1.Acarbose Add-on Therapy in Patients with Type 2 Diabetes Mellitus with Metformin and Sitagliptin Failure: A Multicenter, Randomized, Double-Blind, Placebo-Controlled Study
Hae Kyung YANG ; Seung Hwan LEE ; Juyoung SHIN ; Yoon Hee CHOI ; Yu Bae AHN ; Byung Wan LEE ; Eun Jung RHEE ; Kyung Wan MIN ; Kun Ho YOON
Diabetes & Metabolism Journal 2019;43(3):287-301
BACKGROUND: We evaluated the efficacy and safety of acarbose add-on therapy in Korean patients with type 2 diabetes mellitus (T2DM) who are inadequately controlled with metformin and sitagliptin. METHODS: A total of 165 subjects were randomized to metformin and sitagliptin (Met+Sita, n=65), metformin, sitagliptin, and acarbose (Met+Sita+Acarb, n=66) and sitagliptin and acarbose (Sita+Acarb, exploratory assessment, n=34) therapy in five institutions in Korea. After 16 weeks of acarbose add-on or metformin-switch therapy, a triple combination therapy was maintained from week 16 to 24. RESULTS: The add-on of acarbose (Met+Sita+Acarb group) demonstrated a 0.44%±0.08% (P<0.001 vs. baseline) decrease in glycosylated hemoglobin (HbA1c) at week 16, while changes in HbA1c were insignificant in the Met+Sita group (−0.09%±0.10%, P=0.113). After 8 weeks of triple combination therapy, HbA1c levels were comparable between Met+Sita and Met+Sita+Acarb group (7.66%±0.13% vs. 7.47%±0.12%, P=0.321). Acarbose add-on therapy demonstrated suppressed glucagon secretion (area under the curve of glucagon, 4,726.17±415.80 ng·min/L vs. 3,314.38±191.63 ng·min/L, P=0.004) in the absence of excess insulin secretion during the meal tolerance tests at week 16 versus baseline. The incidence of adverse or serious adverse events was similar between two groups. CONCLUSION: In conclusion, a 16-week acarbose add-on therapy to metformin and sitagliptin, effectively lowered HbA1c without significant adverse events. Acarbose might be a good choice as a third-line therapy in addition to metformin and sitagliptin in Korean subjects with T2DM who have predominant postprandial hyperglycemia and a high carbohydrate intake.
Acarbose
;
Diabetes Mellitus, Type 2
;
Drug Therapy, Combination
;
Glucagon
;
Hemoglobin A, Glycosylated
;
Humans
;
Hyperglycemia
;
Incidence
;
Insulin
;
Korea
;
Meals
;
Metformin
;
Sitagliptin Phosphate
2.Efficacy and Safety of SGLT2 Inhibitors in Patients with Type 1 Diabetes: A Meta-analysis of Randomized Controlled Trials.
Yingying YANG ; Hui PAN ; Bo WANG ; Shi CHEN ; Huijuan ZHU
Chinese Medical Sciences Journal 2017;32(1):22-27
Objective To assess the efficiency and safety of a novel sodium-glucose co-transporter 2 (SGLT2) inhibitor-SGLT2 inhibitors, in combination with insulin for type 1 diabetes mellitus (T1DM). Methods We searched Medline, Embase, and the Cochrane Collaboration Library to identify the eligible studies published between January 2010 and July 2016 without restriction of language. The Food and Drug Administration (FDA) data and ClinicalTrials (http://www.clinicaltrials.gov) were also searched. The included studies met the following criteria: randomized controlled trials; T1DM patients aged between 18 and 65 years old; patients were treated with insulin plus SGLT2 inhibitors for more than 2 weeks; patients' glycosylated hemoglobin (HbA1c) levels were between 7% and 12%. The SGLT2 inhibitors group was treated with SGLT2 inhibitors plus insulin, and the placebo group received placebo plus insulin treatment. The outcomes should include one of the following items: fasting blood glucose, HbA1c, glycosuria, or adverse effects. Data were analyzed by two physicians independently. The risk of bias was evaluated by using the Cochrane Collaboration's Risk of Bias tool and heterogeneity among studies was assessed using Chi-square test. Random effect model was used to analyze the treatment effects with Revman 5.3.Results Three trials including 178 patients were enrolled. As compared to the placebo group, SGLT2 inhibitor absolutely decreased fasting blood glucose [mean differences (MD) -2.47 mmol/L, 95% confidence interval (CI) -3.65 to -1.28, P<0.001] and insulin dosage (standardized MD -0.75 U, 95%CI -1.17 to -0.33, P<0.001). SGLT2 inhibitors could also increase the excretion of urine glucose (MD 131.09 g/24 h, 95%CI 91.79 to 170.39, P<0.001). There were no significant differences in the incidences of hyperglycemia [odds ratio (OR) 1.82, 95%CI 0.63 to 5.29, P=0.27], urinary tract infection (OR 0.95, 95%CI 0.19 to 4.85, P=0.95), genital tract infection (OR 0.27, 95%CI 0.01 to 7.19, P=0.43), and diabetic ketoacidosis (OR 6.03, 95%CI 0.27 to 135.99, P=0.26) between the two groups.Conclusion SGLT2 inhibitors combined with insulin might be an efficient and safe treatment modality for T1DM patients.
