Effect of Industrial Pollution in Puchuncaví Valley on the Medicinal Properties of Senecio fistulosus Poepp. ex Les (Asteraceae): Content of Phytoconstituents and Their Antioxidant and Cytotoxic Activities

Martinez-Lobos, Manuel; Tapia-Venegas, Estela; Celis-Pla, Paula; Villena, Joan; Jara-Gutierrez, Carlos; Lobos Pessini, Alexandra; Madrid-Villegas, Alejandro

Abstract

Senecio fistulosus, an endemic plant in Chile, is highly regarded for its medicinal properties and is popular in alternative medicine. It thrives even in polluted areas, like Puchuncavi Valley, Chile. Therefore, the study aimed to assess the impact of industrial pollution in Puchuncavi Valley, Chile, on the phytoconstituent content, as well as the antioxidant and cytotoxic activities, of S. fistulosus. Phenols, flavonoids, and anthraquinones content were measured, alongside the assessment of antioxidant activities. Additionally, a GC-MS analysis was conducted to profile the phytoconstituents, while the cytotoxic potential was evaluated in HT-29 and MCF-7 and cell line non-tumorigenic MCF-10. The Wild sample exhibited a greater concentration of phytoconstituents (0 to 169.48 mg center dot L-1) compared to the Commercial control (0 to 95.38 mg center dot L-1), directly correlating with its antioxidant activity. While the Wild species showed cytotoxic activity, the Commercial control demonstrated cytotoxic effects on MCF-10 and MCF-7. Noteworthy compounds identified were hexadecanoic acid (12.76 to 19.57% relative area) and (Z,Z,Z)-9,12,15-octadecatrienoic acid (18.36% relative area), with anticancer properties. In conclusion, the abiotic stress experienced by S. fistulosus led to higher phytoconstituent content and improved antioxidant activity when contrasted with the Commercial control. The Commercial species showed increased cytotoxic activity against both tumorigenic and non-tumorigenic cell lines.

Más información

Título según WOS: ID WOS:001099111300001 Not found in local WOS DB
Título de la Revista: MOLECULES
Volumen: 28
Número: 20
Editorial: MDPI
Fecha de publicación: 2023
DOI:

10.3390/molecules28207038

Notas: ISI