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首页> 外文期刊>ACS applied materials & interfaces >Mapping of Pesticide Transmission on Biological Tissues by Surface Enhanced Raman Microscopy with a Gold Nanoparticle Mirror
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Mapping of Pesticide Transmission on Biological Tissues by Surface Enhanced Raman Microscopy with a Gold Nanoparticle Mirror

机译:用金纳米粒子镜子用表面增强拉曼显微镜对生物组织对生物组织的映射

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We presented an improved surface-enhanced Raman scattering (SERS) mapping technique for the imaging of pesticides on biological samples including tomato leaves, fruits, and mouse skin using a gold nanoparticle mirror as the SERS substrate. The gold nanoparticle mirror was fabricated using 50 rim commercial citrate capped gold nanoparticles upon the interface of water and a mediating solvent that was prepared using acetonitrile and hexane. The properties of the gold nanoparticle mirror were compared with gold nanoparticles, and the mirror displayed higher sensitivity with a limit of detection of 0.07 mu g/cm(2) and better reproducibility with a relative standard deviation of 5.48% for the SERS mapping of pesticide (ferbam) on biological samples. The gold mirror-based SERS mapping technique was also used to investigate pesticide transmission from tomato fruit surfaces to mouse skin after 1 mg/cm(2) of pesticides was administered upon the fruit, and the results showed that about 23% of the pesticide was transmitted from the fruit to the mouse skin. We also found that pesticides on the contaminated hand could not be completely removed by routine rinsing with tap water for 2 min. This study provides an effective approach for the imaging of pesticides on biological tissues that would facilitate research on pesticide behaviors both on and in biological systems.
机译:我们介绍了一种改进的表面增强拉曼散射(SERS)映射技术,用于在包括番茄叶,水果和小鼠皮肤的生物样品上的农药成像,使用金纳米粒子镜像作为SERS基板的生物样品。在水的界面和使用乙腈和己烷制备的介导的溶剂上,使用50轮辋商业柠檬酸盖金纳米颗粒制造金纳米粒子镜。将金纳米粒子镜的性质与金纳米颗粒进行比较,镜子显示出较高的灵敏度,检测限为0.07μg/ cm(2),更好的再现性与农药的SERS定影的相对标准偏差为5.48% (Ferbam)在生物样品上。基于金镜的SERS映射技术还用于调查从番茄果面上从番茄果面上对小鼠皮肤的农药,在果实上施用1毫克/厘米(2),结果表明,约23%的农药是从果实传递给小鼠皮肤。我们还发现,污染的手上的农药无法通过套水漂洗常规漂洗2分钟。本研究提供了对农药成像的生物组织成像的有效方法,这将有助于研究生物系统和中的农药行为。

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