ArticleMolecular cancer therapeutics2026
A Novel Dual-Payload ADC Platform Integrating Exatecan and Triptolide to Enhance Antitumor Efficacy and Overcome Resistance.
Article in Molecular cancer therapeutics, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Recent progress and therapeutic strategies in the treatment of cervical neuroendocrine neoplasms (Review).International journal of molecular medicine · 2026Review
- Emerging organoids and organoids-on-chip platforms for translational development of antibody‒drug conjugates and next-generation bioconjugates.Acta pharmaceutica Sinica. B · 2026Review
- Development of a Homogeneous Trastuzumab-Triptolide Conjugate for Targeted Therapy of HER2-Overexpressing Ovarian Cancer.Bioconjugate chemistry · 2026Article
- Recent advances in function-enhanced antibody-drug conjugates: Antibody optimization and payload combination.Acta pharmacologica Sinica · 2026Article
- Advances and Future Directions in Antibody-Drug Conjugates: From Paradigm Shifts to Data-Driven Design.Cancers · 2026Review
- Advancements in Dual-Load Antibody-Drug Conjugates and Challenges with Quality Analysis.Pharmaceuticals (Basel, Switzerland) · 2026Review
- Evolution of the NCI antibody-drug conjugate portfolio: from chemical engineering to clinical complexity.Frontiers in medicine · 2026Article
- Monoclonal Antibodies and Derivatives: Therapeutic Tools for Cancer.Oncology research · 2026Review
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Authors and funding
14 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Antibody-drug conjugates (ADC) that utilize DNA topoisomerase I inhibitors, such as deruxtecan and SN-38, have significantly enhanced the efficacy of cancer treatment. However, the development of more effective ADCs to combat drug-resistant tumors remains a critical challenge. ADCs covalently link the topoisomerase I inhibitor exatecan and the RNA polymerase II inhibitor triptolide to the same antibody, thereby establishing a dual-killing mechanism against tumor cells. Through optimization of the linker design, this dual-payload ADC achieved precise drug delivery in vivo. Specifically, triptolide is initially released to downregulate the expression of the stress response protein heat shock protein 70 and the efflux pump P-glycoprotein in tumor cells, thereby significantly enhancing drug sensitivity and effectively overcoming resistance, followed by gradual exatecan release, further inhibiting tumor cell proliferation and survival. Experimental results demonstrated that this dual-payload ADC exhibits significant antitumor activity in both in vitro cell models and in vivo xenograft models, including cell line-derived xenograft and patient-derived xenograft models, successfully addressing the challenge of drug resistance encountered in traditional monotherapy. Additionally, non-Good Laboratory Practice-compliant toxicity studies have confirmed the favorable safety profile of this ADC. In summary, this study provides an innovative strategy for overcoming tumor resistance, demonstrating substantial potential for clinical translation, and offering promising therapeutic outcomes and prognosis for patients with cancer.
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