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A tumor-targeted polymer theranostics platform for positron emission tomography and fluorescence imaging

机译:tumor-targeted聚合物开展平台正电子发射断层扫描和荧光成像

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摘要

Here, we describe a novel polymer platform suitable for efficient diagnostics and potential theranostics based on Zr-89-labeled N-(2-hydroxypropyl)methacrylamide (HPMA)-based copolymer conjugates. A set of polymers differing in molecular weight with either low dispersity or high dispersity were designed and synthesized and their biodistribution in vivo was successfully and precisely observed over 72 h. Moreover, the feasibility of two imaging techniques, fluorescence imaging (FI) and positron emission tomography (PET), was compared using labeled polymer conjugates. Both methods gave comparable results thus showing the enhanced diagnostic potential of the prepared polymer-dye or polymer-chelator-Zr-89 constructs. The in vivo and ex vivo PET/FI studies indicated that the dispersity and molecular weight of the linear HPMA polymers have a significant influence on the pharmacokinetics of the polymer conjugates. The higher molecular weight and narrower distribution of molecular weights of the polymer carriers improve their pharmacokinetic profile for highly prolonged blood circulation and enhanced tumor uptake. Moreover, the same polymer carrier with the anticancer drug doxorubicin bound by a pH-sensitive hydrazone bond showed higher cytotoxicity and cellular uptake in vitro. Therefore, HPMA copolymers with low dispersity and a molecular weight near the limit of renal filtration can be used as highly efficient polymer carriers of tumor-targeted therapeutics or for theranostics with minimal side effects.
机译:在这里,我们描述一种新型聚合物平台适合有效的诊断和潜力开展基于zr - 89标记N - (2-hydroxypropyl)甲基丙烯酰胺(HPMA)的共聚物共轭。与低分散度或分子量设计并合成高分散度和他们的体内biodistribution是成功、准确地观察到超过72 h。此外,两个成像技术的可行性,荧光成像技术(FI)和正电子发射断层扫描(PET)相比,使用标签聚合物共轭。因此显示增强的诊断结果polymer-dye或潜在的准备聚合物-螯合剂- zr - 89结构。和体外PET / FI研究表明分散性和分子量的线性HPMA聚合物产生显著的影响药物动力学的聚合物共轭。高分子量和窄分布聚合物分子量的运营商提高他们对高药动学特征长时间的血液循环,增强肿瘤吸收。抗癌药物阿霉素绑定的pH-sensitive腙键显示更高体外细胞毒性和细胞吸收。因此,HPMA分散度较低的共聚物附近的分子量和肾的极限可以用作高效过滤聚合物的载体tumor-targeted疗法或开展以最小的副作用。

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