Chemical Characterization of Brown and Red Seaweed from Southern Peru, a Sustainable Source of Bioactive and Nutraceutical Compounds
Author
dc.contributor.author
Vilcanqui, Yesica
Author
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Mamani Apaza, Luis Omar
Author
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Flores, Marcos
Author
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Ortiz Viedma, Jaime Alejandro
Author
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Romero Palacios, Nalda Marcela
Author
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Mariotti Celis, María Salomé
Author
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Huamán Castilla, Nils Leander
Admission date
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2022-12-05T22:32:37Z
Available date
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2022-12-05T22:32:37Z
Publication date
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2021
Cita de ítem
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Agronomy 2021, 11, 1669
es_ES
Identifier
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10.3390/agronomy11081669
Identifier
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https://repositorio.uchile.cl/handle/2250/189619
Abstract
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The southern coast of Peru presents a wide diversity of seaweed, which could be used as a new sustainable source of nutritional and bioactive compounds. For the first time, we chemically characterized two species of brown (Macrocystis pyrifera) and red (Chondracanthus chamissoi) Peruvian seaweed. Both species contained significant amounts of proteins (5-12%), lipids (0.16-0.74%), carbohydrates (43.29-62.65%) and minerals (1300-1800 mg kg(-1) dw: dry weight). However, the profiles of amino acids, fatty acids and minerals were highly dependent on species type. C. chamissoi had a higher content of essential amino acids and minerals than M. pyrifera (170% and 45%, respectively), while the presence of polyunsaturated fatty acids (omega 6) as well as the content of tocopherols was higher in M. pyrifera (15.77 g 100 g(-1) and 2.37 mu g 100 g(-1), respectively). Additionally, both species presented significant concentrations of total polyphenols (39-59 mg GAE g(-1)) and a high antioxidant capacity (67-98 mu M TE g(-1)). Although M. pyrifera and C. chamissoi seem to be excellent raw materials for the food and nutraceutical industry, both species contained toxic heavy metals (cadmium: Cd and nickel: Ni) which could affect the safety of their direct use. Therefore, new separation strategies that allow the selective recovery of nutrients and bioactive compounds from Peruvian seaweed are required.
es_ES
Lenguage
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en
es_ES
Publisher
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MDPI
es_ES
Type of license
dc.rights
Attribution-NonCommercial-NoDerivs 3.0 United States