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摇动诱导的肿瘤球体快速形成用于可扩展的 3D 肿瘤-免疫共培养测定

英文原题:Rocking-Induced Rapid Formation of Tumor Spheroids for Scalable 3D Tumor-Immune Coculture Assays.

查看英文原题

Rocking-Induced Rapid Formation of Tumor Spheroids for Scalable 3D Tumor-Immune Coculture Assays.

PubMed 2026/07/01(内容时间) Biotechnol J Q2 · IF 3.7(JCR 2025)

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中文摘要

肿瘤球体广泛用于模拟肿瘤微环境和评估免疫介导的细胞毒性,但传统方法如超低附着板和悬滴板通常需要48-72小时才能生成稳定的球体,限制了可扩展性和快速测试。

在此,我们报告了一种简单的方法,通过标准多孔板中的连续摇摆,在7-8小时内生成均匀的肿瘤球体。计算流体动力学模拟显示,摇摆产生了温和的振荡流体动力学条件,平均剪切应力范围为0.4至0.8 dyn/cm²,X方向剪切应力保持在±0.2 dyn/cm²附近,促进了受控的细胞聚集,同时维持了球体完整性。使用这种方法,Hep3B细胞在多个接种密度下可重复地形成直径为80-150 µm的球体,每孔产生数千个球体。将球体嵌入细胞外基质并转移至36PillarPlate,用于可扩展的3D肿瘤-免疫共培养测定。为证明其效用,将Hep3B球体与NK-92细胞在存在或不存在免疫调节剂小檗碱的情况下共培养。小檗碱处理增强了NK-92的定位和球体破坏,导致肿瘤活力降低。该方法将球体制备时间从数天缩短至数小时,并能够当天整合到3D测定中,为研究肿瘤-免疫相互作用和筛选免疫调节治疗药物提供了一个实用平台。

展开英文摘要原文

Tumor spheroids are widely used to model the tumor microenvironment and evaluate immune-mediated cytotoxicity, but conventional methods such as ultralow-attachment and hanging-drop plates typically require 48-72 h to generate stable spheroids, limiting scalability and rapid testing.

Here, we report a simple method for generating uniform tumor spheroids within 7-8 h using continuous rocking in standard multiwell plates. Computational fluid dynamics simulations showed that rocking produced mild oscillatory hydrodynamic conditions, with average shear stress ranging from 0. 4 to 0. 8 dyn/cm 2 and X-direction shear stress remaining near ±0. 2 dyn/cm 2 , promoting controlled cell aggregation while maintaining spheroid integrity. Using this approach, Hep3B cells reproducibly formed spheroids 80-150 µm in diameter across multiple seeding densities, yielding thousands of spheroids per well.

The spheroids were embedded in extracellular matrix and transferred to a 36PillarPlate for scalable 3D tumor-immune coculture assays. To demonstrate utility, Hep3B spheroids were cocultured with NK-92 cells in the presence or absence of the immunomodulator berberine.

Berberine treatment enhanced NK-92 localization and spheroid disruption, resulting in reduced tumor viability. This approach reduces spheroid preparation time from days to hours and enables same-day integration into 3D assays, providing a practical platform for studying tumor-immune interactions and screening immunomodulatory therapeutics.

论文信息

作者
Joshi P、Vanga MG、Jonnadula C、Lee M、Gnenema V、Jamdagneya A、Lee SH、Ku B
单位
Bioprinting Laboratories Inc., Dallas, Texas, USA.United States
期刊
Biotechnology journal2026 Jul
原文标识
PubMed 42423194 · DOI 10.1002/biot.70283