研究概要
FUS刺激脾脏通过改变钙依赖性信号通路而非CAP兴奋来促进免疫细胞增殖和活化,从而调节抗肿瘤免疫,表明具有显著的临床转化潜力。
研究思路结论见上方概要
背景
超声触发的脾免疫调节对多种炎症性疾病表现出显著的抗炎作用,其机制主要归因于胆碱能抗炎通路(CAP)的激活。然而,脾超声刺激在肿瘤管理中的潜在作用及潜在机制鲜有报道且定义肤浅。
方法
在优化超声参数后,本研究评估了脾脏超声处理在多种肿瘤模型(例如原位H22肝细胞癌(HCC)、原位Hepa1-6 HCC和皮下4T1乳腺癌)中的抗肿瘤疗效,并应用流式细胞术定量免疫细胞群体的动态变化。此外,在原位H22 HCC模型中,本研究采用荧光激活细胞分选、RNA测序、通过无水乙醇消融进行脾神经阻滞以及体外Ca²⁺流测定,以阐明超声介导的脾脏抗肿瘤免疫机制。
结果
本研究首次评估了精准靶向脾脏的聚焦超声(FUS sti. spleen)在特定超声剂量下对多种肿瘤的治疗效果。研究充分证明,FUS 直接刺激脾脏免疫细胞增殖和活化(尤其是 NK 和 CD8 T 细胞),而非通过 CAP 兴奋来调节脾脏免疫功能。特别是,在响应 FUS 刺激以抑制癌症方面,NK 细胞比 CD8 T 细胞更为不可或缺和重要。NK 和 CD8 T 细胞的 RNA 测序以及体外实验揭示,FUS 首先调控钙相关信号通路,进而调节其他通路,如 PI3K-AKT、Rap1 和 Hippo 通路,以促进免疫细胞增殖、迁移和活化,从而抑制癌细胞恶化。特别是,FUS sti. spleen 与 FUS 干预肿瘤协同诱导的肿瘤抑制效果优于两者单独应用。
展开英文摘要原文
BACKGROUND: Splenic immunomodulation triggered by ultrasound shows a significant anti-inflammatory effect against various inflammatory diseases, whose mechanism is mainly attributable to the activation of cholinergic anti-inflammatory pathway (CAP). However, the potential role and underlying mechanism of splenic ultrasound stimulation in cancer management have been rarely reported and superficially defined.
METHODS: Following optimization of ultrasonic parameters, this study evaluated the anti-tumor efficacy of splenic sonication across multiple tumor models (eg, orthotopic H22 hepatocellular carcinoma (HCC), orthotopic Hepa1-6 HCC, and subcutaneous 4T1 breast cancer), and applied flow cytometry to quantify dynamic alterations in immune cell populations. Furthermore, in orthotopic H22 HCC models, this study employed fluorescence-activated cell sorting, RNA sequencing, splenic nerve blockade via absolute ethanol ablation, and in vitro Ca²⁺ flux assays to delineate the mechanisms underlying ultrasound-mediated splenic anti-tumor immunity.
RESULTS: This study first assessed the therapeutic effect of focused ultrasound precisely targeting the spleen (FUS sti. spleen) on various tumors at specific ultrasonic doses. It fully demonstrated that FUS directly stimulated splenic immune cell proliferation and activation (especially NK and CD8 T cells) rather than CAP excitation to modulate splenic immune function. Particularly, NK cells are much more indispensable and important in responding to FUS stimulation for cancer suppression than CD8 T cells. RNA sequencing of NK and CD8 T cells, as well as in vitro experiments revealed that FUS firstly regulated calcium-related signaling pathways to further modulate others, such as PI3K-AKT, Rap1, and Hippo pathways to promote immune cell proliferation, migration and activation to suppress cancer cell deterioration. Particularly, FUS sti. spleen and FUS intervention on the tumor synergistically induced the best tumor suppression than each of the two taken individually.
CONCLUSION: FUS sti. spleen facilitated immunocyte proliferation and activation through altering calcium-dependent signaling rather than CAP excitation to modulate anti-tumor immunity, indicating substantial clinical translation potential.
论文信息
- 作者
- Dong W、Wang G、Li S、Wang Q、Li W、Liu H、Liang Y、Zhou Z
- 单位
- National and Local Joint Engineering Research Center of Biodiagnostics and Biotherapy, the Second Affiliated Hospital, Xi'an Jiaotong University, Xi'an, People's Republic of China.China
- 期刊
- ImmunoTargets and therapy2025