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Longitudinally persistent cerebrospinal fluid B cells can resist treatment in multiple sclerosis
Ariele L. Greenfield, Ravi Dandekar, Akshaya Ramesh, Erica L. Eggers, Hao Wu, Sarah Laurent, William Harkin, Natalie S. Pierson, Martin S. Weber, Roland G. Henry, Antje Bischof, Bruce A.C. Cree, Stephen L. Hauser, Michael R. Wilson, H.-Christian von Büdingen
Ariele L. Greenfield, Ravi Dandekar, Akshaya Ramesh, Erica L. Eggers, Hao Wu, Sarah Laurent, William Harkin, Natalie S. Pierson, Martin S. Weber, Roland G. Henry, Antje Bischof, Bruce A.C. Cree, Stephen L. Hauser, Michael R. Wilson, H.-Christian von Büdingen
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Research Article Immunology Neuroscience

Longitudinally persistent cerebrospinal fluid B cells can resist treatment in multiple sclerosis

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Abstract

B cells are key contributors to chronic autoimmune pathology in multiple sclerosis (MS). Clonally related B cells exist in the cerebrospinal fluid (CSF), meninges, and CNS parenchyma of MS patients. We sought to investigate the presence of clonally related B cells over time by performing Ig heavy chain variable region repertoire sequencing on B cells from longitudinally collected blood and CSF samples of MS patients (n = 10). All patients were untreated at the time of the initial sampling; the majority (n = 7) were treated with immune-modulating therapies 1.2 (±0.3 SD) years later during the second sampling. We found clonal persistence of B cells in the CSF of 5 patients; these B cells were frequently Ig class-switched and CD27+. Specific blood B cell subsets appear to provide input into CNS repertoires over time. We demonstrate complex patterns of clonal B cell persistence in CSF and blood, even in patients on immune-modulating therapy. Our findings support the concept that peripheral B cell activation and CNS-compartmentalized immune mechanisms can in part be therapy resistant.

Authors

Ariele L. Greenfield, Ravi Dandekar, Akshaya Ramesh, Erica L. Eggers, Hao Wu, Sarah Laurent, William Harkin, Natalie S. Pierson, Martin S. Weber, Roland G. Henry, Antje Bischof, Bruce A.C. Cree, Stephen L. Hauser, Michael R. Wilson, H.-Christian von Büdingen

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Figure 3

B cells that persist in the CSF are often SM and plasma cells.

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B cells that persist in the CSF are often SM and plasma cells.
(A) Clona...
(A) Clonally related B cell subsets are connected by lines between CSF (top half of circle) and PB (bottom half) at T1 (left half) and T2 (right half). Each segment along the circle represents a B cell subset from CSF or PB. Lines connecting B cell subsets indicate B cell subsets that share 1 or more Ig-VH clusters in common. Gray lines, PB-only Ig-VH clusters; blue lines, persistent CSF Ig-VH clusters; red lines, CSF Ig-VH clusters with PB contribution; yellow lines, T1-PB Ig-VH clusters that share clonal relatives with T2-CSF yet not with T1-CSF. Gray font indicates subsets or Ig isotypes from which no Ig-VH libraries could be obtained. Persistent CSF Ig-VH clusters were linked to PB Ig-VH sequences derived from Ig class-switched memory (SM) B cells (n = 4 patients), double-negative (DN) B cells (n = 3 patients at T1, n = 2 patients at T2), and plasmablasts/plasma cells (PCs) (n = 2 patients at T1 and 1 patient at T2). (B) T1-PB B cell subsets that are clonally related to T2-CSF without involving T1-CSF (i.e., quantitation of yellow lines depicted in A). USM, unswitched memory.

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