Vasoactive intestinal peptide specifically induces human IgA1 and IgA2 production
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Summary
Results indicate that in the presence of anti‐CD40 mAb, VIP induces IgA1 and IgA2 production by isotype switching.
- Type
- article
- Published
- 1994-09-01
- Cited by
- 37
- References
- 25
- OpenAlex
- https://openalex.org/W1973440907
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:19960062
Keywords
Vasoactive intestinal peptide, Immunoglobulin class switching, CD40, Immunoglobulin E, Biology
References
- Human low molecular weight B cell growth factor induces surface IgM+/A- B cells to express and secrete IgA.
- Transforming growth factor-beta 1 is a costimulator for IgA production.
- Anti-CD40 monoclonal antibodies or CD4+ T cell clones and IL-4 induce IgG4 and IgE switching in purified human B cells via different signaling pathways.
- Nedocromil sodium selectively inhibits IgE and IgG4 production in human B cells stimulated with IL-4.
- CD40 stimulation provides an IFN-gamma-independent and IL-4-dependent differentiation signal directly to human B cells for IgE production.
- Effect of transforming growth factor (TGF)-beta 1 on IgA isotype expression. TGF-beta 1 induces a small increase in sIgA+ B cells regardless of the method of B cell activation.
- The newer gut hormones. Cellular sources, physiology, pathology, and clinical aspects.
- Differential effects of vasoactive intestinal peptide, substance P, and somatostatin on immunoglobulin synthesis and proliferations by lymphocytes from Peyer's patches, mesenteric lymph nodes, and spleen.
- Identification of high affinity receptors for vasoactive intestinal peptide on human lymphocytes of B cell lineage.
- Transforming growth factor-beta directs IgA switching in human B cells.
- Parathyroid hormone inhibits immunoglobulin production without affecting cell growth in human B cells.
- CD40 and IgE: synergism between anti-CD40 monoclonal antibody and interleukin 4 in the induction of IgE synthesis by highly purified human B cells
- Differential effect of vasoactive intestinal peptide, somatostatin, and substance P on human IgE and IgG subclass production.
- Nerve growth factor specifically induces human IgG4 production
- Transforming growth factor beta specifically enhances IgA production by lipopolysaccharide-stimulated murine B lymphocytes.
- High affinity specific binding of vasoactive intestinal peptide to human circulating T cells, B cells and large granular lymphocytes.
- Interleukin 10 and transforming growth factor beta cooperate to induce anti-CD40-activated naive human B cells to secrete immunoglobulin A
- Vasoactive intestinal peptide stimulates immunoglobulin production and growth of human B cells
- PEYER'S PATCHES: AN ENRICHED SOURCE OF PRECURSORS FOR IGA-PRODUCING IMMUNOCYTES IN THE RABBIT
- Transforming growth factor β induces IgA production and acts additively with interleukin 5 for IgA production
Cited by
- The Role of Dendritic Cells, B Cells, and M Cells in Gut-Oriented Immune Responses
- Human IgA inducing protein from dendritic cells induces IgA production by naïve IgD+ B cells
- The significance of vasoactive intestinal polypeptide (VIP) in immunomodulation.
- A Transcriptionally Permissive Epigenetic Landscape at the Vasoactive Intestinal Peptide Receptor-1 Promoter Suggests an Euchromatin Nuclear Position in Murine CD4 T Cells
- Effect of calcitonin gene-related peptide and vasoactive intestinal peptide on murine CD4 and CD8 T cell proliferation.
- Role of neuropeptides in inflammatory bowel disease
- Vasoactive intestinal peptide regulation of granulomatous inflammation in murine Schistosomiasis mansoni.
- Vasoactive intestinal peptide differentially modulates human immunoglobulin production.
- The autonomic nervous system and inflammatory bowel disease.
- Role of Retinoic Acid in the Imprinting of Gut-Homing IgA-Secreting Cells
- Secretion of immunomodulating neuropeptides (VIP, SP) and nitric oxide synthase in porcine small intestine during postnatal development
- Differentiation and homing of IgA-secreting cells
- Morphological relationships between peptidergic nerve fibers and immunoglobulin A-producing lymphocytes in the mouse intestine.
- Regulation of intestinal homeostasis by dendritic cells
- Tissue-based class control: the other side of tolerance
- Retinoic Acid and Retinoic Acid Receptors as Pleiotropic Modulators of the Immune System.
- Antibody class switching.
- Regulation of IgA responses in cattle, humans and mice.
- Modulatory Effects of Vasoactive Intestinal Peptide on Intestinal Mucosal Immunity and Microbial Community of Weaned Piglets Challenged by an Enterotoxigenic Escherichia coli (K88)
- Modulation of the gastrointestinal tract of infants by human milk. Interfaces and interactions. An evolutionary perspective.
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