首页> 外文会议>SPIE Conference on Reporters, Markers, Dyes, Nanoparticles, and Molecular Probes for Biomedical Applications >ICG-loaded polymeric nanocapsules functionalized with anti-HER2 for targeted fluorescence imaging and photodestruction of ovarian cancer cells
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ICG-loaded polymeric nanocapsules functionalized with anti-HER2 for targeted fluorescence imaging and photodestruction of ovarian cancer cells

机译:用抗HER2官能化的ICG加载的聚合物纳米胶囊,用于靶向荧光显像和卵巢癌细胞的光脱落

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Optical nano-materials present a promising platform for targeted molecular imaging of cancer biomarkers and its photodestruction. Our group is investigating the use of polymeric nanoparticles, loaded with indocyanine green, an FDA-approved chromophore, as a theranostic agent for targeted intraoperative optical imaging and laser-mediated destruction of ovarian cancer. These ICG-loaded nanocapsules (ICG-NCs) can be functionalized by covalent attachment of targeting moieties onto their surface. Here, we investigate ICG-NCs functionalized with anti-HER2 for targeted fluorescence imaging and laser-mediated destruction of ovarian cancer cells in vitro. ICG-NCs are formed through ionic cross-linking between polyallylamine hydrochloride chains and sodium phosphate ions followed by diffusion-mediated loading with ICG. Before functionalization with antibodies, the surface of ICG-NCs is coated with single and double aldehyde terminated polyethylene glycol (PEG). The monoclonal anti-HER2 is covalently coupled to the PEGylated ICG-NCs using reductive amination to target the HER2 receptor, a biomarker whose over-expression is associated with increased risk of cancer progression. We quantify uptake of anti-HER2 conjugated ICG-NCs by ovarian cancer cells using flow cytometery. The in-vitro laser-mediated destruction of SKOV3 cells incubated with anti-HER2 functionalized ICG-NCs is performed using an 808 nm diode laser. Cell viability is characterized using the Calcein and Ethidium homodimer-1 assays following laser irradiation. Our results indicate that anti-HER2 functionalized ICG-NCs can be used as theranostic agents for optical molecular imaging and photodestruction of ovarian cancers in-vitro.
机译:光学纳米材料具有癌症生物标志物的靶向分子成像的有希望的平台及其光学挖掘。我们的小组正在研究使用聚合物纳米颗粒,用吲哚菁绿,一种FDA批准的发色团负载,作为针对靶向术中光学成像的治疗剂和激光介导的卵巢癌的破坏。这些ICG负载的纳米胶囊(ICG-NCS)可以通过将靶向部分的共价附着在其表面上官能化。在这里,我们研究用抗HER2官能化的ICG-NC用于靶向荧光成像和激光介导的体外卵巢癌细胞的破坏。通过聚烯丙胺盐酸盐链和磷酸钠离子之间的离子交联形成ICG-NC,其次是用ICG扩散介导的负载。在用抗体官能化之前,ICG-NCS的表面涂有单醛和双醛封端的聚乙二醇(PEG)。单克隆抗HER -2与使用还原胺化与PEG化的ICG-NC共价偶联以靶向HER2受体,其过表达与癌症进展的风险增加相关的生物标志物。我们使用流式细胞术来量化卵巢癌细胞对抗HER2共轭ICG-NC的吸收。使用808nm二极管激光进行与抗HER -2官能化ICG-NCS孵育的体外激光介导的SKOV3细胞破坏。在激光照射后,使用Calcein和乙酸乙锭-1测定的细胞活力表征。我们的结果表明,抗HER2官能化ICG-NC可以用作体外光学分子成像和卵巢癌的光学脱落的治疗剂。

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