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首页> 外文期刊>ACS nano >Non-Invasive Optical Guided Tumor Metastasis/Vessel Imaging by Using Lanthanide Nanoprobe with Enhanced Down-Shifting Emission beyond 1500 nm
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Non-Invasive Optical Guided Tumor Metastasis/Vessel Imaging by Using Lanthanide Nanoprobe with Enhanced Down-Shifting Emission beyond 1500 nm

机译:通过使用镧系元素纳米孔的非侵袭性光学引导肿瘤转移/血管成像,增强超过1500nm的下降发射

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Visualization of tumor vessels/metastasis and cerebrovascular architecture is vitally important for analyzing pathological states of brain diseases and a tumor's abnormal blood vessels to improve cancer diagnoses. In vivo fluorescence imaging using second near-infrared emission beyond 1500 nm (NIR-IIb) has emerged as a next generation optical imaging method with significant improvement in imaging sensitivity and spatial resolution. Unfortunately, a highly biocompatible probe capable of generating NIR-IIb emission with sufficient brightness and uniformed size is still scarce. Here, we have proposed the poly(acrylic acid) (PAA)-modified NaLnF(4):40Gd/20Yb/2Er nanorods (Ln = Y, Yb, Lu, PAA-Ln-NRs) with enhanced downshifting NIR-IIb emission, high quantum yield (QY), relatively narrow bandwidth (similar to 160 nm), and high biocompatibility via Ce3+ doping for high performance NIR-IIb bioimaging. The downshifting emission beyond 1500 nm is improved by 1.75-2.2 times with simultaneously suppressing the upconversion (UC) path in Y, Yb, and Lu hosts via Ce3+ doping. Moreover, compared with the traditionally used Y-based host, the QY of NIR-IIb emission in the Lu-based probe in water is improved from 2.2% to 3.6%. The explored bright NIR-IIb emitted PAA-Lu-NRs were used for high sensitivity small tumor (similar to 4 mm)/metastatic tiny tumor detection (similar to 3 mm), tumor vessel visualization with high spatial resolution (41 mu m), and brain vessel imaging. Therefore, our findings open up the opportunity of utilizing the lanthanide based NIR-IIb probe with bright 1525 nm emission for in vivo optical-guided tumor vessel/metastasis and noninvasive brain vascular imaging.
机译:肿瘤血管/转移和脑血管结构的可视化对于分析脑病病理状态和肿瘤的异常血管来改善癌症诊断至关重要。在使用超出1500nm(NIR-IIB)之外的第二近红外发射的体内荧光成像已成为下一代光学成像方法,具有显着改善的成像灵敏度和空间分辨率。不幸的是,一种能够产生具有足够亮度和均匀尺寸的NIR-IIB发射的高度生物相容性探针仍然稀缺。在这里,我们提出了聚(丙烯酸)(PAA) - 制定的NALNF(4):40GD / 20yB / 2体纳米棒(LN = Y,YB,LU,PAA-LN-NRS),具有增强的倒下NIR-IIB排放,高量子产率(QY),带宽相对窄的带宽(类似于160nm),并且通过CE3 +掺杂高性能NIR-IIB消影的高生物相容性。通过CE3 +掺杂,通过CE3 +掺杂同时抑制Y,YB和LU主机中的上变化(UC)路径,提高了超过1500nm的下档发射1.75-2.2次。此外,与传统上使用的Y基宿主相比,水中Lu的探针中的NIR-IIB排放Qy从2.2%提高到3.6%。探索的明亮NIR-IIB发射的PAA-LU-NRS用于高灵敏度小肿瘤(类似于4 mm)/转移性微小肿瘤检测(类似于3毫米),具有高空间分辨率(41亩)的肿瘤血管可视化,和脑血管成像。因此,我们的研究结果开辟了利用基于镧系内的NIR-IIB探针的机会,在体内光导的肿瘤血管/转移和非侵入性脑血管成像中具有明亮的1525nm发射。

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