From Phase Ib/ II to Seamless Phase II / III : A Simulation‐Based Discussion of Design Strategies for Dose Optimization and Confirmatory Phase

The emergence of targeted therapies and immunotherapies has challenged the traditional "more is better" paradigm underlying maximum tolerated dose (MTD)-based trials, as dose escalation beyond receptor saturation often yields limited additional efficacy while substantially increasing toxicity. In response, the U.S. Food and Drug Administration's Project Optimus emphasizes dose optimization (DO) prior to confirmatory studies to ensure a favorable benefit-risk profile. Motivated by this shift, we systematically evaluate strategies for incorporating DO at different stages of oncology drug development. We compare three approaches: (1) DO combined with proof-of-concept in a seamless Phase Ib/II study prior to a registrational trial; (2) DO conducted in an operational seamless Phase II/III design; and (3) DO embedded within an inferential seamless Phase II/III design. Simulation studies were performed across a range of efficacy-toxicity scenarios to assess dose-selection accuracy, statistical operating characteristics, expected sample size, and overall study duration. Under the simulated settings, both the Phase Ib/II DO strategy and the inferential seamless Phase II/III design reduced total development time compared with the operational seamless approach. The inferential seamless design achieved the lowest expected sample size and the shortest average trial duration while maintaining high power under the primary simulated scenarios. The comparative performance of the three strategies also depended on how well the short-term dose-selection endpoints predicted long-term survival. Overall, DO can be effectively implemented at multiple stages of clinical development. The optimal strategy should balance statistical rigor, development speed, practical feasibility, and the suitability of the endpoints used for dose selection.

Authors

Institutions

Publication Details

Journal
Clinical Pharmacology & Therapeutics
Published
2026-10-09
DOI
https://doi.org/10.1002/cpt.70522
Primary Topic
Statistical Methods in Clinical Trials
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
OCT
article

From Phase Ib/ II to Seamless Phase II / III : A Simulation‐Based Discussion of Design Strategies for Dose Optimization and Confirmatory Phase

Y Li, Haiyang Sheng, Annan Deng, Xiaochen Zhu et al.
Clinical Pharmacology & Therapeutics
Statistical Methods in Clinical Trials
article

From Phase Ib/ II to Seamless Phase II / III : A Simulation‐Based Discussion of Design Strategies for Dose Optimization and Confirmatory Phase

Y Li, Haiyang Sheng, Annan Deng, Xiaochen Zhu, Shu‐Pang Huang, Tian Chen
article en

Abstract

The emergence of targeted therapies and immunotherapies has challenged the traditional "more is better" paradigm underlying maximum tolerated dose (MTD)-based trials, as dose escalation beyond receptor saturation often yields limited additional efficacy while substantially increasing toxicity. In response, the U.S. Food and Drug Administration's Project Optimus emphasizes dose optimization (DO) prior to confirmatory studies to ensure a favorable benefit-risk profile. Motivated by this shift, we systematically evaluate strategies for incorporating DO at different stages of oncology drug development. We compare three approaches: (1) DO combined with proof-of-concept in a seamless Phase Ib/II study prior to a registrational trial; (2) DO conducted in an operational seamless Phase II/III design; and (3) DO embedded within an inferential seamless Phase II/III design. Simulation studies were performed across a range of efficacy-toxicity scenarios to assess dose-selection accuracy, statistical operating characteristics, expected sample size, and overall study duration. Under the simulated settings, both the Phase Ib/II DO strategy and the inferential seamless Phase II/III design reduced total development time compared with the operational seamless approach. The inferential seamless design achieved the lowest expected sample size and the shortest average trial duration while maintaining high power under the primary simulated scenarios. The comparative performance of the three strategies also depended on how well the short-term dose-selection endpoints predicted long-term survival. Overall, DO can be effectively implemented at multiple stages of clinical development. The optimal strategy should balance statistical rigor, development speed, practical feasibility, and the suitability of the endpoints used for dose selection.

Clinical Pharmacology & Therapeutics
Bristol-Myers Squibb (Germany) (DE), AstraZeneca (Netherlands) (NL), AstraZeneca (Japan) (JP), Bristol-Myers Squibb (Sweden) (SE), New York University (US)
Openalex Percentile: Top 11%
Statistical Methods in Clinical Trials
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.