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首页> 外文期刊>Nuclear Medicine and Biology >Melanoma imaging using 111In-, 86Y- and 68Ga-labeled CHX-A''-Re(Arg11)CCMSH.
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Melanoma imaging using 111In-, 86Y- and 68Ga-labeled CHX-A''-Re(Arg11)CCMSH.

机译:黑色素瘤成像使用111In-,86Y-和68Ga标记的CHX-A''-Re(Arg11)CCMSH。

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INTRODUCTION: A novel alpha-melanocyte-stimulating hormone peptide analog CHX-A''-Re(Arg(11))CCMSH, which targeted the melanocortin-1 receptor (MC1-R) overexpressed on melanoma cells, was investigated for its biodistribution and tumor imaging properties. METHODS: The metal bifunctional chelator CHX-A'' was conjugated to the melanoma targeting peptide (Arg(11))CCMSH and cyclized by Re incorporation to yield CHX-A''-Re(Arg(11))CCMSH. CHX-A''-Re(Arg(11))CCMSH was labeled with (111)In, (86)Y and (68)Ga, and the radiolabeled peptides were examined in B16/F1 melanoma-bearing mice for their pharmacokinetic as well as their tumor targeting properties using small animal SPECT and PET. RESULTS: The radiolabeling efficiencies of the (111)In-, (86)Y- and (68)Ga-labeled CHX-A''-Re(Arg(11))CCMSH peptides were >95%, resulting in specific activities of 4.44, 3.7 and 1.85 MBq/microg, respectively. Tumor uptake of the (111)In-, (86)Y- and (68)Ga-labeled peptides was rapid with 4.17+/-0.94, 4.68+/-1.02 and 2.68+/-0.69 %ID/g present in the tumors 2 h postinjection, respectively. Disappearance of radioactivity from the normal organs and tissues was rapid with the exception of the kidneys. Melanoma tumors were imaged with all three radiolabeled peptides 2 h postinjection. MC1-R-specific uptake was confirmed by competitive receptor blocking studies. CONCLUSIONS: Melanoma tumor uptake and imaging was exhibited by the (111)In-, (86)Y- and (68)Ga-labeled Re(Arg(11))CCMSH peptides, although the tumor uptake was moderated by low specific activity. The facile radiolabeling properties of CHX-A''-Re(Arg(11))CCMSH allow it to be employed as a melanoma imaging agent with little or no purification after (111)In, (86)Y and (68)Ga labeling.
机译:简介:针对新型在黑色素瘤细胞上过表达的黑皮质素-1受体(MC1-R)的新型α-刺激黑素细胞的激素肽类似物CHX-A''-Re(Arg(11))CCMSH进行了研究肿瘤成像特性。方法:将金属双功能螯合剂CHX-A''与黑色素瘤靶向肽(Arg(11))CCMSH偶联,并通过Re掺入环化,得到CHX-A''-Re(Arg(11))CCMSH。用(111)In,(86)Y和(68)Ga标记CHX-A''-Re(Arg(11))CCMSH,并在带有B16 / F1黑色素瘤的小鼠中检查放射性标记的肽的药代动力学以及使用小型动物SPECT和PET的肿瘤靶向特性。结果:(111)In-,(86)Y-和(68)Ga标记的CHX-A''-Re(Arg(11))CCMSH肽的放射性标记效率> 95%,从而导致分别为4.44、3.7和1.85 MBq / microg。 (111)In-,(86)Y-和(68)Ga标记的肽的肿瘤摄取迅速,其中存在4.17 +/- 0.94、4.68 +/- 1.02和2.68 +/- 0.69%ID / g。注射后2小时分别肿瘤。正常器官和组织的放射性消失迅速,肾脏除外。注射后2小时,用所有三种放射性标记的肽对黑色素瘤肿瘤进行成像。竞争性受体阻滞研究证实了MC1-R特异性摄取。结论:(111)In-,(86)Y-和(68)Ga标记的Re(Arg(11))CCMSH肽表现出黑色素瘤肿瘤摄取和成像,尽管该肿瘤摄取被低比活度所缓和。 CHX-A''-Re(Arg(11))CCMSH的简便放射性标记特性使其可以用作(111)In,(86)Y和(68)Ga标记后几乎不纯化的黑色素瘤显像剂。

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