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首页> 外文期刊>Angewandte Chemie >Nanostars on Nanopipette Tips: A Raman Probe for Quantifying Oxygen Levels in Hypoxic Single Cells and Tumours
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Nanostars on Nanopipette Tips: A Raman Probe for Quantifying Oxygen Levels in Hypoxic Single Cells and Tumours

机译:纳米纤维提示的纳米螺段:用于量化缺氧单细胞和肿瘤的氧水平的拉曼探针

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摘要

Multiple sharp-edged gold nanostars were efficiently assembled on nanopipette tips through electrostatic interactions for use as a potent intracellular hypoxia-sensing Raman probe. Colloidal stability and surface immobilization were checked using scanning electron microscopy, light scattering, and zeta potential measurements. Site-specific intracellular hypoxia levels can be estimated in vitro and in vivo using Raman lancets (RL). Distinct Raman spectral changes for the nitro-(NO2) functional group of the redox marker 4-nitrothiophenol (4NTP) can be quantified according to the intracellular oxygen (O-2) content, ranging from 1% to 10%. Redox potential changes in mitochondrial respiration were also examined through serial injections of inhibitors. 3D-cultured cells and in vivo tests were used to validate our method, and its application in the assessment of the aggressiveness of cancer cells by differentiating spectral changes between malignant and benign cells was demonstrated.
机译:通过静电相互作用有效地组装在纳米纤维尖端上的多个尖锐的金纳盘,用作有效的细胞内缺氧感测拉曼探针。 使用扫描电子显微镜,光散射和Zeta电位测量检查胶体稳定性和表面固定。 可以使用拉曼刺血针(R1)在体外和体内估计特异性细胞内缺氧水平。 氧化还原标记物4-硝基苯酚(4NTP)的硝基(NO2)官能团的明显拉曼谱改变可以根据细胞内氧(O-2)含量来定量,范围为1%至10%。 还通过连续注射抑制剂检查线粒体呼吸的氧化还原电位变化。 3D培养的细胞和体内试验用于验证我们的方法,并证实了通过区分恶性和良性细胞之间的光谱变化来评估癌细胞的侵蚀性的应用。

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