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Adedayo Adedoyin

Publications and source records attributed to Adedayo Adedoyin.

3 recordsLinked to original sources

ADME-Tox in drug discovery: integration of experimental and computational technologies.

Over the past ten years, in vitro experimental tools to characterize ADME-Tox profiles of compounds have been applied in early stages of the drug discovery process to increase the success rate of discovery programmes and to progress better candidates into drug development. Application of in silico ADME-Tox models has further enhanced discovery support, enabling virtual screening of compounds and thus, application of ADME-Tox at every stage of the discovery process. Ultimately, effective and efficient ADME-Tox support of discovery will depend on a complementary and synergistic use of experimental and in silico ADME-Tox.

Animals↗

Coordinated intrahepatic and extrahepatic regulation of cytochrome p4502D6 in healthy subjects and in patients after liver transplantation.

Cytochrome p450 (CYP) 2D6 activity exhibits wide intersubject variation even among individuals with similar genotypes in whom the active enzyme is expressed. There is, therefore, a need to understand the mechanisms involved in determining its activity. The relationship of messenger ribonucleic acid (mRNA) expression to CYP2D6 activity has been evaluated in hepatic and extrahepatic tissues to test the hypothesis of coordinated regulation. In human liver microsomes, there was a greater than 25-fold variation in both bufuralol hydroxylation and concentration of mRNA for CYP2D6, with a significant association between variables (n = 20; Spearman correlation coefficient [r(s)] = 0.85, P <.001). In normal subjects, there was a similar extent of interindividual variation in in vivo activity of CYP2D6, measured as the debrisoquin (INN, debrisoquine) recovery ratio, and in mRNA for CYP2D6 in peripheral blood mononuclear cells, with a significant association between variables (n = 78; r(s) = 0.56 [95% confidence interval, 0.35 to 0.73], P <.001), whereas no association was found between mRNA for CYP2D6 and CYP2E1 activity. Recipients of liver transplants, at a time of stable liver function, had a similar relationship between debrisoquin recovery ratio and concentration of mRNA for CYP2D6 in peripheral blood mononuclear cells (n = 27; r(s) = 0.74 [95% confidence interval, -0.16 to 0.44], P <.001). Three recipients, who had CYP2D6*4/*4 genotypes, remained phenotypically poor metabolizers for CYP2D6 after liver transplantation. Collectively, these results imply that transcriptional regulation of mRNA for CYP is a major determinant of in vivo activity and that regulation of intrahepatic and extrahepatic enzymes is coordinated, possibly through a mechanism that is predominantly extrahepatic.

Actins↗

A high-throughput method for enzyme kinetic studies.

A simple and flexible setup for conducting drug metabolism studies is described in this report. A heating block was designed for the Multimek liquid handler platform for incubation of multiple samples at 37 degrees C in a 96-well format. This setup enables the rapid performance of drug metabolism experiments on a large number of samples. In this report, the authors present the validation of the system by 1) showing reproducible and consistent determination of the in vitro half-life of midazolam in every well across the entire plate and 2) determination of metabolic parameter values of midazolam, testosterone, diclofenac, warfarin, and dextromethorphan and inhibition parameter values of quinidine and ketoconazole, all comparable to literature values. In addition, the authors demonstrate the application of the setup to determining the metabolic stability of a set of proprietary compounds, the inhibition of activity of cytochrome P450 (CYP) enzymes, and the conduct of a single combination experiment that can simultaneously determine the metabolic stability and CYP inhibition activity. Overall, the system represents a simple, high-throughput and useful tool for drug metabolism screening in drug discovery.

Aryl Hydrocarbon Hydroxylases↗