Structural heterogeneity is a hallmark of living cells that drives local mechanical properties and dynamic cellular responses. However, the robust quantification of intracellular mechanics is lacking from conventional methods. Here, we describe the development of deformation microscopy, which leverages conventional imaging and an automated hyperelastic warping algorithm to investigate strain history, deformation dynamics, and changes in structural heterogeneity within the interior of cells and cell nuclei. Using deformation microscopy, we found that partial or complete disruption of LINC complexes in cardiomyocytes in vitro and lamin A/C deficiency in myocytes in vivo abrogate dominant tensile loading in the nuclear interior. We also found that cells cultured on stiff substrates or in hyperosmotic conditions displayed abnormal strain burden and asymmetries at interchromatin regions, which are associated with active transcription. Deformation microscopy represents a foundational approach toward intracellular elastography, with the potential utility to provide mechanistic and quantitative insights in diverse mechanobiological applications.
Deformation Microscopy for Dynamic Intracellular and Intranuclear Mapping of Mechanics with High Spatiotemporal Resolution.
具有高时空分辨率的动态细胞内和细胞核内力学映射的形变显微镜
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作者:Ghosh Soham, Seelbinder Benjamin, Henderson Jonathan T, Watts Ryan D, Scott Adrienne K, Veress Alexander I, Neu Corey P
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2019 | 起止号: | 2019 Apr 30; 27(5):1607-1620 |
| doi: | 10.1016/j.celrep.2019.04.009 | 研究方向: | 细胞生物学 |
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