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壳聚糖包覆的三角形银纳米粒子作为一类新型的生物相容性、高灵敏度的等离子体共振平台,用于细胞内 SERS 传感和成像。

Chitosan-coated triangular silver nanoparticles as a novel class of biocompatible, highly sensitive plasmonic platforms for intracellular SERS sensing and imaging.

机构信息

Nanobiophotonics and Laser Microscopy Center, Interdisciplinary Research in Bio-Nano-Sciences, and Faculty of Physics, Babes-Bolyai University, Treboniu Laurian Street 42, 400271 Cluj-Napoca, Romania.

出版信息

Nanoscale. 2013 Jul 7;5(13):6013-22. doi: 10.1039/c3nr00005b. Epub 2013 May 28.

Abstract

There is a need for new strategies for noninvasive imaging of pathological conditions within the human body. The approach of combining the unique physical properties of noble-metal nanoparticles with their chemical specificity and an easy way of conjugation open up new routes toward building bio-nano-objects for biomedical tracking and imaging. This work reports the design and assessment of a novel class of biocompatible, highly sensitive SERS nanotags based on chitosan-coated silver nanotriangles (Chit-AgNTs) labeled with para-aminothiophenol (p-ATP). The triangular nanoparticles are used as Raman scattering enhancers and have proved to yield a reproducible and strong SERS signal. When tested inside lung cancer cells (A549) this class of SERS nanotags presents low in vitro toxicity, without interfering with cell proliferation. Easily internalized by the cells, as demonstrated by imaging using both reflected bright-light optical microscopy and SERS spectroscopy, the particles are proved to be detectable inside cells under a wide window of excitation wavelengths, ranging from visible to near infrared (NIR). Their high sensitivity and NIR availability make this class of SERS nanotags a promising candidate for noninvasive imaging of cancer cells.

摘要

需要新的策略来无创成像人体内部的病理状况。将贵金属纳米粒子的独特物理性质与其化学特异性以及易于结合的方法相结合,为构建用于生物医学跟踪和成像的生物-纳米-物体开辟了新途径。本工作报道了一种新型的基于壳聚糖包覆的银纳米三角体(Chit-AgNTs)的生物相容性、高灵敏度 SERS 纳米标签的设计和评估,该纳米标签用对氨基苯硫酚(p-ATP)进行了标记。三角形纳米粒子可用作拉曼散射增强剂,已被证明可产生可重复且强的 SERS 信号。当在肺癌细胞(A549)中进行测试时,这类 SERS 纳米标签表现出低体外毒性,不会干扰细胞增殖。细胞很容易内化这些粒子,如使用反射明场光学显微镜和 SERS 光谱学成像所证明的,这些粒子在从可见光到近红外(NIR)的宽激发波长范围内在细胞内被证明是可检测的。它们的高灵敏度和近红外可用性使这类 SERS 纳米标签成为非侵入性癌症细胞成像的有前途的候选物。

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