Metabolic Interaction in Infection

Metabolic Interaction in Infection
Author: Ricardo Silvestre
Publisher: Springer
Total Pages: 478
Release: 2018-04-06
Genre: Science
ISBN: 3319749323

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This book focuses on host–pathogen interactions at the metabolic level. It explores the metabolic requirements of the infectious agents, the microbial metabolic pathways that are dedicated to circumvent host immune mechanisms as well as the molecular mechanisms by which pathogens hijack host cell metabolism for their own benefit. Finally, it provides insights on the possible clinical and immunotherapeutic applications, as well as on the available experimental and analytical methods. The contributions break new ground in understanding the metabolic crosstalk between host and pathogen.

Host - Pathogen Interaction

Host - Pathogen Interaction
Author: Gottfried Unden
Publisher: John Wiley & Sons
Total Pages: 236
Release: 2016-09-06
Genre: Science
ISBN: 3527337458

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In light of the rapidity increasing incidence rate of bacterial and fungal infections with multi-resistant pathogens, the metabolic changes associated with host-pathogen interactions offer one of the most promising starting points for developing novel antibiotics. . Part one of this comprehensive guide describes the metabolic adaptation of pathogenic microbes in humans, while part two points to routes for the development of novel antibiotics. This is volume six of the book series on drug discovery in infectious diseases by Paul Selzer.

Molecular Biology of The Cell

Molecular Biology of The Cell
Author: Bruce Alberts
Publisher:
Total Pages: 0
Release: 2002
Genre: Cytology
ISBN: 9780815332183

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(Endo)symbiotic Methanogenic Archaea

(Endo)symbiotic Methanogenic Archaea
Author: Johannes H. P. Hackstein
Publisher: Springer
Total Pages: 261
Release: 2018-11-22
Genre: Science
ISBN: 9783319988351

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This updated monograph deals with methanogenic endosymbionts of anaerobic protists, in particular ciliates and termite flagellates, and with methanogens in the gastrointestinal tracts of vertebrates and arthropods. Further chapters discuss the genomic consequences of living together in symbiotic associations, the role of methanogens in syntrophic degradation, and the function and evolution of hydrogenosomes, hydrogen-producing organelles of certain anaerobic protists. Methanogens are prokaryotic microorganisms that produce methane as an end-product of a complex biochemical pathway. They are strictly anaerobic archaea and occupy a wide variety of anoxic environments. Methanogens also thrive in the cytoplasm of anaerobic unicellular eukaryotes and in the gastrointestinal tracts of animals and humans. The symbiotic methanogens in the gastrointestinal tracts of ruminants and other “methanogenic” mammals contribute significantly to the global methane budget; especially the rumen hosts an impressive diversity of methanogens. This makes this updated volume an interesting read for scientists and students in Microbiology and Physiology.

The Evolutionary Strategies that Shape Ecosystems

The Evolutionary Strategies that Shape Ecosystems
Author: J. Philip Grime
Publisher: John Wiley & Sons
Total Pages: 362
Release: 2012-03-26
Genre: Science
ISBN: 1118223276

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THE EVOLUTIONARY STRATEGIES THAT SHAPE ECOSYSTEMS In 1837 a young Charles Darwin took his notebook, wrote “I think”, and then sketched a rudimentary, stick-like tree. Each branch of Darwin’s tree of life told a story of survival and adaptation – adaptation of animals and plants not just to the environment but also to life with other living things. However, more than 150 years since Darwin published his singular idea of natural selection, the science of ecology has yet to account for how contrasting evolutionary outcomes affect the ability of organisms to coexist in communities and to regulate ecosystem functioning. In this book Philip Grime and Simon Pierce explain how evidence from across the world is revealing that, beneath the wealth of apparently limitless and bewildering variation in detailed structure and functioning, the essential biology of all organisms is subject to the same set of basic interacting constraints on life-history and physiology. The inescapable resulting predicament during the evolution of every species is that, according to habitat, each must adopt a predictable compromise with regard to how they use the resources at their disposal in order to survive. The compromise involves the investment of resources in either the effort to acquire more resources, the tolerance of factors that reduce metabolic performance, or reproduction. This three-way trade-off is the irreducible core of the universal adaptive strategy theory which Grime and Pierce use to investigate how two environmental filters selecting, respectively, for convergence and divergence in organism function determine the identity of organisms in communities, and ultimately how different evolutionary strategies affect the functioning of ecosystems. This book refl ects an historic phase in which evolutionary processes are finally moving centre stage in the effort to unify ecological theory, and animal, plant and microbial ecology have begun to find a common theoretical framework. Companion website This book has a companion website www.wiley.com/go/grime/evolutionarystrategies with Figures and Tables from the book for downloading.

Systems Biology

Systems Biology
Author: Bernhard Ø. Palsson
Publisher: Cambridge University Press
Total Pages: 287
Release: 2006-01-16
Genre: Science
ISBN: 1139448943

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Genome sequences are now available that enable us to determine the biological components that make up a cell or an organism. The discipline of systems biology examines how these components interact and form networks, and how the networks generate whole cell functions corresponding to observable phenotypes. This textbook, devoted to systems biology, describes how to model networks, how to determine their properties, and how to relate these to phenotypic functions. The prerequisites are some knowledge of linear algebra and biochemistry. Though the links between the mathematical ideas and biological processes are made clear, the book reflects the irreversible trend of increasing mathematical content in biology education. Therefore to assist both teacher and student, in an associated website Palsson provides problem sets, projects and Powerpoint slides, and keeps the presentation in the book concrete with illustrative material and experimental results.

