Novel trifluoromethylated enobosarm analogues with potent anti-androgenic activity in vitro and tissue selectivity in vivo
File(s)1535-7163.MCT-18-0037.full.pdf (10.2 MB)
Accepted version
Author(s)
Dart, D Alwyn
Kandil, Sahar
Tommasini-Ghelfi, Serena
Serrano de Almeida, Gilberto
Bevan, Charlotte L
Type
Journal Article
Abstract
Prostate cancer often develops anti-androgen resistance, possibly via androgen receptor (AR) mutations which change antagonists to agonists. Novel therapies with increased anticancer activity, whilst overcoming current drug resistance are urgently needed. Enobosarm has anabolic effects on muscle and bone whilst having no effect on the prostate. Here we describe the activity of novel chemically modified enobosarm analogues. The rational addition of bis-trifluoromethyl groups into ring B of enobosarm, profoundly modified their activity, pharmacokinetic and tissue distribution profiles. These chemical structural modifications resulted in an improved AR binding affinity - by increasing the molecular occupational volume near helix 12 of AR. In vitro, the analogues SK33 and SK51 showed very potent antiandrogenic activity, monitored using LNCaP/AR-Luciferase cells where growth, PSA and luciferase activity were used as AR activity measurements. These compounds were 10-fold more potent than bicalutamide and 100-fold more potent than enobosarm within the LNCaP model. These compounds were also active in LNCaP/BicR cells with acquired bicalutamide resistance. In vivo, using the AR-Luc reporter mice, these drugs showed potent AR inhibitory activity in the prostate and other AR-expressing tissues e.g. testes, seminal vesicles and brain. These compounds do not inhibit AR activity in the skeletal muscle, and spleen - thus indicating a selective tissue inhibitory profile. These compounds were also active in vivo in the Pb-PTen deletion model. SK33 and SK51 have significantly different and enhanced activity profiles compared to enobosarm, and are ideal candidates for further development for prostate cancer therapy with potentially fewer side effects.
Date Issued
2018-09-01
Date Acceptance
2018-06-07
Citation
Molecular Cancer Therapeutics, 2018, 17 (9), pp.1846-1858
ISSN
1535-7163
Publisher
American Association for Cancer Research
Start Page
1846
End Page
1858
Journal / Book Title
Molecular Cancer Therapeutics
Volume
17
Issue
9
Copyright Statement
© 2018, American Association for Cancer Research.
Sponsor
Imperial College Trust
Prostate Cancer UK
Identifier
https://www.ncbi.nlm.nih.gov/pubmed/29895558
PII: 1535-7163.MCT-18-0037
Grant Number
WSCC_P66912
PG13-033 / PO 18080
Subjects
Science & Technology
Life Sciences & Biomedicine
Oncology
ANDROGEN RECEPTOR MODULATORS
HUMAN PROSTATE-CANCER
WITHDRAWAL SYNDROME
MEDICINAL CHEMISTRY
FLUORINE
DESIGN
GENE
PROGRESSION
ANTAGONISTS
MUTATIONS
Oncology & Carcinogenesis
1112 Oncology and Carcinogenesis
1115 Pharmacology and Pharmaceutical Sciences
Publication Status
Published
Coverage Spatial
United States
Date Publish Online
2018-07-13