Shotgun: A Bayesian seamless phase I-II design to accelerate the development of targeted therapies and immunotherapy

Liyun Jiang1, Ruobing Li2, Fangrong Yan3

  • 1Research Center of Biostatistics and Computational Pharmacy, China Pharmaceutical University, Nanjing, China; Department of Biostatistics, The University of Texas MD Anderson Cancer Center, Houston, TX, 77030, USA.

Insights

This study introduces a novel Bayesian seamless phase I-II "shotgun" trial design for simultaneous evaluation of new antitumor drugs across multiple cancer types. This efficient design accelerates drug development by identifying effective treatments faster and with higher probability.

Area of Science:

  • Oncology
  • Clinical Trial Design
  • Biostatistics

Background:

  • Conventional drug development phases and cancer indications are inefficient for novel therapies.
  • Targeted therapies and immunotherapies necessitate adaptive trial designs.

Purpose of the Study:

  • To propose a Bayesian seamless phase I-II "shotgun" design for evaluating new antitumor agents.
  • To simultaneously assess safety and efficacy across multiple cancer indications.
  • To introduce a clustered Bayesian hierarchical model (CBHM) for efficient interim analyses.

Main Methods:

  • Bayesian seamless phase I-II "shotgun" design with an initial dose-finding phase.
  • Seamless transition to indication-specific cohort expansions with patient rollover.
  • Clustered Bayesian hierarchical model (CBHM) for adaptive information sharing across indications.

Main Results:

  • The "shotgun" design demonstrated substantially higher probabilities of discovering responsive indications compared to conventional methods.
  • The proposed design maintained a reasonable false discovery rate.
  • CBHM improved the efficiency of interim analyses in adaptive trials.

Conclusions:

  • The Bayesian seamless phase I-II "shotgun" design accelerates antitumor drug development.
  • This approach builds a robust foundation for subsequent phase III trials.
  • The CBHM methodology offers an efficient design for basket trials.

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