Adolescent
;
Adult
;
Aged
;
Blood Glucose
;
metabolism
;
Diabetes Mellitus, Type 1
;
blood
;
drug therapy
;
Drug Therapy, Combination
;
methods
;
Fasting
;
blood
;
Female
;
Glycated Hemoglobin A
;
metabolism
;
Humans
;
Hypoglycemic Agents
;
adverse effects
;
therapeutic use
;
Insulin
;
adverse effects
;
therapeutic use
;
Male
;
Middle Aged
;
Randomized Controlled Trials as Topic
;
Sodium-Glucose Transporter 2
;
antagonists & inhibitors
3.Screening study for genetic polymorphisms affecting pharmacokinetics of pioglitazone.
Ji Young YUN ; Bo Hyung KIM ; Ji Hyun LEE ; Kidong LEE ; KyuBum KWACK ; Sung Vin YIM
Translational and Clinical Pharmacology 2016;24(4):194-202
Pioglitazone is known to have antidiabetic effects through decreasing peripheral, hepatic and vascular insulin resistance by the stimulation of PPAR gamma. To address the possible genetic factors affecting the pharmacokinetics (PK) of pioglitazone, 27 male Korean volunteers were enrolled from two separate bioequivalence studies. Each subject was administered 15 mg pioglitazone and reference drug PK parameters were used. We used Illumina Human610 Quad v1.0 DNA Analysis BeadChip for whole genome SNPs analysis and whole genome genotyping data was processed by linear regression analysis for PK parameters. We found 35 significant SNPs (P < 0.0001) in C(max), 1,118 significant SNPs (P < 0.0001) in T(max) and 1,259 significant SNPs (P < 0.0001) in AUC(inf) from whole genome analysis. For clinical pharmacological purpose, we selected SNPs from several phase I and II drug metabolizing enzyme and analyzed PK parameters with genotypes. Four SNPs (rs7761731 and rs3799872 from CYP39A1; rs156697 from GSTO2; rs1558139 from CYP4F2) showed significant associations with pioglitazone C(max). In the T(max) group, seven SNPs from 3 genes (rs3766198 from CYP4B1; rs2270422 from GSTZ1; rs2054675, rs10500282, rs3745274, rs8192719, and rs11673270 from CYP2B6) had significant associations. In the AUC(inf) group, seven SNPs from 4 genes (rs11572204 from CYP2J2; rs4148280 from UGT2A1, rs4646422 from CYP1A1; rs3745274, rs8192719, rs11673270, and rs707265 from CYP2B6) showed significant associations with pioglitazone absorption. These results showed that genetic makeup could affect the PK parameters and these informations could be provide information for personalized pioglitazone therapy.
Absorption
;
Cytochrome P-450 CYP1A1
;
DNA
;
Elvitegravir, Cobicistat, Emtricitabine, Tenofovir Disoproxil Fumarate Drug Combination
;
Genome
;
Genotype
;
Humans
;
Insulin Resistance
;
Linear Models
;
Male
;
Mass Screening*
;
Pharmacogenetics
;
Pharmacokinetics*
;
Polymorphism, Genetic*
;
Polymorphism, Single Nucleotide
;
PPAR gamma
;
Therapeutic Equivalency
;
Volunteers
4.Berberine enhances antidiabetic effects and attenuates untoward effects of canagliflozin in streptozotocin-induced diabetic mice.
