Molecular Cytology Core Facility, Memorial Sloan Kettering Cancer Center, 417E 68th St, New York, NY, 10065, USA.
Physics Faculty, University of Barcelona (UB), Carrer de Martí i Franquès 1-11, 08028, Barcelona, Spain.
Sci Rep. 2020 Sep 24;10(1):15664. doi: 10.1038/s41598-020-72564-9.
Changes in the elastic properties of living tissues during normal development and in pathological processes are often due to modifications of the collagen component of the extracellular matrix at various length scales. Force volume AFM can precisely capture the mechanical properties of biological samples with force sensitivity and spatial resolution. The integration of AFM data with data of the molecular composition contributes to understanding the interplay between tissue biochemistry, organization and function. The detection of micrometer-size, heterogeneous domains at different elastic moduli in tissue sections by AFM has remained elusive so far, due to the lack of correlations with histological, optical and biochemical assessments. In this work, force volume AFM is used to identify collagen-enriched domains, naturally present in human and mouse tissues, by their elastic modulus. Collagen identification is obtained in a robust way and affordable timescales, through an optimal design of the sample preparation method and AFM parameters for faster scan with micrometer resolution. The choice of a separate reference sample stained for collagen allows correlating elastic modulus with collagen amount and position with high statistical significance. The proposed preparation method ensures safe handling of the tissue sections guarantees the preservation of their micromechanical characteristics over time and makes it much easier to perform correlation experiments with different biomarkers independently.
在正常发育和病理过程中,活组织弹性特性的变化通常归因于细胞外基质中胶原蛋白成分在不同长度尺度上的修饰。力体积原子力显微镜可以通过力灵敏度和空间分辨率精确地捕捉生物样本的机械性能。将原子力显微镜数据与分子组成数据相结合,有助于理解组织生物化学、组织和功能之间的相互作用。迄今为止,由于缺乏与组织学、光学和生化评估的相关性,仍然难以通过原子力显微镜在组织切片中检测到具有不同弹性模量的微米级、不均匀的域。在这项工作中,力体积原子力显微镜通过其弹性模量来识别人类和小鼠组织中天然存在的富含胶原蛋白的区域。通过优化样品制备方法和 AFM 参数以实现更快的扫描速度和具有微米分辨率,以稳健且经济的方式获得胶原蛋白识别,从而以高统计显著性相关弹性模量与胶原蛋白数量和位置。选择单独的胶原蛋白染色参考样本允许以高统计显著性相关弹性模量与胶原蛋白数量和位置。所提出的制备方法确保了组织切片的安全处理,随着时间的推移保证了其微机械特性的保存,并使与不同生物标志物进行独立相关性实验变得更加容易。