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Rationally Designed, Conformationally Constrained Inverse Agonists of RORγt-Identification of a Potent, Selective Series with Biologic-Like in Vivo Efficacy.

Authors :
Marcoux D
Duan JJ
Shi Q
Cherney RJ
Srivastava AS
Cornelius L
Batt DG
Liu Q
Beaudoin-Bertrand M
Weigelt CA
Khandelwal P
Vishwakrishnan S
Selvakumar K
Karmakar A
Gupta AK
Basha M
Ramlingam S
Manjunath N
Vanteru S
Karmakar S
Maddala N
Vetrichelvan M
Gupta A
Rampulla RA
Mathur A
Yip S
Li P
Wu DR
Khan J
Ruzanov M
Sack JS
Wang J
Yarde M
Cvijic ME
Li S
Shuster DJ
Borowski V
Xie JH
McIntyre KW
Obermeier MT
Fura A
Stefanski K
Cornelius G
Hynes J Jr
Tino JA
Macor JE
Salter-Cid L
Denton R
Zhao Q
Carter PH
Dhar TGM
Source :
Journal of medicinal chemistry [J Med Chem] 2019 Nov 14; Vol. 62 (21), pp. 9931-9946. Date of Electronic Publication: 2019 Oct 31.
Publication Year :
2019

Abstract

RORγt is an important nuclear receptor that regulates the production of several pro-inflammatory cytokines such as IL-17 and IL-22. As a result, RORγt has been identified as a potential target for the treatment of various immunological disorders such as psoriasis, psoriatic arthritis, and inflammatory bowel diseases. Structure and computer-assisted drug design led to the identification of a novel series of tricyclic RORγt inverse agonists with significantly improved in vitro activity in the reporter (Gal4) and human whole blood assays compared to our previous chemotype. Through careful structure activity relationship, several potent and selective RORγt inverse agonists have been identified. Pharmacokinetic studies allowed the identification of the lead molecule 32 with a low peak-to-trough ratio. This molecule showed excellent activity in an IL-2/IL-23-induced mouse pharmacodynamic study and demonstrated biologic-like efficacy in an IL-23-induced preclinical model of psoriasis.

Details

Language :
English
ISSN :
1520-4804
Volume :
62
Issue :
21
Database :
MEDLINE
Journal :
Journal of medicinal chemistry
Publication Type :
Academic Journal
Accession number :
31638797
Full Text :
https://doi.org/10.1021/acs.jmedchem.9b01369