Kumar Sant, Beyer Hannes M, Chen Mingzhe, Zurbriggen Matias D, Khammash Mustafa
Department of Biosystems Science and Engineering (D-BSSE), ETH Zürich, Klingelbergstrasse 48, 4056, Basel, Switzerland.
Institute of Synthetic Biology, Heinrich-Heine-University Düsseldorf, Universitätsstrasse 1, D-40225, Düsseldorf, Germany.
Nat Commun. 2024 Dec 2;15(1):10469. doi: 10.1038/s41467-024-54351-6.
In the field of tissue engineering, achieving precise spatiotemporal control over engineered cells is critical for sculpting functional 2D cell cultures into intricate morphological shapes. In this study, we engineer light-responsive mammalian cells and target them with dynamic light patterns to realize 2D cell culture patterning control. To achieve this, we developed μPatternScope (μPS), a modular framework for software-controlled projection of high-resolution light patterns onto microscope samples. μPS comprises hardware and software suite governing pattern projection and microscope maneuvers. Together with a 2D culture of the engineered cells, we utilize μPS for controlled spatiotemporal induction of apoptosis to generate desired 2D shapes. Furthermore, we introduce interactive closed-loop patterning, enabling a dynamic feedback mechanism between the measured cell culture patterns and the light illumination profiles to achieve the desired target patterning trends. Our work offers innovative tools for advanced tissue engineering applications through seamless fusion of optogenetics, optical engineering, and cybernetics.
在组织工程领域,对工程细胞实现精确的时空控制对于将功能性二维细胞培养塑造成复杂的形态形状至关重要。在本研究中,我们设计了光响应性哺乳动物细胞并用动态光图案对其进行靶向,以实现二维细胞培养图案控制。为实现这一点,我们开发了μPatternScope(μPS),这是一个用于将高分辨率光图案软件控制投影到显微镜样本上的模块化框架。μPS包括控制图案投影和显微镜操作的硬件和软件套件。与工程细胞的二维培养一起,我们利用μPS进行可控的时空凋亡诱导,以生成所需的二维形状。此外,我们引入了交互式闭环图案化,在测量的细胞培养图案和光照轮廓之间实现动态反馈机制,以实现所需的目标图案化趋势。我们的工作通过光遗传学、光学工程和控制论的无缝融合,为先进的组织工程应用提供了创新工具。