Bacterial Pathogenesis

Bacterial Pathogenesis
Author:
Publisher: Academic Press
Total Pages: 643
Release: 1998-07-01
Genre: Science
ISBN: 0080860567

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Established almost 30 years ago, Methods in Microbiology is the most prestigious series devoted to techniques and methodology in the field. Now totally revamped, revitalized, with a new format and expanded scope, Methods in Microbiology will continue to provide you with tried and tested, cutting-edge protocols to directly benefit your research. Focuses on the methods most useful for the microbiologist interested in the way in which bacteria cause disease Includes section devoted to 'Approaches to characterising pathogenic mechanisms' by Stanley Falkow Covers safety aspects, detection, identification and speciation Includes techniques for the study of host interactions and reactions in animals and plants Describes biochemical and molecular genetic approaches Essential methods for gene expression and analysis Covers strategies and problems for disease control

Nutrition, Metabolism and Infection

Nutrition, Metabolism and Infection
Author: Filipo Giorgio Di Girolamo
Publisher: Frontiers Media SA
Total Pages: 199
Release: 2024-02-26
Genre: Medical
ISBN: 2832545270

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The role of nutritional status in the risk and course of infection is actively being investigated. Being involved in the normal function and modulation of all the biological processes, including the maintenance of healthy mucosal barriers and immune responses, macro - and micro - nutrients have a pleiotropic effect on the host health. During the last decade, it has been demonstrated that nutrients, or their lack of, influence the susceptibility to infection and how the metabolic changes that occur during host-pathogen interaction impact on pathogen proliferation and pathogenicity.

Interactions Between Immune Cells and Lipid Metabolism During a Chronic Parasitic Infection

Interactions Between Immune Cells and Lipid Metabolism During a Chronic Parasitic Infection
Author: Samuel Erik Redford
Publisher:
Total Pages: 0
Release: 2023
Genre:
ISBN:

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Metabolism is central to maintaining health and homeostasis during all challenges a mammal may face. This is true for infections as well and the field of immunometabolism has emerged for determining how metabolism influences the immune system during disease. Lipids are a major source of carbon and energy for cells while having been found to influence immune cells in a variety of systems. Here we explore novel roles for triglycerides through the interactions of adaptive immune and adipose tissue along with fatty acid utilization in myeloid cells. This dissertation describes original work demonstrating how adaptive immune system leads to sickness-induced anorexia and fat wasting. We found that fat wasting was dependent on lipolysis and that this fat wasting had no impact on inflammation within the adipose tissue. Further, we found that the fat wasting and sickness-induced anorexia are likely linked and CD4+ T cells are necessary to mediate both processes. Surprisingly, these metabolic perturbations do not have any tangible benefit to the host and preventing them did not change parasitemia or survival. Indeed, we found that CD4+ T cells were entirely dispensable in the infection, with mice lacking these immune cells surviving as long as wild type mice with similar parasitemia. Only B cells seemed necessary for mediating survival and parasitemia in wild type mice and CD8+ T cells were detrimental to survival. When looking specifically at lipid utilization in myeloid cells rather than lipid availability, we found beta oxidation in myeloid cells is detrimental to survival. There were no differences between knockout mice and wild type mice in parasitemia, indicating that immunopathology caused by the myeloid cells likely contributes to death and knocking out beta oxidation may alleviate the immunopathology. We found a slight rescue in anemia in the knockout mice, which is a major contributor for host death during a T. brucei infection. Thus, we have found novel roles for the adaptive immune system in mediating fat wasting and surprisingly this increase in lipid availability led to no difference in health while also finding a novel role for beta oxidation in myeloid cells for decreasing tolerance in the host. This work expands upon our understanding of how lipids availability is influenced by immune cells and how lipid utilization impacts health during a disease.

Plant-pathogen Interactions

Plant-pathogen Interactions
Author: Nicholas J. Talbot
Publisher: CRC Press
Total Pages: 272
Release: 2004
Genre: Science
ISBN: 9780849323430

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Plant diseases are destructive and threaten virtually any crop grown on a commercial scale. They are kept in check by plant breeding strategies that have introgressed disease resistance genes into many important crops, and by the deployment of costly control measures, such as antibiotics and fungicides. However, the capacity for the agents of plant disease - viruses, bacteria, fungi, and oomycetes - to adapt to new conditions, overcoming disease resistance and becoming resistant to pesticides, is very great. For these reasons, understanding the biology of plant diseases is essential for the development of durable control strategies. Plant-Pathogen Interactions provides and overview of our current knowledge of plant-pathogen interactions and the establishment of plant disease, drawing together fundamental new information on plant infection mechanisms and host responses. The role of molecular signals, gene regulation, and the physiology of pathogenic organisms are emphasized, but the role of the prevailing environment in the conditioning of disease is also discussed. Emphasizing the broader understanding that has emerged from the use of molecular genetics and genomics, Plant-Pathogen Interactions highlights those interactions that have been most widely studied and those in which genome information has provided a new level of understanding.