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Marek Rosiak1, Susanna Grzeszczak2, Dariusz A Kosior3
1Department of Cardiology and Hypertension, Central Clinical Hospital, the Ministry of the Interior, Warsaw, Poland ; Department of Experimental and Clinical Pharmacology, Medical University of Warsaw, Poland.
Abstract:
Type 2 diabetes mellitus (T2DM) is a prevalent metabolic disorder, which affects more than 300 million people globally. The common effect of uncontrolled diabetes is the state of hyperglycemia, which results from beta-cell dysfunction as well as insulin resistance, which is accompanied with microvascular and macrovascular complications. As hyperglycemia defines diabetes, glycemic control is fundamental to the management of diabetes. Sodium glucose co-transporter 2 inhibitors (SGLT2) are a new group of oral antidiabetic medications that act by blocking the reabsorption of glucose, causing it to be excreted in the urine. Canagliflozin was the first SGLT2 inhibitor to be approved in the US by the Food and Drug Administration for the treatment and control of T2DM and on September 19, 2013, the Committee for Medicinal Products for Human Use of the European Medicines Agency adopted a positive opinion, recommending the granting of a marketing authorization for the medicinal product Invokana(®). Canagliflozin is a SGLT2 inhibitor, which acts upon the proximal tubules of the kidneys and reduces the renal threshold for glucose. It is highly selective, binding 250 times more potently to SGLT2 than sodium glucose co-transporter 1 inhibitor. This action allows a higher amount of glucose to be excreted within the urine, causing the patient's plasma glucose level to be decreased and indirectly causing weight loss. Among the most common adverse events are hypoglycemia, headache, nausea, female genital and urinary tract infections, nasopharyngitis, and transient postural dizziness. Given its high efficacy in reducing hyperglycemia and good safety profile as either monotherapy or an add-on treatment to metformin, sulfonylureas, or insulin, canagliflozin seems to be a promising antihyperglycemic drug. Nevertheless, further large-scale and long-term studies should be conducted to evaluate the impact of canagliflozin on cardiovascular risk in T2DM patients.
Insights
Canagliflozin, a new sodium glucose co-transporter 2 inhibitor (SGLT2), effectively lowers blood sugar in type 2 diabetes patients. It shows promise as an antihyperglycemic drug with a good safety profile.
Area of Science:
- Endocrinology
- Pharmacology
- Nephrology
Background:
- Type 2 diabetes mellitus (T2DM) affects over 300 million globally, characterized by hyperglycemia due to beta-cell dysfunction and insulin resistance.
- Hyperglycemia leads to microvascular and macrovascular complications, making glycemic control essential for T2DM management.
- Sodium glucose co-transporter 2 inhibitors (SGLT2) represent a novel oral antidiabetic class.
Purpose of the Study:
- To review the efficacy and safety of canagliflozin, a selective SGLT2 inhibitor, for managing type 2 diabetes mellitus.
- To highlight canagliflozin's mechanism of action in reducing hyperglycemia and its potential as a therapeutic agent.
Main Methods:
- Review of canagliflozin's pharmacological profile, including its selective inhibition of SGLT2 in the renal proximal tubules.
- Analysis of clinical data regarding its efficacy in lowering plasma glucose and its safety profile.
- Examination of its use as monotherapy or adjunct to existing antidiabetic treatments.
Main Results:
- Canagliflozin reduces renal glucose reabsorption, increasing urinary glucose excretion and lowering plasma glucose levels.
- The drug is highly selective for SGLT2, with a significantly lower affinity for SGLT1.
- Common adverse events include hypoglycemia, headache, nausea, and infections; however, it demonstrates good efficacy and safety.
Conclusions:
- Canagliflozin is a promising antihyperglycemic agent for T2DM, offering effective glycemic control with a favorable safety profile.
- Its efficacy as monotherapy or add-on therapy to metformin, sulfonylureas, or insulin supports its role in T2DM management.
- Further large-scale, long-term studies are warranted to assess its impact on cardiovascular risk in T2DM patients.
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