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Preclinical evaluation of ELP-004 in mice

  • Jamie L. McCall
  • , Werner J. Geldenhuys
  • , Lisa J. Robinson
  • , Michelle R. Witt
  • , Peter M. Gannett
  • , Björn C.G. Söderberg
  • , Harry C. Blair
  • , Jonathan Soboloff
  • , John B. Barnett

Research output: Contribution to journalArticlepeer-review

Abstract

This study provides a detailed understanding of the preclinical pharmacokinetics and metabolism of ELP-004, an osteoclast inhibitor in development for the treatment of bone erosion. Current treatments for arthritis, including biological disease-modifying antirheumatic drugs, are not well-tolerated in a substantial subset of arthritis patients and are expensive; therefore, new treatments are needed. Pharmacokinetic parameters of ELP-004 were tested with intravenous, oral, and subcutaneous administration and found to be rapidly absorbed and distributed. We found that ELP-004 was non-mutagenic, did not induce chromosome aberrations, non-cardiotoxic, and had minimal off-target effects. Using in vitro hepatic systems, we found that ELP-004 is primarily metabolized by CYP1A2 and CYP2B6 and predicted metabolic pathways were identified. Finally, we show that ELP-004 inhibits osteoclast differentiation without suppressing overall T-cell function. These preclinical data will inform future development of an oral compound as well as in vivo efficacy studies in mice.
Original languageEnglish
Article numbere1230
JournalPharmacology Research and Perspectives
Volume12
Issue number4
DOIs
StatePublished - Aug 2024

Bibliographical note

Publisher Copyright:
© 2024 The Author(s). Pharmacology Research & Perspectives published by British Pharmacological Society and American Society for Pharmacology and Experimental Therapeutics and John Wiley & Sons Ltd.

Funding

This work was funded in part by the National Institutes of Health (NIH) STTR [Grant R42AR074812] to WJG (WVU) and JBB (ExesaLibero Pharma, Inc). Cytokine data were obtained at the WVU Flow Cytometry & Single Cell Core Facility (RRID:SCR_017738) which is supported by the Institutional Development Awards (IDeA) from the National Institute of General Medical Sciences of the NIH under grant numbers P30GM121322 (TME CoBRE) and P20GM103434 (INBRE). LC/MS/MS analyses performed at WVU Metabolomics & Small Molecule Analysis Facility was supported by the WVU Cancer Institute, the WVU HSC Office of Research & Graduate Education, and NIH grant P20GM103434.

FundersFunder number
National Institutes of HealthR42AR074812, P30GM121322 , P20GM103434 , P20GM103434

    ASJC Scopus Subject Areas

    • Neurology
    • General Pharmacology, Toxicology and Pharmaceutics

    Keywords

    • CYP450
    • metabolism
    • mice
    • osteoclast
    • pharmacokinetics
    • preclinical
    • Cell Differentiation/drug effects
    • Administration, Oral
    • Mice, Inbred C57BL
    • Humans
    • Osteoclasts/drug effects
    • Male
    • Animals
    • Antirheumatic Agents/pharmacology
    • Female
    • Mice
    • Drug Evaluation, Preclinical
    • T-Lymphocytes/drug effects

    Disciplines

    • Neurology
    • Pharmacology, Toxicology and Environmental Health

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