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Photoacoustic polydopamine-indocyanine green (PDA-ICG) nanoprobe for detection of senescent cells

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Peer-reviewed

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Abstract

Abstract Cellular senescence is considered an important tumour suppression mechanism in response to damage and oncogenic stress in early lesions. However, when senescent cells are not immune-cleared and persist in the tumour microenvironment, they can drive a variety of tumour-promoting activities, including cancer initiation, progression, and metastasis. Additionally, there is compelling evidence demonstrating a direct connection between chemo(radio)therapy-induced senescence and the development of drug resistance and cancer recurrence. Therefore, detection of senescent cells in tissues holds great promise for predicting cancer occurrence earlier, assessing tumour progression, aiding patient stratification and prognosis, and informing about the efficacy of potential senotherapies. However, effective detection of senescent cells is limited by lack of biomarkers and readout strategies suitable for in vivo clinical imaging. To this end, a nanoprobe composed of biocompatible polydopamine (PDA) nanoparticle doped with FDA-approved indocyanine green (ICG) dye, namely PDA-ICG, was designed as a contrast agent for senescence detection using photoacoustic imaging (PAI). In an in vitro model of chemotherapy-induced senescence, PDA-ICG nanoprobe showed an elevated uptake in senescent cells relative to cancer cells. In addition to its improved photostability, 2.5-fold enhancement in photoacoustic signal relative to ICG was observed. Collectively, the results indicate that the PDA-ICG nanoprobe has the potential to be used as a contrast agent for senescence detection of chemotherapy-induced senescence using PAI.

Description

Acknowledgements: The authors would like to thank Dr. Andrea Bistrovic-Popov for her help with cytotoxicity study, Dr. Heather Greer for her help with electron microscopy, and the staff of Microanalysis facilities and Mass Spectrometry (Asha Boodhun, Roberto Canales, and Dijana Matak-Vinkovic) of the Department of Chemistry, the University of Cambridge for their help with elemental analysis and mass spectrometry.


Funder: Gates Cambridge Scholarship


Funder: W. D. Armstrong Studentship


Funder: The Cambridge Trust

Journal Title

Scientific Reports

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Journal ISSN

2045-2322

Volume Title

14

Publisher

Springer Science and Business Media LLC

Rights and licensing

Except where otherwised noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/
Sponsorship
Cancer Research UK (C9545/A29580, C9545/A29580)
EPSRC (EP/R003599/1)
Cancer Research UK (CRUK) Cambridge Centre Early Detection Programme (RG86786)
CRUK Programme Foundation Award (C62187/A29760)
CRUK Early Detection Project Award (C62187/A26989)
Medical Research Council (MRC) New Investigator Research Grant (NIRG) (MR/R000530/1)
Darley/Sands Downing College Fellowship (G109261)
CRUK Early Detection Primer Award (EDDPMA-May23/100051)
EPSRC IRC grant (EPSRC IRC, EP/S009000/1)