This study evaluate the efficacy and safety of alogliptin and pioglitazone combination therapy in comparison with either alogliptin or pioglitazone on glucose control in the metformin-treated type 2 diabetic patients in Korea.
Pathophysiology of type 2 diabetes is known as insulin resistance and progressive beta cell dysfunction. Combination therapy with biguanides, glucagon-like peptide-1(GLP-1) agonists or dipeptidyl peptidase-4 inhibitor(DPP4I) and thiazolidinediones(TZD) seems reasonable theoretically, for their effects on different pathophysiologic defects. Current treatment guidelines recommend a stepwise approach starting with lifestyle modification or lifestyle modification + metformin monotherapy, with recent focusing on patient individualization. In Korea, Korean Diabetes Association also recommends stepwise approach and at the same time, emphasizes on the initial aggressive treatment including oral combination or insulin therapy according to HbA1c level to achieve target goal \<6.5%. Guide to the efficacy, timing, options of combination therapy is not clearly defined due to lack of sufficient evidences yet. There is no clear report to demonstrate the clinical benefit of initial TZD and DPP4I combination therapy in the Korean. Thus it is reasonable to study the effect of combination therapy in the patients with sub-optimal glucose control with metformin therapy only, comparing various combination options metformin with DPP4I only, TZD only, or both. The hypothesis of this study is that combination therapy of alogliptin and pioglitazone added on the metformin has superior effect on HbA1c reduction than metformin and either alogliptin or pioglitazone in 6 month treatment.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
216
alogliptin 25 mg add-on background medication metformin
pioglitazone 30 mg add-on background medication metformin
alogliptin 25 mg and pioglitazone 30 mg add-on background medication metformin
Seoul St Mary's Hospital, The Catholic University of Korea
Seoul, South Korea
Change in glycohemoglobin(HbA1c) from baseline
Time frame: baseline, 24 weeks
Proportion of subjects achieving HbA1c < 7.0%
Time frame: 24 week
Proportion of subjects achieving HbA1c <6.5%
Time frame: 24 week
Changes in glycated albumin(GA) from baseline
Time frame: baseline, 24 weeks
Change in GA/HbA1c ratio from baseline
Time frame: baseline, 24 weeks
Change in fasting blood sugar from baseline
Time frame: baseline, 24 weeks
Incidence of hyperglycemic rescue
at Week 12, HbA1c \>9.0%
Time frame: 12 week
Change in HbA1c from baseline
Time frame: 12 week
Change in total cholesterol from baseline
Time frame: baseline, 24 weeks
Change in triglycerides from baseline
Time frame: baseline, 24 weeks
Change in LDL-cholesterol from baseline
Time frame: baseline, 24 weeks
Change in HDL-cholesterol from baseline
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Time frame: baseline, 24 weeks
Changes in glycated albumin(GA) from baseline
Time frame: baseline, 12 weeks
Change in GA/HbA1c ratio from baseline
Time frame: baseline, 12 weeks
Change in fasting blood sugar from baseline
Time frame: baseline, 12 weeks
Change in total cholesterol from baseline
Time frame: baseline, 12 weeks
Change in triglycerides from baseline
Time frame: baseline, 12 weeks
Change in LDL-cholesterol from baseline
Time frame: baseline, 12 weeks
Change in HDL-cholesterol from baseline
Time frame: baseline, 12 weeks
Change in Homeostasis Model Assessment-Insulin resistance(HOMA-IR) from baseline
a marker of insulin resistance
Time frame: baseline, 24 weeks
Change in Homeostasis Model Assessment - beta cell (HOMA-beta) from baseline
a marker of beta cell function
Time frame: baseline, 24 weeks
Change in highly sensitive C reactive protein(hs-CRP) from baseline
a marker of inflammation
Time frame: baseline, 24 weeks
Change in Plasmonogen activator inhibitor-1(PAI-1) from baseline
Time frame: baseline, 24 weeks
Change in B-type natriuretic pepetide(BNP) from baseline
Time frame: baseline, 24 weeks
event rate of hypoglycemia
A number of total event of hypoglycemia defined as blood glucose \<70mg/dL or subjective symptom of typical hypoglycemia
Time frame: upto 24 weeks
No of subject with adverse event of special interest
The event of special interest include * heart failure * cardiovascular effect other than heart failure * edema * weight gain * urinary bladder tumor * macular edema * fracture of bone * pancreatitis
Time frame: upto 24 weeks
The number of serious adverse events
Time frame: upto 24 weeks
The number of subject with hypersensitivity to study drugs
Time frame: upto 24 weeks
The number of subject with any abnormality of laboratory evaluation
* Complete Blood count * BUN, Creatinine, AST, ALT, Calcium, Phosphorous, Sodium, Potassium, Total Protein, Albumin, Total Bilirubin, Gamma-glutamyl transferase, Alkaline phosphatase, Creatinine Kinase, amylase, lipase * Urine analysis including microscopic examination
Time frame: 12 week
The number of subject with any abnormality of laboratory evaluation
* Complete Blood count * Blood urea nigrogen, Creatinine, Aspartate aminotransferase, Alanine Aminotransferase, Calcium, Phosphorous, Sodium, Potassium, Total Protein, Albumin, Total Bilirubin, Gamma-glutamyl transferase, Alkaline phosphatase, Creatinine Kinase, amylase, lipase * Urine analysis including microscopic examination
Time frame: 24 week
The number of subject with any change of findings in Chest X-ray from baseline
Time frame: 24 week
The number of subject with any change of findings in electrocardiogram from baseline
Time frame: 24 week