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March 19, 2026Nature Communications0 citationsOpen Access

Multimodal imaging reveals a lysosomal drug reservoir that drives heterogeneous distribution of PARP inhibitors

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CMCarmen Ramirez MoncayoRRRestuadi RestuadiGZGuanying Zhang

Key Points

  • This research investigates how tumor heterogeneity influences the distribution and efficacy of PARP inhibitors.
  • Employs a patient-derived explant multi-modal imaging pipeline.
  • Analyzes cell-intrinsic accumulation of PARP inhibitors within tumors.
  • Utilizes spatial transcriptomics to identify drug-associated biological signatures.
  • Assesses changes in drug levels following perturbation of lysosomal content.
  • PARP inhibitor accumulation varied significantly both between patients and within tumors.
  • Regions with high drug concentration showed increased apoptotic and lysosomal signatures.
  • Cells with high levels of rucaparib exhibited better drug response compared to those with low levels.
  • Lysosomes were identified as drug reservoirs affecting the nuclear levels of PARP inhibitors.

Abstract

Abstract For all drugs, effective target engagement requires sufficient intracellular concentrations of drug to be reached, but whether tumour heterogeneity impacts drug distribution and efficacy is poorly studied. Poly (ADP-ribose) polymerase (PARP) inhibitors have transformed treatment opportunities for women with high-grade serous ovarian carcinoma, but resistance remains a clinical hurdle in this highly heterogeneous tumour type. Here, we present a patient-derived explant multi-modal imaging pipeline, which demonstrates that cell-intrinsic PARP inhibitor accumulation is highly variable, both between patients and within tumours. Spatial transcriptomics reveals enrichment of apoptotic and lysosomal signatures in high-drug regions. Rucaparib, an intrinsically fluorescent PARP inhibitor, accumulates heterogeneously at the single-cell level, with rucaparib-high cells demonstrating increased drug response relative to rucaparib-low. Mechanistically, lysosomal sequestration creates a rucaparib reservoir that determines drug levels in the nucleus. Perturbation of lysosomal content alters intracellular levels of weak base PARP inhibitors rucaparib and niraparib, but not olaparib. Together these data suggest that lysosomes act as a reservoir for a subset of PARP inhibitor drugs to improve drug response.

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Cite This Study

Moncayo et al. (2026) studied this question.

synapsesocial.com/papers/69bb92d1496e729e6298076chttps://doi.org/10.1038/s41467-026-70558-1
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