Cellular Immunology 2011-01-01

Characterization of peripheral blood acetylcholine receptor-binding B cells in experimental myasthenia gravis.

Windy Allman, Shamsher S Saini, Erdem Tuzun, Premkumar Christadoss

Index: Cell. Immunol. 271(2) , 292-8, (2011)

Full Text: HTML

Abstract

In myasthenia gravis (MG), the neuromuscular transmission is impaired by antibodies (Abs) specific for muscle acetylcholine receptor (AChR). Anti-AChR Abs can be detected in the serum of MG patients, although their levels do not correlate with disease severity. In this study, we developed a flow cytometric assay for the detection of peripheral blood AChR-specific B cells to characterize B cell phenotypes associated with experimental autoimmune myasthenia gravis (EAMG). Alexa-conjugated AChR was used as a probe for AChR-specific B cells (B220+Ig+). Mice with EAMG had significantly elevated frequencies of AChR-specific IgG2+ and IgM+ B cells. While the frequencies of IgG2+ B cells and plasma anti-AChR IgG2 levels significantly correlated with the clinical grades of EAMG, the frequencies of IgM+ B cells and plasma anti-AChR IgM levels did not. These results indicate that the frequency of AChR-specific and IgG1+ (mouse IgG2 equivalent) peripheral blood B cells and anti-AChR IgG1 levels could be potential biomarkers for MG disease severity.Copyright © 2011 Elsevier Inc. All rights reserved.


Related Compounds

Related Articles:

Analysis of epithelial cell shedding and gaps in the intestinal epithelium.

2011-01-01

[Methods Mol. Biol. 763 , 105-14, (2011)]

4D super-resolution microscopy with conventional fluorophores and single wavelength excitation in optically thick cells and tissues.

2011-01-01

[PLoS ONE 6(5) , e20645, (2011)]

Dual-view imaging system using a wide-range dichroic mirror for simultaneous four-color single-molecule detection.

2011-09-15

[Anal. Chem. 83(18) , 6948-55, (2011)]

Orientation of GST-tagged lectins via in situ surface modification to create an expanded lectin microarray for glycomic analysis.

2011-07-01

[Mol. Biosyst. 7(7) , 2114-7, (2011)]

In situ roughening of polymeric microstructures.

2010-04-01

[ACS Appl. Mater. Interfaces 2(4) , 1086-93, (2010)]

More Articles...