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:Conscription of Immune Cells by Light-Activatable Silencing NK-Derived Exosome (LASNEO) for Synergetic Tumor Eradication.
Conscription of Immune Cells by Light-Activatable Silencing NK-Derived Exosome (LASNEO) for Synergetic Tumor Eradication.
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自然杀伤(NK)细胞来源的外泌体(NEO)具有多种免疫调节功能,是有前景的抗肿瘤纳米生物制剂。然而,要取得具有临床意义的治疗结局,仍需显著增强其免疫调节能力。研究者通过工程化改造 NEO,使其携带亲水性小干扰 RNA(siRNA)和疏水性光敏剂 Ce6,构建了可光激活的沉默型 NK 细胞来源外泌体(LASNEO)。对 NEO 处理细胞采用 Western blot 和 RNA-seq 分析凋亡通路相关基因,结果显示 NEO 可有效发挥类似 NK 细胞的肿瘤细胞毒作用。与此同时,激光照射产生的活性氧(ROS)不仅触发显著的光动力治疗效应,还促进肿瘤微环境(TME)中肿瘤相关巨噬细胞向 M1 型极化及树突状细胞成熟。
此外,ROS 还能加速 siRNA 进入 TME 细胞并从内体中逃逸。最终,靶向 PLK1 或 PD-L1 的 siRNA 可在癌细胞中有效沉默相应基因;下调 PD-L1 可恢复 TME 中 T 细胞的免疫监视。
因此,所提出的 LASNEO 可通过募集多种免疫细胞展现出优异抗肿瘤效应。鉴于其制备简单且可控,LASNEO 显示出令人瞩目的临床转化潜力。
Exosomes derived from natural killer (NK) cells (NEO) constitute promising antineoplastic nano-biologics because of their versatile functions in immune regulation.
However, a significant augment of their immunomodulatory capability is an essential need to achieve clinically meaningful treatment outcomes. Light-activatable silencing NK-derived exosomes (LASNEO) are orchestrated by engineering the NEO with hydrophilic small interfering RNA (siRNA) and hydrophobic photosensitizer Ce6.
Profiling of genes involved in apoptosis pathway with Western blot and RNA-seq in cells receiving NEO treatment reveals that NEO elicits effective NK cell-like cytotoxicity toward tumor cells. Meanwhile, reactive oxygen species (ROS) generation upon laser irradiation not only triggers substantial photodynamic therapy effect but also boosts M1 tumor-associated macrophages polarization and DC maturation in the tumor microenvironment (TME).
In addition, ROS also accelerates the cellular entry and endosomal escape of siRNA in TME.
Finally, siRNAs targeting PLK1 or PD-L1 induce robust gene silencing in cancer cells, and downregulation of PD-L1 restores the immunological surveillance of T cells in TME.
Therefore, the proposed LASNEO exhibit excellent antitumor effects by conscripting multiple types of immune cells. Considering that its manufacture is quite simple and controllable, LASNEO show compelling potential for clinical translational application.
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