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Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)

The endemic brown macroalga Fucus virsoides J. Agardh from the Adriatic Sea was in the focus of the present research. The volatiles of fresh (FrFv) and air-dried (DrFv) samples of F. virsoides obtained by headspace solid-phase microextraction (HS-SPME) and hydrodistillation (HD) were analyzed by gas...

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Autores principales: Jerković, Igor, Cikoš, Ana-Marija, Babić, Sanja, Čižmek, Lara, Bojanić, Krunoslav, Aladić, Krunoslav, Ul’yanovskii, Nikolay V., Kosyakov, Dmitry S., Lebedev, Albert T., Čož-Rakovac, Rozelindra, Trebše, Polonca, Jokić, Stela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145248/
https://www.ncbi.nlm.nih.gov/pubmed/33922234
http://dx.doi.org/10.3390/md19050235
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author Jerković, Igor
Cikoš, Ana-Marija
Babić, Sanja
Čižmek, Lara
Bojanić, Krunoslav
Aladić, Krunoslav
Ul’yanovskii, Nikolay V.
Kosyakov, Dmitry S.
Lebedev, Albert T.
Čož-Rakovac, Rozelindra
Trebše, Polonca
Jokić, Stela
author_facet Jerković, Igor
Cikoš, Ana-Marija
Babić, Sanja
Čižmek, Lara
Bojanić, Krunoslav
Aladić, Krunoslav
Ul’yanovskii, Nikolay V.
Kosyakov, Dmitry S.
Lebedev, Albert T.
Čož-Rakovac, Rozelindra
Trebše, Polonca
Jokić, Stela
author_sort Jerković, Igor
collection PubMed
description The endemic brown macroalga Fucus virsoides J. Agardh from the Adriatic Sea was in the focus of the present research. The volatiles of fresh (FrFv) and air-dried (DrFv) samples of F. virsoides obtained by headspace solid-phase microextraction (HS-SPME) and hydrodistillation (HD) were analyzed by gas chromatography equipped with flame ionization detector and mass spectrometry (GC-FID/MS). The major HS-FrFv compound was pentadecane (61.90–71.55%) followed by pentadec-1-ene (11.00–7.98%). In HS-DrFv, pentadec-1-ene was not present, and few lower aliphatic compounds appeared, as well as benzaldehyde and benzyl alcohol. In HD-FrFv, particularly abundant were alkenes (such as pentadec-1-ene (19.32%), or (E)-pentadec-7-ene (8.35%)). In HD-DrFv, more oxidation products were present (e.g., carbonyl compounds such as tridecanal (18.51%)). The fatty acids profile of freeze-dried sample (FdFv) after conversion to methyl esters was determined by GC-FID, and oleic acid was dominant (42.28%), followed by arachidonic acid (15.00%). High-performance liquid chromatography-high-resolution mass spectrometry with electrospray ionization (HPLC-ESI-HRMS) was used for the screening of less polar fractions (F3 and F4) of F. virsoides. Mono- and diglycerides of stearic, palmitic, oleic, and arachidonic acids were found. Terpenoids and steroids comprised the compounds C(20)H(30(32))O(2) and C(29)H(48)O((2)). Among carotenoids, fucoxanthin was identified. Chlorophyll derivatives were also found (C(55)H(74(72))N(4)O((5-7))), dominated by pheophytin a. The antioxidant activity of the fractions was investigated by in vitro assays (oxygen radical absorbance capacity (ORAC), reduction of radical cation (ABTS•(+)), 2,2-diphenyl-1-picryl-hydrazyl-hydrate (DPPH) assay, and ferric reducing antioxidant power (FRAP)) and by in vivo zebrafish model (along with fish embryotoxicity). In vitro experiments proved good radical scavenging abilities of F3 and F4 fractions, which were additionally supported by the protective effect against hydrogen peroxide-induced oxidative stress in zebrafish embryos.
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spelling pubmed-81452482021-05-26 Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model) Jerković, Igor Cikoš, Ana-Marija Babić, Sanja Čižmek, Lara Bojanić, Krunoslav Aladić, Krunoslav Ul’yanovskii, Nikolay V. Kosyakov, Dmitry S. Lebedev, Albert T. Čož-Rakovac, Rozelindra Trebše, Polonca Jokić, Stela Mar Drugs Article The endemic brown macroalga Fucus virsoides J. Agardh from the Adriatic Sea was in the focus of the present research. The volatiles of fresh (FrFv) and air-dried (DrFv) samples of F. virsoides obtained by headspace solid-phase microextraction (HS-SPME) and hydrodistillation (HD) were analyzed by gas chromatography equipped with flame ionization detector and mass spectrometry (GC-FID/MS). The major HS-FrFv compound was pentadecane (61.90–71.55%) followed by pentadec-1-ene (11.00–7.98%). In HS-DrFv, pentadec-1-ene was not present, and few lower aliphatic compounds appeared, as well as benzaldehyde and benzyl alcohol. In HD-FrFv, particularly abundant were alkenes (such as pentadec-1-ene (19.32%), or (E)-pentadec-7-ene (8.35%)). In HD-DrFv, more oxidation products were present (e.g., carbonyl compounds such as tridecanal (18.51%)). The fatty acids profile of freeze-dried sample (FdFv) after conversion to methyl esters was determined by GC-FID, and oleic acid was dominant (42.28%), followed by arachidonic acid (15.00%). High-performance liquid chromatography-high-resolution mass spectrometry with electrospray ionization (HPLC-ESI-HRMS) was used for the screening of less polar fractions (F3 and F4) of F. virsoides. Mono- and diglycerides of stearic, palmitic, oleic, and arachidonic acids were found. Terpenoids and steroids comprised the compounds C(20)H(30(32))O(2) and C(29)H(48)O((2)). Among carotenoids, fucoxanthin was identified. Chlorophyll derivatives were also found (C(55)H(74(72))N(4)O((5-7))), dominated by pheophytin a. The antioxidant activity of the fractions was investigated by in vitro assays (oxygen radical absorbance capacity (ORAC), reduction of radical cation (ABTS•(+)), 2,2-diphenyl-1-picryl-hydrazyl-hydrate (DPPH) assay, and ferric reducing antioxidant power (FRAP)) and by in vivo zebrafish model (along with fish embryotoxicity). In vitro experiments proved good radical scavenging abilities of F3 and F4 fractions, which were additionally supported by the protective effect against hydrogen peroxide-induced oxidative stress in zebrafish embryos. MDPI 2021-04-22 /pmc/articles/PMC8145248/ /pubmed/33922234 http://dx.doi.org/10.3390/md19050235 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jerković, Igor
Cikoš, Ana-Marija
Babić, Sanja
Čižmek, Lara
Bojanić, Krunoslav
Aladić, Krunoslav
Ul’yanovskii, Nikolay V.
Kosyakov, Dmitry S.
Lebedev, Albert T.
Čož-Rakovac, Rozelindra
Trebše, Polonca
Jokić, Stela
Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)
title Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)
title_full Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)
title_fullStr Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)
title_full_unstemmed Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)
title_short Bioprospecting of Less-Polar Constituents from Endemic Brown Macroalga Fucus virsoides J. Agardh from the Adriatic Sea and Targeted Antioxidant Effects In Vitro and In Vivo (Zebrafish Model)
title_sort bioprospecting of less-polar constituents from endemic brown macroalga fucus virsoides j. agardh from the adriatic sea and targeted antioxidant effects in vitro and in vivo (zebrafish model)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8145248/
https://www.ncbi.nlm.nih.gov/pubmed/33922234
http://dx.doi.org/10.3390/md19050235
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