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Autoimmune thyroiditis in non-obese subjects with initial diagnosis of Type 2 diabetes mellitus.

Autoimmune thyroiditis is often associated with Type 1 diabetes mellitus (T1DM). In non-obese adult-onset diabetes diagnosed initially as Type 2 diabetes mellitus (T2DM), there is a proportion of cases with so far undiagnosed T1DM. The objective of this study was to estimate the frequency of autoimmune thyroiditis (AT) among non-obese (BMI <30.0 kg/m2) patients with T2DM and to compare the frequency of AT in subgroups of patients according to the presence of glutamic acid decarboxylase antibodies (GADA), insulin requirement, and post-breakfast C-peptide levels. The study included 118 adult patients (55 men and 63 women) with the initial diagnosis of T2DM and age at the onset of diabetes > 35 yr. Median of age was 66 yr (range 39-82), and median duration of diabetes was 9 (range 1-27) yr. AT was diagnosed using thyroid peroxidase antibodies, TG-antibodies, US and TSH levels. Nineteen per cent of the subjects were found to have AT, and the frequency of AT did not significantly differ between the groups of GADA+ and GADA- subjects. There was no difference in the frequency of AT between the group treated with hypoglycemic agents and/or diet and the group requiring insulin. The frequency of AT was higher in the group with post-breakfast C-peptide levels < or = 0.8 nmol/l compared to the group with post-breakfast C-peptide levels > 0.8 nmol/l (37% vs 16%), however the group with post-breakfast C-peptide levels < or = 0.8 nmol/l had longer duration of diabetes.

Adult↗

Prevalence of myocardial ischaemia as assessed with myocardial perfusion scintigraphy in patients with diabetes mellitus type 2 and mild anginal symptoms.

PURPOSE: To determine the prevalence and predictors of reversible myocardial perfusion defects, indicative of myocardial ischaemia, in patients with mild, stable anginal complaints [Canadian Cardiovascular Society classification (CCS) I-II/IV] and diabetes mellitus type 2 (T2DM). METHODS: A total of 329 patients with T2DM and stable, mild anginal symptoms (CCS I-II/IV) underwent myocardial perfusion scintigraphy. Perfusion images were assessed using a five-point (semi)-quantitative scoring system according to a 17-segment myocardial model. RESULTS: One-hundred and fifty-six (47%) patients showed reversible myocardial perfusion defects defined as a summed difference score of >or=3. Male gender [odds ratio (OR) 2.28, 95% CI 1.4-3.71, p=0.001], previous myocardial infarction (MI) without revascularisation (OR 3.04, 95% CI 1.28-7.24, p=0.01), and the use of two or more classes of anti-anginal medication (OR 2.36, 95% CI 1.48-3.76, p<0.001) were independent predictors for the presence of reversible defects. By contrast, lipid-lowering therapy reduced the possibility of reversible perfusion defects (OR 0.56, 95% CI 0.33-0.95, p=0.03). CONCLUSION: Approximately half of the patients with mild, stable angina pectoris and T2DM showed evidence of myocardial ischaemia. Male gender, previous MI and the use of anti-anginal medication were positive predictors and lipid-lowering therapy was a negative predictor for the results of the scintigraphic stress test.

Adult↗

Mitochondrial polymorphisms and susceptibility to type 2 diabetes-related traits in Finns.

Mitochondria play an integral role in ATP production in cells and are involved in glucose metabolism and insulin secretion, suggesting that variants in the mitochondrial genome may contribute to diabetes susceptibility. In a study of Finnish families ascertained for type 2 diabetes mellitus (T2DM), we genotyped single nucleotide polymorphisms (SNPs) based on phylogenetic networks. These SNPs defined eight major haplogroups and subdivided groups H and U, which are common in Finns. We evaluated association with both diabetes disease status and up to 14 diabetes-related traits for 762 cases, 402 non-diabetic controls, and 465 offspring of genotyped females. Haplogroup J showed a trend toward association with T2DM affected status (OR 1.69, P=0.056) that became slightly more significant after excluding cases with affected fathers (OR 1.77, P=0.045). We also genotyped non-haplogroup-tagging SNPs previously reported to show evidence for association with diabetes or related traits. Our data support previous evidence for association of T16189C with reduced ponderal index at birth and also show evidence for association with reduced birthweight but not with diabetes status. Given the multiple tests performed and the significance levels obtained, this study suggests that mitochondrial genome variants may play at most a modest role in glucose metabolism in the Finnish population. Furthermore, our data do not support a reported maternal inheritance pattern of T2DM but instead show a strong effect of recall bias.