Cai-Ming TIAN ; Xin JIANG ; Xiao-Xi OUYANG ; Ya-Ou ZHANG ; Wei-Dong XIE
Chinese Journal of Natural Medicines (English Ed.) 2016;14(7):518-526
The present study aimed at determining whether berberine can enhance the antidiabetic effects and alleviate the adverse effects of canagliflozin in diabetes mellitus. Streptozotocin-induced diabetic mice were introduced, and the combined effects of berberine and canagliflozin on glucose metabolism and kidney functions were investigated. Our results showed that berberine combined with canagliflozin (BC) increased reduction of fasting and postprandial blood glucose, diet, and water intake compared with berberine or canagliflozin alone. Interestingly, BC showed greater decrease in blood urea nitrogen and creatinine levels and lower total urine glucose excretion than canagliflozin alone. In addition, BC showed increased phosphorylated 5' AMP-activated protein kinase (pAMPK) expression and decreased tumor necrosis factor alpha (TNFα) levels in kidneys, compared with berberine or canagliflozin alone. These results indicated that BC was a stronger antidiabetic than berberine or canagliflozin alone with less negative side effects on the kidneys in the diabetic mice. The antidiabetic effect was likely to be mediated by synergically promoting the expression of pAMPK and reducing the expression of TNFα in kidneys. The present study represented the first report that canagliflozin combined with berberine was a promising treatment for diabetes mellitus. The exact underlying mechanisms of action should be investigated in future studies.
AMP-Activated Protein Kinases
;
metabolism
;
Animals
;
Berberine
;
administration & dosage
;
Blood Glucose
;
metabolism
;
Canagliflozin
;
administration & dosage
;
adverse effects
;
Diabetes Mellitus, Experimental
;
drug therapy
;
metabolism
;
Drug Therapy, Combination
;
Drugs, Chinese Herbal
;
administration & dosage
;
Humans
;
Hypoglycemic Agents
;
administration & dosage
;
Insulin
;
metabolism
;
Kidney
;
drug effects
;
enzymology
;
metabolism
;
Male
;
Mice
;
Streptozocin
5.Clinical observation on the combined therapy of sitagliptin with insulin for patients with brittle diabetes.
Na LUO ; Yan ZHU ; Zhenwen ZHANG ; Hui CHEN ; Yan WANG
Journal of Central South University(Medical Sciences) 2015;40(10):1089-1095
OBJECTIVE:
To observe the clinical efficacy of sitagliptin plus insulin on patients with brittle diabetes and to determine the effect of the combined therapy on glucagon secretion.
METHODS:
This randomized, double-blinded and placebo-controlled trial included 30 patients with brittle diabetes. Participants were randomly assigned (1:1) to receive the treatment of either sitagliptin plus insulin or placebo plus insulin for 12 weeks. The blood glucose, hemoglobin A1c, insulin dose, C-peptide, glucagon, glucagon-like peptide-1 (GLP-1), glucose-dependent insulinotropic polypeptide (GIP) and other parameters were determined.
RESULTS:
After 12 weeks of treatment, blood glucose was controlled better by sitagliptin plus insulin (P<0.01). The patients had significantly lower glucose variability indices, lower daily insulin requirement and hemoglobin A1c in the group of sitagliptin plus insulin (P<0.01). After steamed bun test, past-meal GLP-1 levels at 30 min were higher (P<0.01) while GIP levels were lower (P<0.01), with glucagon suppression in the sitagliptin plus insulin group. No significant change was observed at any time point in placebo plus insulin group.
CONCLUSION
Sitagliptin significantly decreases blood glucose level and blood glucose fluctuation, which may contribute to the ability of sitagliptin in decreasing glucagon secretion.
Blood Glucose
;
analysis
;
C-Peptide
;
blood
;
Diabetes Mellitus, Type 1
;
drug therapy
;
Dipeptidyl-Peptidase IV Inhibitors
;
Double-Blind Method
;
Drug Therapy, Combination
;
Gastric Inhibitory Polypeptide
;
blood
;
Glucagon
;
blood
;
Glucagon-Like Peptide 1
;
blood
;
Glycated Hemoglobin A
;
analysis
;
Humans
;
Hypoglycemic Agents
;
administration & dosage
;
therapeutic use
;
Insulin
;
administration & dosage
;
therapeutic use
;
Sitagliptin Phosphate
;
administration & dosage
;
therapeutic use
6.The impact of pegylated interferon and ribavirin combination treatment on lipid metabolism and insulin resistance in chronic hepatitis C patients.
