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2D exfoliated black phosphorus influences healthy and cancer prostate cell behaviors

Academic Article
Publication Date:
2021
abstract:
Nowadays, prostate cancer is the most widespread tumour in worldwide male population. Actually, brachytherapy is the most advanced radiotherapy strategy for the local treatment of prostate cancer. It consists in the placing of radioactive sources closed to the tumour side thus killing cancer cells. However, brachytherapy causes the same adverse effects of external-beam radiotherapy. Therefore, alternative treatment approaches are required for enhancing radiotherapy effectiveness and reducing toxic symptoms. Nanostructured exfoliated black phosphorus (2D BP) may represent a strategic tool for local cancer therapy because of its capability to induce singlet oxygen production and act as photosensitizer. Hence, we investigated 2D BP in vitro effect on healthy and cancer prostate cell behavior. 2D BP was obtained through liquid exfoliation. 2D BP effect on healthy and cancer prostate cell behaviors was analyzed by investigating cell viability, oxidative stress and inflammatory marker expression. 2D BP inhibited prostate cancer cell survival, meanwhile promoted healthy prostate cell survival in vitro by modulating oxidative stress and immune response with and without near-infrared light (NIR)-irradiation. Nanostructured 2D BP is able to inhibit in vitro prostate cancer cells survival and preserve healthy prostate cell vitality through the control of oxidative stress and immune response, respectively.
Iris type:
01.01 Articolo in rivista
Keywords:
exfoliated black phosphorus; bone cancer treatment
List of contributors:
Peruzzini, Maurizio; Ambrosio, Luigi; Caporali, Maria; Raucci, MARIA GRAZIA; SERRANO RUIZ, Manuel; Soriente, Alessandra; Fasolino, Ines
Authors of the University:
AMBROSIO LUIGI
CAPORALI MARIA
FASOLINO INES
RAUCCI MARIA GRAZIA
SERRANO RUIZ MANUEL
SORIENTE ALESSANDRA
Handle:
https://iris.cnr.it/handle/20.500.14243/422447
Published in:
SCIENTIFIC REPORTS
Journal
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URL

https://www.nature.com/articles/s41598-021-85310-6
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