1beta is a regulator of the body's inflammatory response and is produced after infection, injury, and antigenic challenge. It plays a role in various diseases, including autoimmune diseases such as rheumatoid arthritis, inflammatory bowel diseases and type 1 diabetes, as well as in diseases associated with metabolic syndrome such as atherosclerosis, chronic heart failure and type 2 diabetes. Macrophage are the primary source of IL-1, but epidermal, epithelial, lymphoid and vascular tissues also synthesize IL-1. IL-1beta production and secretion have also been reported from pancreatic islets. Insulin-producing beta-cells within pancreatic islets are specifically prone to IL-beta-induced destruction and loss of function. Macrophage-derived IL-1beta production in insulin-sensitive organs, leads to progression of inflammation and induction of insulin resistance in obesity. We summarize the mechanisms involved in inflammation and specifically the IL-1beta signals that lead to the progression of insulin resistance and diabetes. We highlight recent clinical studies and experiments in animals and isolated islets using IL-1beta as a potential target for the therapy of type 2 diabetes.
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PMID:Interleukin-1 beta targeted therapy for type 2 diabetes. 1960 25


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