Hee Jae JUNG ; Young Seok KIM ; Sang Gyune KIM ; Yun Nah LEE ; Soung Won JEONG ; Jae Young JANG ; Sae Hwan LEE ; Hong Soo KIM ; Boo Sung KIM
Clinical and Molecular Hepatology 2014;20(1):38-46
BACKGROUND/AIMS: Lipid profile and insulin resistance (IR) are associated with hepatitis C virus (HCV) and may predict the chronic hepatitis C (CHC) treatment response. The aim of this study was to determine the association between CHC treatment response and lipid profile and IR change during treatment. METHODS: In total, 203 CHC patients were reviewed retrospectively between January 2005 and December 2011 at Soon Chun Hyang University Hospital. The lipid profile, homeostasis model for assessment (HOMA) of IR (HOMA-IR), and HOMA of beta cells (HOMA-beta) were evaluated before interferon plus ribavirin therapy (BTx), at the end of treatment (DTx), and 24 weeks after the end of treatment (ATx). RESULTS: A sustained virologic response (SVR) was achieved by 81% of all patients (49/60), 60% (n=36) of whom possessed genotype 1, with the remainder being non-genotype-1 (40%, n=24). Apart from age, which was significantly higher in the non-SVR group (SVR, 48.0+/-11.2 years, mean+/-SD; non-SVR, 56.6+/-9.9 years; P<0.01), there were no significant differences in the baseline characteristics between the SVR and non-SVR groups. In the SVR group, low density lipoprotein-cholesterol (LDL-C) had significantly changed at DTx and ATx compared to BTx. In addition, HOMA-IR and HOMA-beta were significantly changed at DTx in the SVR group. Among those with a high baseline insulin resistance (HOMA-IR >2.5), HOMA-IR was significantly changed at DTx in the SVR group. CONCLUSIONS: LDL-C appears to be associated with HCV treatment in SVR patients. Furthermore, eradication of HCV may improve whole-body IR and insulin hypersecretion, as well as high baseline insulin resistance (HOMA-IR >2.5).
Adult
;
Aged
;
Antiviral Agents/pharmacology/*therapeutic use
;
Cholesterol/blood
;
Drug Therapy, Combination
;
Female
;
Genotype
;
Hepacivirus/genetics
;
Hepatitis C, Chronic/*drug therapy
;
Humans
;
*Insulin Resistance
;
Interferon-alpha/pharmacology/*therapeutic use
;
Lipid Metabolism/drug effects
;
Male
;
Middle Aged
;
Polyethylene Glycols/pharmacology/*therapeutic use
;
Recombinant Proteins/pharmacology/therapeutic use
;
Ribavirin/*therapeutic use
;
Treatment Outcome
;
Triglycerides/blood
7.Effect of the combination of metformin and fenofibrate on glucose homeostasis in diabetic Goto-Kakizaki rats.
Tae Jung OH ; Ji Yon SHIN ; Gyeong Hoon KANG ; Kyong Soo PARK ; Young Min CHO
Experimental & Molecular Medicine 2013;45(7):e30-
Metformin has been reported to increase the expression of the glucagon-like peptide-1 (GLP-1) receptor in pancreatic beta cells in a peroxisome proliferator-activated receptor (PPAR)-alpha-dependent manner. We investigated whether a PPARalpha agonist, fenofibrate, exhibits an additive or synergistic effect on glucose metabolism, independent of its lipid-lowering effect, when added to metformin. Non-obese diabetic Goto-Kakizaki (GK) rats were divided into four groups and treated for 28 days with metformin, fenofibrate, metformin plus fenofibrate or vehicle. The random blood glucose levels, body weights, food intake and serum lipid profiles were not significantly different among the groups. After 4 weeks, metformin, but not fenofibrate, markedly reduced the blood glucose levels during oral glucose tolerance tests, and this effect was attenuated by adding fenofibrate. Metformin increased the expression of the GLP-1 receptor in pancreatic islets, whereas fenofibrate did not. During the intraperitoneal glucose tolerance tests with the injection of a GLP-1 analog, metformin and/or fenofibrate did not alter the insulin secretory responses. In conclusion, fenofibrate did not confer any beneficial effect on glucose homeostasis but reduced metformin's glucose-lowering activity in GK rats, thus discouraging the addition of fenofibrate to metformin to improve glycemic control.
