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:Xiaoyao San alleviates emotional distress - induced TNBC growth through augmenting intratumoral CD8(+)T cell infiltration mediated by Rela/NF-kB-Cxcl9 axis.
Xiaoyao San alleviates emotional distress - induced TNBC growth through augmenting intratumoral CD8(+)T cell infiltration mediated by Rela/NF-kB-Cxcl9 axis.
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XYS 直接靶向并激活瘤内 Rela/NF-κB-Cxcl9 轴,促进 CD8+ T 细胞浸润和活化,从而抑制 ED-TNBS 的生长。
情绪困扰(ED)与三阴性乳腺癌(TNBC)的进展密切相关。逍遥散(XYS)是一种传统用于情绪调节的经典中药方剂,在情绪相关性乳腺癌中已显示出潜在的治疗效果。然而,XYS缓解ED诱导的TNBC(ED-TNBC)的分子机制尚不充分明确。本研究旨在探讨XYS对ED-TNBC的治疗作用并阐明其潜在的分子机制。
建立了一种接受慢性不可预知温和应激(CUMS)的TNBC小鼠模型,以模拟ED-TNBC状态。通过行为学评估和肿瘤生长分析评价了不同剂量XYS的治疗效果。采用整合网络药理学、生物信息学和分子动力学模拟的多组学分析,以确定XYS的主要活性成分和关键分子靶点。进行了转录组分析、体内和体外功能实验以及分子生物学实验,以阐明XYS介导调控的分子机制。
高剂量XYS显著缓解了抑郁样行为并抑制了ED-TNBC肿瘤进展,未观察到明显不良反应。转录组学和分子分析显示,XYS通过激活Cxcl9增强了CD8+ T细胞浸润和细胞毒性活性。发现XYS的活性成分直接与转录因子Rela结合。后续实验证实,TNBC细胞中Cxcl9的分泌依赖于Rela活性。此外,XYS上调了Rela表达并促进其核转位。
Emotional distress (ED) is closely associated with the progression of triple-negative breast cancer (TNBC). Xiaoyao San (XYS), a classical Chinese herbal prescription traditionally used for mood regulation, has demonstrated potential therapeutic efficacy in emotion-related breast cancer. However, the molecular mechanisms through which XYS mitigates ED-induced TNBC (ED-TNBC) remain insufficiently characterized. This study aimed to investigate the therapeutic effects of XYS on ED-TNBC and elucidate its underlying molecular mechanisms.
A TNBC mouse model subjected to chronic unpredictable mild stress (CUMS) was developed to simulate ED-TNBC conditions. The therapeutic efficacy of XYS at varying doses was evaluated through behavioral assessments and tumor growth analyses. Multi-omics analyses integrating network pharmacology, bioinformatics, and molecular dynamics simulations were employed to identify principal active constituents and key molecular targets of XYS. Transcriptomic profiling, in vivo and in vitro functional assays, and molecular biology experiments were conducted to delineate the molecular mechanisms underlying XYS-mediated regulation.
High-dose XYS markedly alleviated depression-like behaviors and suppressed ED-TNBC tumor progression, with no evident adverse effects observed. Transcriptomic and molecular analyses revealed that XYS enhanced CD8 + T cell infiltration and cytotoxic activity through activation of Cxcl9. The active constituents of XYS were found to bind directly to the transcription factor Rela. Subsequent experiments verified that Cxcl9 secretion from TNBC cells depends on Rela activity. In addition, XYS upregulated Rela expression and promoted its nuclear translocation.
XYS directly targets and activates the intratumoral Rela/NF-κB-Cxcl9 axis, promoting CD8 + T cell infiltration and activation, thereby inhibiting the growth of ED-TNBS.
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