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首页> 外文期刊>The Journal of Nuclear Medicine >Microscopic Validation of Macroscopic In Vivo Images Enabled by Same-Slide Optical and Nuclear Fusion
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Microscopic Validation of Macroscopic In Vivo Images Enabled by Same-Slide Optical and Nuclear Fusion

机译:相同滑动光学和核融合实现的宏观体内图像的微观验证

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id="p-2">It is currently difficult to determine the molecular and cellular basis for radioscintigraphic signals obtained during macroscopic in vivo imaging. The field is in need of technology that helps bridge the macroscopic and microscopic regimes. To solve this problem, we developed a fiducial marker (FM) simultaneously compatible with 2-color near-infrared (NIR) fluorescence (700 and 800 nm), autoradiography, and conventional hematoxylin-eosin (HE) histology. >Methods: The FM was constructed from an optimized concentration of commercially available human serum albumin, 700- and 800-nm NIR fluorophores, 99mTc-pertechnetate, dimethyl sulfoxide, and glutaraldehyde. Lymphangioleiomyomatosis cells coexpressing the sodium iodide symporter and green fluorescent protein were labeled with 700-nm fluorophore and 99mTc-pertechnatate and then administered intratracheally into CD-1 mice. After in vivo SPECT imaging and ex vivo SPECT and NIR fluorescence imaging of the lungs, 30-??m frozen sections were prepared and processed for 800-nm NIR fluorophore costaining, autoradiography, and HE staining on the same slide using the FMs to coregister all datasets. >Results: Optimized FMs, composed of 100 ??M unlabeled human serum albumin, 1 ??M NIR fluorescent human serum albumin, 15% dimethyl sulfoxide, and 3% glutaraldehyde in phosphate-buffered saline (pH 7.4), were prepared within 15 min, displayed homogeneity and stability, and were visible by all imaging modalities, including HE staining. Using these FMs, tissue displaying high signal by SPECT could be dissected and analyzed on the same slide and at the microscopic level for 700-nm NIR fluorescence, 800-nm NIR fluorescence, autoradiography, and HE histopathologic staining. >Conclusion: When multimodal FMs are combined with a new technique for simultaneous same-slide NIR fluorescence imaging, autoradiography, and HE staining, macroscopic in vivo images can now be studied unambiguously at the microscopic level.
机译:id =“ p-2”>目前,很难确定在宏观体内成像过程中获得的放射显像信号的分子和细胞基础。该领域需要有助于弥合宏观和微观制度的技术。为了解决这个问题,我们开发了一种基准标记(FM),它与2色近红外(NIR)荧光(700和800 nm),放射自显影和常规苏木精-曙红(HE)组织学兼容。 >方法:使用最优化浓度的市售人血清白蛋白,700 nm和800 nm NIR荧光团, 99m Tc-高tech酸酯,二甲基亚砜和戊二醛构建FM。 。用700nm荧光团和 99m Tc-高tech酸酯标记共表达碘化钠同向体和绿色荧光蛋白的淋巴管平滑肌肌瘤细胞,然后气管内给予CD-1小鼠。在对肺进行体内SPECT成像以及离体SPECT和NIR荧光成像后,准备了30-Φm的冷冻切片,并在同一载玻片上使用FMs共配准进行800 nm NIR荧光团标记,放射自显影和HE染色。所有数据集。 >结果:优化的FM,由磷酸盐缓冲液(pH 7.4)中的100μM未标记人血清白蛋白,1μMNIR荧光人血清白蛋白,15%二甲基亚砜和3%戊二醛组成。 ),在15分钟内制备,显示出同质性和稳定性,并且可以通过所有成像方式(包括HE染色)看到。使用这些FM,可以在同一张幻灯片上并在显微镜下对700 nm NIR荧光,800 nm NIR荧光,放射自显影和HE组织病理学染色在同一载玻片上进行解剖和分析,从而显示通过SPECT显示高信号的组织。 >结论:当多峰FM与新技术同时进行相同幻灯片NIR荧光成像,放射自显影和HE染色相结合时,现在可以在微观水平上明确地研究宏观体内图像。

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