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1.
Int J Clin Exp Med ; 8(7): 11352-5, 2015.
Article in English | MEDLINE | ID: mdl-26379949

ABSTRACT

OBJECTIVE: To compare the difference of glycosylated hemoglobin (HbA1c) for diagnosing type 2 diabetes mellitus (T2DM) between Chinese Uyghurs and Hans in xinjiang. METHODS: we collected 707 subjects, including 456 Uyghurs and 251 Hans in Xinjiang Kashi region. All the subjects were underwent oral glucose tolerance test (OGTT) for diagnosing T2DM, at the same time their clinical biochemical markers and HbA1c levels were also measured. Then the data were analyzed, the receiver operating characteristic (ROC) curve was plotted and correlation analysis were made by SPSS 19.0 software. RESULTS: 1. The levels of body mess index (BMI), 2-hour plasma glucose (2 h PG), diastolic blood pressure (DBP) total cholestero (TC) and triglycerides (TG) were 26.6±4.75 kg/m(2), 14.3±6.2 mmol/l, 81.6±13.4 mmHg, 4.5±1.3 mmol/l and 4.3±2.8 mmol/l in Uyghurs, moreover those were higher than Hans [25.4±13.3 kg/m(2), 13.1±6.9 mmol/l, 78.4±9.9 mmHg, 2.3±2.1 mmol/l and 2.0±1.4 mmol/l, (P<0.05)]. 2. Otherwise, the optimal cut-off value for HbA1c to diagnose T2DM was 6.95% in Uyghurs. At this cut-off value, the sensitivity, specificity, positive likelihood ratio (+LR), negative likelihood ratio (-LR) and the area under the ROC curve (AUC) were 98.3%, 97.7%, 43.64, 0.017 and 0.997. While the optimal cut-off value was 7.05% in Hans, and, the sensitivity, specificity, +LR, -LR and AUC separately were 91.1%, 92.8%, 0.971, 12.6, 0.096 and 0.971. 3. The correlation analysis was made in two populations. It demonstrated that HbA1c was positively correlated with BMI, TC and TG in Uyghurs (r=0.138, 0.273, 0.482, P<0.05). However, in Hans, the HbA1c only was positively correlated with TG (r=0.178, P<0.05). CONCLUSION: The Uyghurs have higher metabolic markers, for example, BMI, TC, DBP and TG. It reveals that Uyghurs may have more severe insulin resistance (IR) comparing with Hans. And then, the cut-off value of HbA1c for diagnosing and screening T2DM is different between Uyghurs and Hans in Xinjiang.

2.
Int J Clin Exp Pathol ; 8(5): 5974-80, 2015.
Article in English | MEDLINE | ID: mdl-26191330

ABSTRACT

OBJECTIVE: To explore the direct regulation effects and mechanisms of glucagon in insulin secretion of MIN6 cells that in the kind of the islet ß cells. Methods ICUE3 and PCDNA3.1 plasmid were transfected to the MIN6 cells by electroporation transfection, and then treated with different concentrations of glucagon (Glg) and glucose (Glu). Biosensor technology that based on the fluorescence resonance energy transfer (FRET) was used to monitor the change of cAMP quantitatively and real-time. The level of cAMP and insulin were measured by the enzyme-linked immunosorbent assay (ELISA). RESULTS: The receptor of Glg was mainly located on the cell membrane in MIN6 cells. Compared with the 0 ng/L Glg group in the Glu-free state, the average value of CFP/YFP increased 4%±0.02 in the 500 ng/L Glg group, and the value in the 1000 ng/L Glg group increased 6%±0.03 (P>0.05). While in the high-Glu (16.7 mmol/L) state, the value increased 11%±0.02 in the 500 ng/L Glg group, and increased 23%±0.06 in the 1000 ng/L Glg group when compared with the 0 ng/L Glg group (P<0.01). The levels of the cAMP of 1000 ng/L and 500 ng/L Glg group were higher than those of the 100 ng/L and 0 ng/L Glg group in the condition of Glu-free (81.27±6.29, 76.73±2.10,39.45±2.83, 40.36±4.20; P<0.01). The levels of the cAMP of 1000 ng/L, 500 ng/L and 100 ng/L Glg group were higher than those of the 0 ng/L Glg group, at the meanwhile, the levels of the cAMP of 1000 ng/L and 500 ng/L Glg group were also higher than 100 ng/L Glg group in the condition of low-Glu (2.8 mmol/L) (92.91±7.35, 90.36±3.15, 65.82±10.49, 46.73±1.05; P<0.01). And this trend in the condition of high-Glu was almost to the low-Glu (106.75±7.26, 94.18±2.99, 83.09±1.16, 55.60±5.51, P<0.01). The levels of the insulin of 1000 ng/L, 500 ng/L and 100 ng/L Glg group were higher than those of the 0 ng/L Glg group. While 1000 ng/L Glg group was higher than that of the 500 ng/L and 100 ng/L Glg group in the condition of Glu-free (1844.02±200.93, 1387.94±483.12, 1251.817±60.30, 787.33±81.72; P<0.01). The levels of the insulin of 1000 ng/L and 500 ng/L Glg group were higher than those of the 100 ng/L and 0 ng/L Glg group, and the 1000 ng/L and was also higher than 500 ng/L Glg group in the condition of low-Glu (1552.31±81.20, 1285.62±131.67, 1020.85±42.60, 762.89±26.94, P<0.01). And this trend in the condition of high-Glu was almost to the low-Glu (1898.337±169.03, 1399.30±148.66, 1061.735±9.13, 972.89±22.19; P<0.01). The levels of cAMP and insulin secretion of MIN6 cells had a positive correlation in different Glu conditions (r2=0.559, P<0.01). CONCLUSION: Glg may stimulate insulin secretion by increasing cAMP levels in the way of concentration gradient within the islet ß cell lines--MIN6 cells. And the increasing trend was Glu dependent.


Subject(s)
Cyclic AMP/metabolism , Glucagon/pharmacology , Insulin-Secreting Cells/drug effects , Insulin/metabolism , Second Messenger Systems/drug effects , Animals , Biosensing Techniques , Cell Line , Dose-Response Relationship, Drug , Enzyme-Linked Immunosorbent Assay , Fluorescence Resonance Energy Transfer , Glucose/pharmacology , Insulin Secretion , Insulin-Secreting Cells/metabolism , Mice , Receptors, Glucagon/agonists , Receptors, Glucagon/metabolism , Time Factors , Transfection
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