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Neuroprotective Natural Molecules, From Food to Brain

The prevalence of neurodegenerative disorders is increasing; however, an effective neuroprotective treatment is still remaining. Nutrition plays an important role in neuroprotection as recently shown by epidemiological and biochemical studies which identified food components as promising therapeutic...

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Autores principales: González-Fuentes, Joaquin, Selva, Jorge, Moya, Carmen, Castro-Vázquez, Lucia, Lozano, Maria V., Marcos, Pilar, Plaza-Oliver, Maria, Rodríguez-Robledo, Virginia, Santander-Ortega, Manuel J., Villaseca-González, Noemi, Arroyo-Jimenez, Maria M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6206709/
https://www.ncbi.nlm.nih.gov/pubmed/30405328
http://dx.doi.org/10.3389/fnins.2018.00721
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author González-Fuentes, Joaquin
Selva, Jorge
Moya, Carmen
Castro-Vázquez, Lucia
Lozano, Maria V.
Marcos, Pilar
Plaza-Oliver, Maria
Rodríguez-Robledo, Virginia
Santander-Ortega, Manuel J.
Villaseca-González, Noemi
Arroyo-Jimenez, Maria M.
author_facet González-Fuentes, Joaquin
Selva, Jorge
Moya, Carmen
Castro-Vázquez, Lucia
Lozano, Maria V.
Marcos, Pilar
Plaza-Oliver, Maria
Rodríguez-Robledo, Virginia
Santander-Ortega, Manuel J.
Villaseca-González, Noemi
Arroyo-Jimenez, Maria M.
author_sort González-Fuentes, Joaquin
collection PubMed
description The prevalence of neurodegenerative disorders is increasing; however, an effective neuroprotective treatment is still remaining. Nutrition plays an important role in neuroprotection as recently shown by epidemiological and biochemical studies which identified food components as promising therapeutic agents. Neuroprotection includes mechanisms such as activation of specific receptors, changes in enzymatic neuronal activity, and synthesis and secretion of different bioactive molecules. All these mechanisms are focused on preventing neuronal damage and alleviating the consequences of massive cell loss. Some neuropathological disorders selectively affect to particular neuronal populations, thus is important to know their neurochemical and anatomical properties in order to design effective therapies. Although the design of such treatments would be specific to neuronal groups sensible to damage, the effect would have an impact in the whole nervous system. The difficult overcoming of the blood brain barrier has hampered the development of efficient therapies for prevention or protection. This structure is a physical, enzymatic, and influx barrier that efficiently protects the brain from exogenous molecules. Therefore, the development of new strategies, like nanocarriers, that help to promote the access of neuroprotective molecules to the brain, is needed for providing more effective therapies for the disorders of the central nervous system (CNS). In order both to trace the success of these nanoplatforms on the release of the bioactive cargo in the CNS and determinate the concentration at trace levels of targets biomolecules by analytical chemistry and concretely separation instrumental techniques, constitute an essential tool. Currently, these techniques are used for the determination and identification of natural neuroprotective molecules in complex matrixes at different concentration levels. Separation techniques such as chromatography and capillary electrophoresis (CE), using optical and/or mass spectrometry (MS) detectors, provide multiples combinations for the quantitative and qualitative analysis at basal levels or higher concentrations of bioactive analytes in biological samples. Bearing this in mind, the development of food neuroprotective molecules as brain therapeutic agents is a complex task that requires the intimate collaboration and engagement of different disciplines for a successful outcome. In this sense, this work reviews the new advances achieved in the area toward a better understanding of the current state of the art and highlights promising approaches for brain neuroprotection.
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spelling pubmed-62067092018-11-07 Neuroprotective Natural Molecules, From Food to Brain González-Fuentes, Joaquin Selva, Jorge Moya, Carmen Castro-Vázquez, Lucia Lozano, Maria V. Marcos, Pilar Plaza-Oliver, Maria Rodríguez-Robledo, Virginia Santander-Ortega, Manuel J. Villaseca-González, Noemi Arroyo-Jimenez, Maria M. Front Neurosci Neuroscience The prevalence of neurodegenerative disorders is increasing; however, an effective neuroprotective treatment is still remaining. Nutrition plays an important role in neuroprotection as recently shown by epidemiological and biochemical studies which identified food components as promising therapeutic agents. Neuroprotection includes mechanisms such as activation of specific receptors, changes in enzymatic neuronal activity, and synthesis and secretion of different bioactive molecules. All these mechanisms are focused on preventing neuronal damage and alleviating the consequences of massive cell loss. Some neuropathological disorders selectively affect to particular neuronal populations, thus is important to know their neurochemical and anatomical properties in order to design effective therapies. Although the design of such treatments would be specific to neuronal groups sensible to damage, the effect would have an impact in the whole nervous system. The difficult overcoming of the blood brain barrier has hampered the development of efficient therapies for prevention or protection. This structure is a physical, enzymatic, and influx barrier that efficiently protects the brain from exogenous molecules. Therefore, the development of new strategies, like nanocarriers, that help to promote the access of neuroprotective molecules to the brain, is needed for providing more effective therapies for the disorders of the central nervous system (CNS). In order both to trace the success of these nanoplatforms on the release of the bioactive cargo in the CNS and determinate the concentration at trace levels of targets biomolecules by analytical chemistry and concretely separation instrumental techniques, constitute an essential tool. Currently, these techniques are used for the determination and identification of natural neuroprotective molecules in complex matrixes at different concentration levels. Separation techniques such as chromatography and capillary electrophoresis (CE), using optical and/or mass spectrometry (MS) detectors, provide multiples combinations for the quantitative and qualitative analysis at basal levels or higher concentrations of bioactive analytes in biological samples. Bearing this in mind, the development of food neuroprotective molecules as brain therapeutic agents is a complex task that requires the intimate collaboration and engagement of different disciplines for a successful outcome. In this sense, this work reviews the new advances achieved in the area toward a better understanding of the current state of the art and highlights promising approaches for brain neuroprotection. Frontiers Media S.A. 2018-10-23 /pmc/articles/PMC6206709/ /pubmed/30405328 http://dx.doi.org/10.3389/fnins.2018.00721 Text en Copyright © 2018 González-Fuentes, Selva, Moya, Castro-Vázquez, Lozano, Marcos, Plaza-Oliver, Rodríguez-Robledo, Santander-Ortega, Villaseca-González and Arroyo-Jimenez. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
González-Fuentes, Joaquin
Selva, Jorge
Moya, Carmen
Castro-Vázquez, Lucia
Lozano, Maria V.
Marcos, Pilar
Plaza-Oliver, Maria
Rodríguez-Robledo, Virginia
Santander-Ortega, Manuel J.
Villaseca-González, Noemi
Arroyo-Jimenez, Maria M.
Neuroprotective Natural Molecules, From Food to Brain
title Neuroprotective Natural Molecules, From Food to Brain
title_full Neuroprotective Natural Molecules, From Food to Brain
title_fullStr Neuroprotective Natural Molecules, From Food to Brain
title_full_unstemmed Neuroprotective Natural Molecules, From Food to Brain
title_short Neuroprotective Natural Molecules, From Food to Brain
title_sort neuroprotective natural molecules, from food to brain
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6206709/
https://www.ncbi.nlm.nih.gov/pubmed/30405328
http://dx.doi.org/10.3389/fnins.2018.00721
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