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首页> 外文期刊>Journal of Medicinal Chemistry >Studies on the Synthesis and Biological Properties of Non-Carrier-Added [~(125)I and ~(131)I]-Labeled Arylalkylidenebisphosphonates: Potent Bone-Seekers for Diagnosis and Therapy of Malignant Osseous Lesions
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Studies on the Synthesis and Biological Properties of Non-Carrier-Added [~(125)I and ~(131)I]-Labeled Arylalkylidenebisphosphonates: Potent Bone-Seekers for Diagnosis and Therapy of Malignant Osseous Lesions

机译:非载有[〜(125)I和〜(131)I]标记的芳基亚烷基双膦酸酯的合成及其生物学性质的研究:用于恶性骨病变的强力骨寻找者

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摘要

Arylalkylidenebisphosphonates labeled with nca [~(125)I or ~(131)] have been synthesized and their biological function investigated. The label was attached to the aromatic group in high yield and under mild conditions by means of iododesilylation. The bone affinities of the radioactive compounds were investigated in normal Balb/C mice. The compound 1-hydroxy(m-iodo[~(125,131)I]-phenylethlidene)-1,1-bisphosphonate was found to possess superior bone affinity compared to others, and its in vivo deiodination was insignificant. The uptake in femur 24h after injection was 850 ± 265% and 986 ± 118% of injected dose per gram tissue times gram body weight in mice and rats, respectively. The therapeutic potential of the compound was investigated in two tumor models in athymic (nude) rats, one model for mixed lytic/sclerotic metastatic bonelesions originating from breast cancer and the other model simulating osseous osteosarcoma. The effects in these models compare favorably to those observed for established treatment modalities. The experiments demonstrate that radioiodinated bisphosphonates may have a potential for diagnosis and therapy of malignant osseous lesions.
机译:已经合成了以nca [〜(125)I或〜(131)]标记的芳基亚烷基双膦酸酯,并对其生物学功能进行了研究。该标记通过碘去甲硅烷基化在温和条件下以高产率连接到芳族基团上。在正常的Balb / C小鼠中研究了放射性化合物的骨亲和力。发现化合物1-羟基(间碘[〜(125,131)I]-苯基亚乙炔基)-1,1-双膦酸酯与其他化合物相比具有更好的骨亲和力,并且其体内去碘化作用微不足道。注射后24小时股骨的摄取量是小鼠和大鼠每克组织注射剂量的850±265%和986±118%。在无胸腺(裸鼠)大鼠的两种肿瘤模型中研究了该化合物的治疗潜力,一种是针对源自乳腺癌的溶解性/硬化性混合转移性骨病模型,另一种是模拟骨性骨肉瘤的模型。这些模型中的效果与建立的治疗方式所观察到的效果相比具有优势。实验表明,放射性碘化双膦酸盐可能具有诊断和治疗恶性骨病变的潜力。

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