MING YI , , DEPARTMENT OF BREAST CENTER, THE FIRST AFFILIATED HOSPITAL, COLLEGE OF MEDICINE, ZHEJIANG UNIVERSITY, HANGZHOU, 310000, PEOPLE’S REPUBLIC OF CHINA INTRODUCTION: Immune exclusion in cold tumors is a major mechanism of immunotherapy resistance, and TGF-β signaling acts as a key orchestrator of this process. The clinical development of TGF-β/PD-(L)1 dual-targeting agents has seen both setbacks and breakthroughs, and a critical examination of this strategy is therefore timely and translationally relevant. AREAS COVERED: This work summarizes the mechanisms by which TGF-β drives immune exclusion through stromal remodeling, metabolic suppression, and immune cell regulation. It systematically analyzes preclinical and clinical evidence on bifunctional fusion proteins, represented by M7824 and SHR-1701, as well as bispecific antibodies. Key translational challenges, including therapeutic window constraints, biomarker development, and indication selection, are discussed. The literature search covered PubMed and major oncology conference proceedings on TGF-β/PD-(L)1 dual blockade. EXPERT OPINION: The success of TGF-β-targeted therapy depends on moving beyond broad pathway inhibition toward biomarker-guided patient selection and context-dependent intervention. Spatially or biologically restricted targeting, multi-parametric biomarker frameworks, and mechanism-driven combination regimens are likely to define the next phase of clinical development in this field.
Zhang et al. (Thu,) studied this question.