Adenosine Triphosphate↗

Association of a variant in exon 31 of the sulfonylurea receptor 1 (SUR1) gene with type 2 diabetes mellitus in French Caucasians.

The sulfonylurea receptor (SUR1) of the pancreatic beta-cell ATP-sensitive potassium channel plays a key role in glucose-induced insulin secretion. The A-allele of a single nucleotide polymorphism (SNP) in exon 31 of the SUR1 gene (AGG-->AGA; Arg1273Arg) has previously been shown to be associated with hyperinsulinemia in nondiabetic Mexican-American subjects. Here, we have investigated the association of this SNP with type 2 diabetes mellitus (T2DM) in French Caucasian subjects. We have observed an increased frequency of the A allele (37.1% vs 27.6%, P=0.0048; odds ratio 1.54), of the AA genotype (15.7% vs 9.8%; P=0.025), and of the combined AA/AG genotypes (58.5% vs 45.5%, P=0.0098; odds ratio 1.69) in patients compared with controls. This association is stronger in the subgroup of patients with age of diagnosis of diabetes equal to or less than 45 years: A allele 43.2% (P=0.0003 compared with controls; odds ratio 1.99), AA genotype 21.4% (P=0.0032), and combined AA/AG genotypes 65.1% (P=0.0022; odds ratio 2.23). Unexpectedly, the G allele is strongly associated with arterial hypertension in obese diabetic subjects (GG vs AA odds ratio 19.97). In conclusion, we have observed an association of an SNP in exon 31 of the SUR1 gene with T2DM. These data reinforce the hypothesis that insulin secretion defects in T2DM might be at least partially related to allelic variations in the SUR1 gene.

ATP-Binding Cassette Transporters↗

Insulin glargine in combination with oral antidiabetic drugs as a cost-equivalent alternative to conventional insulin therapy in type 2 diabetes mellitus.

BACKGROUND AND RATIONALE: Recent data suggest that insulin glargine might be a cost-effective alternative to conventional insulin therapy in patients with type 2 diabetes mellitus (T2DM). The aim of this observational study was to evaluate the treatment costs of insulin glargine in combination with oral antidiabetic drugs (OADs) compared with conventional insulin therapy in T2DM in everyday clinical practice. PATIENTS AND METHODS: Data were obtained from a cohort of 678 patients with T2DM not adequately controlled by OADs alone (HbA1c mean 9.1 +/- 1.7%). Patients received either insulin glargine in addition to oral therapy or were switched to conventional insulin therapy. Treatment and dosing decisions were made at the physician's discretion, reflecting everyday practice. Patients were followed for 2-4 months. Primary outcome parameters were total treatment costs and clinical efficacy. RESULTS: The two therapeutic regimens were equally effective in decreasing HbA1c to 7.8% (p < 10(-9)). Patients in the insulin glargine plus OAD group controlled their blood glucose level at endpoint with a median of 60 test strips per month and those in the conventional insulin therapy group with a median of 80 strips per month (p = 0.000000739). Total daily costs of insulin, needles, glycemic control and OAD treatment per patient were similar in the two treatment groups (insulin glargine group 1.91 Euro vs conventional group 1.99 Euro). CONCLUSION: The two treatment regimens were equally effective in improving glycemic control. These results were achieved with significantly lower insulin doses and fewer blood glucose test strips in the insulin glargine group, which therefore led to cost equivalence when compared with conventional insulin therapy.

Administration, Oral↗

Effectiveness and safety of insulin glargine in the therapy of complicated or secondary diabetes: clinical audit.

