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A stromal platform for robust expansion of functional IL-10–producing B cells for immune regulation
Ryo Kawakami, Keisuke Imabayashi, Akemi Baba, Yuichi Saito, Kazuhiko Kawata, Yutaro Yada, Airi Shibata, Rinka Ito, Ryo Kurasawa, Ryota Higuchi, Sungyeon Park, Hiroaki Niiro, Shinya Tanaka, Yoshihiro Baba
Ryo Kawakami, Keisuke Imabayashi, Akemi Baba, Yuichi Saito, Kazuhiko Kawata, Yutaro Yada, Airi Shibata, Rinka Ito, Ryo Kurasawa, Ryota Higuchi, Sungyeon Park, Hiroaki Niiro, Shinya Tanaka, Yoshihiro Baba
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Research Article Immunology

A stromal platform for robust expansion of functional IL-10–producing B cells for immune regulation

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Abstract

IL-10–producing B cells exert immunosuppressive effects, yet their low abundance and poor in vitro viability have limited their therapeutic application. Here, we developed a stromal coculture system using MS5 cells engineered to express human CD40L, BAFF, and IFN-β1 (MS5-3F, for “3 factors”), which enables robust induction and greater than 1000-fold expansion of human IL-10–producing B cells. The expanded cells showed phenotypic and transcriptional profiles characteristic of unswitched (IgM+) plasmablasts and potently suppressed CD4+ T cell proliferation in an IL-10–dependent manner. MS5-3F–expanded B cells also increased the frequency of regulatory T cells in vitro, an effect that was not abrogated by IL-10/IL-10R blockade, suggesting contributions from additional mechanisms. IL-10 production originated predominantly from naive B cells, rather than memory B cells. Furthermore, B cells from patients with systemic lupus erythematosus, despite impaired IL-10 production under conventional conditions, were efficiently differentiated into IL-10–producing B cells using this system. The expanded cells showed minimal IgG-secreting output. Our platform offers a scalable strategy for generating human regulatory B cells, laying the foundation for B cell–based immunotherapies.

Authors

Ryo Kawakami, Keisuke Imabayashi, Akemi Baba, Yuichi Saito, Kazuhiko Kawata, Yutaro Yada, Airi Shibata, Rinka Ito, Ryo Kurasawa, Ryota Higuchi, Sungyeon Park, Hiroaki Niiro, Shinya Tanaka, Yoshihiro Baba

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Figure 4

Suppressive function of MS5-3F–induced IL-10–producing B cells.

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Suppressive function of MS5-3F–induced IL-10–producing B cells.
(A) Sche...
(A) Schematic of the T cell suppression assay. (B and C) Suppression of T cell proliferation by cocultured B cells. (B) Representative CTV dilution histograms of CD4+ T cells cocultured with either primary B cells or MS5-3F–induced B cells at various B/T ratios. (C) Summarized percentage inhibition of T cell proliferation. (D and E) IL-10–dependent suppression of T cell proliferation. (D) Representative CTV dilution histograms of CD4+ T cells cocultured with MS5-3F–induced B cells in the presence of anti–IL-10/anti–IL-10R neutralizing antibodies or isotype controls. (E) Summarized percentage inhibition. (F) Summarized graphs showing Treg induction by primary B cells and MS5-3F–induced cocultured B cells. Peripheral blood–derived CD4+CD25– non-Tregs were cocultured with primary B cells or MS5-3F–induced B cells (cocultured with MS5-3F for 12 days and restimulated for 2 days) on plate-bound anti-CD3 antibody for 3 days. To evaluate the role of IL-10 in Treg induction, anti–IL-10/anti–IL-10R monoclonal antibodies or isotype control were added during the culture. Tregs were defined as CD4+CD25hiCD127–/loCTLA4hiFOXP3+ cells. See also Supplemental Figure 10C for representative flow cytometry plots. Data from 3 independent experiments were combined (C and E: n = 8, F: n = 9). Data are presented as mean ± SEM. P values are from 1-way ANOVA with Tukey’s post hoc test (C, E, and F). **P ≤ 0.01; ***P ≤ 0.001; ****P ≤ 0.0001. NS, not significant.

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