A Protocol for the Study of Polymorphisms and Response to Metformin in Patients with Type 2 Diabetes in Trinidad

2020 
Background: Metformin is the drug of first choice in people newly diagnosed with type 2 diabetes. Most patients respond to metformin monotherapy, but many others remain uncontrolled even at maximal doses. Although non-adherence is a major con­tributor to non-response, genetic polymor­phisms of organic cation transporters play an important role in clinical response. We hypothesize that genetic variants are partly responsible for non-response. Objective: This study aims to determine the allele and genotype frequencies of three single nucleotide polymorphisms (SNPs; ATM rs11212617, SLC22A1 rs594709 and SLC47A1 rs2289669) most commonly asso­ciated with failure to respond to metformin. Setting: Ten primary health care facilities in the North Central Regional Health Authority region of Trinidad. Patients: The study population will include 216 patients with diabetes adherent to metformin monotherapy for at least three months. Methods: Following a 12-hour overnight fast, blood samples will be taken to measure fasting insulin and HbA1c. DNA would be isolated and PCR will be used to determine the allele and genotype frequencies of these three SNPs in adherent diabetic patients. DNA samples will be stored for future se­quencing of these three genes to determine whether other, possibly novel, mutations are associated with poor metformin response in Trinidad. Clinical Significance: This study will high­light the prevalence of these polymorphisms in our population. Should an association be found between the polymorphisms tested and glycemic control in adherent patients on metformin monotherapy, this will have implications for further research on medica­tion initiation in newly diagnosed patients with diabetes in Trinidad. Ethn Dis. 2020; 30(Suppl 1):211-216; doi:10.18865/ed.30.S1.211
    • Correction
    • Source
    • Cite
    • Save
    • Machine Reading By IdeaReader
    22
    References
    0
    Citations
    NaN
    KQI
    []