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and which can be altered, vaccine antigens can be modified more rapidly in response to changing epidemiology.The basis for structural engineering of antigensImmunization against pathogens ...
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, protamine-complexed mRNA encoding a tumor antigen elicits a protective tumor-specific T-cell response . mRNA vaccine production, according to current good manufacturing practice, is established and accepted ...
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of intact antibodies as a vaccine is not new. The anti-idiotype network hypothesis has been the basis of using anti-idiotype antibodies. The IgG isotype is the antibody subclass typically used ...
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, and provide details on an approach to vaccine development: the genetic detoxification of bacterial toxins. Such an approach has been particularly successful in the rational design of a new vaccine against ...
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‐analytical characterization of bioconjugates comprising the β‐amyloid(4‐10) epitope as new vaccine lead structures against Alzheimer's disease. To produce antigenic bioconjugates, potential immunogens ...
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data into the process of rational optimization of superagonist peptides for clinical trials. A major challenge for the design of cancer vaccines is that natural tumor antigens elicit relatively weak T ...
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and transport antigen. Antigen presentation by these different APCs however, has been found to differ [22] . These findings have led to new vaccine strategies where the vaccine antigen is specifically targeted ...
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been the development of algorithms for the design and discovery of new vaccines. The success of a vaccine can be measured by its strength, its specificity, the duration of the immune response and its ...
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by disulfide bonds. STRUCTURE AND VACCINE DESIGN Figure I The class G antibody is formed by a symmetric arrangement of two heavy folded disulfide bonded domains within each chain. light chain couples ...