An Investigation of the Metabolism and Excretion of KD101 and Its Interindividual Differences: A Microtracing Mass Balance Study in Humans
- Authors
- Kim, Anhye; Dueker, Stephen R.; Hwang, Jun Gi; Yoon, Jangsoo; Lee, Sang-Won; Lee, Hye Suk; Yu, Byung-Yong; Yu, Kyung-Sang; Lee, Howard
- Issue Date
- 2021-01
- Publisher
- WILEY
- Citation
- CTS-CLINICAL AND TRANSLATIONAL SCIENCE, v.14, no.1, pp.231 - 238
- Abstract
- The absorption, metabolism, and excretion (AME) profiles of KD101, currently under clinical development to treat obesity, were assessed in humans using accelerator mass spectrometry (AMS) after a single oral administration of KD101 at 400 mg and a microdose of C-14-KD101 at similar to 35.2 mu g with a total radioactivity of 6.81 kBq. The mean total recovery of administered radioactivity was 85.2% with predominant excretion in the urine (78.0%). The radio-chromatographic metabolite profiling showed that most of the total radioactivity in the plasma and the urine was ascribable to metabolites. The UDP-glucuronosyltransferase (UGT), including UGT1A1, UGT1A3, and UGT2B7, might have contributed to the interindividual variability in the metabolism and excretion of KD101. The microtracing approach using AMS is a useful tool to evaluate the AME of a drug under development without risk for high radiation exposure to humans.
- Keywords
- LABORATORY-ANIMALS; UDP-GLUCURONOSYLTRANSFERASES; VALPROIC ACID; PHARMACOKINETICS; POLYMORPHISM; LAMOTRIGINE; SAMPLES; PLASMA; LABORATORY-ANIMALS; UDP-GLUCURONOSYLTRANSFERASES; VALPROIC ACID; PHARMACOKINETICS; POLYMORPHISM; LAMOTRIGINE; SAMPLES; PLASMA; KD101; AMS; Mass Balance; Metabolism; Microtracing
- ISSN
- 1752-8054
- URI
- https://pubs.kist.re.kr/handle/201004/117657
- DOI
- 10.1111/cts.12848
- Appears in Collections:
- KIST Article > 2021
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