The need for continued development of ricin countermeasures.
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A Bispecific Antibody Promotes Aggregation of Ricin Toxin on Cell Surfaces and Alters Dynamics of Toxin Internalization and TraffickingCrystal Structures of Ricin Toxin's Enzymatic Subunit (RTA) in Complex with Neutralizing and Non-Neutralizing Single-Chain AntibodiesDisruption of the Putative Vascular Leak Peptide Sequence in the Stabilized Ricin Vaccine Candidate RTA1-33/44-198Novel Ricin Subunit Antigens With Enhanced Capacity to Elicit Toxin-Neutralizing Antibody Responses in Mice.Chimeric plantibody passively protects mice against aerosolized ricin challenge.Differential neutralizing activities of a single domain camelid antibody (VHH) specific for ricin toxin's binding subunit (RTB).Spatial location of neutralizing and non-neutralizing B cell epitopes on domain 1 of ricin toxin's binding subunitCombination of two candidate subunit vaccine antigens elicits protective immunity to ricin and anthrax toxin in miceClinical and Pathological Findings Associated with Aerosol Exposure of Macaques to Ricin ToxinMechanisms of Ricin Toxin Neutralization Revealed through Engineered Homodimeric and Heterodimeric Camelid Antibodies.Comparative efficacy of two leading candidate ricin toxin a subunit vaccines in mice.Neutralizing monoclonal antibodies against ricin's enzymatic subunit interfere with protein disulfide isomerase-mediated reduction of ricin holotoxin in vitro.Stepwise engineering of heterodimeric single domain camelid VHH antibodies that passively protect mice from ricin toxin.Antibody-mediated inhibition of ricin toxin retrograde transport.Modelling effects of internalized antibody: a simple comparative study.Toxicity of ricin A chain is reduced in mammalian cells by inhibiting its interaction with the ribosome.Progress and challenges associated with the development of ricin toxin subunit vaccines.Structural Analysis of Single Domain Antibodies Bound to a Second Neutralizing Hot Spot on Ricin Toxin's Enzymatic Subunit.Modeling of toxin-antibody interaction and toxin transport toward the endoplasmic reticulum.High-Resolution Epitope Positioning of a Large Collection of Neutralizing and Nonneutralizing Single-Domain Antibodies on the Enzymatic and Binding Subunits of Ricin Toxin.A simple model for assessment of anti-toxin antibodies.Improving the biophysical properties of anti-ricin single-domain antibodies.Production, Characterisation and Testing of an Ovine Antitoxin against Ricin; Efficacy, Potency and Mechanisms of Action.High-Definition Mapping of Four Spatially Distinct Neutralizing Epitope Clusters on RiVax, a Candidate Ricin Toxin Subunit Vaccine.
P2860
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P2860
The need for continued development of ricin countermeasures.
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
2012年论文
@zh
2012年论文
@zh-cn
name
The need for continued development of ricin countermeasures.
@ast
The need for continued development of ricin countermeasures.
@en
type
label
The need for continued development of ricin countermeasures.
@ast
The need for continued development of ricin countermeasures.
@en
prefLabel
The need for continued development of ricin countermeasures.
@ast
The need for continued development of ricin countermeasures.
@en
P2860
P356
P1476
The need for continued development of ricin countermeasures.
@en
P2093
Leonard A Smith
Ronald B Reisler
P2860
P304
P356
10.1155/2012/149737
P577
2012-03-26T00:00:00Z