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标准化微凝胶珠作为弹性细胞力学探针。

Standardized microgel beads as elastic cell mechanical probes.

作者信息

Girardo S, Träber N, Wagner K, Cojoc G, Herold C, Goswami R, Schlüßler R, Abuhattum S, Taubenberger A, Reichel F, Mokbel D, Herbig M, Schürmann M, Müller P, Heida T, Jacobi A, Ulbricht E, Thiele J, Werner C, Guck J

机构信息

Biotechnology Center, Center for Molecular and Cellular Bioengineering, Technische Universität Dresden, Tatzberg 47/49, 01307 Dresden, Germany.

出版信息

J Mater Chem B. 2018 Oct 21;6(39):6245-6261. doi: 10.1039/c8tb01421c. Epub 2018 Sep 13.

Abstract

Cell mechanical measurements are gaining increasing interest in biological and biomedical studies. However, there are no standardized calibration particles available that permit the cross-comparison of different measurement techniques operating at different stresses and time-scales. Here we present the rational design, production, and comprehensive characterization of poly-acrylamide (PAAm) microgel beads mimicking size and overall mechanics of biological cells. We produced mono-disperse beads at rates of 20-60 kHz by means of a microfluidic droplet generator, where the pre-gel composition was adjusted to tune the beads' elasticity in the range of cell and tissue relevant mechanical properties. We verified bead homogeneity by optical diffraction tomography and Brillouin microscopy. Consistent elastic behavior of microgel beads at different shear rates was confirmed by AFM-enabled nanoindentation and real-time deformability cytometry (RT-DC). The remaining inherent variability in elastic modulus was rationalized using polymer theory and effectively reduced by sorting based on forward-scattering using conventional flow cytometry. Our results show that PAAm microgel beads can be standardized as mechanical probes, to serve not only for validation and calibration of cell mechanical measurements, but also as cell-scale stress sensors.

摘要

细胞力学测量在生物学和生物医学研究中越来越受到关注。然而,目前还没有标准化的校准颗粒,无法对在不同应力和时间尺度下运行的不同测量技术进行交叉比较。在此,我们展示了聚(丙烯酰胺)(PAAm)微凝胶珠的合理设计、生产及全面表征,该微凝胶珠模拟了生物细胞的大小和整体力学特性。我们通过微流控液滴发生器以20 - 60 kHz的速率生产了单分散珠,其中预凝胶成分经过调整,以在细胞和组织相关力学性能范围内调节珠的弹性。我们通过光学衍射断层扫描和布里渊显微镜验证了珠的均匀性。通过基于原子力显微镜的纳米压痕和实时变形性细胞术(RT - DC)证实了微凝胶珠在不同剪切速率下具有一致的弹性行为。利用聚合物理论对弹性模量中剩余的固有变异性进行了合理化分析,并通过使用传统流式细胞术基于前向散射进行分选有效地降低了这种变异性。我们的结果表明,PAAm微凝胶珠可作为机械探针进行标准化,不仅用于细胞力学测量的验证和校准,还可作为细胞尺度的应力传感器。

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