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利用生物共轭金纳米探针对活癌细胞成分进行暗场光散射成像,从出生到分裂。

Dark-field light scattering imaging of living cancer cell component from birth through division using bioconjugated gold nanoprobes.

机构信息

Georgia Institute of Technology, School of Chemistry and Biochemistry, Atlanta, Georgia 30332, USA.

出版信息

J Biomed Opt. 2010 Jul-Aug;15(4):046025. doi: 10.1117/1.3477179.

Abstract

Novel methods and technologies that could extend and complement the capabilities of the prevailing fluorescence microscope in following the cell cycle under different perturbations are highly desirable in the area of biological and biomedical imaging. We report a newly designed instrument for long-term light scattering live cell imaging based on integrating a homebuilt environmental cell incubation minichamber and an angled dark-field illumination system into a conventional inverted light microscope. Peptide-conjugated gold nanoparticles that are selectively delivered to either the cytoplasmic or nuclear region of the cell are used as light scattering contrast agents. The new system enables us to carry out continuous and intermittence-free dark-field live cell imaging over several tens of hours. A variety of applications of this imaging system are demonstrated, such as monitoring the nuclear uptake of peptide-conjugated gold nanoparticles, tracking the full cycle of cancer cells from birth to division, following the chromosome dynamics during cell mitosis, and observing the intracellular distribution of gold nanoparticles after cell division. We also discuss the overall effect of nuclear targeting gold nanoparticles on the cell viability of parent and daughter cells.

摘要

在生物和生物医学成像领域,人们非常希望能够开发出新的方法和技术,以扩展和补充现有荧光显微镜在不同干扰下跟踪细胞周期的能力。我们报告了一种新设计的基于集成自制环境细胞孵育微室和倾斜暗场照明系统到传统倒置显微镜的用于长期光散射活细胞成像的仪器。肽偶联的金纳米粒子被选择性递送到细胞的细胞质或核区域,用作光散射对比剂。新系统使我们能够在数十个小时内进行连续且无间断的暗场活细胞成像。展示了这种成像系统的各种应用,例如监测肽偶联金纳米粒子的核摄取、跟踪癌细胞从出生到分裂的完整周期、在细胞有丝分裂过程中跟踪染色体动力学以及观察细胞分裂后金纳米粒子在细胞内的分布。我们还讨论了核靶向金纳米粒子对亲代和子代细胞活力的整体影响。

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