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February 8, 2026Communications Chemistry0 citationsOpen Access

Ionic liquid-coated gold core polymeric nanoparticles for selective neutrophil hitchhiking towards endometriosis treatment

PVPriyavrat VashisthLCLauren T. D. ClercDHDuoyi Hu

Key Points

  • The study aims to develop ionic liquid-coated gold core polymeric nanoparticles for targeted treatment of endometriosis.
  • Synthesis of Au-PLGA-IL nanoparticles via modified solvent evaporation method.
  • Functionalization of nanoparticles for neutrophil selectivity.
  • In vitro biocompatibility testing with endometrial 12Z cells and human blood.
  • Ex vivo targeting analysis using fluorescence-activated cell sorting and confocal microscopy.
  • Evaluation of apoptosis in 12Z cells through photothermal therapy.
  • Au-PLGA-IL nanoparticles demonstrated effective neutrophil co-localization in human whole blood.
  • Near-infrared irradiation induced significant apoptosis in 12Z cells.
  • The system showed promising biocompatibility and functionality for endometriosis treatment.

Abstract

Endometriosis is a chronic inflammatory gynecological condition that affects millions of women and people with uteri globally, with limited available treatments. In this work, we explore using ionic liquid (IL)-coated gold core polymeric nanoparticles (NPs), Au-PLGA-IL NPs, for selective neutrophil co-localization for the eventual development of targeted treatment of endometriosis via photothermal therapy. These NPs were synthesized by a modified solvent evaporation method and functionalized with ILs that confer neutrophil selectivity. In vitro biocompatibility was demonstrated using endometrial 12Z cells and a hemolysis assay with human female blood. Ex vivo studies confirmed superior neutrophil targeting ability in human female whole blood, quantified using fluorescence-activated cell sorting (FACS) and confocal laser scanning microscopy (CLSM) to visualize the NP co-localization. Upon near-infrared irradiation (1 W/cm², 5 min), the Au-PLGA-IL NPs induced significant apoptosis in 12Z cells through localized hyperthermia. This study introduces the first system integrating the plasmonic properties of AuNPs with PLGA's biocompatibility, enhanced by functional versatility of ILs, providing a promising platform for endometriosis treatment.

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Cite This Study

Vashisth et al. (2026) studied this question.

synapsesocial.com/papers/6988292d0fc35cd7a8849469https://doi.org/10.1038/s42004-026-01909-8
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