首页> 美国卫生研究院文献>MedChemComm >68Ga-Chelation and comparative evaluation of NN′-bis-2-hydroxy-5-(carboxyethyl)benzylethylenediamine-NN′-diacetic acid (HBED-CC) conjugated NGR and RGD peptides as tumor targeted molecular imaging probes
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68Ga-Chelation and comparative evaluation of NN′-bis-2-hydroxy-5-(carboxyethyl)benzylethylenediamine-NN′-diacetic acid (HBED-CC) conjugated NGR and RGD peptides as tumor targeted molecular imaging probes

机译:NN-双-2-羟基-5-(羧乙基)苄基乙二胺-NN-二乙酸(HBED-CC)共轭的NGR和RGD肽的68Ga螯合和比较评价作为肿瘤靶向分子成像探针

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摘要

Peptides containing RGD and NGR motifs display high affinity towards tumor vasculature molecular markers, integrin αvβ3 and CD13 receptors, respectively. In the present study, RGD and NGR peptides were conjugated with the novel acyclic chelator N,N′-bis-[2-hydroxy-5-(carboxyethyl)benzyl]ethylenediamine-N,N′-diacetic acid (HBED-CC) for radiolabeling with 68Ga. The radiotracers [68Ga-HBED-CC-c(NGR)] and [68Ga-HBED-CC-c(RGD)] were quite hydrophilic with respective log P values being –2.8 ± 0.14 and –2.1 ± 0.17. 68Ga-HBED-CC-c(RGD) displayed a significantly higher (p < 0.05) uptake in murine melanoma B16F10 tumors as compared to 68Ga-HBED-CC-c(NGR) indicating its higher specificity towards integrin αvβ3-positive tumors. The two radiotracers showed similar uptake in CD13-positive human fibrosarcoma HT-1080 tumor xenografts (∼1.5 ± 0.2% ID g–1). The tumor uptake of the two radiotracers was significantly reduced (p < 0.05) in both animal models during blocking studies. The tumor-to-blood ratio was observed to be ∼2–2.5 for the two radiotracers, whereas the tumor-to-muscle ratio was significantly higher (p < 0.005) for 68Ga-HBED-CC-c(RGD) in the two animal models. The two radiotracers 68Ga-HBED-CC-c(NGR) and 68Ga-HBED-CC-c(RGD) exhibited renal excretion with rapid clearance from blood and other non-target organs. Thus, 68Ga-chelated HBED-CC conjugated NGR and RGD peptides expressed features conducive towards development as tumor targeted molecular imaging probes. This study further opens avenues for the successful conjugation of different peptides with the acyclic chelator HBED-CC and expansion of 68Ga-based radiopharmaceuticals.
机译:含有RGD和NGR基序的肽分别对肿瘤脉管系统分子标记物,整联蛋白αvβ3和CD13受体显示出高亲和力。在本研究中,RGD和NGR肽与新型无环螯合剂N,N'-双-[2-羟基-5-(羧乙基)苄基]乙二胺-N,N'-二乙酸(HBED-CC)偶联。用 68 Ga进行放射性标记。放射性示踪剂[ 68 Ga-HBED-CC-c(NGR)]和[ 68 Ga-HBED-CC-c(RGD)]具有很强的亲水性,各自的log P值为–2.8±0.14和–2.1±0.17。与 68 Ga-HBED-CC-相比, 68 Ga-HBED-CC-c(RGD)在鼠黑色素瘤B16F10肿瘤中的摄取显着更高(p <0.05) c(NGR)表明其对整联蛋白αvβ3阳性肿瘤具有更高的特异性。两种放射性示踪剂在CD13阳性的人纤维肉瘤HT-1080肿瘤异种移植物中显示出相似的摄取(〜1.5±0.2%ID g –1 )。在阻断研究期间,两种动物模型中两种放射性示踪剂的肿瘤吸收均显着降低(p <0.05)。两种放射性示踪剂的肿瘤血比约为2–2.5,而 68 Ga-HBED-CC的肿瘤与肌肉比则显着更高(p <0.005) -c(RGD)在两个动物模型中。两种放射性示踪剂 68 Ga-HBED-CC-c(NGR)和 68 Ga-HBED-CC-c(RGD)表现出肾脏排泄,可快速清除血液和其他非目标器官。因此, 68 Ga螯合的HBED-CC偶联的NGR和RGD肽表达的特征有助于发展为肿瘤靶向分子成像探针。该研究为不同肽与无环螯合剂HBED-CC的成功结合以及基于 68 Ga的放射性药物的扩展开辟了道路。

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