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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Synthesis and biodistribution of novel magnetic-poly(HEMA-APH) nanopolymer radiolabeled with iodine-131 and investigation its fate in vivo for cancer therapy
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Synthesis and biodistribution of novel magnetic-poly(HEMA-APH) nanopolymer radiolabeled with iodine-131 and investigation its fate in vivo for cancer therapy

机译:碘131放射性标记的新型磁性聚(HEMA-APH)纳米聚合物的合成与生物分布及其在体内癌症治疗中的命运

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摘要

Herein, we investigated the biological uptake, distribution, and radiopharmaceutical potential of a novel molecule based on 2-hydroxyethyl methacrylate (HEMA) and anilinephtalein (APH) in the metabolism of Albino Wistar rats. In order to achieve this, we synthesized APH using organic synthesis methods and copolymerized APH with HEMA using a common polymerization method, surfactant-free emulsion polymerization. In the presence of Fe_3O _4 particles, we obtained a new generation magnetic-nano-scale polymer, magnetic-poly(HEMA-APH). This new molecule was chemically identified and approved by several characterization methods using Fourier transform infrared spectroscopy, scanning electron microscope, energy dispersive X-ray spectroscopy, electron spin resonance, atomic force microscope, and Zeta particle-size analysis. To evaluate the biological activity in live metabolism and anti-cancer potential of mag-poly(HEMA-APH), molecule was radioiodinated by a widely used labeling technique, iodogen method, with a gamma diffuser radionuclide, ~(131)I. Thin-layer radiochromatography experiments demonstrated that ~(131)I binded to nanopolymer with the labeling yield of 90 %. Lipophilicity and stability experiments were conducted to determine the condition of cold and labeled mag-poly(HEMA-APH) in rat blood and lipid medium. Results demonstrated that radioiodinated molecule stayed as an intact complex in rat metabolism for 24 h and experimental lipophilicity was determined as 0.12 ± 0.02. In vivo results obtained by imaging and biological distribution experiments indicated that mag-poly(HEMA-APH) labeled with ~(131)I [~(131)I-mag-poly(HEMA-APH)] highly incorporated into tissues of the uterus, the ovarian, the prostate, and the lungs in rat metabolism. Based on these results, it may be evaluated that novel mag-poly(HEMA-APH) molecule labeled with ~(131)I is a compound which has a significant potential for being used as an anti-cancer agent. Certain results can only be obtained whether this molecule is applied to adenocarcinoma cell models and tumor-bearing animals.
机译:本文中,我们研究了基于甲基丙烯酸2-羟乙酯(HEMA)和苯胺吗啡肽(APH)的新型分子在白化Wistar大鼠代谢中的生物摄取,分布和放射性药物潜力。为了实现这一目标,我们使用有机合成方法合成了APH,并使用常见的聚合方法(无表面活性剂乳液聚合)将APH与HEMA共聚。在Fe_3O _4颗粒的存在下,我们获得了新一代的磁性纳米尺度聚合物,即磁性聚合物(HEMA-APH)。通过使用傅立叶变换红外光谱,扫描电子显微镜,能量色散X射线光谱,电子自旋共振,原子力显微镜和Zeta粒度分析的几种表征方法,化学鉴定并批准了这种新分子。为了评估mag-poly(HEMA-APH)在活体内代谢中的生物活性和抗癌潜力,通过一种广泛使用的标记技术(碘法)用伽马扩散放射性核素〜(131)I对分子进行放射性碘标记。薄层放射色谱实验表明,〜(131)I以90%的标记产率与纳米聚合物结合。进行了亲脂性和稳定性实验,以确定大鼠血液和脂质介质中感冒和标记的多聚体(HEMA-APH)的状况。结果表明,放射性碘标记的分子在大鼠新陈代谢中以完整复合物形式存在24小时,实验亲脂性为0.12±0.02。通过成像和生物分布实验获得的体内结果表明,标记有〜(131)I [〜(131)I-mag-poly(HEMA-APH)]的mag-poly(HEMA-APH)已高度掺入子宫组织,大鼠卵巢,前列腺和肺部的新陈代谢。基于这些结果,可以评价标记有〜(131)I的新型mag-poly(HEMA-APH)分子是具有用作抗癌剂的显着潜力的化合物。无论该分子是否应用于腺癌细胞模型和荷瘤动物,都只能获得某些结果。

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