Abstract: Melatonin displays antitumor activity in several types of malignancies; however, the best delivery route and the underlying mechanisms are still unclear. Alternative non-invasive delivery route based on transdermal administration of melatonin by cryopass-laser treatment demonstrated efficiency in reducing the progression of LNCaP prostate tumor cells xenografted into nude mice by impairing the biochemical pathways affecting redox balance. Here, we investigated the impact of transdermal melatonin on the tumor dimension, microenvironment structure, and SIRT1-modulated pathways. Two groups (vehicle cryopass-laser and melatonin cryopass-laser) were treated for 6 weeks (3 treatments per week), and the tumors collected were analyzed for hematoxylin eosin staining, sirius red, and SIRT1 modulated proteins such as PGC-1α, PPARγ, and NFkB. Melatonin in addition to simple laser treatment was able to boost the antitumor cancer activity impairing the tumor microenvironment, increasing the collagen structure around the tumor, and modulating the altered SIRT1 pathways. Transdermal application is effective, safe, and feasible in humans as well, and the significance of these findings necessitates further studies on the antitumor mechanisms exerted by melatonin.

Melatonin Modulates the SIRT1-Related Pathways via TransdermalCryopass-Laser Administration in Prostate Tumor Xenograft / F. Bonomini, G. Favero, A. Petroni, R. Paroni, R. Rezzani. - In: CANCERS. - ISSN 2072-6694. - 2023:15(2023 Oct 02), pp. 4908.1-4908.15. [10.3390/cancers15204908]

Melatonin Modulates the SIRT1-Related Pathways via TransdermalCryopass-Laser Administration in Prostate Tumor Xenograft

A. Petroni;R. Paroni
Supervision
;
2023

Abstract

Abstract: Melatonin displays antitumor activity in several types of malignancies; however, the best delivery route and the underlying mechanisms are still unclear. Alternative non-invasive delivery route based on transdermal administration of melatonin by cryopass-laser treatment demonstrated efficiency in reducing the progression of LNCaP prostate tumor cells xenografted into nude mice by impairing the biochemical pathways affecting redox balance. Here, we investigated the impact of transdermal melatonin on the tumor dimension, microenvironment structure, and SIRT1-modulated pathways. Two groups (vehicle cryopass-laser and melatonin cryopass-laser) were treated for 6 weeks (3 treatments per week), and the tumors collected were analyzed for hematoxylin eosin staining, sirius red, and SIRT1 modulated proteins such as PGC-1α, PPARγ, and NFkB. Melatonin in addition to simple laser treatment was able to boost the antitumor cancer activity impairing the tumor microenvironment, increasing the collagen structure around the tumor, and modulating the altered SIRT1 pathways. Transdermal application is effective, safe, and feasible in humans as well, and the significance of these findings necessitates further studies on the antitumor mechanisms exerted by melatonin.
Keywords: melatonin; oxidative stress; tumor; sirtuin1; proliferator-activated receptor gamma; PPAR-gamma coactivator 1-alpha; nuclear factor kappa B
Settore BIO/12 - Biochimica Clinica e Biologia Molecolare Clinica
Settore BIO/16 - Anatomia Umana
Settore BIOS-12/A - Anatomia umana
Settore BIOS-09/A - Biochimica clinica e biologia molecolare clinica
2-ott-2023
10-ott-2023
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1128055
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