We wanted to assess the effectiveness and safety of glargine in the treatment of patients with type 2 diabetes mellitus in secondary failure and/or with severe comorbidities ("T2DM group"), and patients with secondary diabetes after corticosteroid and/or anticancer treatment ("secondary DM group"). We reviewed the records of patients on glargine from 1 August 2004 to 30 July 2005. The after-minus-before change in HbA1c was the main outcome measure. At baseline, the 18 "T2DM" patients had a mean (+/-SD) age of 66.7+/-9.5 years and a diabetes duration of 13.6+/-10.3 years; 52.9% were male. Their fasting plasma glucose (FPG) decreased from 228.6+/-76.6 to 134.6+/-37.5, two-hour post-prandial glycaemia (2hPPG) from 268.2+/-10.4 to 140.6+/-30.8 and HbA1c from 10.4+/-2.3 to 7.9+/-1.6%. Mean daily insulin dosage was 12.0+/-4.8 UI for glargine alone and 37.4+/-22.6 UI for basal-bolus scheme. The daily cost was Euro 0.75 (range Euro 0.31-1.15). The 24 "secondary DM" patients had a mean age of 67.0+/-11.0 years and a diabetes duration of 3.7+/-6.5 years; 54.2% were male and 91.7% had a metastatic cancer. Their FPG decreased from 222.3+/-108.6 to 121.5+/-28.7 mg/dl, 2hPPG from 259.4+/-108.6 to 133.0+/-35.0 mg/dl and HbA1c from 10.1+/-2.5 to 7.6+/-1.3%. Mean daily insulin dosage was 12.5+/-6.1 UI for glargine alone and 27.2+/-9.1 UI for basal-bolus scheme. Mean daily cost was Euro 0.70 (range Euro 0.31-1.38). One (4.2%) cancer patient withdrew from glargine because of nausea. Nine (37.5%) cancer patients had an increase in appetite after glargine therapy, including 3 end-of-life patients. No severe hypoglycaemia occurred. Insulin glargine was safe and effective in improving glycaemic control both in severe "T2DM" and in "secondary DM" patients.

Adrenal Cortex Hormones↗

Association of PCSK9 and CCL22 gene polymorphisms with myocardial infarction in a South Indian population.

Myocardial infarction (MI) remains a major global cause of morbidity and mortality, with a particularly high burden among individuals with type 2 diabetes mellitus (T2DM). Host genetic factors play a significant role in modulating individual susceptibility to MI by influencing lipid metabolism and immune-mediated inflammatory pathways. The proprotein convertase subtilisin/kexin type 9 (PCSK9) gene is a key regulator of cholesterol homeostasis, while C-C motif chemokine ligand 22 (CCL22) is involved in immune cell recruitment and vascular inflammation. In this study, we investigated the association of PCSK9 rs505151 and rs11591147 and CCL22 rs4359426 polymorphisms with MI risk in a South Indian population. This case-control study included 400 participants categorized into controls (n&#x2009;=&#x2009;100), MI (n&#x2009;=&#x2009;100), T2DM (n&#x2009;=&#x2009;100), and MI with T2DM (n&#x2009;=&#x2009;100). Significant differences in clinical and biochemical parameters, including lipid indices and cardiometabolic risk markers, were observed between groups (p&#x2009;<&#x2009;0.05). Genetic analysis revealed a significant association between the PCSK9 rs505151 variant and MI susceptibility across allelic and genotypic distributions, with significant effects under dominant and recessive inheritance models. Multivariable logistic regression confirmed that the rs505151 risk genotype was independently associated with MI after adjustment for age, sex, body mass index, and smoking status. In contrast, PCSK9 rs11591147 was rare and showed no significant association. The CCL22 rs4359426 polymorphism showed limited evidence of association with MI, with a significant effect observed only under the dominant inheritance model. Furthermore, combined analysis using a genetic risk score suggested that cumulative genetic burden involving PCSK9 and CCL22 variants was associated with an increased risk of MI. Overall, our findings suggest that genetic variation in lipid-regulatory and immune-related pathways may contribute to MI susceptibility in South Indians. Further studies are warranted to validate these associations and clarify their biological and clinical relevance.

Humans↗

Diabetic nephropathy in African-American patients.

Diabetic nephropathy (DN) is the number one cause of end-stage renal disease (ESRD) in the United States and is highly prevalent in African Americans. Since 1997, DN has been the number one cause of ESRD in African Americans. In African Americans, almost all DN is due to type 2 diabetes mellitus (T2DM), and nephropathy may affect female more than male patients. African Americans with T2DM are at increased risk for developing and having progression of DN. Glycemic control, development of albuminuria, family history of renal disease, and control of blood pressure are important risk factors for progression of DN. In addition, cigarette smoking, presence of hepatitis C, and use of thiazolinediones has an impact on renal survival in African Americans. Large vessel complications may be less frequent in African Americans with T2DM, when compared with white persons. Yet, cardiovascular disease and other microvascular complications are very common, and both are dependent on control of blood pressure. Achieving the recommended blood pressure of less than 130/80 mm Hg is essential but requires multiple antihypertensive medications, including an inhibitor of the renin-angiotensin system.

