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Evaluation of Fluorine-18-Labeled α1(I)-N-Telopeptide Analogs as Substrate-Based Radiotracers for PET Imaging of Melanoma-Associated Lysyl Oxidase

机译:评价氟-18-标记的α1(i)-N-腹腹类似物作为基于基于底物的氨基醛植物的氨基乙酰体氧化酶的乙酰氨基

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摘要

Accumulating evidence suggests an unequivocal role of lysyl oxidases as key players of tumor progression and metastasis, which renders this enzyme family highly attractive for targeted non-invasive functional imaging of tumors. Considering their function in matrix remodeling, malignant melanoma appears as particularly interesting neoplasia in this respect. For the development of radiotracers that enable PET imaging of the melanoma-associated lysyl oxidase activity, substrates derived from the type I collagen α1 N-telopeptide were labeled with fluorine-18 using N-succinimidyl 4-[18F]fluorobenzoate ([18F]SFB) as prosthetic reagent. With regards to potential crosslinking to tumor-associated collagen in vivo, their interaction with triple-helical type I collagen was studied by SPR. A mouse model of human melanoma was established on the basis of the A375 cell line, for which the expression of the oncologically relevant lysyl oxidase isoforms LOX and LOXL2 was demonstrated in Western blot and immunohistochemical experiments. The radiopharmacological profiles of the peptidic radiotracers were evaluated in normal rats and A375 melanoma-bearing mice by ex vivo metabolite analysis, whole-body biodistribution studies and dynamic PET imaging. Out of three 18F-labeled telopeptide analogs, the one with the most favorable substrate properties has shown favorable tumor uptake and tumor-to-muscle ratio. Lysyl oxidase-mediated tumor uptake was proven by pharmacological inhibition using β-aminopropionitrile and by employing negative-control analogs of impeded or abolished targeting capability. The latter were obtained by substituting the lysine residue by ornithine and norleucine, respectively. Comparing the tumor uptake of the lysine-containing peptide with that of the non-functional analogs indicate the feasibility of lysyl oxidase imaging in melanoma using substrate-based radiotracers.
机译:越来越多的证据表明,赖氨酰氧化酶的明确的作用,因为肿瘤进展和转移,这使得此酶家族肿瘤的靶向的非侵入性的功能成像非常有吸引力的主要参与者。考虑到其在基质重塑功能,恶性黑色素瘤出现在这方面是特别有趣的瘤形成。对于放射性示踪剂,使对黑素瘤相关赖氨酰氧化酶活性的PET成像的发展,从I型胶原蛋白α1N-端肽衍生的底物标记有氟-18使用N-琥珀酰亚胺基4- [18 F]氟苯甲酸甲酯([18 F] SFB )作为假体试剂。至于交联潜力在体内肿瘤相关的胶原蛋白,它们与三螺旋的I型胶原蛋白相互作用通过SPR分析。建立了A375细胞系,对于该肿瘤学相关的赖氨酰氧化的表达同种型LOX和LOXL2在Western印迹和免疫组化实验证明的基础上的人黑素瘤的小鼠模型。肽的放射性示踪剂的radiopharmacological型材在正常大鼠和通过离体代谢物分析,全身生物分布研究和动态PET成像A375黑色素瘤的小鼠进行评价。出三18 F-标记的端肽类似物,所述一个以最优惠的基底特性已经显示有利的肿瘤摄取和肿瘤 - 肌肉比。赖氨酰氧化介导的肿瘤摄取,通过使用β氨基丙腈药理学抑制和通过采用阻碍或消除的靶向能力的负控制类似物证明。后者是由通过分别鸟氨酸和正亮氨酸,用赖氨酸残基而获得。比较,该非功能性类似物的含赖氨酸的肽的肿瘤摄取指示使用基于基底的放射性示踪剂赖氨酰氧化成像在黑色素瘤的可行性。

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