Trogocytosis of multiple B-cell surface markers by CD22 targeting with epratuzumab

Blood ◽  
2013 ◽  
Vol 122 (17) ◽  
pp. 3020-3029 ◽  
Author(s):  
Edmund A. Rossi ◽  
David M. Goldenberg ◽  
Rosana Michel ◽  
Diane L. Rossi ◽  
Daniel J. Wallace ◽  
...  

Key Points Epratuzumab induces the reduction of multiple B-cell antigen receptor–modulating proteins on the surface of B cells via their trogocytosis to effector cells. Modulation of B cells by trogocytosis of key regulatory proteins may be an important mechanism of immunotherapy of autoimmune disease.

Genes ◽  
2019 ◽  
Vol 10 (5) ◽  
pp. 329 ◽  
Author(s):  
Rashid ◽  
Guan ◽  
Luo ◽  
Zhao ◽  
Wang ◽  
...  

This study aimed to establish a pure single-cell Theileria annulata-infected B cell line for the assessment of cytokine production in transformed and lipopolysaccharide (LPS)-stimulated cells. Several studies have aimed to identify cell surface markers in T. annulata-transformed cells; however, no information on cytokine production in these cells is available. To investigate the potential of the transformed cells to produce cytokines and their potential responses to antigen-stimulation, we purified mature B cells (CD21) from the whole blood of cattle experimentally infected with the T. annulata Kashi strain by magnetic separation. The purity and specificity of the established cell line was assessed by the identification of specific cell surface markers (CD21, IgM, and WC4) by flow cytometry analysis. The transcript levels of the cytokines IL1A, IL1B, IL2, IL4, IL6, IL8, IL10, IL16, LTA, TGFB1, TNFA, IFNA, and IFNB in transformed, buparvaquone (BW720c)-treated cells, and antigen-stimulated cells were analyzed by quantitative polymerase chain reaction (qPCR) using cDNA from these cells. A T. annulata-infected bovine B cell line was successfully established with a purity of ~98.8% (CD21). IL4 and IL12A were significantly (p < 0.01) upregulated in the transformed cells. In BW720c-treated transformed cells, IL12B, TGFB1, and IFNB were significantly (p < 0.01) upregulated. Notably, no significant (p > 0.05) upregulation of cytokines was observed in LPS-stimulated transformed cells. Moreover, IL1A, IL1B, IL8, and IL16 were significantly (p < 0.01) upregulated in LPS-stimulated B cells. Our data signify the potential use of this cell line for cytokine production, observance of immunoglobulins, and production of an attenuated vaccine against tropical theileriosis.


1988 ◽  
Vol 8 (12) ◽  
pp. 5358-5368
Author(s):  
C F Barth ◽  
E H Humphries

The infection of newly hatched chickens with reticuloendotheliosis virus strain T (REV-T) and a nonimmunosuppressive helper virus, chicken syncytial virus, induces rapidly metastatic B-cell lymphomas. In vivo analysis of these tumors with monoclonal antibodies detected the expression of the B-cell surface markers immunoglobulin M (IgM), CIa, Bu2, and CLA-1, but not IgG, Bu1, or a T-cell surface marker, CT-1. Cell lines derived from tumors exhibited the same pattern of staining, suggesting that expression of cell surface markers does not change during in vitro cell line development. All cell lines examined synthesized IgM in varying amounts. Northern (RNA blot) analysis confirmed abundant expression of v-rel mRNA, and Southern analysis revealed rearrangement of both heavy- and light-chain immunoglobulin loci. Analysis of the light-chain locus demonstrated that 20 of 22 lines contained a single rearranged allele. With respect to specific restriction enzyme sites within the V lambda 1 gene, the active allele in any given clone was either diversified or nondiversified. In contrast, examination of the heavy-chain loci within these lines demonstrated that 16 of the 22 had both alleles rearranged. Further diversification of the V lambda 1 locus did not occur after prolonged in vitro passage of the cell lines. We propose that v-rel expression arrests diversification of the light-chain locus in these lymphoid cells, allowing the production of stable, clonal B-cell populations. The development of these and similar cell lines will make it possible to identify specific stages of avian lymphoid ontogeny and to study the mechanism of rearrangement and diversification in the avian B lymphocyte.


Author(s):  
Edmund A. Rossi ◽  
David M. Goldenberg ◽  
Rosana Michel ◽  
Diane L. Rossi ◽  
Daniel J. Wallace ◽  
...  

1986 ◽  
Vol 22 (5) ◽  
pp. 273-279 ◽  
Author(s):  
Robert W. Engelman ◽  
Katsuhiko Machida ◽  
Ross E. Longley ◽  
Wing T. Liu ◽  
Liem Q. Trang ◽  
...  

Blood ◽  
1975 ◽  
Vol 45 (6) ◽  
pp. 871-880
Author(s):  
S Davis

Human lymphocytes can be separated into distinct populations based upon receptors on their cell surface. Thymus-derived (T-cell) lymphocytes can be identified by their ability to form rosetts with sheep erythrocytes (SRBC); bone marrow-derived (B-cell) lymphocytes bear characteristic surface markers for immunoglobulin, complement, and the Fc portion of IgG. Recently, populations of lymphocytes having either multiple markers or no detectable markers (null cells) have been observed. Based on studies of cell surface markers, a scheme is proposed that expands the known differentiation of the lymphod cell to include subpopulations which represent developmental stages. It is suggested that lymphocyte maturation involves alloantigenic changes in a circulating stem cell-drived nill cell, leading to a cell bearing markers for both T- and B-cells. It is from this latter cell that the classic T- and B-cells ultimately arise. Maturational defects which may explain the origin of primary lymphoproliferative diseases are discussed.


Sign in / Sign up

Export Citation Format

Share Document