A randomized trial comparing LY01011, biosimilar candidate, with the reference product denosumab (Xgeva®) in healthy

Yanhua Ding1, Yusi Liu1, Changlin Dou2

  • 1The Phase I Clinical Trial Unit of The First Hospital of Jilin University, Changchun, China.

Journal of Bone Oncology
|September 13, 2023
PubMed
Abstract

Insights

LY01011, a denosumab biosimilar, demonstrated pharmacokinetic and pharmacodynamic similarity to denosumab in healthy Chinese subjects. The study confirmed comparable safety and immunogenicity profiles, supporting its potential as a biosimilar alternative.

Area of Science:

  • Pharmacology
  • Immunology
  • Clinical Trials

Background:

  • Bone metastases complications, such as skeletal-related events, significantly impair patient quality of life and survival.
  • Denosumab (XGEVA®) is a critical treatment for preventing skeletal-related events in patients with bone metastases.
  • LY01011 is a fully human monoclonal antibody developed as a biosimilar to denosumab.

Purpose of the Study:

  • To evaluate the pharmacokinetic (PK) and pharmacodynamic (PD) similarity between LY01011 and denosumab.
  • To assess the safety and immunogenicity profiles of LY01011 compared to denosumab.
  • To support the development of LY01011 as a biosimilar to denosumab.

Main Methods:

  • A randomized, double-blind, single-dose, parallel-controlled phase 1 study in 168 healthy Chinese subjects.
  • Subjects received a single 120 mg subcutaneous dose of either LY01011 (n=85) or denosumab (n=83).
  • Primary PK endpoints (Cmax, AUC0→t), secondary PK parameters, PD, safety, and immunogenicity were analyzed.

Main Results:

  • Geometric mean ratios for Cmax and AUC0→t were within the 80%-125% acceptance range (98.13% and 100.32%, respectively).
  • PD parameters (AUEC0→t, Emax) also showed similarity with GMRs within the 80%-125% range (98.71% and 99.80%).
  • Safety profiles were comparable; adverse events and serious adverse events were similar and unrelated to LY01011. One subject in the denosumab group tested positive for anti-drug antibodies (ADA), while none in the LY01011 group did.

Conclusions:

  • LY01011 demonstrated pharmacokinetic and pharmacodynamic similarity to denosumab in healthy Chinese subjects.
  • The safety and immunogenicity profiles of LY01011 were comparable to denosumab.
  • These findings support LY01011 as a potential biosimilar to denosumab for preventing skeletal-related events.