基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:NOX4 modulates breast cancer progression through cancer cell metabolic reprogramming and CD8(+) T cell antitumor activity.
NOX4 modulates breast cancer progression through cancer cell metabolic reprogramming and CD8(+) T cell antitumor activity.
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这些发现表明,NOX4 通过限制 MYC 驱动的代谢适应并支持 CD8+ T 细胞介导的免疫,从而抑制乳腺癌的侵袭性。NOX4 的缺失会促进更恶性的表型并削弱 T 细胞反应,而其过表达则延长生存期并增强检查点抑制剂的疗效。以 NOX4-MYC 轴为治疗靶点并利用 NOX4 的免疫调节能力,可能为乳腺癌管理提供有前景的策略。
乳腺癌是全球女性中最常被诊断的恶性肿瘤,也是癌症相关死亡的主要原因。尽管 NADPH 氧化酶 4(NOX4)已被认为参与多种致癌过程,但其在乳腺癌进展、代谢重编程和免疫调节中的确切功能仍不清楚。
我们使用小鼠4T1和EO771乳腺癌模型,通过CRISPR/Cas9生成NOX4敲除(KO)细胞系。体外实验(细胞增殖、集落形成、伤口愈合和Seahorse代谢分析)和体内原位肿瘤研究评估了NOX4缺失的影响。通过RNA测序和基因集富集分析鉴定转录组变化。我们在NOX4 KO细胞中进行MYC敲低,以研究其机制作用。流式细胞术表征了肿瘤浸润免疫细胞。最后,测试了NOX4过表达细胞的生存获益和对双检查点免疫治疗(抗PD-1/抗CTLA-4)的应答。
NOX4缺失在体内加速了肿瘤生长,并在体外增强了增殖、集落形成和迁移能力。代谢谱分析显示,NOX4 KO细胞的糖酵解和脂肪酸氧化升高,同时线粒体质量增加。转录组和富集分析揭示NOX4 KO细胞中MYC通路激活;抑制MYC可逆转这些过度增殖和代谢变化。在免疫学方面,NOX4 KO减少了CD8+ T细胞浸润和功能,部分原因是CCL11/CCL5水平降低,同时PD-L1表达上调。相反,NOX4过表达改善了小鼠生存率,并与检查点阻断产生协同作用,表明对抗肿瘤免疫具有积极作用。
We used murine 4T1 and EO771 breast cancer models to generate NOX4 knockout (KO) cell lines via CRISPR/Cas9. In vitro assays (cell proliferation, colony formation, wound healing, and Seahorse metabolic analyses) and in vivo orthotopic tumor studies assessed the impact of NOX4 loss. Transcriptomic changes were identified through RNA sequencing and gene set enrichment analysis. We performed MYC knockdown in NOX4 KO cells to investigate its mechanistic role. Flow cytometry characterized tumor-infiltrating immune cells. Finally, NOX4-overexpressing cells were tested for survival benefit and response to dual-checkpoint immunotherapy (anti-PD-1/anti-CTLA-4).
NOX4 deletion accelerated tumor growth in vivo and enhanced proliferation, colony formation, and migratory capacity in vitro . Metabolic profiling showed that NOX4 KO cells had elevated glycolysis and fatty acid oxidation, along with increased mitochondrial mass. Transcriptomic and enrichment analyses revealed MYC pathway activation in NOX4 KO cells; suppressing MYC reversed these hyperproliferative and metabolic changes. Immunologically, NOX4 KO reduced CD8+ T cell infiltration and function, partially due to lowered CCL11/CCL5 levels, while PD-L1 expression was upregulated. In contrast, NOX4 overexpression improved survival in mice and synergized with checkpoint blockade, demonstrating a positive effect on anti-tumor immunity. DISCUSSION: These findings show that NOX4 constrains breast cancer aggressiveness by limiting MYC-driven metabolic adaptations and supporting CD8+ T cell-mediated immunity. Loss of NOX4 promotes a more malignant phenotype and dampens T cell responses, whereas its overexpression prolongs survival and enhances checkpoint inhibitor efficacy. Therapeutically targeting the NOX4-MYC axis and leveraging NOX4's immunomodulatory capacity could offer promising strategies for breast cancer management.
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