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首页> 外文期刊>JALA: Journal of the Association for Laboratory Automation >Assessing Near-Infrared Quantum Dots for Deep Tissue, Organ, and Animal Imaging Applications
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Assessing Near-Infrared Quantum Dots for Deep Tissue, Organ, and Animal Imaging Applications

机译:评估用于深层组织,器官和动物成像应用的近红外量子点

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摘要

Semiconductor quantum dots (Qdots) have emerged as novel ultrasensitive optical probes to target, detect, and image fundamental events occurring within the biological system. In particular, near-infrared (near-IR) Qdots holds great promise as in vivo contrast agents for real-time bioimaging capabilities. In this study, biocompatible near-IR Qdots are used to image organs, tissues, and cells. Compared to visible Qdots, we obtained a significant enhancement in signal detection sensitivity for imaging deep tissues and organs. In addition, biomolecules were used to target these optical contrast agents for multiplexed imaging of cells and organs in vivo. The ability to simultaneously distinguish emission profiles of multiple near-IR Qdots will likely emerge as important tools for addressing fundamental questions in molecular biology and in medical sciences.
机译:半导体量子点(Qdots)已作为新型超灵敏光学探针出现,用于靶向,检测和成像生物系统内发生的基本事件。特别是,近红外Qdots作为具有实时生物成像功能的体内造影剂具有广阔的前景。在这项研究中,生物相容性近红外Qdots用于成像器官,组织和细胞。与可见的Qdot相比,我们对成像深部组织和器官的信号检测灵敏度有了显着提高。另外,生物分子被用于靶向这些光学造影剂,用于体内细胞和器官的多重成像。同时区分多个近红外Qdot发射轮廓的能力可能会成为解决分子生物学和医学领域基本问题的重要工具。

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