CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dishevelled 2 regulates cancer cell proliferation and T cell mediated immunity in HER2-positive breast cancer.
Dishevelled 2 regulates cancer cell proliferation and T cell mediated immunity in HER2-positive breast cancer.
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我们的研究表明 DVL2 蛋白在 HER2+ BC 中具有潜在的免疫调节作用。对 DVL 旁系同源物及其对抗肿瘤免疫影响的更深入机制研究,可能有助于揭示 DVLs 作为潜在治疗靶点,使 BC 患者获益。
Dishevelled旁系同源物(DVL1、2、3)是Wnt通路的关键介质,在影响肿瘤微环境的组成性致癌信号中发挥作用。虽然既往研究显示β-catenin与T细胞基因表达相关,但关于DVL2在调节肿瘤免疫中的作用知之甚少。本研究旨在揭示DVL2与HER2阳性(HER2+)乳腺癌(BC)在调节肿瘤免疫和疾病进展中的新相互作用。
DVL2 功能缺失研究在两种不同的 HER2+ BC 细胞系中进行,分别在有或无临床批准的 HER2 抑制剂 Neratinib 的条件下开展。我们分析了经典 Wnt 标志物的 RNA(RT-qPCR)和蛋白(western blot)表达,并分别通过活细胞成像和流式细胞术进行了细胞增殖和细胞周期分析。在 24 例 HER2+ BC 患者中开展了一项初步研究,以剖析 DVL2 在肿瘤免疫中的作用。对患者记录和库存组织组织学进行了回顾性病历审查。数据在 SPSS(版本 25)和 GraphPad Prism(版本 7)中进行分析,显著性为 p < 0.05。
DVL2 调控参与抗原呈递和 T 细胞维持的免疫调节基因的转录。在 HER2+ BC 细胞系中(±Neratinib),DVL2 功能缺失下调了参与细胞增殖、迁移、侵袭的 Wnt 靶基因的 mRNA 表达。同样,活细胞增殖和细胞周期分析显示,在所用两种细胞系之一中,与未靶向对照相比,DVL2 敲低(±Neratinib)导致增殖减少、生长阻滞(G1)增加、有丝分裂(G2/M)受限。对接受新辅助化疗的患者组织(n = 14)的分析进一步表明,基线活检中较高的 DVL2 表达与 % CD8α 水平呈显著负相关(r = - 0.67,p < 0.05),而与 NLR 呈正相关(r = 0.58,p < 0.05),其中高 NLR 表示更差的癌症预后。我们初步研究的这些结果揭示了 DVL2 蛋白在调节 HER2+ BC 肿瘤免疫微环境和生存临床预测因素中的有趣作用。
Dishevelled paralogs (DVL1, 2, 3) are key mediators of Wnt pathway playing a role in constitutive oncogenic signaling influencing the tumor microenvironment. While previous studies showed correlation of β-catenin with T cell gene expression, little is known about the role of DVL2 in modulating tumor immunity. This study aimed to uncover the novel interaction between DVL2 and HER2-positive (HER2+) breast cancer (BC) in regulating tumor immunity and disease progression.
DVL2 loss of function studies were performed with or without a clinically approved HER2 inhibitor, Neratinib in two different HER2+ BC cell lines. We analyzed RNA (RT-qPCR) and protein (western blot) expression of classic Wnt markers and performed cell proliferation and cell cycle analyses by live cell imaging and flow cytometry, respectively. A pilot study in 24 HER2+ BC patients was performed to dissect the role of DVL2 in tumor immunity. Retrospective chart review on patient records and banked tissue histology were performed. Data were analyzed in SPSS (version 25) and GraphPad Prism (version 7) at a significance p < 0.05.
DVL2 regulates the transcription of immune modulatory genes involved in antigen presentation and T cell maintenance. DVL2 loss of function down regulated mRNA expression of Wnt target genes involved in cell proliferation, migration, invasion in HER2+ BC cell lines (±Neratinib). Similarly, live cell proliferation and cell cycle analyses reveal that DVL2 knockdown (±Neratinib) resulted in reduced proliferation, higher growth arrest (G1), limited mitosis (G2/M) compared to non-targeted control in one of the two cell lines used. Analyses on patient tissues who received neoadjuvant chemotherapy (n = 14) further demonstrate that higher DVL2 expression at baseline biopsy pose a significant negative correlation with % CD8α levels (r = - 0.67, p < 0.05) while have a positive correlation with NLR (r = 0.58, p < 0.05), where high NLR denotes worse cancer prognosis. These results from our pilot study reveal interesting roles of DVL2 proteins in regulating tumor immune microenvironment and clinical predictors of survival in HER2+ BC.
Our study demonstrates potential immune regulatory role of DVL2 proteins in HER2+ BC. More in-depth mechanistic studies of DVL paralogs and their influence on anti-tumor immunity may provide insight into DVLs as potential therapeutic targets benefiting BC patients.
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