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首页> 外文期刊>Small >Intravital Multiphoton Imaging of the Selective Uptake of Water-Dispersible Quantum Dots into Sinusoidal Liver Cells
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Intravital Multiphoton Imaging of the Selective Uptake of Water-Dispersible Quantum Dots into Sinusoidal Liver Cells

机译:活水多光子成像的正弦肝细胞中选择性吸收水分散性量子点。

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摘要

Although many studies reporting the organ-level biodistribution of nanoparticles (NPs) in animals, very few have addressed the fate of NPs in organs at the cellular level. The liver appears to be the main organ for accumulation of NPs after intravenous injection. In this study, for the first time, the in vivo spatiotemporal disposition of recently developed mercaptosuccinic acid (MSA)-capped cadmium telluride/cadmium sulfide (CdTe/CdS) quantum dots (QDs) is explored in rat liver using multiphoton microscopy (MPM) coupled with fluorescence lifetime imaging (FLIM), with subcellular resolution (approximate to 1 m). With high fluorescence efficiency and largely improved stability in the biological environment, these QDs show a distinct distribution pattern in the liver compared to organic dyes, rhodamine 123 and fluorescein. After intravenous injection, fluorescent molecules are taken up by hepatocytes and excreted into the bile, while negatively charged QDs are retained in the sinusoids and selectively taken up by sinusoidal cells (Kupffer cells and liver sinusoidal endothelial cells), but not by hepatocytes within 3 h. The results could help design NPs targeting the specific types of liver cells and choose the fluorescent markers for appropriate cellular imaging.
机译:尽管许多研究报告了动物体内纳米颗粒(NPs)的器官水平生物分布,但很少有研究在细胞水平上说明器官中NPs的命运。静脉注射后,肝脏似乎是NP积累的主要器官。在这项研究中,首次使用多光子显微镜(MPM)在大鼠肝脏中探索了最近开发的巯基琥珀酸(MSA)封端的碲化镉/硫化镉(CdTe / CdS)量子点(QDs)的体内时空分布。加上荧光寿命成像(FLIM),并具有亚细胞分辨率(约1 m)。与有机染料,若丹明123和荧光素相比,这些量子点具有较高的荧光效率和在生物环境中的极大改善的稳定性,在肝脏中显示出独特的分布模式。静脉注射后,荧光分子被肝细胞吸收并排入胆汁,而带负电荷的量子点被保留在正弦波中,并被正弦波细胞(库普弗细胞和肝窦窦内皮细胞)选择性地吸收,但在3小时内不被肝细胞吸收。结果可帮助设计针对特定类型肝细胞的NP,并选择荧光标记物进行适当的细胞成像。

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