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Targeted imaging and targeted therapy of breast cancer cells via fluorescent double template-imprinted polymer coated silicon nanoparticles by an epitope approach

机译:目标成像和靶向治疗乳腺癌通过荧光双癌细胞template-imprinted聚合物涂硅纳米粒子的抗原决定基的方法

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摘要

Targeting is vital for precise positioning and efficient therapy, and integrated platforms for diagnosis and therapy have attracted more and more attention. Herein, we established dual-template molecularly imprinted polymer (MIP) coated fluorescent silicon nanoparticles (Si NPs) by using the linear peptide of the extracellular region of human epidermal growth factor receptor-2 (HER2) and adopting doxorubicin (DOX) as templates for targeted imaging and targeted therapy. Benefiting from the epitope imprinting approach, the imprinted sites generated by peptides on the MIP surface can be employed for recognizing the corresponding protein, which allowed the MIP to specifically and actively target HER2-positive breast cancer cells. Because of its ability to identify breast cancer cells, the MIP was applied for targeted fluorescence imaging by taking advantage of the excellent fluorescence properties of Si NPs, and the DOXloaded MIP (MIP@DOX) can act as a therapeutic probe to effectively target and kill breast cancer cells. In fluorescence images, the targeting of the MIP promoted more uptake of the nanoparticles by cells than the non-imprinted polymer (NIP), so HER2-positive breast cancer cells incubated with the MIP exhibited stronger fluorescence, and there was no significant difference in fluorescence when HER2-negative cells and normal cells were respectively hatched with the MIP and NIP. Importantly, the cell viability was evaluated to demonstrate targeted accumulation and therapy of MIP@DOX for breast cancer cells. The nanoplatform for diagnosis and therapy combined the high sensitivity of fluorescence with the high selectivity of the molecular imprinting technique, which holds vital potential in targeted imaging and targeted therapy in vitro.
机译:对精确定位和目标是至关重要的有效的疗法,和集成平台诊断和治疗吸引了更多更多的关注。dual-template分子印迹聚合物(MIP)包覆的纳米荧光硅(Si NPs)通过使用线性肽的细胞外人类表皮生长因子的区域受体2 (HER2)和采用阿霉素(阿霉素)作为目标成像和有针对性的模板治疗。方法,所产生的压印网站肽可以用于MIP表面识别相应的蛋白质,允许MIP特别积极目标her2阳性乳腺癌细胞。乳腺癌细胞识别的能力,MIP申请目标荧光成像利用好如果NPs的荧光特性,和DOXloaded MIP (MIP@DOX)可以作为治疗调查并杀死乳腺癌有效目标癌细胞。针对的MIP提升更多的吸收比non-imprinted纳米颗粒细胞聚合物(夹),所以her2阳性乳腺癌细胞培养与MIP表现出更强的荧光,没有明显her2阴性时不同的荧光细胞和正常细胞分别打如意算盘MIP和扼杀。可行性评估来演示的目标积累和治疗MIP@DOX乳房癌细胞。治疗相结合的高灵敏度荧光的高选择性分子印迹技术,拥有至关重要的潜在的目标成像和有针对性的治疗体外。

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