metformin
DrugSubjects will be given an oral dose of metformin once per day for two days.
Other names: GLUCOPHAGE
NCT Number: NCT01681680
The current study is part of a large multi-investigator grant to look at the pharmacogenetics of a number of membrane transporters. The investigators will study individuals with particular genotypes of the human organic cation transporter, (hOCT2), and the multidrug and toxin extrusion transporters, MATE1, MATE2-K to test the hypothesis that genetic variation in hOCT2, hMATEE1 and hMATE2-K are associated with variation in the pharmacokinetics and/or pharmacodynamics of the antidiabetic agent, metformin.
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Notify Me18 year and older
All sexes
Interventional
Phase 1
In the proposed study, a genotype to phenotype strategy is employed to study the role of the transporters, OCT2, MATE1, and MATE2-K and related variants in response and disposition to a known substrate, metformin. Recently, one polymorphic variant in MATE1 (PMT4302, g.-66T>C) showed decreased promoter activity by 40-45% (p<0.01), and one MATE2-K variant (PMT5597, g.-130G>A) showed increased promoter activity by 30% (p<0.05), compared to the reference. Both are the most common promoter variants in each gene (the frequencies of PMT4302: 32.1% and 23.1% in Caucasian and Asian; PMT5597: 26.2% and 48.5% in Caucasian and Asian) (unpublished data, Giacomini group). Specifically, the investigators will measure renal clearance of metformin, and plasma glucose and insulin levels, in healthy Caucasian and Asian subjects who carry either the reference or variant alleles in order to evaluate the effects of these variants on metformin disposition and response.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Subjects will be given an oral dose of metformin once per day for two days.
Other names: GLUCOPHAGE
Time frame: Study day procedures 48 hours
Renal clearance of Metformin of study participants using reference genotype for transporters of OCT2, MATE1, and MATE2-K. In addition, Cmax for plasma glucose will be analyzed for all study participants.
University of California, San Francisco
Other
Effect of Genetic Variation in the Transporter OCT2, MATE1 and MATE2-K on the Pharmacokinetics and Pharmacodynamics of Metformin
Acronym: #6112
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