The purpose of this study was to evaluate the efficacy and safety of alogliptin, once daily (QD) combined with a thiazolidine taken QD in type 2 diabetic patients with uncontrolled blood glucose.
Both insulin hyposecretion and insulin-resistance are considered to be involved in the development of type 2 diabetes mellitus. Takeda is developing SYR-322 (alogliptin) for the improvement of glycemic control in patients with type 2 diabetes mellitus. Alogliptin is an inhibitor of the dipeptidyl peptidase IV (DPP-IV) enzyme. DPP-IV is thought to be primarily responsible for the degradation of 2 peptide hormones released in response to nutrient ingestion. It is expected that inhibition of DPP-IV will improve glycemic control in patients with type 2 diabetes. The present study was planned to evaluate the efficacy and safety of alogliptin as an add-on to pioglitazone in type 2 diabetic patients with uncontrolled blood glucose despite treatment with pioglitazone as well as diet and exercise therapies.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
QUADRUPLE
Enrollment
339
Alogliptin 12.5mg, tablets, orally, once daily and Pioglitazone 15 or 30 mg, tablets orally once daily for up 12 weeks.
Alogliptin 25 mg, tablets, orally, once daily and Pioglitazone 15 or 30 mg, tablets orally once daily for up 12 weeks.
Pioglitazone 15 or 30 mg, tablets orally once daily for up 12 weeks.
Change From Baseline in Glycosylated Hemoglobin (Week 12).
The change in the value of glycosylated hemoglobin (the concentration of glucose bound to hemoglobin as a percent of the absolute maximum that can be bound) collected at week 12 and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 12.
Change From Baseline in Glycosylated Hemoglobin (Week 2).
The change in the value of glycosylated hemoglobin (the concentration of glucose bound to hemoglobin as a percent of the absolute maximum that can be bound) collected at week 2 and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 2.
Change From Baseline in Glycosylated Hemoglobin (Week 4).
The change in the value of glycosylated hemoglobin (the concentration of glucose bound to hemoglobin as a percent of the absolute maximum that can be bound) collected at week 4 and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 4.
Change From Baseline in Glycosylated Hemoglobin (Week 8).
The change in the value of glycosylated hemoglobin (the concentration of glucose bound to hemoglobin as a percent of the absolute maximum that can be bound) collected at week 8 and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 8.
Change From Baseline in Fasting Plasma Glucose (Week 2).
The change between the value of fasting plasma glucose collected at week 2 and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 2.
Change From Baseline in Fasting Plasma Glucose (Week 4).
The change between the value of fasting plasma glucose collected at week 4 and glycosylated hemoglobin collected at baseline.
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Time frame: Baseline and Week 4.
Change From Baseline in Fasting Plasma Glucose (Week 8).
The change between the value of fasting plasma glucose collected at week 8 and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 8.
Change From Baseline in Fasting Plasma Glucose (Week 12).
The change between the value of fasting plasma glucose collected at week 12 or final visit and glycosylated hemoglobin collected at baseline.
Time frame: Baseline and Week 12.
Change From Baseline in Blood Glucose Measured by the Meal Tolerance Test (Week 12).
The change between the value of blood glucose measured by the meal tolerance test collected at week 12 or final visit and blood glucose measured by the meal tolerance test collected at baseline. Meal tolerance test measures blood glucose through blood samples drawn before a meal and 2 hours after the start of the meal.
Time frame: Baseline and Week 12.