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Small molecule fluorophore and copolymer RGD peptide conjugates for ex vivo two-photon fluorescence tumor vasculature imaging

机译:小分子荧光团和共聚物RGD肽偶联物用于离体双光子荧光肿瘤血管成像

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We report the use of small molecule and block copolymer RGD peptide conjugates for deep ex vivo imaging of tumor vasculature in " whole" excised tumors using two-photon fluorescence microscopy (2PFM). The fluorescent probes were administered to mice via tail-vein injection, after which the tumors were excised, fixed, and imaged without further sample preparation. Both RGD conjugates demonstrated specific targeting to tumor blood vessels, and this selectivity imparted excellent contrast in 2PFM micrographs that captured high-resolution 3-D images of the tumor vasculature up to depths of 830 μm in Lewis Lung Carcinoma (LLC) tumors. 2PFM ex vivo fluorescence micrographs clearly revealed tumor vessels, while differences in the sensitivity of tumor vessel imaging were apparent between the small molecule and block copolymer conjugates. Both the small molecule and polymer-based two-photon absorbing probe conjugate are valuable for deep tissue tumor microvasculature imaging.
机译:我们报告了使用小分子和嵌段共聚物RGD肽共轭物使用双光子荧光显微镜(2PFM)对“完整”切除的肿瘤中的脉管系统进行深度离体成像。通过尾静脉注射将荧光探针施用于小鼠,之后将肿瘤切除,固定并成像,而无需进一步的样品制备。两种RGD偶联物均表现出对肿瘤血管的特异性靶向,并且这种选择性在2PFM显微照片中具有出色的对比度,该显微照片捕获了在Lewis Lewis肺癌(LLC)肿瘤中深度达830μm的高分辨率肿瘤血管的3-D图像。 2PFM离体荧光显微照片清楚地显示了肿瘤血管,而在小分子和嵌段共聚物结合物之间,肿瘤血管成像灵敏度的差异却很明显。小分子和基于聚合物的双光子吸收探针共轭物对于深部组织肿瘤微脉管系统成像都很有价值。

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