Handbook of Immunosenescence : Basic Understanding and Clinical Implications / edited by Tamas Fulop, Claudio Franceschi, Katsuiku Hirokawa, Graham Pawelec.
Contributor(s): Franceschi, Claudio., editor literario | Fulop, Tamas., editor literario | Hirokawa, Katsuiku., editor literario | Pawelec, Graham., editor literario
Series: (Biomedical and Life Sciences (Springer-11642)).Publisher: Cham, Switzerland : Springer International Publishing, 2019Edition: 2nd ed. 2019.Description: 1 recurso en línea (272 ilustraciones, 161 ilustraciones a color. eReference).ISBN: 9783319993751.Subject: Inmunología
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias de la Salud | QP182 2019 EB (Browse shelf(Opens below)) | Acceso electrónico | eBooks17062116 |
Methods and Models for Studying Immunosenescence -- Methods for studying human immunosenescence in tissues other than blood -- Mechanisms - Receptors and Signal Transduction -- Clinical Relevance in Disease States - Infection -- Modulation -- Nutrition.
Immunosenescence is an imprecise term used to describe deleterious age-associated changes to immune parameters observed in all mammals studied so far. It represents a rapidly progressing science in the aging field, with a vertiginous volume of new data, knowledge and concepts concerning these changes. We are poised to be in a position to translate these accumulated data into the clinical setting via better understanding of the contribution of immunosenescence to age-associated pathologies, and their prevention by appropriate interventions. This authoritative handbook seeks to encompass the current state of our knowledge on the multitude of those changes to immunity related to aging, with contributions from experts in the research and clinical areas. This book therefore considers methods and models for studying immunosenescence; cellular immunosenescence of T cells, B cells, neutrophils, antigen presenting cells, NK, NKT and stem cells; genetics; mechanisms including receptors and signal transduction; mitochondria; proteasome; cytokines; neuro-endocrine-immune networks; inflammation; thymus; clinical relevance in disease states including infections, autoimmunity, cancer, metabolic syndrome, neurodegenerative diseases, frailty and osteoporosis; modulation by nutrition, lipids, vaccination and the question "can interventions to influence immunosenescence be realistically proposed based on our current state of knowledge?".
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