Human follicular dendritic cells (FDC): a study with monoclonal antibodies (MoAb)

A collection of new and established FDC-reactive MoAb has been used in an immunohistological study designed to throw light on (a) the nature of FDC (which are of unknown lineage) as judged by their sharing of antigens with other cell types and (b) the reason for the strong expression of some B cell...

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Published in:Clinical and experimental immunology Vol. 64; no. 1; pp. 205 - 213
Main Authors: JOHNSON, G. D, HARDIE, D. L, LING, N. R, MACLENNAN, I. C. M
Format: Journal Article
Language:English
Published: Oxford Blackwell 01-04-1986
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Abstract A collection of new and established FDC-reactive MoAb has been used in an immunohistological study designed to throw light on (a) the nature of FDC (which are of unknown lineage) as judged by their sharing of antigens with other cell types and (b) the reason for the strong expression of some B cell antigens on FDC. The MoAb were tested on: (1) sections of tonsil, (2) sections of lymph nodes from four cases of non-Hodgkin's lymphoma, (3) peripheral blood cells and (4) cells of cultured haemopoietic cell lines. Only one of the ten new MoAb bound to FDC and no other component of the tissues screened. It resembled R4/23, a MoAb known to be specific for FDC. The other nine antibodies showed a range of cross-reactivity patterns involving one or more of the following: monocytes, macrophages, platelets, epithelium, endothelium and connective tissue fibres. Some of the MoAb reacted with B lymphocytes and cells of B lymphoblastoid lines but none showed the restricted FDC-staining pattern associated with MoAb which detect the CD23, P45 antigen. The findings are discussed in terms of the intrinsic or extrinsic nature of the antigens detected.
AbstractList A collection of new and established FDC-reactive MoAb has been used in an immunohistological study designed to throw light on (a) the nature of FDC (which are of unknown lineage) as judged by their sharing of antigens with other cell types and (b) the reason for the strong expression of some B cell antigens on FDC. The MoAb were tested on: (1) sections of tonsil, (2) sections of lymph nodes from four cases of non-Hodgkin's lymphoma, (3) peripheral blood cells and (4) cells of cultured haemopoietic cell lines. Only one of the ten new MoAb bound to FDC and no other component of the tissues screened. It resembled R4/23, a MoAb known to be specific for FDC. The other nine antibodies showed a range of cross-reactivity patterns involving one or more of the following: monocytes, macrophages, platelets, epithelium, endothelium and connective tissue fibres. Some of the MoAb reacted with B lymphocytes and cells of B lymphoblastoid lines but none showed the restricted FDC-staining pattern associated with MoAb which detect the CD23, P45 antigen. The findings are discussed in terms of the intrinsic or extrinsic nature of the antigens detected.
Author MACLENNAN, I. C. M
JOHNSON, G. D
HARDIE, D. L
LING, N. R
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Issue 1
Keywords Human
Immunohistochemistry
Dendritic cell
Lymphoid organ
Amygdala
Lymph node
Hematopoietic cell
Lymphatic follicle
Monoclonal antibody
Language English
License CC BY 4.0
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PublicationTitleAlternate Clin Exp Immunol
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Snippet A collection of new and established FDC-reactive MoAb has been used in an immunohistological study designed to throw light on (a) the nature of FDC (which are...
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StartPage 205
SubjectTerms Analysis of the immune response. Humoral and cellular immunity
Antibodies, Monoclonal
Antigens - analysis
B-Lymphocytes - immunology
Biological and medical sciences
Cell Line
Cross Reactions
Fluorescent Antibody Technique
Fundamental and applied biological sciences. Psychology
Fundamental immunology
Humans
Immunobiology
Lymphoid Tissue - cytology
Lymphoid Tissue - immunology
Lymphoma - immunology
Organs and cells involved in the immune response
Palatine Tonsil - immunology
Title Human follicular dendritic cells (FDC): a study with monoclonal antibodies (MoAb)
URI https://www.ncbi.nlm.nih.gov/pubmed/3524917
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https://pubmed.ncbi.nlm.nih.gov/PMC1542166
Volume 64
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