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Titlebook: Endotoxins: Structure, Function and Recognition; Xiaoyuan Wang,Peter J. Quinn Book 2010 Springer Science+Business Media B.V. 2010 Antigen.

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,-Regulated Lipopolysaccharide Modifications often regulate their virulence genes, including those responsible for lipopolysaccharide modification, in ways that differ from .. Further examination of bacterial virulence gene regulation and lipopolysaccharide modifications may lead to improved antimicrobial therapies and vaccines.
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Membrane Partitioning: Is Location Everything When It Comes to Endotoxin Recognition?ducer singals that lead to innate immune activation. In this chapter will review all past and current literature concerning recruitment of TLRs into lipid rafts and how this membrane compartmentalization is crucial for innate immune responses.
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Endotoxin Detection – from , Amebocyte Lysate to Recombinant Factor Ce end of the reaction. The Factor C, which normally exists as a zymogen, is the primer of this coagulation cascade. In vivo, Factor C is the perfect biosensor, which alerts the horseshoe crab of the presence of a Gram-negative invader. The hemostatic end-point entraps the invader, killing it and lim
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The Role of Endotoxin in Infection: , and ,er hand, this contrasts with acute infection-causing . where overt inflammation contributes to pathology and diarrhoea production, and whose endotoxin is immunologically and endotoxically active. Futhermore, both . and . exhibit molecular mimicry in the saccharide components of their endotoxins whic
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https://doi.org/10.1007/978-3-662-64949-7ooligosaccharide with less than fifteen sugars, more conserved in the inner region, proximal to the lipid A, and often carrying non-stoichiometric substitutions leading to variation and micro-heterogeneity. The core oligosaccharide contributes to the bacterial viability and stability of the outer me
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https://doi.org/10.1007/978-3-662-69504-3 often regulate their virulence genes, including those responsible for lipopolysaccharide modification, in ways that differ from .. Further examination of bacterial virulence gene regulation and lipopolysaccharide modifications may lead to improved antimicrobial therapies and vaccines.
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