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Effects of Exenatide and Humalog Mix25 on Fat Distribution, Insulin Sensitivity, and β-Cell Function in Normal BMI Patients with Type 2 Diabetes and Visceral Adiposity
by
OuYang, Rong
, Zhou, Ranran
, Zhao, Xiaoqin
, Yuan, Jie
, Chen, Wei
, Zhu, Xiaohui
, Gu, Yunjuan
, Yuan, Jin
, Tang, Zhuqi
, Yin, Tong
, Wang, Xinlei
, Cui, Shiwei
, Yao, Lili
, Zhang, Rongping
, Sun, Yi
in
Adiposity - drug effects
/ Adiposity - physiology
/ Adult
/ Aged
/ Antidiabetics
/ Biphasic Insulins - administration & dosage
/ Biphasic Insulins - pharmacology
/ Blood pressure
/ Body fat
/ Body Fat Distribution
/ Body Mass Index
/ Cardiovascular disease
/ Clinical trials
/ Diabetes
/ Diabetes Mellitus, Type 2 - complications
/ Diabetes Mellitus, Type 2 - drug therapy
/ Diabetes Mellitus, Type 2 - metabolism
/ Drug dosages
/ Education
/ Endocrinology
/ Exenatide - administration & dosage
/ Exenatide - pharmacology
/ Female
/ Glucose
/ Hospitals
/ Humans
/ Insulin
/ Insulin Lispro - administration & dosage
/ Insulin Lispro - pharmacology
/ Insulin Resistance
/ Insulin, Isophane - administration & dosage
/ Insulin, Isophane - pharmacology
/ Insulin-Secreting Cells - drug effects
/ Insulin-Secreting Cells - physiology
/ Intra-Abdominal Fat - drug effects
/ Intra-Abdominal Fat - metabolism
/ Laboratories
/ Lipids
/ Liver diseases
/ Magnetic resonance imaging
/ Male
/ Metabolism
/ Middle Aged
/ Obesity, Abdominal - complications
/ Obesity, Abdominal - drug therapy
/ Obesity, Abdominal - metabolism
/ Pancreatitis
/ Peptides
/ Substance abuse treatment
/ Treatment Outcome
2020
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Effects of Exenatide and Humalog Mix25 on Fat Distribution, Insulin Sensitivity, and β-Cell Function in Normal BMI Patients with Type 2 Diabetes and Visceral Adiposity
by
OuYang, Rong
, Zhou, Ranran
, Zhao, Xiaoqin
, Yuan, Jie
, Chen, Wei
, Zhu, Xiaohui
, Gu, Yunjuan
, Yuan, Jin
, Tang, Zhuqi
, Yin, Tong
, Wang, Xinlei
, Cui, Shiwei
, Yao, Lili
, Zhang, Rongping
, Sun, Yi
in
Adiposity - drug effects
/ Adiposity - physiology
/ Adult
/ Aged
/ Antidiabetics
/ Biphasic Insulins - administration & dosage
/ Biphasic Insulins - pharmacology
/ Blood pressure
/ Body fat
/ Body Fat Distribution
/ Body Mass Index
/ Cardiovascular disease
/ Clinical trials
/ Diabetes
/ Diabetes Mellitus, Type 2 - complications
/ Diabetes Mellitus, Type 2 - drug therapy
/ Diabetes Mellitus, Type 2 - metabolism
/ Drug dosages
/ Education
/ Endocrinology
/ Exenatide - administration & dosage
/ Exenatide - pharmacology
/ Female
/ Glucose
/ Hospitals
/ Humans
/ Insulin
/ Insulin Lispro - administration & dosage
/ Insulin Lispro - pharmacology
/ Insulin Resistance
/ Insulin, Isophane - administration & dosage
/ Insulin, Isophane - pharmacology
/ Insulin-Secreting Cells - drug effects
/ Insulin-Secreting Cells - physiology
/ Intra-Abdominal Fat - drug effects
/ Intra-Abdominal Fat - metabolism
/ Laboratories
/ Lipids
/ Liver diseases
/ Magnetic resonance imaging
/ Male
/ Metabolism
/ Middle Aged
/ Obesity, Abdominal - complications
/ Obesity, Abdominal - drug therapy
/ Obesity, Abdominal - metabolism
/ Pancreatitis
/ Peptides
/ Substance abuse treatment
/ Treatment Outcome
2020
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Effects of Exenatide and Humalog Mix25 on Fat Distribution, Insulin Sensitivity, and β-Cell Function in Normal BMI Patients with Type 2 Diabetes and Visceral Adiposity
by
OuYang, Rong
, Zhou, Ranran
, Zhao, Xiaoqin
, Yuan, Jie
, Chen, Wei
, Zhu, Xiaohui
, Gu, Yunjuan
, Yuan, Jin
, Tang, Zhuqi
, Yin, Tong
, Wang, Xinlei
, Cui, Shiwei
, Yao, Lili
, Zhang, Rongping
, Sun, Yi
in
Adiposity - drug effects
/ Adiposity - physiology
/ Adult
/ Aged
/ Antidiabetics
/ Biphasic Insulins - administration & dosage
/ Biphasic Insulins - pharmacology
/ Blood pressure
/ Body fat
/ Body Fat Distribution
/ Body Mass Index
