Faculty of Medicine, Hebrew University of Jerusalem, Jerusalem, Israel; and Institute of Pulmonary Medicine, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
Cancer Immunol Res. 2021 Jul;9(7):811-824. doi: 10.1158/2326-6066.CIR-20-0839. Epub 2021 Apr 27.
A major mechanism through which neutrophils have been suggested to modulate tumor progression involves the interaction and subsequent modulation of other infiltrating immune cells. B cells have been found to infiltrate various cancer types and play a role in tumor immunity, offering new immunotherapy opportunities. Nevertheless, the specific impact of tumor-associated neutrophils (TAN) on B cells has largely been overlooked. In the current study, we aimed to characterize the role of TANs in the recruitment and modulation of B cells in the tumor microenvironment (TME). We showed that TANs actively participate in the recruitment of B cells to the TME and identified TNFα as the major cytokine mediating B-cell chemotaxis by TANs. The recruitment of CD45B220CD138 splenic B cells by TANs resulted in B-cell phenotypic modulation, with 68.6% ± 2.1% of the total migrated B cells displaying a CD45B220CD138 phenotype, which is typical for plasma cells. This phenotype mirrored the large proportion (54.0% ± 6.1%) of CD45B220CD138 intratumoral B cells (i.e., plasma cells) in Lewis lung carcinoma tumors. We next confirmed that the differentiation of CD45B220CD138 B cells to functionally active CD45B220CD138 plasma cells required contact with TANs, was independent of T cells, and resulted in IgG production. We further identified membranal B-cell activating factor (BAFF) on TANs as a potential contact mechanism mediating B-cell differentiation, as blocking BAFF-receptor (BAFF-R) significantly reduced IgG production by 20%. Our study, therefore, demonstrates that TANs drive the recruitment and modulation of B cells into plasma cells in the TME, hence opening new avenues in the targeting of the immune system in cancer.
中性粒细胞调节肿瘤进展的主要机制涉及与其他浸润免疫细胞的相互作用和随后的调节。已经发现 B 细胞浸润各种癌症类型,并在肿瘤免疫中发挥作用,提供了新的免疫治疗机会。然而,肿瘤相关中性粒细胞 (TAN) 对 B 细胞的具体影响在很大程度上被忽视了。在本研究中,我们旨在表征 TAN 在肿瘤微环境 (TME) 中招募和调节 B 细胞的作用。我们表明 TAN 积极参与 B 细胞向 TME 的募集,并确定 TNFα 是 TAN 介导 B 细胞趋化作用的主要细胞因子。TAN 招募 CD45B220CD138 脾 B 细胞导致 B 细胞表型调节,总迁移 B 细胞中有 68.6%±2.1%呈现出 CD45B220CD138 表型,这是浆细胞的典型特征。这种表型反映了在 Lewis 肺癌肿瘤中,肿瘤内 B 细胞(即浆细胞)的大比例(54.0%±6.1%)。接下来,我们证实 CD45B220CD138 B 细胞分化为功能活跃的 CD45B220CD138 浆细胞需要与 TAN 接触,这独立于 T 细胞,并导致 IgG 产生。我们进一步确定 TAN 上的膜 B 细胞激活因子 (BAFF) 是介导 B 细胞分化的潜在接触机制,因为阻断 BAFF 受体 (BAFF-R) 可使 IgG 产生减少 20%。因此,我们的研究表明,TAN 驱动 B 细胞在 TME 中募集和调节为浆细胞,从而为癌症中免疫系统的靶向提供了新的途径。