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Ultrasmall [Cu-64] Cu Nanoclusters for Targeting Orthotopic Lung Tumors Using Accurate Positron Emission Tomography Imaging

机译:超小[Cu-64] Cu纳米团簇用于使用正电子发射断层显像成像靶向原位肺肿瘤

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Positron emission tomography (PET) imaging has received special attention owing to its higher sensitivity, temporal resolution, and unlimited tissue penetration. The development of tracers that target specific molecules is therefore essential for the development and utility of clinically relevant PET procedures. However, Cu-64 as a PET imaging agent generally has been introduced into biomaterials through macrocyclic chelators, which may lead to the misinterpretation of PET imaging results due to the detachment and transchelation of Cu-64. In this study, we have developed ultrasmall chelator-free radioactive [Cu-64]Cu nanoclusters using bovine serum albumin (BSA) as a scaffold for PET imaging in an orthotopic lung cancer model. We preconjugated the tumor target peptide luteinizing hormone releasing hormone (LHRH) to BSA molecules to prepare [(64)Ct]Cu-NC@BSA-LHRH. The prepared [Cu-64]Cu nanoclusters showed high radiolabeling stability, ultrasmall size, and rapid deposition and diffusion into tumor, as well as predominantly renal clearance. [Cu-64]Cu-NC@BSA-LHRH showed 4 times higher tumor uptake compared with that of [Cu-64]Cu-NC@BSA by analyzing the Cu-64 radioactivity of tissues via gamma counting. The PET imaging using [Cu-64]Cu nanoclusters as tracers showed more sensitive, accurate, and deep penetration imaging of orthotopic lung cancer in vivo compared with near-infrared fluorescence imaging. The nanoclusters provide biomedical research tools for PET molecular imaging.
机译:正电子发射断层扫描(PET)成像由于其较高的灵敏度,时间分辨率和无限的组织穿透性而受到了特别的关注。因此,靶向特定分子的示踪剂的开发对于临床相关PET程序的开发和实用至关重要。但是,通常通过大环螯合剂将Cu-64作为PET显像剂引入生物材料,由于Cu-64的脱离和螯合,可能导致PET显像结果的误解。在这项研究中,我们开发了超小无螯合的放射性[Cu-64] Cu纳米簇,使用牛血清白蛋白(BSA)作为原位肺癌模型中PET成像的支架。我们将肿瘤靶标肽促黄体生成激素释放激素(LHRH)预缀合到BSA分子上,制备[(64)Ct] Cu-NC @ BSA-LHRH。制备的[Cu-64] Cu纳米簇显示出高的放射性标记稳定性,超小尺寸,快速沉积和扩散到肿瘤中以及主要是肾清除率。通过γ计数分析组织的Cu-64放射性,与[Cu-64] Cu-NC @ BSA相比,[Cu-64] Cu-NC @ BSA-LHRH的肿瘤吸收高出4倍。与近红外荧光成像相比,使用[Cu-64] Cu纳米簇作为示踪剂的PET成像显示体内原位肺癌的敏感性更高,准确度更高且穿透深度更大。纳米簇为PET分子成像提供了生物医学研究工具。

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