Adult↗

The role of HNF4A variants in the risk of type 2 diabetes.

Genes influence susceptibility to type 2 diabetes mellitus (T2DM), and both positional cloning and candidate gene approaches have been used to identify these genes. Linkage analysis has generated evidence for T2DM-predisposing variants on chromosome 20q in studies of Caucasians, Asians, and Africans, and fine-mapping recently identified a likely susceptibility gene, hepatocyte nuclear factor 4-alpha (HNF4A). Rare loss-of-function mutations in HNF4A cause maturity-onset diabetes of the young and now common noncoding variants have been found to be associated with T2DM.

DNA-Binding Proteins↗

A culturally competent intervention of education and care for black women with type 2 diabetes.

This article reports on the development and pilot feasibility testing of a culturally competent intervention of education and care for black women with type 2 diabetes mellitus (T2DM). Using a one group, pretest posttest quasi-experimental design, the intervention was tested with a convenience sample of 25 community black women with T2DM. The conceptual basis, process, and content of the intervention as well as the feasibility and acceptability of study materials and methods are described. Significant improvements from baseline to 3 months were observed in measures of glycemic control, weight, body mass index, and diabetes-related emotional distress. The findings suggest that a culturally sensitive intervention of nurse practitioner diabetes care and education is beneficial for black women with T2DM, resulting in program attendance, kept appointments, improved glycemic control and weight, and decreased diabetes-related emotional distress.

Adult↗

Oxidative stress and antioxidant status in elderly diabetes mellitus and glucose intolerance patients.

Increased oxidative stress and impaired anti-oxidant defense have been suggested as contributory factors for initiation and progression of complications in diabetes mellitus. Aging itself has been shown to be along with increased oxidative stress and lower anti-oxidant defense. We aimed at investigating oxidative stress and anti-oxidant enzymes in 61 elderly subjects. Fifteen healthy individuals (group 1, mean age 72.2 +/- 5.13), 13 glucose intolerant patients (group 2, mean age 71.7 +/- 4.9), 19 patients with type 2 diabetes mellitus (T2DM) without any complication (group 3, mean age 70.0 +/- 6.0), and 14 patients with T2DM with at least one complication (group 4, mean age 69.8 +/- 4.7) were included in the study. Whilst plasma levels for malondialdehyde (MDAP) and erythrocyte malondialdehyde (MDAE) were measured as markers of oxidative stress, activity of erythrocyte superoxide dismutase (SOD), glutathion peroxidase (GSH-Px), and catalase (CAT) were taken as markers of oxidative defense system. MDAP level was significantly elevated in group 4 (P = 0.001). MDAE was elevated in patients with T2DM, particularly in group 4, however, the difference between the groups was of borderline significance (P = 0.07). Whilst CAT was elevated in groups 3 and 4 compared to control subjects (P = 0.025 and 0.002, respectively), no difference was found for SOD between the groups. GSH-Px activity was found to be increased in groups 2, 3 and 4, it did not reach statistical significance (P = 0.106). There were significant correlations between CAT and MDAE (P < 0.0001, r = 0.056) and MDAP (P = 0.016, r = 0.306). These results suggest that there was an increased oxidative stress in elderly diabetics, however, this is not due to reduced erythrocyte antioxidant defense potential but, rather, increased free radical production possibly due to hyperglycemia.

Aged↗

Therapy in type 2 diabetes: insulin glargine vs. NPH insulin both in combination with glimepiride.

BACKGROUND: Type 2 diabetes (T2DM) patients often fail to achieve adequate glycemic control with oral antidiabetic drugs (OADs). Insulin has been shown to improve glycemic control in these patients but with increased risk of hypoglycemia. This study compared the efficacy and safety of insulin glargine and NPH insulin, both in combination with a once-daily fixed dose of glimepiride, in terms of glycemic control and incidence of hypoglycemia. METHODS: In this open-label, 24-week randomized trial in ten Latin American countries, T2DM patients poorly controlled on OADs (HbA1c > or = 7.5 and < or = 10.5%) received glimepiride plus insulin glargine (n = 231) or NPH insulin (n = 250) using a forced titration algorithm. The primary endpoint was the equivalence of 24-week mean changes in HbA1c. RESULTS: Insulin glargine and NPH insulin achieved similar HbA1c reductions (adjusted mean difference -0.047; 90% CI -0.232, 0.138; per-protocol analysis). Confirmed nocturnal hypoglycemia was significantly lower with insulin glargine vs. NPH insulin (16.9 vs. 30.0%; p <0.01; safety analysis). Patients receiving insulin glargine were significantly more likely to achieve HbA1c levels < 7.0% without hypoglycemia (27 vs. 17%; p = 0.014; per-protocol analysis). There was a more pronounced treatment satisfaction improvement with insulin glargine vs. NPH insulin (p <0.02; full analysis). The proportion of patients who lost time from work or normal activities due to diabetes was lower with insulin glargine vs. NPH (1.8 vs. 3.3%; full analysis). CONCLUSIONS: In patients with T2DM, inadequately controlled on OADs, once-daily insulin glargine plus glimepiride is effective in improving metabolic control with a reduced incidence of nocturnal hypoglycemia compared with NPH insulin.

