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Human and Mosquito Lysozymes : Old Molecules for New Approaches Against Malaria / edited by Mauro Prato.

Contributor(s): SpringerLink (Online service) | Prato, Mauro, editor literario
Material type: materialTypeLabelE-bookPublisher: Cham, Switzerland : Springer, 2015Description: 1 recurso en línea (IX, 108 páginas) : 21 ilustraciones, 16 ilustraciones en color.ISBN: 9783319094328.Subject: Microbiología médica | Parasitología | InmunologíaOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Etiopathogenesis and pathophysiology of malaria -- Malaria diagnosis, therapy, vaccines and vector control -- Lysozymes in the animal kingdom -- Role of lysozymes of Anopheles mosquitoes in Plasmodium development -- Effects of malaria products on human monocyte and neutrophil degranulation and lysozyme release -- Human lysozyme in malariaÂ{u0874}ients -- Beyond lysozyme.
Abstract: Malaria remains an alarming emergency in developing countries. It is thus urgent to identify any parasite or host molecules that can serve as new affordable markers for early diagnosis of disease complications or as new targets for vector control. In this context, human and mosquito lysozymes are good candidate molecules, as their involvement in malaria has been recently reported by several independent groups. This book reviews the grounded knowledge on malaria etiology and physiopathology, as well as the current approaches for diagnosis, therapy, and vector control. In addition, the emerging evidence on the involvement of human and mosquito lysozymes in malaria from available experimental models and clinical studies is thoroughly discussed, as is the potential use of other antimicrobial peptides against malaria. Intriguingly, the contributors propose that old well-known molecules such as lysozymes might be used as new targets for cost-effective strategies to fight malaria. About the Editor Mauro Prato currently works as an Adjunct Professor of Biochemistry at the University of Torino, Italy. His research activity focuses on the involvement of proteolytic enzymes in malaria. His track-record includesÂ{u4C20}papers published by peer-reviewed journals,Â{u1822}ook, 7 book chapters, 97 communications in well-established conferences, and 1 patent.
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud RC157 .H863 2015 EB (Browse shelf(Opens below)) .i11568008 Acceso electrónico eBOOK .i11568008
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Etiopathogenesis and pathophysiology of malaria -- Malaria diagnosis, therapy, vaccines and vector control -- Lysozymes in the animal kingdom -- Role of lysozymes of Anopheles mosquitoes in Plasmodium development -- Effects of malaria products on human monocyte and neutrophil degranulation and lysozyme release -- Human lysozyme in malariaÂ{u0874}ients -- Beyond lysozyme.

Malaria remains an alarming emergency in developing countries. It is thus urgent to identify any parasite or host molecules that can serve as new affordable markers for early diagnosis of disease complications or as new targets for vector control. In this context, human and mosquito lysozymes are good candidate molecules, as their involvement in malaria has been recently reported by several independent groups. This book reviews the grounded knowledge on malaria etiology and physiopathology, as well as the current approaches for diagnosis, therapy, and vector control. In addition, the emerging evidence on the involvement of human and mosquito lysozymes in malaria from available experimental models and clinical studies is thoroughly discussed, as is the potential use of other antimicrobial peptides against malaria. Intriguingly, the contributors propose that old well-known molecules such as lysozymes might be used as new targets for cost-effective strategies to fight malaria. About the Editor Mauro Prato currently works as an Adjunct Professor of Biochemistry at the University of Torino, Italy. His research activity focuses on the involvement of proteolytic enzymes in malaria. His track-record includesÂ{u4C20}papers published by peer-reviewed journals,Â{u1822}ook, 7 book chapters, 97 communications in well-established conferences, and 1 patent.

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