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UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models

The aqueous extract of the Argentinean native plant, Prosopis strombulifera (PsAE), presents cytotoxicity against human cancer cell lines by inducing cytostasis, necrosis and apoptosis; with diminution of clonogenic survival; without genotoxic effects nor oral animal toxicity. Until now, the chemica...

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Autores principales: Persia, Fabio Andrés, Troncoso, Mariana Elizabeth, Rinaldini, Estefanía, Simirgiotis, Mario, Tapia, Alejandro, Bórquez, Jorge, Mackern-Oberti, Juan Pablo, Hapon, María Belén, Gamarra-Luques, Carlos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7005552/
https://www.ncbi.nlm.nih.gov/pubmed/32055742
http://dx.doi.org/10.1016/j.heliyon.2020.e03353
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author Persia, Fabio Andrés
Troncoso, Mariana Elizabeth
Rinaldini, Estefanía
Simirgiotis, Mario
Tapia, Alejandro
Bórquez, Jorge
Mackern-Oberti, Juan Pablo
Hapon, María Belén
Gamarra-Luques, Carlos
author_facet Persia, Fabio Andrés
Troncoso, Mariana Elizabeth
Rinaldini, Estefanía
Simirgiotis, Mario
Tapia, Alejandro
Bórquez, Jorge
Mackern-Oberti, Juan Pablo
Hapon, María Belén
Gamarra-Luques, Carlos
author_sort Persia, Fabio Andrés
collection PubMed
description The aqueous extract of the Argentinean native plant, Prosopis strombulifera (PsAE), presents cytotoxicity against human cancer cell lines by inducing cytostasis, necrosis and apoptosis; with diminution of clonogenic survival; without genotoxic effects nor oral animal toxicity. Until now, the chemical extract composition and its in vivo antitumoral properties remain unknown; these studies are the aim of the current work. The PsAE was characterized by chemical fingerprinting and the metabolome was identified by tandem UHPLC-PDA-HESI-Q-orbitrap® mass spectrometry. Colorectal tumors were induced by DMH administration and melanomas resulted from B16-F0 S.C. cells injection; then, animals were treated orally with PsEA. To correlate in vivo results with in vitro cytotoxicity, B16-F0 cell were cultured to determine: cell proliferation and viability by dye exclusion assays, MTT and CFSE dilution; cell cycle distribution by flow cytometry; and immunoblotting of p21(cip1), PCNA, cleaved caspase 3, cleaved PARP and TUBA1A. Based on UHPLC-OT-MS and PDA analysis, twenty-six compounds were identified, including: 5 simple organic acids, 4 phenolic acids, 4 procyanidins, 11 flavonoids, and 2 oxylipins. On C57BL6 mice, PsAE significantly increases the median survival on colorectal cancer and reduces the final volume and weight of melanomas. Over cultured cells, the treatment induce over-expression of p21, cytostasis by G2/M cell cycle arrest and apoptosis; while, on in vivo melanomas, treatment up-regulates p21 and slightly decreases PCNA. In conclusion, PsAE is composed by phenolic compounds which demonstrate cytotoxic and antitumoral properties when is orally administrated. Presented results support future research of PsAE as a potential phytomedicine for cancer treatment.
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spelling pubmed-70055522020-02-13 UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models Persia, Fabio Andrés Troncoso, Mariana Elizabeth Rinaldini, Estefanía Simirgiotis, Mario Tapia, Alejandro Bórquez, Jorge Mackern-Oberti, Juan Pablo Hapon, María Belén Gamarra-Luques, Carlos Heliyon Article The aqueous extract of the Argentinean native plant, Prosopis strombulifera (PsAE), presents cytotoxicity against human cancer cell lines by inducing cytostasis, necrosis and apoptosis; with diminution of clonogenic survival; without genotoxic effects nor oral animal toxicity. Until now, the chemical extract composition and its in vivo antitumoral properties remain unknown; these studies are the aim of the current work. The PsAE was characterized by chemical fingerprinting and the metabolome was identified by tandem UHPLC-PDA-HESI-Q-orbitrap® mass spectrometry. Colorectal tumors were induced by DMH administration and melanomas resulted from B16-F0 S.C. cells injection; then, animals were treated orally with PsEA. To correlate in vivo results with in vitro cytotoxicity, B16-F0 cell were cultured to determine: cell proliferation and viability by dye exclusion assays, MTT and CFSE dilution; cell cycle distribution by flow cytometry; and immunoblotting of p21(cip1), PCNA, cleaved caspase 3, cleaved PARP and TUBA1A. Based on UHPLC-OT-MS and PDA analysis, twenty-six compounds were identified, including: 5 simple organic acids, 4 phenolic acids, 4 procyanidins, 11 flavonoids, and 2 oxylipins. On C57BL6 mice, PsAE significantly increases the median survival on colorectal cancer and reduces the final volume and weight of melanomas. Over cultured cells, the treatment induce over-expression of p21, cytostasis by G2/M cell cycle arrest and apoptosis; while, on in vivo melanomas, treatment up-regulates p21 and slightly decreases PCNA. In conclusion, PsAE is composed by phenolic compounds which demonstrate cytotoxic and antitumoral properties when is orally administrated. Presented results support future research of PsAE as a potential phytomedicine for cancer treatment. Elsevier 2020-02-05 /pmc/articles/PMC7005552/ /pubmed/32055742 http://dx.doi.org/10.1016/j.heliyon.2020.e03353 Text en © 2020 Published by Elsevier Ltd. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Persia, Fabio Andrés
Troncoso, Mariana Elizabeth
Rinaldini, Estefanía
Simirgiotis, Mario
Tapia, Alejandro
Bórquez, Jorge
Mackern-Oberti, Juan Pablo
Hapon, María Belén
Gamarra-Luques, Carlos
UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models
title UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models
title_full UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models
title_fullStr UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models
title_full_unstemmed UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models
title_short UHPLC–Q/Orbitrap/MS/MS fingerprinting and antitumoral effects of Prosopis strombulifera (LAM.) BENTH. queous extract on allograft colorectal and melanoma cancer models
title_sort uhplc–q/orbitrap/ms/ms fingerprinting and antitumoral effects of prosopis strombulifera (lam.) benth. queous extract on allograft colorectal and melanoma cancer models
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7005552/
https://www.ncbi.nlm.nih.gov/pubmed/32055742
http://dx.doi.org/10.1016/j.heliyon.2020.e03353
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