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The elucidation of species-specific receptor pharmacology: a case study using subtype selective
Adeoluwa A Adeluola1, Hanna S Radomska1, Tyler A Wilson2
1Pharmaceutics and Pharmacology, The Ohio State University, United States.
Abstract:
Estrogen receptors are essential pharmacological targets for treating hormonal disorders and estrogen-dependent malignancies. Selective activation of estrogen receptor (ER) β is hypothesized to provide therapeutic benefit with reduced risk of unwanted estrogenic side-effects associated with ERα activity. However, activating ERβ without activating α is challenging due to the high sequence and structural homology between the receptor subtypes. We assessed the impact of structural modifications to the parent compound OSU-ERβ-12 on receptor subtype binding selectivity using cell-free binding assays. Functional selectivity was evaluated by transactivation in HEK-293 cells overexpressing human or murine estrogen receptors. In vivo selectivity was examined through the uterotrophic effects of the analogs after oral administration in estrogen-naïve female mice. Furthermore, we evaluated the in vivo pharmacokinetics of the analogs following single dose IV and oral administration. Regarding selectivity, a single compound exhibited greater functional selectivity than OSU-ERβ-12 for human ERβ. However, like others in the meta-carborane series, its poor in vivo pharmacokinetics limit its suitability for further development. Surprisingly, and at odds with their pharmacokinetic and in vitro human activity data, most analogs potently induced uterotrophic effects in estrogen-naïve female mice. Further investigation of activity in HEK293 cells expressing murine estrogen receptors revealed species-specific differences in the ER-subtype selectivity of these analogs. Our findings highlight species-specific receptor pharmacology and the challenges it poses to characterizing developmental therapeutics in preclinical species. Significance Statement This study investigates para- and meta-substituted carborane analogs targeting estrogen receptors, revealing the greater selectivity of carborane analogs for human ERβ compared to the mouse homolog. These findings shed light on the intricacies of using preclinical species in drug development to predict human pharmacology. The report also provides insights for the refinement and optimization of carborane analogs as potential therapeutic agents for estrogen-related disease states.
Insights
Developing selective estrogen receptor beta (ERβ) agonists is crucial for treating hormone-related conditions. This study found carborane analogs show promise for human ERβ but face challenges with preclinical species differences and pharmacokinetics.
Area of Science:
- Medicinal Chemistry
- Pharmacology
- Endocrinology
Background:
- Estrogen receptors (ERs) are key targets for hormonal disorders and cancers.
- Selective ERβ activation offers therapeutic potential with fewer side effects than ERα activation.
- Achieving ERβ selectivity is difficult due to high homology between ERα and ERβ.
Purpose of the Study:
- To assess structural modifications of OSU-ERβ-12 for improved ER subtype binding selectivity.
- To evaluate functional and in vivo selectivity of carborane analogs.
- To investigate in vivo pharmacokinetics and species-specific differences in ER pharmacology.
Main Methods:
- Cell-free binding assays to determine receptor subtype selectivity.
- Transactivation assays in HEK-293 cells overexpressing human or murine ERs.
- Uterotrophic assays in mice and pharmacokinetic studies following IV and oral administration.
Main Results:
- One analog showed improved functional selectivity for human ERβ over ERα.
- Poor in vivo pharmacokinetics limited the development of some analogs.
- Most analogs induced potent uterotrophic effects in mice, indicating species-specific activity.
- Significant species-specific differences were observed in ER-subtype selectivity between human and murine receptors.
Conclusions:
- Carborane analogs demonstrate potential for targeting human ERβ.
- Species-specific pharmacology presents challenges in preclinical drug development.
- Further optimization of carborane analogs is needed for therapeutic applications in estrogen-related diseases.
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