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  5. A nanomedicine approach to targeting cuproplasia in cancer: Labile copper sequestration using polydopamine nanoparticles blocks tumor growth in vivo through altering metabolism and redox homeostasis.

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Preprint
en
2023

A nanomedicine approach to targeting cuproplasia in cancer: Labile copper sequestration using polydopamine nanoparticles blocks tumor growth in vivo through altering metabolism and redox homeostasis.

0 Datasets

0 Files

en
2023
DOI: 10.26434/chemrxiv-2023-3cvfd

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Christopher J Chang
Christopher J Chang

University of California, Berkeley

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Javier Bonet‐Aleta
Miguel Encinas‐Giménez
Miku Oi
+8 more

Abstract

Copper plays critical roles as a metal active site cofactor and metalloallosteric signal for enzymes involved in cell proliferation and metabolism, making it an attractive target for cancer therapy. In this study, we investigated the efficacy of polydopamine nanoparticles (PDA NPs), classically applied for metal removal from water, as a therapeutic strategy for depleting intracellular labile copper pools in triple negative breast cancer models through the metal-chelating groups present on PDA surface. By using the activity-based sensing probe FCP-1, we could track the PDA-induced labile copper depletion while leaving total copper levels unchanged, and link it to the selective MDA-MB-231 cell death. Further mechanistic investigations revealed that PDA NPs increased reactive oxygen species (ROS) levels, potentially through the inactivation of superoxide dismutase 1 (SOD1), a copper-dependent antioxidant enzyme. Additionally, PDA NPs were found to interact with the mitochondrial membrane, resulting in an increase in mitochondrial membrane potential, which may contribute to enhanced ROS production. We employed an in vivo tumor model to validate the therapeutic efficacy of PDA NPs. Remarkably, in the absence of any additional treatment, the presence of PDA NPs alone led to a significant reduction in tumor volume by a factor of 1.66 after 22 days of tumor growth. Our findings highlight the potential of PDA NPs as a promising therapeutic approach for selectively targeting cancer by modulating copper levels and inducing oxidative stress, leading to tumor growth inhibition as shown in these triple negative breast cancer models.

How to cite this publication

Javier Bonet‐Aleta, Miguel Encinas‐Giménez, Miku Oi, Aidan T. Pezacki, Víctor Sebastián, Alba De Martino, Ana Martín-Pardillos, Pilar Martín‐Duque, José L. Hueso, Christopher J Chang, Jesús Santamarı́a (2023). A nanomedicine approach to targeting cuproplasia in cancer: Labile copper sequestration using polydopamine nanoparticles blocks tumor growth in vivo through altering metabolism and redox homeostasis.. , DOI: https://doi.org/10.26434/chemrxiv-2023-3cvfd.

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Publication Details

Type

Preprint

Year

2023

Authors

11

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.26434/chemrxiv-2023-3cvfd

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