Integrative Oncology, BC Cancer, Vancouver, Canada.
Pathology and Laboratory Medicine, University of British Columbia, Vancouver, Canada.
Oncoimmunology. 2021 Aug 4;10(1):1959978. doi: 10.1080/2162402X.2021.1959978. eCollection 2021.
Hypoxia develops in germinal centers (GCs) induced by model antigens; however, it is unknown whether tumor-reactive GCs are also hypoxic. We identified GC hypoxia in lymph nodes (LNs) draining murine mammary tumors and lethally irradiated tumor cells, and found that hypoxia is associated with the levels of antibody-secreting B cells. Hypoxic culture conditions impaired the proliferation of activated B cells, and inhibited class-switching to IgG1 and IgA immunoglobulin isotypes . To assess the role of the hypoxic response in tumor-reactive GCs , we deleted von Hippel-Lindau factor (VHL) in class-switched B cells and found decreased GC B cells in tumor-draining LNs, reduced class-switched and tumor-specific antibodies in the circulation, and modified phenotypes of tumor-infiltrating T cells and macrophages. We also detected the hypoxia marker carbonic anhydrase IX in the GCs of LNs from breast cancer patients, providing evidence that GC hypoxia develops in humans. We conclude that GC hypoxia develops in TDLNs, and that the hypoxic response negatively regulates tumor-induced humoral immune responses in preclinical models.
在模型抗原诱导的生发中心(GC)中会发生缺氧;然而,尚不清楚肿瘤反应性 GC 是否也处于缺氧状态。我们在引流鼠乳腺肿瘤和致死性辐照肿瘤细胞的淋巴结(LN)中鉴定出 GC 缺氧,并发现缺氧与分泌抗体的 B 细胞水平有关。缺氧培养条件会损害活化 B 细胞的增殖,并抑制 IgG1 和 IgA 免疫球蛋白同种型的类别转换。为了评估缺氧反应在肿瘤反应性 GC 中的作用,我们在类别转换的 B 细胞中敲除了 von Hippel-Lindau 因子(VHL),发现引流肿瘤的 LN 中 GC B 细胞减少,循环中类别转换和肿瘤特异性抗体减少,以及浸润肿瘤的 T 细胞和巨噬细胞表型发生改变。我们还在乳腺癌患者 LN 的 GC 中检测到了缺氧标志物碳酸酐酶 IX,为 GC 缺氧发生在人类中提供了证据。我们得出结论,TDLN 中会发生 GC 缺氧,并且缺氧反应会负调节临床前模型中的肿瘤诱导的体液免疫反应。