Diabetes Mellitus Clinical Trial
Official title:
A Long-Term, Open-Label, Phase 3a Safety Study of Oral TAK-559 (32 mg QD) in the Treatment of Patients With Type 2 Diabetes Mellitus
The purpose of this study was to determine the long-term safety of TAK-559, once daily (QD), in subjects with Type 2 Diabetes.
Insulin is a primary regulator of blood glucose concentrations. A subnormal response to
circulating insulin levels at target tissues leads to a decrease in insulin-mediated glucose
uptake. Insulin resistance is associated with normal to high insulin levels and is often
accompanied by dyslipidemia, a disruption in lipid metabolism resulting in increased
triglycerides and low-density lipoprotein levels as well as decreased high-density
lipoprotein levels in patients with type 2 diabetes mellitus. In the early stages of insulin
resistance, a compensatory mechanism of increased insulin secretion by the pancreas
maintains normal to near-normal glucose levels. Once the pancreas fails to maintain the
increased insulin output, overt type 2 diabetes mellitus occurs.
Insulin also plays an important role in the metabolism of fat and proteins and exerts its
influence at the peroxisome proliferator-activated receptor level. Peroxisome
proliferator-activated receptor -alpha receptors are expressed predominantly in skeletal
muscle, adipose tissue, heart, liver, kidney, gut, macrophages, and vascular tissue, and
play a key role in energy storage, glucose homeostasis, and vascular biology. Thus, as
insulin activates peroxisome proliferator-activated receptor-alpha receptors, this results
in the cellular uptake of glucose. Peroxisome proliferator-activated receptor receptors are
ligand-activated transcription elements that regulate gene expression necessary for
metabolism. For this reason, peroxisome proliferator-activated receptors play a pivotal role
in glucose homeostasis, adipocyte differentiation, and lipid storage. The genes
predominantly targeted by transcription activity of activated peroxisome
proliferator-activated receptor-alpha receptors are those that mediate fatty acid uptake,
fatty acid oxidation, and lipoprotein metabolism. As such, peroxisome proliferator-activated
receptor-alpha agonists have their greatest effect on lipid metabolism and vascular biology.
TAK-559 is a novel oxyiminoalkanoic acid under investigation for use as an oral agent in the
treatment of patients with type 2 diabetes mellitus. TAK-559 has partial peroxisome
proliferator-activated receptor-alpha agonist activity, potent peroxisome
proliferator-activated receptor-alpha activity, and modest peroxisome proliferator-activated
receptor-gamma activity at high concentrations in nonclinical models.
;
Allocation: Non-Randomized, Endpoint Classification: Safety Study, Intervention Model: Single Group Assignment, Masking: Open Label, Primary Purpose: Treatment
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