Addressing the Metabolic Stability of Antituberculars through Machine Learning

ACS Medicinal Chemistry Letters
2017.0

Abstract

We present the first prospective application of our mouse liver microsomal (MLM) stability Bayesian model. CD117, an antitubercular thienopyrimidine tool compound that suffers from metabolic instability (MLM t1/2 < 1 min), was utilized to assess the predictive power of our new MLM stability model. The S-substituent was removed, a set of commercial reagents was utilized to construct a virtual library of 411 analogues, and our MLM stability model was applied to prioritize 13 analogues for synthesis and biological profiling. In MLM stability assays, all 13 analogues had superior metabolic stability to the parent compound, and six new analogues had acceptable MLM t1/2 values greater than or equal to 60 min. It is noteworthy that whole-cell efficacy and lack of relative mammalian cell cytotoxicity could not be predicted simultaneously. These results support the utility of our new MLM stability model in chemical tool and drug discovery optimization efforts.

Knowledge Graph

Similar Paper

Addressing the Metabolic Stability of Antituberculars through Machine Learning
ACS Medicinal Chemistry Letters 2017.0
Development of Predictive Classification Models for Whole Cell Antimycobacterial Activity of Benzothiazinones
Journal of Medicinal Chemistry 2022.0
Structure based drug design and in vitro metabolism study: Discovery of N-(4-methylthiophenyl)-N,2-dimethyl-cyclopenta[d]pyrimidine as a potent microtubule targeting agent
Bioorganic &amp; Medicinal Chemistry 2018.0
Discovery of new leads against Mycobacterium tuberculosis using scaffold hopping and shape based similarity
Bioorganic &amp; Medicinal Chemistry 2017.0
Property based optimization of δ-lactam HDAC inhibitors for metabolic stability
Bioorganic &amp; Medicinal Chemistry Letters 2010.0
Identification of thiophene-benzenesulfonamide derivatives for the treatment of multidrug-resistant tuberculosis
European Journal of Medicinal Chemistry 2022.0
A novel molecule with notable activity against multi-drug resistant tuberculosis
Bioorganic &amp; Medicinal Chemistry Letters 2015.0
Identification of novel benzothiopyranones with ester and amide motifs derived from active metabolite as promising leads against Mycobacterium tuberculosis
European Journal of Medicinal Chemistry 2021.0
Studies on molecular properties prediction, antitubercular and antimicrobial activities of novel quinoline based pyrimidine motifs
Bioorganic &amp; Medicinal Chemistry Letters 2014.0
Potency and metabolic stability: a molecular hybrid case in the design of novel PF74-like small molecules targeting HIV-1 capsid protein
RSC Medicinal Chemistry 2021.0