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一种用于机械生物学研究的可扩展方法,可制备具有独立调节粘附性和刚度的二维水凝胶基质。

A Scalable Method to Fabricate 2D Hydrogel Substrates for Mechanobiology Studies with Independent Tuning of Adhesiveness and Stiffness.

作者信息

Gandin Alessandro, Torresan Veronica, Panciera Tito, Brusatin Giovanna

机构信息

Department of Industrial Engineering, University of Padova, Via Marzolo 9, 35131 Padova, PD, Italy.

Consorzio INSTM, Padova RU, Via Marzolo 9, 35131 Padova, PD, Italy.

出版信息

Methods Protoc. 2024 Sep 26;7(5):75. doi: 10.3390/mps7050075.

Abstract

Mechanical signals from the extracellular matrix are crucial in guiding cellular behavior. Two-dimensional hydrogel substrates for cell cultures serve as exceptional tools for mechanobiology studies because they mimic the biomechanical and adhesive characteristics of natural environments. However, the interdisciplinary knowledge required to synthetize and manipulate these biomaterials typically restricts their widespread use in biological laboratories, which may not have the material science expertise or specialized instrumentation. To address this, we propose a scalable method that requires minimal setup to produce 2D hydrogel substrates with independent modulation of the rigidity and adhesiveness within the range typical of natural tissues. In this method, norbornene-terminated 8-arm polyethylene glycol is stoichiometrically functionalized with RGD peptides and crosslinked with a di-cysteine terminated peptide via a thiol-ene click reaction. Since the synthesis process significantly influences the final properties of the hydrogels, we provide a detailed description of the chemical procedure to ensure reproducibility and high throughput results. We demonstrate examples of cell mechanosignaling by monitoring the activation state of the mechanoeffector proteins YAP/TAZ. This method effectively dissects the influence of biophysical and adhesive cues on cell behavior. We believe that our procedure will be easily adopted by other cell biology laboratories, improving its accessibility and practical application.

摘要

来自细胞外基质的机械信号在引导细胞行为方面至关重要。用于细胞培养的二维水凝胶基质是力学生物学研究的出色工具,因为它们模拟了自然环境的生物力学和粘附特性。然而,合成和操作这些生物材料所需的跨学科知识通常限制了它们在生物实验室中的广泛使用,因为这些实验室可能没有材料科学专业知识或专门的仪器设备。为了解决这个问题,我们提出了一种可扩展的方法,该方法只需最少的设置即可生产二维水凝胶基质,并能在天然组织典型的范围内独立调节刚度和粘附性。在这种方法中,用RGD肽对降冰片烯封端的8臂聚乙二醇进行化学计量功能化,并通过硫醇-烯点击反应与双半胱氨酸封端的肽交联。由于合成过程会显著影响水凝胶的最终性能,我们提供了化学过程的详细描述,以确保可重复性和高通量结果。我们通过监测机械效应蛋白YAP/TAZ的激活状态来展示细胞机械信号传导的例子。这种方法有效地剖析了生物物理和粘附线索对细胞行为的影响。我们相信我们的方法将很容易被其他细胞生物学实验室采用,提高其可及性和实际应用价值。

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