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NIRF Optical/PET Dual-Modal Imaging of Hepatocellular Carcinoma Using Heptamethine Carbocyanine Dye

机译:使用七甲胺碳花菁染料对肝细胞癌进行NIRF光学/ PET双模成像

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摘要

Combining near-infrared fluorescence (NIRF) and nuclear imaging techniques provides a novel approach for hepatocellular carcinoma (HCC) diagnosis. Here, we report the synthesis and characteristics of a dual-modality NIRF optical/positron emission tomography (PET) imaging probe using heptamethine carbocyanine dye and verify its feasibility in both nude mice and rabbits with orthotopic xenograft liver cancer. This dye, MHI-148, is an effective cancer-specific NIRF imaging agent and shows preferential uptake and retention in liver cancer. The corresponding NIRF imaging intensity reaches 109/cm2 tumor area at 24 h after injection in mice with HCC subcutaneous tumors. The dye can be further conjugated with radionuclide 68Ga (68Ga-MHI-148) for PET tracing. We applied the dual-modality methodology toward the detection of HCC in both patient-derived orthotopic xenograft (PDX) models and rabbit orthotopic transplantation models. NIRF/PET images showed clear tumor delineation after probe injection (MHI-148 and 68Ga-MHI-148). The tumor-to-muscle (T/M) standardized uptake value (SUV) ratios were obtained from PET at 1 h after injection of 68Ga-MHI-148, which was helpful for effectively capturing small tumors in mice (0.5 cm × 0.3 cm) and rabbits (1.2 cm × 1.8 cm). This cancer-targeting NIRF/PET dual-modality imaging probe provides a proof of principle for noninvasive detection of deep-tissue tumors in mouse and rabbit and is a promising technique for more accurate and early detection of HCC.
机译:结合近红外荧光(NIRF)和核成像技术为肝细胞癌(HCC)诊断提供了一种新方法。在这里,我们报告使用七甲胺碳花青染料的双峰NIRF光学/正电子发射断层扫描(PET)成像探针的合成和特征,并验证其在裸鼠和患有原位异种移植肝癌的兔子中的可行性。这种染料MHI-148是一种有效的癌症特异性NIRF成像剂,在肝癌中显示优先摄取和保留。注射HCC皮下肿瘤小鼠后24h,相应的NIRF成像强度达到10 9 / cm 2 肿瘤面积。可以进一步将染料与放射性核素 68 Ga( 68 Ga-MHI-148)偶联以进行PET示踪。我们将双模式方法应用于患者源性原位异种移植(PDX)模型和兔原位移植模型中的HCC检测。 NIRF / PET图像显示了探针注射后的清晰肿瘤轮廓(MHI-148和 68 Ga-MHI-148)。 68 Ga-MHI-148注射后1 h从PET获得的肿瘤/肌肉(T / M)标准化摄取值(SUV)比值,有助于有效捕获小肿瘤在小鼠(0.5 cm×0.3 cm)和兔子(1.2 cm×1.8 cm)中。这种靶向癌症的NIRF / PET双模态成像探针为无创检测小鼠和兔子的深部组织肿瘤提供了原理证明,并且是一种有望更准确和早期检测HCC的有前途的技术。

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