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March 3, 2026ACS Applied Nano Materials2 citations

Encapsulation of a Cyclometalated Iridium(III) Photosensitizer into Nanosized Micelles for Oncosis-Inducing Photodynamic Therapy

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ALAntonio Linero-ArtiagaNMNicolás MontesdeocaZPZisis Papadopoulos

Key Points

  • Nanosized micelles induce potent therapeutic effects in cancer cells and tumor spheroids, targeting oncosis.
  • Photocatalytic production of singlet oxygen was confirmed alongside the oxidation of NADH within particles.
  • Mechanistic investigations revealed reactive oxygen species-mediated disruption of cell membranes and mitochondrial dysfunction.
  • Relying on oncosis presents a novel approach to overcome challenges associated with traditional apoptosis-inducing drugs.

Abstract

The reliance of many anticancer agents on apoptosis often limits their therapeutic efficacy and contributes to the development of drug resistance. To overcome these challenges, alternative mechanisms of cell death such as oncosis have garnered increasing attention. However, few metal complexes capable of inducing oncosis have been reported to date. In this study, we describe the polymeric encapsulation of a cyclometalated iridium(III) complex within Pluronic F-127 to form nanosized micelles for oncosis-inducing photodynamic therapy. Upon light activation, these nanoparticles exhibited photocatalytic production of singlet oxygen and oxidation of NADH. The nanoparticles demonstrated potent therapeutic effects in cancer cells and tumor spheroids at low nanomolar concentrations under irradiation. Mechanistic investigations revealed that the therapeutic action was mediated by reactive oxygen species (ROS)-induced disruption of the cell membrane, mitochondrial dysfunction, ATP depletion, and morphological changes characteristic of oncotic cell death.

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Cite This Study

Linero-Artiaga et al. (2026) studied this question.

synapsesocial.com/papers/69a7678ebadf0bb9e87e165ehttps://doi.org/10.1021/acsanm.5c05384
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