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Drug Metabolism and Disposition: the Biological Fate of Chemicals|June 19, 2004
Metabolism and excretion of capravirine, a new non-nucleoside reverse transcriptase inhibitor, alone and in combination with ritonavir in healthy volunteersHai-Zhi Bu, William F Pool, Ellen Y Wu, et al.
Journal of Reproduction and Fertility. Supplement|January 1, 1987
Exogenous hormone regimens to utilize successfully mares in dioestrus (days 2-14 after ovulation) as embryo transfer recipientsK F Pool, J M Wilson, G W Webb, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|December 20, 2011
Pharmacokinetics, distribution, and metabolism of [14C]sunitinib in rats, monkeys, and humansBill Speed, Hai-Zhi Bu, William F Pool, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|May 25, 2004
Metabolic activation of troglitazone: identification of a reactive metabolite and mechanisms involvedKan He, Rasmy E Talaat, William F Pool, et al.
Plos One|May 18, 2021
Prolonged ex-vivo normothermic kidney perfusion: The impact of perfusate compositionMerel B F Pool, Tim L Hamelink, Harry van Goor, et al.
Drug Metabolism and Disposition: the Biological Fate of Chemicals|June 1, 1996
Distribution of tacrine and metabolites in rat brain and plasma after single- and multiple-dose regimens. Evidence for accumulation of tacrine in brain tissueW P McNally, W F Pool, M W Sinz, et al.
American Journal of Transplantation : Official Journal of the American Society of Transplantation and the American Society of Transplant Surgeons|January 6, 2024
Utilizing pathophysiological concepts of ischemia-reperfusion injury to design renoprotective strategies and therapeutic interventions for normothermic ex vivo kidney perfusionBaran Ogurlu, Tim L Hamelink, Isa M Van Tricht, et al.
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