
High-Throughput Microsomal Stability Assay for Screening New Chemical Entities in Drug Discovery
Author(s) -
Massimiliano Fonsi,
Maria Vittoria Orsale,
Edith Monteagudo
Publication year - 2008
Publication title -
slas discovery
Language(s) - English
Resource type - Journals
eISSN - 2472-5560
pISSN - 2472-5552
DOI - 10.1177/1087057108323911
Subject(s) - pooling , chromatography , analyte , drug discovery , throughput , liquid chromatography–mass spectrometry , high throughput screening , computer science , tandem mass spectrometry , protocol (science) , chemistry , mass spectrometry , artificial intelligence , medicine , telecommunications , biochemistry , alternative medicine , pathology , wireless
In this work, the authors present a novel, robotic, automated protocol for assessing a metabolic stability protocol assembled on a Hamilton platform and a new strategy for pooling samples (cassette analysis). To increase the high throughput of the liquid chromatography (LC) step, fast chromatography and automated liquid chromatography tandem mass spectrometry (LC/MS/MS) analytical methods were also developed, and a rapid data analysis system was generated that converts peak areas obtained by LC/MS/MS in intrinsic clearance values. All of the steps of the microsomal stability assay were carefully studied and optimized. Standard errors and confidence intervals of the measured clearances were also automatically generated in the process to allow an immediate evaluation of the significance of observed values. Methods based on pooling analysis of 2 and 4 different analytes were compared with a standard method without pooling. A simple statistical treatment was used to show their equivalence. The different protocols developed were analyzed in terms of the best compromise between accuracy and high-throughput capabilities.
Discover
Journals
Proceedings
Books
Explore
Engineering & Computer Science
Health & Medical Sciences
Humanities, Literature & Arts
Life Sciences & Earth Sciences
Physics & Mathematics
Social Sciences
Chemical & Material Sciences
Business, Economics & Management