Issue 8, 2018

Laurus nobilis (laurel) aqueous leaf extract's toxicological and anti-tumor activities in HPV16-transgenic mice

Abstract

Cancers induced by human papillomavirus (HPV) infection remain a significant public health threat, fueling the study of new therapies. Laurel (Laurus nobilis) compounds and extracts recently showed in vitro activity against HPV-transformed cell lines. This work aims to evaluate the in vivo efficacy and hepatic toxicity of a laurel extract in a transgenic mouse model of HPV16-induced cancer. The extract was administered in drinking water (20 mg per animal per day) for three consecutive weeks, using four experimental groups (n = 10) (group I: HPV16−/− without treatment, group II: treated HPV16−/−, group III: HPV16+/− without treatment and group IV: treated HPV16+/−). Following the treatment period, animals were sacrificed and skin samples were used to classify skin lesions histologically. Toxicological parameters included hematological and biochemical blood markers, splenic and hepatic histology and hepatic oxidative stress. The extract did not prevent the progression of HPV16-induced cutaneous lesions in this model. The treated wild-type animals showed mild hepatitis, while transgenic animals suffered weight loss. However, there were no changes concerning hematological, biochemical and hepatic oxidative stress markers.

Graphical abstract: Laurus nobilis (laurel) aqueous leaf extract's toxicological and anti-tumor activities in HPV16-transgenic mice

Article information

Article type
Paper
Submitted
24 Apr 2018
Accepted
10 Jul 2018
First published
11 Jul 2018

Food Funct., 2018,9, 4419-4428

Laurus nobilis (laurel) aqueous leaf extract's toxicological and anti-tumor activities in HPV16-transgenic mice

B. Medeiros-Fonseca, V. F. Mestre, B. Colaço, M. J. Pires, T. Martins, R. M. Gil da Costa, M. J. Neuparth, R. Medeiros, M. S. S. Moutinho, M. I. Dias, L. Barros, M. M. S. M. Bastos, L. Félix, C. Venâncio, I. C. F. R. Ferreira, L. M. Antunes and P. A. Oliveira, Food Funct., 2018, 9, 4419 DOI: 10.1039/C8FO00783G

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