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January 22, 2026Nature Communications5 citationsOpen Access

Expanding the payload scope in antibody-drug conjugates by delivery of hydroxy-containing drugs through self-immolative phosphoramidates

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POPhilipp OchtropAJAnil P. JagtapJFJan G. Felber

Key Points

  • The aim is to enhance the payload diversity and effectiveness of antibody-drug conjugates using phosphoramidate-based linkers.
  • Developed phosphoramidate-based self-immolative linkers for stable drug attachment and release.
  • Tested various hydroxy-containing cytotoxins, including camptothecins and gemcitabine, in vivo.
  • Evaluated pharmacokinetics and efficacy of the new linker approach compared to existing ADCs.
  • Demonstrated superior stability and drug release in target cells compared to approved camptothecin ADCs.
  • Achieved targeted delivery of 10 different hydroxy-containing drugs with varied modes of action.
  • Illustrated enhanced pharmacokinetics and clinical potential of gemcitabine through the new linker system.

Abstract

Despite recent advances in targeted drug delivery, approved Antibody-Drug-Conjugates (ADCs) are still limited by the delivery of a restricted set of payloads with limited modes of action (MOA). Versatile linkers, applicable to functional groups prevalent across diverse pharmacophores are needed to expand this space. We present phosphoramidate-based self-immolative linker-units that facilitate stable attachment in serum and traceless drug release in the target cell of aliphatic and aromatic alcohols. Studies with camptothecins show that stability and release are tunable and that various intracellular trigger events can be exploited to ensure traceless drug delivery. Superior stability, in vivo efficacy, and pharmacokinetics (PK) compared to approved camptothecin ADCs are demonstrated. Moreover, we report targeted delivery of 10 different hydroxy-containing cytotoxins with different intracellular MOAs. In vivo studies with gemcitabine show excellent PK and efficacy, unlocking gemcitabine's full potential and illustrating the ability of the phosphoramidate-based linker system to expand the payload space for ADCs.

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Cite This Study

Ochtrop et al. (2026) studied this question.

synapsesocial.com/papers/6971bd26642b1836717e1d15https://doi.org/10.1038/s41467-026-68605-y
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