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.

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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