Animals
;
Blood Glucose/metabolism
;
Body Weight/drug effects
;
Diabetes Mellitus, Experimental/*drug therapy/*metabolism
;
Drug Therapy, Combination
;
Feeding Behavior/drug effects
;
Fenofibrate/*pharmacology/therapeutic use
;
Glucagon-Like Peptide 1/agonists/metabolism
;
Glucose/*metabolism
;
Glucose Tolerance Test
;
Homeostasis/*drug effects
;
Immunohistochemistry
;
Injections, Intraperitoneal
;
Insulin-Secreting Cells/drug effects/metabolism/pathology
;
Lipid Metabolism/drug effects
;
Male
;
Metformin/*pharmacology/therapeutic use
;
Peptides/administration & dosage/pharmacology
;
Rats
;
Receptors, Glucagon/metabolism
;
Venoms/administration & dosage/pharmacology
8.Effect of combination of insulin and selenium on insulin signal transduction in cardiac muscle of STZ-induced diabetic rats.
Tian-Jiao XU ; Bing-Xiang YUAN ; Ya-Min ZOU
Acta Pharmaceutica Sinica 2011;46(3):274-279
This study is to investigate the effect of low doses of insulin (1 u x kg(-1)) and selenium (180 microg x kg(-1)) in combination on general physiological parameters and insulin signal molecules in cardiac muscle of STZ-induced diabetic rats. The levels of blood glucose were estimated using One Touch SureStep Blood Glucose meter. HbA1c levels were estimated using microcolumn assay. TG and TC were estimated using enzymatic assay. The levels of PI3K and GLUT4 in cardiac muscle were examined by immunoblotting and immunohistochemistry. The result showed that insulin in combination with selenium could significantly lower blood glucose and blood lipid levels and markedly restored the PI3K and GLUT4 levels in cardiac muscle. It could be concluded that there was cooperation between insulin and selenium, and that treatment of diabetic rats with combined doses of insulin and selenium increased cardiac glucose uptake by upregulating the level of PI3K-mediated GLUT4 in cardiac muscle, eventually ameliorating myocardial dysfunction.
Animals
;
Antioxidants
;
pharmacology
;
Blood Glucose
;
metabolism
;
Cholesterol
;
blood
;
Diabetes Mellitus, Experimental
;
blood
;
metabolism
;
Drug Therapy, Combination
;
Glucose Transporter Type 4
;
metabolism
;
Glycated Hemoglobin A
;
metabolism
;
Hypoglycemic Agents
;
pharmacology
;
Insulin
;
pharmacology
;
Male
;
Myocardium
;
metabolism
;
Phosphatidylinositol 3-Kinases
;
metabolism
;
Random Allocation
;
Rats
;
Rats, Sprague-Dawley
;
Selenium
;
pharmacology
;
Signal Transduction
;
drug effects
;
Triglycerides
;
blood
9.Appropriate insulin initiation dosage for insulin-naive type 2 diabetes outpatients receiving insulin monotherapy or in combination with metformin and/or pioglitazone.
Lin LIAO ; Ming YANG ; Lu-Lu QIU ; Ya-Ru MOU ; Jia-Jun ZHAO ; Jian-Jun DONG
Chinese Medical Journal 2010;123(24):3684-3688
BACKGROUNDFew studies have given suggestions on appropriate initiation insulin dosage when combined with oral antidiabetic drugs (OADs). This research was to investigate appropriate initiation insulin doses for insulin-naive type 2 diabetes patients with different combinations and the relationship between insulin dosage and relevant factors.
METHODSThis was a randomized, open-label, treat to target study. The target was 20% decrease of both fasting plasma glucose (FPG) and 2 hours post-breakfast blood glucose (P2hBG). One hundred and forty-seven insulin-naive Chinese patients recruited were randomly assigned to 3 groups: group A, patients received insulin monotherapy; group B, received insulin plus metformin (0.5 g, tid) and group C, received insulin plus metformin (0.5 g, tid) and pioglitazone (15 mg, qd). Insulin doses were initiated with a dose of 0.3 U×kg(-1)×d(-1) and titrated according to FPG and P2hBG till reached the targets.