/ Cardiovascular disease
/ Clinical trials
/ Diabetes
/ Diabetes Mellitus, Type 2 - complications
/ Diabetes Mellitus, Type 2 - drug therapy
/ Diabetes Mellitus, Type 2 - metabolism
/ Drug dosages
/ Education
/ Endocrinology
/ Exenatide - administration & dosage
/ Exenatide - pharmacology
/ Female
/ Glucose
/ Hospitals
/ Humans
/ Insulin
/ Insulin Lispro - administration & dosage
/ Insulin Lispro - pharmacology
/ Insulin Resistance
/ Insulin, Isophane - administration & dosage
/ Insulin, Isophane - pharmacology
/ Insulin-Secreting Cells - drug effects
/ Insulin-Secreting Cells - physiology
/ Intra-Abdominal Fat - drug effects
/ Intra-Abdominal Fat - metabolism
/ Laboratories
/ Lipids
/ Liver diseases
/ Magnetic resonance imaging
/ Male
/ Metabolism
/ Middle Aged
/ Obesity, Abdominal - complications
/ Obesity, Abdominal - drug therapy
/ Obesity, Abdominal - metabolism
/ Pancreatitis
/ Peptides
/ Substance abuse treatment
/ Treatment Outcome
2020
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Effects of Exenatide and Humalog Mix25 on Fat Distribution, Insulin Sensitivity, and β-Cell Function in Normal BMI Patients with Type 2 Diabetes and Visceral Adiposity
Journal Article
Effects of Exenatide and Humalog Mix25 on Fat Distribution, Insulin Sensitivity, and β-Cell Function in Normal BMI Patients with Type 2 Diabetes and Visceral Adiposity
2020
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Overview
In China, most normal BMI (body mass index of ≥18.5 to <25 kg/m2) adults with type 2 diabetes (T2DM) exhibit visceral adiposity. This study compared the effects of exenatide and humalog Mix25 on normal BMI patients with T2DM and visceral adiposity. A total of 95 patients were randomized to receive either exenatide or humalog Mix25 treatment for 24 weeks. Subcutaneous adipose tissue (SAT) and visceral adipose tissue (VAT) were quantified by magnetic resonance imaging (MRI) and liver fat content (LFC) by liver proton magnetic resonance spectroscopy (1H MRS). Each patient’s weight, waist circumference, BMI, blood glucose, insulin sensitivity, pancreatic β-cell function, and fibroblast growth factor 21 (FGF-21) levels were measured. Data from 81 patients who completed the study (40 and 41 in the exenatide and humalog Mix25 groups, respectively) were analysed. The change in 2 h plasma blood glucose was greater in the exenatide group (P=0.039). HOMA-IR and MBCI improved significantly after exenatide therapy (P<0.01, P=0.045). VAT and LFC decreased in both groups (P<0.01 for all) but to a greater extent in the exenatide group, while SAT only decreased with exenatide therapy (P<0.01). FGF-21 levels declined more in the exenatide group (P<0.01), but were positively correlated with VAT in the entire cohort before (r=0.244, P=0.043) and after (r=0.290, P=0.016) the intervention. The effects of exenatide on glycaemic metabolism, insulin resistance, pancreatic β-cell function, and fat deposition support its administration to normal BMI patients with T2DM and visceral adiposity.
Publisher
Hindawi Publishing Corporation,Hindawi,John Wiley & Sons, Inc,Wiley
Subject
/ Adult
/ Aged
/ Biphasic Insulins - administration & dosage
/ Biphasic Insulins - pharmacology
/ Body fat
/ Diabetes
/ Diabetes Mellitus, Type 2 - complications
/ Diabetes Mellitus, Type 2 - drug therapy
/ Diabetes Mellitus, Type 2 - metabolism
/ Exenatide - administration & dosage
/ Female
/ Glucose
/ Humans
/ Insulin
/ Insulin Lispro - administration & dosage
/ Insulin Lispro - pharmacology
/ Insulin, Isophane - administration & dosage
/ Insulin, Isophane - pharmacology
/ Insulin-Secreting Cells - drug effects
/ Insulin-Secreting Cells - physiology
/ Intra-Abdominal Fat - drug effects
/ Intra-Abdominal Fat - metabolism
/ Lipids
/ Male
/ Obesity, Abdominal - complications
/ Obesity, Abdominal - drug therapy
/ Obesity, Abdominal - metabolism
/ Peptides
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