肿瘤细胞治疗研究
英文原题:Dynamic changes in B cell subpopulations in response to triple-negative breast cancer development.
Dynamic changes in B cell subpopulations in response to triple-negative breast cancer development.
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三阴性乳腺癌(TNBC)预后较差且与高度侵袭性肿瘤相关,但其TIL(肿瘤浸润淋巴细胞)比例较高,而后者与较好的总生存期和治疗反应有关。近期研究报告 B 淋巴细胞能够识别过表达的正常蛋白及肿瘤相关抗原,但肿瘤发展如何可能改变 B 细胞反应仍有待阐明。
我们的发现揭示,4T1 和 E0771 小鼠肿瘤的发展对次级淋巴器官中的 B 细胞产生不同影响。值得注意的是,在两种小鼠模型中,肿瘤挑战后仅 7 天,引流淋巴结(tDLN)内总 B 细胞和浆细胞即显著扩增,而脾脏变化较不明显。令人意外的是,在两种模型的肿瘤微环境(TME)中均检测到不同 B 细胞亚群,但肿瘤发展似乎未导致其比例随时间发生重大变化。
此外,对 B 细胞调节表型的研究显示,在所评估组织中 B10 调节性 B 细胞(Breg)表型未受影响。更重要的是,我们发现两种小鼠模型的 tDLN 中 CD19+LAG-3+ 细胞增加。有趣的是,尽管 CD19+LAG-3+ 细胞在所有受评估组织中均仅占总 B 细胞的少数(<3%),其中大多数细胞 IgD 表达升高,提示 LAG-3 可能是 B 细胞活化标志物。与此相符,在 TNBC 患者队列的单细胞 RNA 测序数据中分析 LAG-3 时,我们检测到不同的细胞周期和增殖相关基因。更重要的是,本研究提示乳腺肿瘤中存在 LAG-3 B 细胞可能与良好预后有关,因为 LAG-3 B 细胞转录本水平较高的患者无进展间期(PFI)更长。这一新发现可能为利用 LAG-3+ B 细胞独特特性的靶向治疗开辟途径,有望改善 TNBC 患者结局。仍需进一步研究阐明这些细胞的机制通路,并在更大且多样化的患者队列中验证其预后价值。
Despite presenting a worse prognosis and being associated with highly aggressive tumors, triple-negative breast cancer (TNBC) is characterized by the higher frequency of tumor-infiltrating lymphocytes, which have been implicated in better overall survival and response to therapy. Though recent studies have reported the capacity of B lymphocytes to recognize overly-expressed normal proteins, and tumor-associated antigens, how tumor development potentially modifies B cell response is yet to be elucidated.
Our findings reveal distinct effects of 4T1 and E0771 murine tumor development on B cells in secondary lymphoid organs.
Notably, we observe a significant expansion of total B cells and plasma cells in the tumor-draining lymph nodes (tDLNs) as early as 7 days after tumor challenge in both murine models, whereas changes in the spleen are less pronounced. Surprisingly, within the tumor microenvironment (TME) of both models, we detect distinct B cell subpopulations, but tumor development does not appear to cause major alterations in their frequency over time.
Furthermore, our investigation into B cell regulatory phenotypes highlights that the B10 Breg phenotype remains unaffected in the evaluated tissues. Most importantly, we identified an increase in CD19 + LAG-3 + cells in tDLNs of both murine models. Interestingly, although CD19 + LAG-3 + cells represent a minor subset of total B cells (< 3%) in all evaluated tissues, most of these cells exhibit elevated expression of IgD, suggesting that LAG-3 may serve as an activation marker for B cells.
Corroborating with these findings, we detected distinct cell cycle and proliferation genes alongside LAG-3 analyzing scRNA-Seq data from a cohort of TNBC patients. More importantly, our study suggests that the presence of LAG-3 B cells in breast tumors could be associated with a good prognosis, as patients with higher levels of LAG-3 B cell transcripts had a longer progression-free interval (PFI).
This novel insight could pave the way for targeted therapies that harness the unique properties of LAG-3 + B cells, potentially offering new avenues for improving patient outcomes in TNBC.
Further research is warranted to unravel the mechanistic pathways of these cells and to validate their prognostic value in larger, diverse patient cohorts.
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