RESULTSBoth the time of getting 20% reduction of FPG and P2hBG showed significant differences among the three groups. The time was shortest in Group C. The insulin doses needed to achieve glucose reduction of 20% in three treatment groups were (0.40 ± 0.04) U×kg(-1)×d(-1) for Group A, (0.37 ± 0.04) U×kg(-1)×d(-1) for Group B, and (0.35 ± 0.03) U×kg(-1)×d(-1) for Group C, respectively. Multiple linear stepwise regression analysis showed that insulin doses correlated with body weight, FPG, diabetes duration, age and history of sulfonylurea treatment. The standardized regression coefficients were 0.871, 0.322, 0.089, 0.067 and 0.063 (with all P < 0.05).
CONCLUSIONSTo achieve blood glucose's reduction of 20% within safety context, initial insulin doses were recommended as the following: 0.40 U×kg(-1)×d(-1) for insulin mono-therapy, 0.37 U×kg(-1)×d(-1) for insulin plus metformin treatment, and 0.35 U×kg(-1)×d(-1) for insulin plus metformin and pioglitazone treatment in Chinese type 2 diabetes outpatients. Body weight is found the most closely related factor to the insulin dosage.
Adult ; Aged ; Blood Glucose ; analysis ; Body Weight ; drug effects ; Diabetes Mellitus, Type 2 ; blood ; drug therapy ; Drug Therapy, Combination ; Female ; Humans ; Hypoglycemic Agents ; administration & dosage ; Insulin ; administration & dosage ; adverse effects ; therapeutic use ; Linear Models ; Male ; Metformin ; administration & dosage ; adverse effects ; Middle Aged ; Outpatients ; Regression Analysis ; Thiazolidinediones ; administration & dosage ; adverse effects
10.Comparison on efficacy and safety of two regimens for treatment of type 2 diabetes mellitus: glargine plus metformin versus neutral protamine hagedorn plus metformin.
Maoqing HU ; Yu LUO ; Lin ZHANG ; Xue YANG ; Hongmao ZHANG
Journal of Biomedical Engineering 2010;27(3):622-625
This is a work aimed to investigate the efficacy and safety of the combination of metformin with glargine or with neutral protamine Hagedorn in treatment of type 2 diabetes mellitus. Sixty such patients with poor glycemic control by oral antidiabetic drugs were included and divided into group A and group B. Thirty patients in group A were treated with glargine and metformin, and the other 30 patients in group B were treated with neutral protamine Hagedorn and metformin for 12 weeks. Fasting plasma glucose (FPG), postprandial glucose(PPG) and HbA1c were measured before and after the treatment. Hypoglycemia was also noted. At the end of the study, the levels of FPG, PPG and HbAlc were significantly lower than the baseline levels in the two groups (P < 0.05). At the 12th week, the percentage of HbAlc < 7% in group A was 53.3% and that in group B was 40.0%; statistically, there was no significant difference (P > 0.05). After the end of the treatment, there was no significant difference in that the percentage of HbA1c < 7% was 70.6% in group A and 62.5% in group B; the two groups' HbA1c levels were > or = 7%-9% at the baseline (P > 0.05). No sigificant difference in respect to the incidence rate of hypoglycemia in the two groups was noted (P > 0.05). In the cases of type 2 diabetes mellitus with poor glycaemic control by oral antidiabetic drug, glucose and HbA1c can be lowered further by the combination of metformin with glargine or with neutral protamine Hagedorn, the incidence rate of hypoglycemia is low. Metformin plus glargine or plus neutral protamine Hagedorn is a safe and effective therapeutic choice for type 2 diabetes mellitus cases with poor glycaemic control; moreover, metformin plus neutral protamine is a cheaper and effective choice.
Aged
;
Diabetes Mellitus, Type 2
;
drug therapy
;
Drug Therapy, Combination
;
Female
;
Humans
;
Hypoglycemic Agents
;
administration & dosage
;
adverse effects
;
Insulin Glargine
;
Insulin, Isophane
;
administration & dosage
;
adverse effects
;
Insulin, Long-Acting
;
administration & dosage
;
adverse effects
;
Male
;
Metformin
;
administration & dosage
;
adverse effects
;
Middle Aged

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