The validated method was successfully applied in the first pharmacokinetic study of Fulzerasib in Sprague-Dawley rats following single intravenous and oral administration, and exhibited favorable pharmacokinetic properties, including low plasma clearance, moderate volume of distribution and notably high oral bioavailability.
Abstract
Fulzerasib is a novel, potent, and irreversible covalent inhibitor targeting the KRAS G12C mutation, recently approved in China for advanced nonsmall cell lung cancer. This study aimed to develop and fully validate a rapid, specific and sensitive UHPLC-MS/MS method for the quantification of Fulzerasib in rat plasma. Sample preparation was streamlined using a simple protein precipitation technique with acetonitrile. Chromatographic separation was achieved within a 4.0-min run on a C18 column, with verapamil as the internal standard and detection via multiple reaction monitoring. The method was rigorously validated over a linear range of 5 to 5000 ng/mL (R2 > 0.9933), demonstrating excellent accuracy (102%-112.7%) and precision (≤ 10.3% for QCs). Stability was confirmed under various storage and processing conditions. The validated method was successfully applied in the first pharmacokinetic study of Fulzerasib in Sprague-Dawley rats following single intravenous (1 mg/kg) and oral (3 mg/kg) administration. Fulzerasib exhibited favorable pharmacokinetic properties, including low plasma clearance (5.02 mL/min/kg), moderate volume of distribution and notably high oral bioavailability of 38.6%. The established method is reliable, efficient and readily applicable, thereby providing a vital tool for accelerating the ongoing preclinical and translational research of Fulzerasib.
A sensitive, reliable, and rapid UPLC–MS/MS method was developed and validated for the simultaneous determination of ensartinib and M465 in rat plasma and applied to a rat pharmacokinetic study and provides useful analytical support for further preclinical investigations of ensartinib and its major metabolite.
Shi-Qi Jiang, Yan Chen, Lu Cao et al.· Drug Design, Development and...· 0 citations
Amlexanox, a 5H-benzopyranopyridine derivative with emerging therapeutic potential in metabolic and inflammatory diseases, lacks a validated analytical method for pharmacokinetic studies in beagle dogs. A sensitive LC-MS/MS method was developed and validated for amlexanox in beagle dog plasma according to ICH M10 guide...
Objective: Repotrectinib is a next-generation tyrosine kinase inhibitor (TKI) recommended for adults with ROS1-positive, locally advanced or metastatic non-small cell lung cancer (NSCLC). The present study aimed to develop and validate a sensitive LC-MS/MS method for quantifying repotrectinib in rat plasma.
Methods: An...
Sathish Sabbani, G. Chakravarthi, N. Malothu· International Journal of App...· 0 citations
Background: Brexpiprazole is an atypical antipsychotic drug used to treat schizophrenia and agitation induced by Alzheimer's disease. Aim: The present study aimed to develop and validate a simple, rapid, sensitive, and stability-indicating UHPLC MS/MS method for measuring Brexpiprazole by using a dilute-and-shoot sampl...
Priyadharshini, Balachandar K, Sampangi Bharath et al.· Genetics and Molecular Resea...· 0 citations
The developed UHPLC-MS/MS method was successfully applied in a bioequivalence study involving 33 healthy volunteers following oral administration of a single 5 mL dose of Flucamox® 250 mg, enabling comprehensive pharmacokinetic evaluation while promoting sustainable and resource-efficient analytical practices.
M. Hegazy, Ashraf S. Ibrahim, M. Kenawy et al.· Analytical and Bioanalytical...· 0 citations
Ibuprofen is a nonsteroidal anti-inflammatory drug first launched in England in 1969, yet its pharmacokinetic profile in healthy Chinese volunteers remains insufficiently characterized. In this study, a sensitive and reliable ultra-high performance liquid chromatography-tandem mass spectrometry (LC-MS/MS) method wa...
Mei-Ah Yang, Kui He, Yu-Jie Mo et al.· Acta Chromatographica· 0 citations
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