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Targeted Imaging of Ovarian Cancer Cells Using Viral Nanoparticles Doped with Indocyanine Green

机译:使用吲哚菁绿掺杂的病毒纳米粒子对卵巢癌细胞进行靶向成像

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Our group has constructed a new type of viral nanoparticles (VNPs) from genome-depleted plant infecting brome mosaic virus (BMV) that encapsulates the FDA-approved near infrared (NIR) indocyanine green (ICG)[1]. We refer to these VNPs as optical viral ghosts (OVGs) since the constructs lack the genomic content of wild-type BMV. One of our areas of interest is the application of OVGs for real-time intraoperative NIR fluorescence imaging of small peritoneal ovarian tumor nodules. We target human epidermal growth factor receptor-2 (HER-2) expression in ovarian cancer as a biomarker associated with ovarian cancer, since its over-expression is linked to the disease's progression to death. We functionalize the OVGs with anti-HER-2 monoclonal antibodies using reductive amination methods. We used fluorescence imaging to visualize the SKOV-3 cells (high HER-2 expression) after incubation with free ICG, OVGs, and functionalized OVGs. Our results suggest the possibility of using anti-HER2 conjugated OVGs in conjunction with cytoreductive surgery to detect small tumor nodules (<5cm) which currently are not excised during surgery.
机译:我们的团队从贫乏基因组的植物感染溴代花叶病毒(BMV)中构建了一种新型病毒纳米粒子(VNP),该粒子封装了FDA批准的近红外(NIR)吲哚菁绿(ICG)[1]。由于构建体缺少野生型BMV的基因组含量,我们将这些VNP称为光学病毒鬼(OVG)。我们感兴趣的领域之一是将OVG用于小腹膜卵巢肿瘤结节的实时术中NIR荧光成像。我们针对卵巢癌中人类表皮生长因子受体2(HER-2)的表达作为与卵巢癌相关的生物标记物,因为其过表达与疾病的发展相关。我们使用还原胺化方法用抗HER-2单克隆抗体功能化OVG。与游离的ICG,OVG和功能化的OVG孵育后,我们使用荧光成像技术可视化了SKOV-3细胞(HER-2高表达)。我们的结果表明,结合抗HER2的OVG与减细胞手术一起检测目前在手术中未切除的小肿瘤结节(<5cm)的可能性。

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