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Circulating and intrahepatic antiviral B cells are defective in hepatitis B
Alice R. Burton, Laura J. Pallett, Laura E. McCoy, Kornelija Suveizdyte, Oliver E. Amin, Leo Swadling, Elena Alberts, Brian R. Davidson, Patrick T.F. Kennedy, Upkar S. Gill, Claudia Mauri, Paul A. Blair, Nadege Pelletier, Mala K. Maini
Alice R. Burton, Laura J. Pallett, Laura E. McCoy, Kornelija Suveizdyte, Oliver E. Amin, Leo Swadling, Elena Alberts, Brian R. Davidson, Patrick T.F. Kennedy, Upkar S. Gill, Claudia Mauri, Paul A. Blair, Nadege Pelletier, Mala K. Maini
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Research Article Immunology Infectious disease

Circulating and intrahepatic antiviral B cells are defective in hepatitis B

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Abstract

B cells are increasingly recognized as playing an important role in the ongoing control of hepatitis B virus (HBV). The development of antibodies against the viral surface antigen (HBV surface antigen [HBsAgs]) constitutes the hallmark of resolution of acute infection and is a therapeutic goal for functional cure of chronic HBV (CHB). We characterized B cells directly ex vivo from the blood and liver of patients with CHB to investigate constraints on their antiviral potential. Unexpectedly, we found that HBsAg-specific B cells persisted in the blood and liver of many patients with CHB and were enriched for T-bet, a signature of antiviral potential in B cells. However, purified, differentiated HBsAg-specific B cells from patients with CHB had defective antibody production, consistent with undetectable anti-HBs antibodies in vivo. HBsAg-specific and global B cells had an accumulation of CD21–CD27– atypical memory B cells (atMBC) with high expression of inhibitory receptors, including PD-1. These atMBC demonstrated altered signaling, homing, differentiation into antibody-producing cells, survival, and antiviral/proinflammatory cytokine production that could be partially rescued by PD-1 blockade. Analysis of B cells within healthy and HBV-infected livers implicated the combination of this tolerogenic niche and HBV infection in driving PD-1hiatMBC and impairing B cell immunity.

Authors

Alice R. Burton, Laura J. Pallett, Laura E. McCoy, Kornelija Suveizdyte, Oliver E. Amin, Leo Swadling, Elena Alberts, Brian R. Davidson, Patrick T.F. Kennedy, Upkar S. Gill, Claudia Mauri, Paul A. Blair, Nadege Pelletier, Mala K. Maini

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Figure 6

PD-1hi atMBC preferentially localize in the HBV-infected liver.

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PD-1hi atMBC preferentially localize in the HBV-infected liver.
(A) Repr...
(A) Representative staining and summary plot: frequencies of atMBC in paired IHL and blood samples (PBMC) from patients with CHB (10 HBV+ liver biopsies; 5 HBV+ liver resections) and uninfected controls (12 margins from HBV– colorectal metastases [CRC margins]; control IHL). (B) Frequencies of atMBC in control liver samples (22 CRC margins; 12 pretransplant perfusates; 6 biopsies from livers with nonviral hepatitis) and HBV-infected liver (10 HBV+ liver biopsies; 1 perfusate from HBsAg+ liver; 2 perfusates from HBV-resolved livers). Ctrl, control. (C) Percentage of intrahepatic B cells with atMBC or cMBC phenotype within global T-bethi, T-betint, or T-betlo populations (n = 2 CRC; 3 HBV+ tissue; 1 healthy perfusate). (D) Expression of FcRL5 (n = 4 HBV+ infected liver; 12 CRC margins) and PD-1 (n = 12 HBV+ liver; 13 CRC margins) on intrahepatic atMBC and cMBC. (E) Comparison of PD-1+ atMBC in uninfected liver (%; n = 15 CRC margins) and HBV+ liver (n = 13). (F) Representative staining and frequency of HBsAg-specific B cells (% of CD19+CD20+) in HBV+ liver samples (n = 14) compared with uninfected controls (n = 4 CRC margins). (G) Frequencies of HBsAg-specific MBC subsets in 7 individual HBV+ liver samples (patient [pt.] 1 through pt. 7). Error bars indicate mean ± SEM. P values were determined by Wilcoxon’s paired t test (A and D) and Mann-Whitney t test (B, E, and F). *P < 0.05; **P < 0.005; ***P < 0.001.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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