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Handbook of Nutrition, Diet, and Epigenetics / edited by Vinood B. Patel, Victor R. Preedy

Colaborador(es): Patel, Vinood B, editor literario | Preedy, Victor R, editor literario | SpringerLink (Online service).
Tipo de material: materialTypeLabelE-bookSeries (Medicine (Springer-11650)).Editor: Cham : Springer International Publishing : Imprint: Springer, 2019Descripción: 1 recurso en línea (416 ilustraciones, 332 ilustraciones a color eReference).ISBN: 9783319555300.Tema: Nutrición -- Aspectos genéticosRecursos en línea: Acceso a este recurso digital (usuarios Universidad Europea de Valencia)Digital Resources
Contenidos:
Nervous system -- Development and ageing -- Cancers -- Caloric and dietary restriction -- Detailed processes in epigenetics of diet and nutrition.-Modifications of DNA via methylation -- Modifications of histones -- Modifications of non-coding RNAs -- DNA repair -- Modulating epigenetics with diet and nutrition -- General treatments and strategies -- Vitamins -- Minerals -- Specific foods and nutrients -- Nutritional toxicology -- Practical techniques.
Resumen: This multivolume reference work addresses the fact that the well being of humankind is predicated not only on individuals receiving adequate nutrition but also on their genetic makeup. The work includes more than 100 chapters organized in the following major sections: Introduction and Overview; Epigenetics of Organs and Diseases in Relation to Diet and Nutrition; Detailed Processes in Epigenetics of Diet and Nutrition; Modulating Epigenetics with Diet and Nutrition; and Practical Techniques. While it is well known that genes may encode proteins responsible for structural and dynamic components, there is an increasing body of evidence to suggest that nutrition itself may alter the way in which genes are expressed via the process of epigenetics. This is where chemically imposed alteration in the DNA sequence occurs or where the functional expression of DNA is modulated. This may include changes in DNA methylation, non-coding RNA, chromatin, histone acetylation or methylation, and genomic imprinting. Knowledge regarding the number of dietary components that impact on epigenetic processes is increasing almost daily. Marshalling all the information on the complex relationships between diet, nutrition, and epigenetic processes is somewhat difficult due to the wide myriad of material. It is for this reason that the present work has been compiled.
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Existencias
Tipo de ítem Biblioteca actual Colección Signatura topográfica Estado Fecha de vencimiento Código de barras Reserva de ítems
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Valencia Digital Acceso Electrónico (UEV) Ciencias de la Salud QP144 .G45 2019 EB (Navegar estantería(Abre debajo)) Acceso electrónico
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Nervous system -- Development and ageing -- Cancers -- Caloric and dietary restriction -- Detailed processes in epigenetics of diet and nutrition.-Modifications of DNA via methylation -- Modifications of histones -- Modifications of non-coding RNAs -- DNA repair -- Modulating epigenetics with diet and nutrition -- General treatments and strategies -- Vitamins -- Minerals -- Specific foods and nutrients -- Nutritional toxicology -- Practical techniques.

This multivolume reference work addresses the fact that the well being of humankind is predicated not only on individuals receiving adequate nutrition but also on their genetic makeup. The work includes more than 100 chapters organized in the following major sections: Introduction and Overview; Epigenetics of Organs and Diseases in Relation to Diet and Nutrition; Detailed Processes in Epigenetics of Diet and Nutrition; Modulating Epigenetics with Diet and Nutrition; and Practical Techniques. While it is well known that genes may encode proteins responsible for structural and dynamic components, there is an increasing body of evidence to suggest that nutrition itself may alter the way in which genes are expressed via the process of epigenetics. This is where chemically imposed alteration in the DNA sequence occurs or where the functional expression of DNA is modulated. This may include changes in DNA methylation, non-coding RNA, chromatin, histone acetylation or methylation, and genomic imprinting. Knowledge regarding the number of dietary components that impact on epigenetic processes is increasing almost daily. Marshalling all the information on the complex relationships between diet, nutrition, and epigenetic processes is somewhat difficult due to the wide myriad of material. It is for this reason that the present work has been compiled.

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