Blood Glucose↗

Inhibition of thromboxane biosynthesis by triflusal in type 2 diabetes mellitus.

Triflusal is an antiplatelet drug related to aspirin, with different pharmacological properties and a lower haemorrhagic risk. We aimed at comparing their effects on platelet and endothelial activation in type 2 diabetes mellitus (T2DM). In a randomized, double-blind, parallel group study, we compared the effects of three daily regimens (300, 600, and 900 mg) of triflusal, and aspirin (100mg/day) on urinary 11-dehydro-thromboxane (TX)B(2), index of in vivo platelet activation, ex vivo platelet function using the analyzer PFA-100, plasma von Willebrand factor (vWF), P-selectin, intercellular adhesion molecule-1 (ICAM-1), vascular cell adhesion molecule-1 (VCAM-1), and serum nitrite and nitrate (NO(2)(-)+NO(3)(-)) in 60 T2DM patients. Triflusal induced a dose-dependent reduction in 11-dehydro-TXB(2) and a prolongation of closure time in the presence of collagen plus epinephrine (Coll/Epi-CT). The effects of the highest triflusal dose were not different from those of aspirin. The closure time in the presence of collagen plus ADP (Coll/ADP-CT), ICAM-1, VCAM-1, and NO(2)(-)+NO(3)(-) were not modified either by triflusal or aspirin. Plasma P-selectin and vWF were reduced by triflusal but not by aspirin. In T2DM triflusal causes a profound inhibition of platelet TXA(2) biosynthesis in vivo, acting on different targets involved in the platelet-endothelial cell interactions.

Adult↗

Metabolic syndrome in aboriginal Canadians: prevalence and genetic associations.

OBJECTIVES: The prevalence rates of type 2 diabetes (T2DM) and coronary heart disease (CHD) in Ontario Oji-Cree are among the world's highest. Since metabolic syndrome (MetS) increases risk of T2DM and CHD, we characterized prevalence and putative genetic determinants of MetS in Oji-Cree. METHODS AND RESULTS: In 515 adult (> or = 18 years old) and 115 adolescent (< 18 years old) Oji-Cree subjects, using the National Cholesterol Education Program Adult Treatment Panel III (NCEP ATP III) criteria, we determined that 29.9% of Oji-Cree adults, and 43.4% of adults > or = 35 years of age, had MetS. Furthermore, 33.9 and 8.7% of female Oji-Cree adults and adolescents, respectively, had MetS. Increased waist girth and depressed HDL cholesterol were the most prevalent individual MetS components, while increased blood pressure was least prevalent. AGT T174M, GNB3 825C>T, and APOC3 -455T>C genotypes were significantly associated with MetS (P = 0.018, 0.0056, and 0.029, respectively) for female adults, whereas FABP2 A54T genotype was associated with MetS (P = 0.040) for female adolescents. CONCLUSIONS: The high MetS prevalence in Oji-Cree adults, especially women, is consistent with their high risk of T2DM and CHD. Functional polymorphisms in three candidate genes for plasma lipoproteins and blood pressure were associated with MetS in adult Oji-Cree. Furthermore, several female adolescents met the adult MetS criteria, suggesting that the genesis of MetS begins in youth, especially among aboriginal females.

Adolescent↗

Abnormal HDL subclasses distribution in overweight children with insulin resistance or type 2 diabetes mellitus.

