IgG transport across mucosal barriers by neonatal Fc receptor for IgG and mucosal immunity
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Unraveling the Interaction between FcRn and Albumin: Opportunities for Design of Albumin-Based TherapeuticsTargeting FcRn for the modulation of antibody dynamicsTargeting FcRn for therapy: from live cell imaging to in vivo studies in mice.Maternal antibodies: clinical significance, mechanism of interference with immune responses, and possible vaccination strategies.A Cholera Conjugate Vaccine Containing O-specific Polysaccharide (OSP) of V. cholerae O1 Inaba and Recombinant Fragment of Tetanus Toxin Heavy Chain (OSP:rTTHc) Induces Serum, Memory and Lamina Proprial Responses against OSP and Is Protective in MicVaccine-induced intestinal immunity to ricin toxin in the absence of secretory IgA.Induction of immunoglobulin G4 in human filariasis: an indicator of immunoregulationClinical ramifications of the MHC family Fc receptor FcRn.Humoral immunogenicity of an HIV-1 envelope residue 649-684 membrane-proximal region peptide fused to the plague antigen F1-V.Analysis of Response Elements Involved in the Regulation of the Human Neonatal Fc Receptor Gene (FCGRT).Does Circulating Antibody Play a Role in the Protection of Piglets against Porcine Epidemic Diarrhea Virus?Localization of neonatal Fc receptor for IgG in aggregated lymphoid nodules area in abomasum of Bactrian camels (Camelus bactrianus) of different agesN-Glycan Moieties in Neonatal Fc Receptor Determine Steady-state Membrane Distribution and Directional Transport of IgG.Immune and non-immune functions of the (not so) neonatal Fc receptor, FcRn.Receptor-mediated endocytosis and brain delivery of therapeutic biologics.Localization of the human neonatal Fc receptor (FcRn) in human nasal epithelium.Allergen-IgE complexes trigger CD23-dependent CCL20 release from human intestinal epithelial cells.Th22 cells are an important source of IL-22 for host protection against enteropathogenic bacteriaNeonatal Fc receptor (FcRn) and maternal-to-newborn IgE absorptionImmunization with Cry1Ac from Bacillus thuringiensis increases intestinal IgG response and induces the expression of FcRn in the intestinal epithelium of adult mice.Intraperitoneal Immunization with Cry1Ac Protoxin from Bacillus thuringiensis Provokes Upregulation of Fc-Gamma-II/and Fc-Gamma-III Receptors Associated with IgG in the Intestinal Epithelium of Mice.
P2860
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P2860
IgG transport across mucosal barriers by neonatal Fc receptor for IgG and mucosal immunity
description
scientific article published on 19 October 2006
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в жовтні 2006
@uk
name
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@en
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@nl
type
label
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@en
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@nl
prefLabel
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@en
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@nl
P2093
P2860
P1476
IgG transport across mucosal b ...... r for IgG and mucosal immunity
@en
P2093
Atsuhiro Masuda
Hiromu Kutsumi
Kanna Kobayashi
Masaru Yoshida
Richard S Blumberg
Takeshi Azuma
Tetsuya Takagawa
Timothy T Kuo
P2860
P2888
P304
P356
10.1007/S00281-006-0054-Z
P577
2006-10-19T00:00:00Z