4.8 Article

Self-assembled Pt(II) metallacycles enable precise cancer combination chemotherapy

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2202255119

Keywords

self-assembly; supramolecular coordination complex; combination chemotherapy; targeted cancer therapy; drug delivery

Funding

  1. National Key Research and Development Program [2021YFA0910000]
  2. National Natural Science Foundation of China [21974040, 22177028]

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This study utilized self-assembly techniques to construct stable and soluble metallacycle nanoparticles for combination chemotherapy. The nanoparticles, loaded with two chemotherapy drugs, were internalized into cancer cells through folate-mediated targeting. The drugs were released in the reducing intracellular environment, leading to a synergistic anticancer effect.
Combination chemotherapy, which involves the simultaneous use of multiple anticancer drugs in adequate combinations to disrupt multiple mechanisms associated with tumor growth, has shown advantages in enhanced therapeutic efficacy and lower systemic toxicity relative to monotherapy. Herein, we employed coordination-driven self-assembly to construct discrete Pt(II) metallacycles as monodisperse, modular platforms for combining camptothecin and combretastatin A4, two chemotherapy agents with a disparate mechanism of action, in precise arrangements for combination chemotherapy. Formulation of the drug-loaded metallacycles with folic acid-functionalized amphiphilic diblock copolymers furnished nanoparticles with good solubility and stability in physiological conditions. Folic acids on the surface of the nanoparticles promote their internalization into cancer cells. The intracellular reductive environment of cancer cells induces the release of the drug molecules at an exact 1:1 ratio, leading to a synergistic anticancer efficacy. In vivo studies on tumor-bearing mice demonstrated the favorable therapeutic outcome and minimal side effects of the combination chemotherapy approach based on a self-assembled metallacycle.

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