2009The Open Drug Metabolism JournalOpen access

Examination of the Utility of the High Throughput In Vitro Metabolic Stability Assay to Estimate In Vivo Clearance in the Mouse

S. Sarawek, L. Li, X.Q Yu, Suzanne Rooney, A.M. Nouraldeen, Liam Moran, Lawrence A. Rodriguez, J Zhang, Alan Wilson

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Abstract

In vitro determination of metabolic stability is routinely used to assess the overall metabolic liability of compounds and for prioritization for in vivo studies.If in vitro metabolic stability data could be used to reliably predict in vivo clearance (CL), it would add significant value in the selection of compounds for in vivo pharmacokinetic and pharmacology studies.We have evaluated the utility of our in vitro metabolic stability screening assay to estimate in vivo CL in the mouse.The in vitro mouse clearances (CL in vitro ) of 146 structurally diverse compounds with metabolic stabilities > 30 %, were compared to mouse in vivo CL data.Approximately 45 % of the compounds showed agreement between in vivo CL and predicted CL in vitro within a 2-fold error criteria.The correlation appeared worse when correction for the extent of incorporation of plasma protein binding or both plasma and S9 bindings (i.e.~14 % and~ 28 % agreement, respectively).Classification of the compounds into three groups based on in vivo CL (<30 mL/min/kg, 30-70 mL/min/kg, and >70 mL/min/kg) did not show any improvement between in vivo CL and predicted CL in vitro .The percentage of compounds falling within the 2-fold error criteria for low CL, moderate CL and high CL groups were 54, 31 and 24 %, respectively.In conclusion, our analysis suggests that in vitro metabolic stability data, as routinely obtained in early ADME screening protocols, does not demonstrate a strong correlation with or predictivity for, absolute in vivo CL in the mouse.

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In vitro determination of metabolic stability is routinely used to assess the overall metabolic liability of compounds and for prioritization for in vivo studies.If in vitro metabolic stability data could be used to reliably predict in vivo clearance (CL), it would add significant value in the selection of compounds for in vivo pharmacokinetic and pharmacology studies.We have evaluated the utility of our in vitro metabolic stability screening assay to estimate in vivo CL in the mouse.The in vitro mouse clearances (CL in vitro ) of 146 structurally diverse compounds with metabolic stabilities > 30 %, were compared to mouse in vivo CL data.Approximately 45 % of the compounds showed agreement between in vivo CL and predicted CL in vitro within a 2-fold error criteria.The correlation appeared worse when correction for the extent of incorporation of plasma protein binding or both plasma and S9 bindings (i.e.~14 % and~ 28 % agreement, respectively).Classification of the compounds into three groups based on in vivo CL (<30 mL/min/kg, 30-70 mL/min/kg, and >70 mL/min/kg) did not show any improvement between in vivo CL and predicted CL in vitro .The percentage of compounds falling within the 2-fold error criteria for low CL, moderate CL and high CL groups were 54, 31 and 24 %, respectively.In conclusion, our analysis suggests that in vitro metabolic stability data, as routinely obtained in early ADME screening protocols, does not demonstrate a strong correlation with or predictivity for, absolute in vivo CL in the mouse.

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Available abstract

In vitro determination of metabolic stability is routinely used to assess the overall metabolic liability of compounds and for prioritization for in vivo studies.If in vitro metabolic stability data could be used to reliably predict in vivo clearance (CL), it would add significant value in the selection of compounds for in vivo pharmacokinetic and pharmacology studies.We have evaluated the utility of our in vitro metabolic stability screening assay to estimate in vivo CL in the mouse.The in vitro mouse clearances (CL in vitro ) of 146 structurally diverse compounds with metabolic stabilities > 30 %, were compared to mouse in vivo CL data.Approximately 45 % of the compounds showed agreement between in vivo CL and predicted CL in vitro within a 2-fold error criteria.The correlation appeared worse when correction for the extent of incorporation of plasma protein binding or both plasma and S9 bindings (i.e.~14 % and~ 28 % agreement, respectively).Classification of the compounds into three groups based on in vivo CL (<30 mL/min/kg, 30-70 mL/min/kg, and >70 mL/min/kg) did not show any improvement between in vivo CL and predicted CL in vitro .The percentage of compounds falling within the 2-fold error criteria for low CL, moderate CL and high CL groups were 54, 31 and 24 %, respectively.In conclusion, our analysis suggests that in vitro metabolic stability data, as routinely obtained in early ADME screening protocols, does not demonstrate a strong correlation with or predictivity for, absolute in vivo CL in the mouse.

Key concepts: In vivo, In vitro, ADME, Chemistry, Metabolic stability, Pharmacokinetics, Pharmacology, Biochemistry

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