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Anti-TROP2 conjugated hollow gold nanospheres as a novel nanostructure for targeted photothermal destruction of cervical cancer cells

机译:抗TROP2缀合的空心金纳米球作为一种新型纳米结构,用于靶向光热破坏宫颈癌细胞

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Photothermal ablation (PTA) is a promising avenue in the area of cancer therapeutics that destroys tumor cells through conversion of near-infrared (NIR) laser light to heat. Hollow gold nanospheres (HGNs) are one of the few materials that are capable of converting light to heat and have been previously used for photothermal ablation studies. Selective delivery of functional nanoparticles to the tumor site is considered as an effective therapeutic approach. In this paper, we demonstrated the anti-cancer potential of HGNs. HGNs were conjugated with monoclonal antibody (anti-TROP2) in order to target cervical cancer cells (HeLa) that contain abundant trophoblast cell surface antigen 2 (TROP2) on the cell surface. The efficient uptake and intracellular location of these functionalized HGNs were studied through application of inductively coupled plasma atomic emission spectroscopy (ICP-AES) and transmission electron microscopy (TEM). Cytotoxicity induced by PTA was measured using CCK-8 assay. HeLa cells incubated with naked HGNs (0.3–3 nmol L~(?1)) within 48 h did not show obvious cytotoxicity. Under laser irradiation at suitable power, anti-TROP2 conjugated HGNs achieved significant tumor cell growth inhibition in comparison to the effects of non-specific PEGylated HGNs (P < 0.05). γH2AX assay results revealed higher occurrences of DNA-DSBs with anti-TROP2 conjugated HGNs plus laser radiation as compared to treatment with laser alone. Flow cytometry analysis showed that the amount of cell apoptosis was increased after laser irradiation with anti- TROP2 conjugated HGNs (P < 0.05). Anti-TROP2 conjugated HGNs resulted in downregulation of Bcl-2 expression and up-regulation of Bax expression. Our study results confirmed that anti-TROP2 conjugated HGNs can selectively destroy cervical cancer cells through inducing its apoptosis and DNA damages. We propose that HGNs have the potentials to mediate targeted cancer treatment.
机译:在癌症治疗领域,光热消融(PTA)是一种有前途的途径,它可以通过将近红外(NIR)激光转化为热量来破坏肿瘤细胞。空心金纳米球(HGNs)是少数能够将光转换为热的材料之一,以前已用于光热消融研究。将功能性纳米颗粒选择性递送至肿瘤部位被认为是有效的治疗方法。在本文中,我们证明了HGN的抗癌潜力。将HGN与单克隆抗体(anti-TROP2)偶联,以靶向子宫颈癌细胞(HeLa),该子宫颈癌细胞在细胞表面含有丰富的滋养层细胞表面抗原2(TROP2)。通过应用电感耦合等离子体原子发射光谱法(ICP-AES)和透射电子显微镜(TEM)研究了这些功能化HGN的有效摄取和细胞内位置。使用CCK-8测定法测量PTA诱导的细胞毒性。在48小时内与裸露的HGN(0.3–3 nmol L〜(?1))孵育的HeLa细胞没有显示出明显的细胞毒性。与非特异性PEG化HGNs的作用相比,在适当功率的激光照射下,抗TROP2结合的HGNs实现了显着的肿瘤细胞生长抑制作用(P <0.05)。 γH2AX分析结果表明,与单独使用激光治疗相比,结合抗TROP2的HGN加激光辐射的DNA-DSB发生率更高。流式细胞仪分析显示,抗TROP2偶联的HGNs激光照射后,细胞凋亡的数量增加了(P <0.05)。抗TROP2偶联的HGNs导致Bcl-2表达下调和Bax表达上调。我们的研究结果证实,抗TROP2缀合的HGNs可以通过诱导其凋亡和DNA损伤来选择性破坏宫颈癌细胞。我们认为,HGNs具有介导靶向癌症治疗的潜力。

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