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Simultaneous Nanothermometry and Deep‐Tissue Imaging

机译:同时测热和深层组织成像

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摘要

Bright, stable, and biocompatible fluorescent contrast agents operating in the second biological window (1000–1350 nm) are attractive for imaging of deep‐lying structures (e.g., tumors) within tissues. Ideally, these contrast agents also provide functional insights, such as information on local temperature. Here, water‐dispersible barium phosphate nanoparticles doped with Mn are made by scalable, continuous, and sterile flame aerosol technology and explored as fluorescent contrast agents with temperature‐sensitive peak emission in the NIR‐II (1190 nm). Detailed assessment of their stability, toxicity with three representative cell lines (HeLa, THP‐1, NHDF), and deep‐tissue imaging down to about 3 cm are presented. In addition, their high quantum yield (up to 34%) combined with excellent temperature sensitivity paves the way for concurrent deep‐tissue imaging and nanothermometry, with biologically well‐tolerated nanoparticles.
机译:在第二个生物窗口(1000–1350 nm)中运行的明亮,稳定且具有生物相容性的荧光造影剂对于组织内深层结构(例如肿瘤)的成像具有吸引力。理想情况下,这些造影剂还可以提供功能方面的见解,例如有关局部温度的信息。在此,通过可扩展,连续和无菌的火焰气溶胶技术制备了掺有Mn的水分散性磷酸钡纳米颗粒,并将其用作具有NIR-II(1190 nm)温度敏感峰发射的荧光对比剂。提出了对它们的稳定性,三种代表性细胞系(HeLa,THP-1,NHDF)的毒性以及低至约3 cm的深层组织成像的详细评估。此外,它们的高量子产率(高达34%)与出色的温度敏感性相结合,为同时进行的深组织成像和纳米热计量法以及具有良好生物学耐受性的纳米粒子铺平了道路。

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