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April 5, 2026Cancer Research0 citations

Abstract 4423: Advancing ADC therapeutics with next-generation site-specific glycan conjugation and dual-payload flexibility

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WTWei-Chien TangYCYu-Hung ChenCCChih-Kang Chang

Key Points

  • This research aims to develop advanced antibody-drug conjugates (ADCs) using site-specific glycan conjugation and dual-payload flexibility for enhanced efficacy.
  • Utilized a proprietary dual-function enzyme for site-specific glycan conjugation.
  • Constructed ADCs with varying drug-to-antibody ratios from DAR2 to DAR16.
  • Developed ADCs carrying two distinct payloads using microtubule and Topoisomerase I inhibitors.
  • Conducted preclinical studies to evaluate cytotoxicity and antitumor activity.
  • Site-specific dual-payload ADCs showed superior cytotoxicity compared to standard single payload ADCs.
  • Demonstrated promising antitumor activity across various tumor models.
  • Maintained structural integrity of the antibodies and avoided aggregation.

Abstract

Abstract The unique technology by enabling site-specific glycan-based conjugation via a proprietary dual-function enzyme offers an innovative approach for developing antibody-drug conjugates (ADCs). This advanced technology facilitates the production of homogeneous ADCs at a specific drug-to-antibody ratio (DAR) from DAR2 to DAR16, while maintaining the integrity and function of the native antibody. A key feature of the technology is its proprietary linker, specifically designed to enhance payload stability and enable selective release within the tumor, thereby potentially broadening the therapeutic index.Expanding upon its core capabilities, the new technologies serve as a dual-payload platform, enabling the development of site-specific ADCs carrying two distinct payloads. This technology allows for flexible DAR construction, including both equal and asymmetric payload ratios, providing versatility to tailor ADCs for optimized therapeutic outcomes. Moreover, the ability to specify distinct conjugation sites further enhances its flexibility for diverse payload combinations, including cytotoxic agents, immunomodulators, anti-tumor inhibitors, and degraders. The platform also accommodates both mono- and multi-specific antibodies, broadening its applicability across therapeutic modalities.Here we used microtubule inhibitor and Topoisomerase I inhibitor to demonstrate the site-specific dual-payload platform. In preclinical studies, the site-specific dual-payload ADCs exhibited superior cytotoxicity and promising antitumor activity in various tumor models, compared to approved and benchmark single payload ADCs, underscoring their potential for enhanced antitumor efficacy. Importantly, these ADCs maintained structural integrity andavoided antibody aggregation. These features provide a strong foundation for the future clinical development of biomolecules derived from this site-specific dual-payload technology.Through the integration of glycan engineering, dual-function enzymatic control, proprietary linker chemistry, and flexible payload conjugation, the site-specific dual-payload technology suite provides a robust and adaptable solution to overcome key limitations in current ADC design. Continued innovation and clinical translation of the site-specific dual-payload platform may unlock new therapeutic possibilities to overcome drug resistance and is applicable across oncology and beyond. Citation Format: Wei-Chien Tang, Yu-Hung Chen, Chih-Kang Chang, Ting-Wei Liu, Hung-Yi Lin, Wei-Jhen Huang, Chi-Huan Lu, Ren-Yu Hsu, Nan-Hsuan Wang, Ya-Chi Chen, Teng-Yi Huang. Advancing ADC therapeutics with next-generation site-specific glycan conjugation and dual-payload flexibility abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 4423.

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Tang et al. (2026) studied this question.

synapsesocial.com/papers/69d1fc8ea79560c99a0a22f1https://doi.org/10.1158/1538-7445.am2026-4423
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract 1691: Site-specific dual-payload antibody conjugation enhances antitumor efficacy2026
  2. 2Abstract 4435: Transforming ADC development with novel linker architectures and payload optimization2026
  3. 3Abstract 1699: GlycoConnect© ADC toolbox expansion with dual payload ADC (dpADC) technology2026
  4. 4Abstract 3173: XYD-295 and XYD-338: Novel hydrophilic site specific linker platform enables next generation dual payload ADCs with enhanced efficacy and safety2026
  5. 5Abstract 3149: Development of a novel site-specific ADC glycan platform with potential for improved in vivo efficacy and stability of the ADC in animal studies2024 · 1 citations