Phase I trial design for solid tumor studies of targeted, non-cytotoxic agents: theory and practice

Wendy R Parulekar1, Elizabeth A Eisenhauer

  • 1National Cancer Institute of Canada Clinical Trials Group, Queen's University, Kingston, Ontario, Canada. wparulekar@ctg.queensu.ca

Abstract

Insights

Phase I cancer drug studies often rely on toxicity for dose selection. New targeted therapies may require different methods, like molecular drug effect measures, for optimal dosing in Phase II trials.

Area of Science:

  • Oncology
  • Pharmacology
  • Clinical Trial Design

Background:

  • Targeted, non-cytotoxic anticancer agents, like kinase inhibitors, challenge traditional Phase I trial dose-finding based solely on toxicity.
  • Maximum tolerated dose may not be the most appropriate surrogate for effective dose with these novel agents.
  • Optimal methods for selecting the recommended Phase II dose for targeted therapies are not well-established.

Purpose of the Study:

  • To review strategies used for recommended Phase II dose selection in completed Phase I studies of targeted, non-cytotoxic anticancer agents.
  • To identify current practices and gaps in early-phase drug development for novel cancer therapies.

Main Methods:

  • A systematic review of 60 Phase I study publications involving 31 single targeted agents was conducted.
  • Data abstracted included patient population, starting dose, dose escalation methods, and determination of the recommended Phase II dose.
  • The inclusion of correlative studies was also assessed.

Main Results:

  • Most Phase I studies (36/60) used toxicity as the primary endpoint for recommended Phase II dose selection.
  • Pharmacokinetic data was used in 8 studies.
  • Molecular endpoints or functional imaging were rarely incorporated into study design or used for primary dose selection.

Conclusions:

  • Current Phase I studies for targeted anticancer agents predominantly utilize traditional toxicity-based endpoints.
  • Further research is necessary to develop and validate molecular measures of drug effect for early-phase development.
  • Integrating novel endpoints is crucial for optimizing dose selection of targeted therapies.