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声悬浮中3D细胞增殖的连续灌注实验

Continuous Perfusion Experiments on 3D Cell Proliferation in Acoustic Levitation.

作者信息

Fabiano Luca, Pandey Shilpi, Brischwein Martin, Hasanzadeh Kafshgari Morteza, Hayden Oliver

机构信息

Heinz-Nixdorf-Chair of Biomedical Electronics, School of Computation, Information and Technology, Technical University of Munich, TranslaTUM, 80333 Munich, Germany.

Central Institute for Translational Cancer Research (TranslaTUM), School of Medicine, Technical University of Munich, 80333 Munich, Germany.

出版信息

Micromachines (Basel). 2024 Mar 25;15(4):436. doi: 10.3390/mi15040436.

Abstract

An acoustofluidic trap is used for accurate 3D cell proliferation and cell function analysis in levitation. The prototype trap can be integrated with any microscope setup, allowing continuous perfusion experiments with temperature and flow control under optical inspection. To describe the trap function, we present a mathematical and FEM-based COMSOL model for the acoustic mode that defines the nodal position of trapped objects in the spherical cavity aligned with the microscope field of view and depth of field. Continuous perfusion experiments were conducted in sterile conditions over 55 h with a K562 cell line, allowing for deterministic monitoring. The acoustofluidic platform allows for rational in vitro cell testing imitating in vivo conditions such as cell function tests or cell-cell interactions.

摘要

声流阱用于在悬浮状态下进行精确的三维细胞增殖和细胞功能分析。该原型阱可与任何显微镜装置集成,允许在光学检查下进行具有温度和流量控制的连续灌注实验。为了描述阱的功能,我们提出了一个基于数学和有限元方法的COMSOL模型,用于声学模式,该模型定义了与显微镜视野和景深对齐的球形腔内捕获物体的节点位置。使用K562细胞系在无菌条件下进行了超过55小时的连续灌注实验,实现了确定性监测。声流平台允许在体外进行合理的细胞测试,模拟体内条件,如细胞功能测试或细胞间相互作用。

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