Hydrodynamic cavitation (HC), as an effective, efficient, and scalable extraction technique for natural products, could enable the affordable production of valuable antioxidant extracts from plant resources. For the first time, whole pomegranate (Punica granatum L.) fruits, rich in bioactive phytochemicals endowed with anti-cancer properties, were extracted in water using HC. Aqueous fractions sequentially collected during the process (M1–M5) were lyophilized (L), filtered (A), or used as such, i.e., crude (C), and analyzed for their biochemical profile and in vitro antioxidant power. The fractions M3 and M4 from the L and C series showed the highest antiradical activity and phytochemical content. While the lyophilized form is preferable for application purposes, sample L-M3, which was produced faster and with lower energy consumption than M4, was used to assess the potential antiproliferative effect on human breast cancer line (AU565-PAR) and peripheral blood mononuclear (PBMC) cells from healthy donors. In a pilot study, cell growth, death, and redox state were assessed, showing that L-M3 significantly reduced tumor cell proliferation and intracellular oxygen reactive species. No effect on PBMCs was detected. Thus, the antioxidant phytocomplex extracted from pomegranate quickly (15 min), at room temperature (30 °C), and efficiently showed potential anticancer activity without harming healthy cells.

Minutolo, A., Gismondi, A., Chirico, R., Di Marco, G., Petrone, V., Fanelli, M., et al. (2023). Antioxidant phytocomplexes extracted from pomegranate (Punica granatum L.) using hydrodynamic cavitation show potential anticancer activity in vitro. ANTIOXIDANTS, 12(8) [10.3390/antiox12081560].

Antioxidant phytocomplexes extracted from pomegranate (Punica granatum L.) using hydrodynamic cavitation show potential anticancer activity in vitro

Minutolo, Antonella;Gismondi, Angelo;Chirico, Rossella;Di Marco, Gabriele;Petrone, Vita
;
Fanelli, Marialaura;D'Agostino, Alessia;Canini, Antonella;Grelli, Sandro;Matteucci, Claudia;
2023-01-01

Abstract

Hydrodynamic cavitation (HC), as an effective, efficient, and scalable extraction technique for natural products, could enable the affordable production of valuable antioxidant extracts from plant resources. For the first time, whole pomegranate (Punica granatum L.) fruits, rich in bioactive phytochemicals endowed with anti-cancer properties, were extracted in water using HC. Aqueous fractions sequentially collected during the process (M1–M5) were lyophilized (L), filtered (A), or used as such, i.e., crude (C), and analyzed for their biochemical profile and in vitro antioxidant power. The fractions M3 and M4 from the L and C series showed the highest antiradical activity and phytochemical content. While the lyophilized form is preferable for application purposes, sample L-M3, which was produced faster and with lower energy consumption than M4, was used to assess the potential antiproliferative effect on human breast cancer line (AU565-PAR) and peripheral blood mononuclear (PBMC) cells from healthy donors. In a pilot study, cell growth, death, and redox state were assessed, showing that L-M3 significantly reduced tumor cell proliferation and intracellular oxygen reactive species. No effect on PBMCs was detected. Thus, the antioxidant phytocomplex extracted from pomegranate quickly (15 min), at room temperature (30 °C), and efficiently showed potential anticancer activity without harming healthy cells.
2023
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore MED/07
Settore BIO/01
Settore BIO/09
English
anti-cancer; antiradicals; bioactive metabolites; green extraction; hydrodynamic cavitation; phytochemicals; pomegranate
Minutolo, A., Gismondi, A., Chirico, R., Di Marco, G., Petrone, V., Fanelli, M., et al. (2023). Antioxidant phytocomplexes extracted from pomegranate (Punica granatum L.) using hydrodynamic cavitation show potential anticancer activity in vitro. ANTIOXIDANTS, 12(8) [10.3390/antiox12081560].
Minutolo, A; Gismondi, A; Chirico, R; Di Marco, G; Petrone, V; Fanelli, M; D'Agostino, A; Canini, A; Grelli, S; Albanese, L; Centritto, M; Zabini, F; Matteucci, C; Meneguzzo, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/339703
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