BACKGROUND: Small HDL particles have emerged as significant predictors of incident type 2 diabetes mellitus (T2DM) in adults with impaired glucose tolerance (IGT). However, no previous study has investigated HDL size in pediatric subjects with these clinical conditions. METHODS: We studied the HDL size distribution by native polyacrilamide gradient gel electrophoresis in 106 overweight children, 47 with T2DM, 43 with normal glucose tolerance (NGT), 16 with IGT, and 39 healthy weight controls. RESULTS: Diabetic children had significantly lower proportions of HDL2b and HDL2a, and higher proportions of HDL3b and HDL3c than the other 3 groups. Overweight subjects showed HDL size distributions similar to those of controls. However, insulin-resistant children had lower proportions of HDL2b, and HDL2a, and higher proportions of HDL3b when compared with the insulin-sensitive overweight subjects. Multiple linear regression analyses showed that homeostasis model assessment correlated inversely with HDL2b and HDL2a, and directly with HDL3b, while BMI was independently associated only with HDL3a. CONCLUSIONS: This study showed that HDL size distribution was shifted toward smaller particles in T2DM pediatric patients and in overweight children with insulin resistance, independent of their glucose tolerance status. Insulin resistance was the main factor associated with these HDL size abnormalities. This parameter could be useful as an early risk marker of incident diabetes and, probably, of coronary heart disease.

Adolescent↗

Type 2 diabetes mellitus.

Type 2 diabetes mellitus (T2DM) is a heterogeneous group of metabolic diseases resulting from defects in insulin secretion, insulin action, or both. It comprises most diagnosed cases of diabetes and disproportionately affects minorities. This article describes the classification of diabetes mellitus; defines the metabolic syndrome; and discusses the diagnosis, risk factors, and screening criteria for T2DM. The pathophysiology of T2DM, its acute and chronic complications, and signs and symptoms are presented, along with a brief overview of treatment.

Diabetes Mellitus, Type 2↗

Metabolic syndrome in relationship to type 2 diabetes and atherosclerosis.

Metabolic syndrome affects approximately one quarter of population in developed countries. Its presence is a major risk for development of both type 2 diabetes (T2DM) and atherosclerosis. The prevalence of cardiovascular disease is 2-3 times higher in individuals with metabolic syndrome than in age-matched controls. Most important components of metabolic syndrome are insulin resistance with or without glucose intolerance, abdominal obesity, atherogenic dyslipidaemia, hypertension, prothrombotic state and proinflammatory state. Early identification of subjects with metabolic syndrome is very important, since they represent a target group for multiple lifestyle and pharmacological interventions. Lifestyle interventions, antiobesity drugs and drugs increasing insulin sensitivity prevented development of T2DM in subjects with impaired glucose tolerance in randomized trials. Treatment of atherogenic dyslipidaemia to the therapeutic goals defined for diabetic patients seems reasonable and both statins and fibrates could be used based on evidence from clinical trials. Treatment of hypertension should also aim for target levels similar to those in diabetic patients. Using drugs affecting renin-angiotensin II axis, as first choice seems reasonable based on evidence from clinical trials showing the ability of these drugs to prevent T2DM and decrease albuminuria.

Arteriosclerosis↗

Variation of mitochondrial gene and the association with type 2 diabetes mellitus in a Chinese population.

Mitochondrial DNA (mtDNA) variants have been implicated in many diseases including diabetes mellitus. To explore whether these genetic variants contribute to the susceptibility for type 2 diabetes mellitus (T2DM) in a Chinese population, a total of 184 T2DM cases and 279 matched healthy controls were recruited. PCR restriction fragment length polymorphism (PCR-RFLP) analysis and DNA sequencing were used to determine the variants of mtDNA (including T16189C, G3316A, T3394C, A14693G, A3243G and C1310T). Some of them were further analyzed by mfold or tRNA-scan-SE software. A homoplastic A14693G, for the first time, was found in 4 of 184 Chinese cases, the frequency of A14693G and T3394C was 2.17% and 2.72%, respectively, in patients but not in the controls. Secondary structure prediction revealed that there were obvious conformational changes in T3394C mutant ND1 versus wild type and A14693G mutant tRNA(Glu) protein versus wild type, providing additional clues to the disease pathogenesis although A3243G and C1310T mutations were not detected in any patients in the two groups. The 16189 variant among type 2 diabetes was more prevalent than in controls (36.9% versus 28.7%, P=0.039), and stepwise multiple regression analysis showed that the 16189 variant was an independent factor contributing to HOMA-IR (R(2)=0.043, P=0.037). Our results suggest that the mutations of T3394C and A14693G may contribute to genetic predisposition to T2DM, with the T16189C variant being associated with insulin resistance.

Asian People↗