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首页> 外文期刊>Nanoscale >Targeting FR-expressing cells in ovarian cancer with Fab-functionalized nanoparticles: a full study to provide the proof of principle from in vitro to in vivo
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Targeting FR-expressing cells in ovarian cancer with Fab-functionalized nanoparticles: a full study to provide the proof of principle from in vitro to in vivo

机译:针对FR-expressing在卵巢癌细胞与Fab-functionalized纳米粒子:一个完整的从研究提供的证据原则体外到体内

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摘要

Efficient targeting in tumor therapies is still an open issue: systemic biodistribution and poor specific accumulation of drugs weaken efficacy of treatments. Engineered nanoparticles are expected to bring benefits by allowing specific delivery of drug to the tumor or acting themselves as localized therapeutic agents. In this study we have targeted epithelial ovarian cancer with inorganic nanoparticles conjugated to a human antibody fragment against the folate receptor over-expressed on cancer cells. The conjugation approach is generally applicable. Indeed several types of nanoparticles (either magnetic or fluorescent) were engineered with the fragment, and their biological activity was preserved as demonstrated by biochemical methods in vitro. In vivo studies with mice bearing orthotopic and subcutaneous tumors were performed. Elemental and histological analyses showed that the conjugated magnetic nanoparticles accumulated specifically and were retained at tumor sites longer than the non-conjugated nanoparticles.
机译:有效针对肿瘤的治疗仍是一个开放式问题:系统性biodistribution和贫穷特定的药物积累削弱的效果治疗方法。带来好处,允许特定的交付药物的肿瘤或表演自己局部治疗药物。有针对性的卵巢癌上皮无机纳米粒子结合人类对叶酸受体抗体片段vegf在癌细胞。方法是普遍适用的。类型的纳米颗粒(磁性或荧光)工程的片段,和他们的生物活性是保存通过体外生化方法。体内研究小鼠原位和轴承皮下肿瘤进行。组织学分析表明,共轭磁性纳米颗粒积累特别和在肿瘤网站超过留存non-conjugated纳米颗粒。

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