Structure–activity relationships of central nervous system penetration by fatty acid amide hydrolase (FAAH)-targeted thyromimetic prodrugs

JM Meinig, SJ Ferrara, T Banerji, T Banerji… - ACS Medicinal …, 2018 - ACS Publications
JM Meinig, SJ Ferrara, T Banerji, T Banerji, HS Sanford-Crane, D Bourdette, TS Scanlan
ACS Medicinal Chemistry Letters, 2018ACS Publications
Thyroid hormone (TH) action is of clinical interest in treating demyelinating diseases of the
central nervous system (CNS). Two amide prodrugs of sobetirome, a potent thyroid hormone
agonist, were previously shown to significantly improve CNS selective distribution of the
parent drug through hydrolysis in the CNS by fatty acid amide hydrolase (FAAH). This
concept is elaborated upon here with a series of 29 amide prodrugs targeting FAAH. We
identify that conservative aliphatic modifications such as the N-methyl (4), N-ethyl (5), N …
Thyroid hormone (TH) action is of clinical interest in treating demyelinating diseases of the central nervous system (CNS). Two amide prodrugs of sobetirome, a potent thyroid hormone agonist, were previously shown to significantly improve CNS selective distribution of the parent drug through hydrolysis in the CNS by fatty acid amide hydrolase (FAAH). This concept is elaborated upon here with a series of 29 amide prodrugs targeting FAAH. We identify that conservative aliphatic modifications such as the N-methyl (4), N-ethyl (5), N-fluoroethyl (15), and N-cyclopropyl (18) substantially favor selective CNS distribution of the parent drug in mice. Additionally, lead compounds exhibit moderate to good rates of hydrolysis at FAAH in vitro suggesting both enzymatic and physicochemical properties are important parameters for optimization. Both 4 and 15 were orally bioavailable while retaining appreciable CNS parent drug delivery following an oral dose. The pharmacokinetic parameters of 4 over 24 h postdose (i.v. and p.o.) were determined.
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