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通过接触共振原子力显微镜亚表面纳米力学成像检测细胞结构内的僵硬纳米颗粒。

Detection of stiff nanoparticles within cellular structures by contact resonance atomic force microscopy subsurface nanomechanical imaging.

机构信息

Department of Basic and Applied Sciences for Engineering, SAPIENZA University of Rome, Rome, Italy.

出版信息

Nanoscale. 2017 May 4;9(17):5671-5676. doi: 10.1039/c7nr01111c.

Abstract

Detecting stiff nanoparticles buried in soft biological matrices by atomic force microscopy (AFM) based techniques represents a new frontier in the field of scanning probe microscopies, originally developed as surface characterization methods. Here we report the detection of stiff (magnetic) nanoparticles (NPs) internalized in cells by using contact resonance AFM (CR-AFM) employed as a potentially non-destructive subsurface characterization tool. Magnetite (FeO) NPs were internalized in microglial cells from cerebral cortices of mouse embryos of 18 days by phagocytosis. Nanomechanical imaging of cells was performed by detecting the contact resonance frequencies (CRFs) of an AFM cantilever held in contact with the sample. Agglomerates of NPs internalized in cells were visualized on the basis of the local increase in the contact stiffness with respect to the surrounding biological matrix. A second AFM-based technique for nanomechanical imaging, i.e., HarmoniX™, as well as magnetic force microscopy and light microscopy were used to confirm the CR-AFM results. Thus, CR-AFM was demonstrated as a promising technique for subsurface imaging of nanomaterials in biological samples.

摘要

通过原子力显微镜(AFM)技术检测埋藏在软生物基质中的刚性纳米颗粒代表了扫描探针显微镜领域的一个新前沿,该技术最初是作为表面特性化方法开发的。在这里,我们报告了使用接触共振原子力显微镜(CR-AFM)检测细胞内刚性(磁性)纳米颗粒(NPs)的方法,该方法可作为一种潜在的非破坏性亚表面特性化工具。通过吞噬作用,将磁铁矿(FeO)NPs 内化到来自 18 天大的小鼠胚胎大脑皮质的小神经胶质细胞中。通过检测与样品接触的 AFM 悬臂的接触共振频率(CRF),对细胞进行纳米力学成像。基于与周围生物基质相比接触刚度的局部增加,可视化细胞内内化的 NPs 聚集体。还使用了第二种基于 AFM 的纳米力学成像技术,即 HarmoniX™,以及磁力显微镜和光学显微镜,以确认 CR-AFM 的结果。因此,CR-AFM 被证明是一种在生物样品中对纳米材料进行亚表面成像的有前途的技术。

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