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February 26, 2026Nature Communications0 citationsOpen Access

B7-H3-mediated cis-inhibition of EGFR by a tumor-selective bispecific antibody enhances anti-tumor efficacy and minimizes toxicities

JGJian GuanTCTiongsun ChiaBLBin Li

Key Points

  • This research aims to enhance the efficacy of anti-EGFR therapies by developing a bispecific antibody that targets both B7-H3 and EGFR.
  • Conducted bioinformatics and histopathological analyses to assess B7-H3 expression in tumors and healthy tissues.
  • Developed IBI334, a bispecific antibody targeting B7-H3 and EGFR through an unbiased functional screen.
  • Evaluated the efficacy of IBI334 in preclinical models, focusing on EGFR occupancy and receptor degradation.
  • Conducted cryogenic electron microscopy to study the B7-H3-antibody interaction and toxicological assessments in non-human primates.
  • IBI334 demonstrated superior EGFR occupancy and enhanced ligand-blocking efficacy compared to conventional EGFR antibodies.
  • The bispecific antibody showed significant suppression of downstream EGFR signaling, leading to potent antitumor activity.
  • Toxicological evaluations indicated no EGFR-related adverse effects at high doses, revealing a favorable safety profile.

Abstract

Therapeutic targeting of epidermal growth factor receptor (EGFR) in solid tumors faces significant limitations due to on-target/off-tumor toxicities, underscoring the urgent need for tumor-selective anti-EGFR therapies. Comprehensive bioinformatics and histopathological analyses identify marked upregulation of B7-H3 across EGFR-positive malignancies, contrasting with its minimal expression in healthy tissues. Leveraging an unbiased functional screen of bispecific antibodies (bsAbs) combining diverse B7-H3 and EGFR binders, we develop IBI334, a EGFR/B7-H3 bsAb exhibiting exceptional tumor selectivity. In preclinical models, IBI334 outperforms conventional EGFR antibodies by demonstrating superior EGFR occupancy, enhanced ligand-blocking efficacy, accelerated receptor degradation, and potent suppression of downstream EGFR signaling. Mechanistic studies demonstrate B7-H3-mediated cis-inhibition. The human B7-H3 extracellular domain (ECD) in complex with anti-B7-H3 Fab is resolved by cryo-EM, revealing critical residues for the antibody-B7-H3 interaction. IBI334 demonstrates robust antitumor activity in vitro and in vivo across EGFR-driven tumor models and synergized effectively with KRAS inhibitors. Toxicological evaluations in non-human primates reveals a favorable safety profile, with no EGFR-related adverse effects observed at doses up to 120 mg/kg over 4 weeks. Supported by these preclinical findings, IBI334 has advanced to a phase 1 clinical trial (NCT05774873) for advanced/metastatic solid tumors. EGFR-targeted therapy is often used in patients with EGFR-driven cancer but is limited by on-target/off-tumor toxicities. Here, the authors develop a bispecific antibody targeting both EGFR and B7-H3 and demonstrate improved EGFR targeting and tumor selectivity in preclinical models of multiple solid tumors.

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Cite This Study

Guan et al. (2026) studied this question.

synapsesocial.com/papers/699fe32295ddcd3a253e6c69https://doi.org/10.1038/s41467-026-69703-7
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