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:A pump-free microfluidic co-culture system for investigating NK cell-tumor spheroid interactions in flow conditions.
A pump-free microfluidic co-culture system for investigating NK cell-tumor spheroid interactions in flow conditions.
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自然杀伤(NK)细胞因其强大的肿瘤靶向能力而在免疫治疗中发挥关键作用。然而,可用于评估肿瘤浸润NK 细胞(TINKs)的体外3D动态模型仍然稀缺。
本研究通过开发一种新型无泵微流控芯片来研究NK-92细胞与前列腺DU 145肿瘤球体之间的相互作用,以填补这一空白。该平台有助于分离游离NKs和TINKs以进行亚型表征。该设计集成了多个平面与多层纸支架以容纳肿瘤球体,使NK-92细胞能够穿越模拟细胞外基质的Matrigel涂层屏障。双通道无泵装置实现了NK-92细胞的单向循环,允许在流动条件下分析肿瘤球体运动和NK-92细胞相互作用。
结果表明,通过以21°和15°的倾斜角度摇动平台,双通道装置中实现了持续的流体循环。与静态培养相比,肿瘤球体在流动条件下表现出增强的迁移能力。尽管球体在流动条件下招募的NK-92细胞略多,但IL-2激活的游离NK-92细胞和肿瘤浸润NK-92细胞上CD56和CD16受体的表达与动态培养中的体内模式相匹配。这些发现表明,肿瘤细胞和流体动力学显著影响NK细胞亚型。这种无泵微流控平台是模拟和研究免疫细胞-肿瘤相互作用的功能性工具,为生理相关环境中NK细胞与肿瘤球体的动态变化提供了有价值的见解。
Natural killer (NK) cells are pivotal in immunotherapy due to their potent tumor-targeting capabilities.
However, accessible in vitro 3D dynamic models for evaluating Tumor Infiltrating Natural Killer Cells (TINKs) remain scarce.
This study addresses this gap by developing a novel pump-free microfluidic chip to investigate the interactions between NK-92 cells and prostate DU 145 tumor spheroids. The platform facilitates the separation of free NKs and TINKs for subtype characterization. The design integrates multiple planes with a multi-layer paper scaffold to accommodate tumor spheroids, allowing NK-92 cells to traverse Matrigel-coated barriers that mimic the extracellular matrix.
The dual-channel pump-free device enables unidirectional circulation of NK-92 cells, allowing analysis of tumor spheroid movement and NK-92 cell interactions under flow conditions. Results demonstrate continuous fluid circulation in the dual-channel device by rocking the platform at tilt angles of 21° and 15°.
Tumor spheroids show- enhanced migration under flow conditions compared to static culture. Although spheroids recruit slightly more NK-92 cells under flow conditions, CD56 and CD16 receptor expression on IL-2-activated free NK-92 cells and tumor-infiltrating NK-92 cells matches in vivo patterns in dynamic cultures.
These findings suggest that tumor cells and fluid dynamics significantly influence NK cell subtypes. This pump-free microfluidic platform is a functional tool for simulating and studying immune cell-tumor interactions, providing valuable insights into NK cell dynamics with tumor spheroids in physiologically relevant environments.
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