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:Biohybrid Chlorella-HSA with Self-Oxygenation and Dual-Modal activation for synergistic Photo-Sonodynamic immunotherapy.
Biohybrid Chlorella-HSA with Self-Oxygenation and Dual-Modal activation for synergistic Photo-Sonodynamic immunotherapy.
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多模态动态疗法通过协同利用活性氧(ROS)介导的细胞毒性增强精准肿瘤治疗,光动力和声动力疗法即为代表。但这类疗法仍面临关键挑战,包括肿瘤缺氧、ROS产量低、深部组织穿透不足和免疫抑制生态位。为应对这些问题,我们将小球藻(Chlorella vulgaris,Chl)依次与5,10,15,20-四(4-吡啶基)-21H,23H-卟吩四碘化物(TPP)及人血清白蛋白(HSA)整合,构建生物杂合平台Chl@TPP/HSA,用于光声动力协同免疫治疗。该系统整合了小球藻的光合产氧能力和TPP的双重光/声敏化特性,从而克服缺氧并增强细胞毒效应。由于表面修饰HSA,与未修饰小球藻相比,肿瘤靶向蓄积提高6.4倍。
体内外研究显示,激光和超声(US)照射下的Chl@TPP/HSA可有效诱导免疫原性细胞死亡(ICD),表现为高迁移率族蛋白B1(HMGB1)转位、ATP释放和钙网蛋白(CRT)暴露。这些作用协同促进树突状细胞(DC)成熟(CD80+CD86+增加42.5%)、增强NK细胞细胞毒性(CD107a+上调59.5%)、促进细胞毒性CD8+ T细胞浸润(增加32.5%),并诱导巨噬细胞向M1表型极化(CD206+细胞减少30.7%)。在4T1乳腺癌模型中,全身给予Chl@TPP/HSA通过光声动力协同免疫治疗使肿瘤体积减少91.7%。这些结果证实Chl@TPP/HSA是一个多功能平台,结合自体产氧、双模态ROS生成和免疫调节,为精准肿瘤治疗提供了有效策略。
Multimodal dynamic therapies enhance precision oncology by synergistically harnessing reactive oxygen species (ROS)-mediated cytotoxicity, as exemplified in photodynamic and sonodynamic modalities.
However, it faces key challenges including hypoxic tumors, low ROS yields, poor deep-tissue penetration, and immunosuppressive niches. To address these challenges, we engineered Chlorella vulgaris (Chl) into a biohybrid platform through sequential integration with 5,10,15,20-tetrakis(4-pyridyl)-21H,23H-porphine tetraiodide (TPP) and human serum albumin (HSA) (termed Chl@TPP/HSA) for synergistic photo-sonodynamic immunotherapy. This system integrates the photosynthetic oxygenation capacity of Chl with the dual photo-sonosensitizing properties of TPP, thereby overcoming hypoxia and amplifying cytotoxic effects. Due to surface functionalization with HSA, tumor-targeted accumulation was improved by 6. 4-fold compared with that of unmodified Chl.
In vitro and in vivo studies demonstrated that Chl@TPP/HSA under laser and ultrasound (US) irradiation effectively induced immunogenic cell death (ICD), which was marked by high mobility group box 1 (HMGB1) translocation, ATP release, and calreticulin (CRT) exposure. These effects synergistically activated dendritic cell (DC) maturation (42. 5 % CD80 + CD86 + increase), enhanced natural killer (NK) cell cytotoxicity (59. 5 % upregulation of CD107a + ), promoted cytotoxic CD8 + T-cell infiltration (32.
5 % increase), and polarized macrophages toward the M1 phenotype (30. 7 % reduction in CD206 + cells). Systemic administration of Chl@TPP/HSA achieved a 91. 7 % reduction in tumor volume in the 4 T1 breast cancer model via synergistic photo-sonodynamic immunotherapy. These results establish Chl@TPP/HSA as a multifunctional platform that integrates self-oxygenation, dual-modal ROS generation, and immunomodulation, offering an effective strategy for precision oncology.
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