RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Dual-Enzyme Nanoassemblies of Carbon Dots and Gold for Tumor Microenvironment-Responsive Immunotherapy in Hepatocellular Carcinoma.
Dual-Enzyme Nanoassemblies of Carbon Dots and Gold for Tumor Microenvironment-Responsive Immunotherapy in Hepatocellular Carcinoma.
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核仁氧化还原稳态,即线粒体内 H2O2 等氧化剂与谷胱甘肽(GSH)等还原剂之间的平衡,对包括生物合成和凋亡在内的众多生物过程至关重要,是癌症治疗的一个有前景的靶点。
在此,我们报道了靶向核仁的核壳结构氧化应激放大器 ECAu@CD NPs,其由基于碳点纳米酶组装而成的纳米壳组成,内部包裹由天然产物虫草素(Cor)、植物多酚表没食子儿茶素 3-没食子酸酯(EGCG)和氯金酸(HAuCl4)构成的纳米核。
我们观察到,ECAu@CD NPs 能够特异性靶向核仁,并以原子高效的方式耗竭线粒体谷胱甘肽,从而放大 EGCG 诱导的活性氧损伤,最终触发癌细胞凋亡。
我们的研究表明,在影像引导下靶向注射这些颗粒,可显著抑制肝细胞癌皮下异种移植模型中的肿瘤进展,同时保持安全性并避免任何不良反应。
具体而言,该放大器招募了大量肿瘤浸润免疫细胞,如 T 细胞、NK 细胞和巨噬细胞,从而将“冷”肿瘤转化为“热”肿瘤,以激活全身性抗肿瘤免疫反应。
总之,我们的研究揭示,ECAu@CD NPs 增强细胞核内氧化应激,并在体内有效抑制肿瘤生长,成为抗癌治疗的有力候选者。
Nucleolar redox homeostasis, which is the balance between oxidants such as H 2 O 2 and reductants such as glutathione (GSH) within mitochondria and is vital for numerous biological processes, including biosynthesis and apoptosis, is a promising target for cancer therapy.
Herein, we report nucleolus-targeted core-shell structured oxidative stress amplifier ECAu@CD NPs, which consisted of a nanoshell assembled from a carbon dot-based nanozyme, encapsulating a nanocore composed of the natural product cordycepin (Cor), plant polyphenol epigallocatechin 3-gallate (EGCG), and chloroauric acid (HAuCl 4 ).
We observed that the ECAu@CD NPs can specifically target the nucleous and deplete mitochondrial glutathione in an atomically efficient manner, thereby amplifying the reactive oxygen species damage induced by EGCG and ultimately triggering apoptosis in cancer cells.
Our research indicates that the targeted injection of these particles, guided by imaging, significantly curbs the progression of tumors in subcutaneous xenograft models of hepatocellular carcinoma, all while maintaining safety and avoiding any adverse reactions.
Specifically, the amplifier recruited massive tumor-infiltrating immune cells, such as T cells, NK cells, and macrophages, thus transforming "cold" tumors into "hot" ones to activate systemic antitumor immune responses. In summary, our investigation reveals that ECAu@CD NPs enhance oxidative stress within the cell nucleus and effectively inhibit tumor growth in vivo , emerging as a strong candidate for anticancer therapy.
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