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首页> 外文期刊>BMC Cancer >Anti-HER2 IgY antibody-functionalized single-walled carbon nanotubes for detection and selective destruction of breast cancer cells
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Anti-HER2 IgY antibody-functionalized single-walled carbon nanotubes for detection and selective destruction of breast cancer cells

机译:抗HER2 IgY抗体功能化的单壁碳纳米管,用于检测和选择性破坏乳腺癌细胞

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Background Nanocarrier-based antibody targeting is a promising modality in therapeutic and diagnostic oncology. Single-walled carbon nanotubes (SWNTs) exhibit two unique optical properties that can be exploited for these applications, strong Raman signal for cancer cell detection and near-infrared (NIR) absorbance for selective photothermal ablation of tumors. In the present study, we constructed a HER2 IgY-SWNT complex and demonstrated its dual functionality for both detection and selective destruction of cancer cells in an in vitro model consisting of HER2-expressing SK-BR-3 cells and HER2-negative MCF-7 cells. Methods The complex was constructed by covalently conjugating carboxylated SWNTs with anti-HER2 chicken IgY antibody, which is more specific and sensitive than mammalian IgGs. Raman signals were recorded on Raman spectrometers with a laser excitation at 785 nm. NIR irradiation was performed using a diode laser system, and cells with or without nanotube treatment were irradiated by 808 nm laser at 5 W/cm2 for 2 min. Cell viability was examined by the calcein AM/ethidium homodimer-1 (EthD-1) staining. Results Using a Raman optical microscope, we found the Raman signal collected at single-cell level from the complex-treated SK-BR-3 cells was significantly greater than that from various control cells. NIR irradiation selectively destroyed the complex-targeted breast cancer cells without harming receptor-free cells. The cell death was effectuated without the need of internalization of SWNTs by the cancer cells, a finding that has not been reported previously. Conclusion We have demonstrated that the HER2 IgY-SWNT complex specifically targeted HER2-expressing SK-BR-3 cells but not receptor-negative MCF-7 cells. The complex can be potentially used for both detection and selective photothermal ablation of receptor-positive breast cancer cells without the need of internalization by the cells. Thus, the unique intrinsic properties of SWNTs combined with high specificity and sensitivity of IgY antibodies can lead to new strategies for cancer detection and therapy.
机译:背景基于纳米载体的抗体靶向是治疗和诊断肿瘤学中的有前途的方式。单壁碳纳米管(SWNT)具有两个可用于这些应用的独特光学特性:用于癌细胞检测的强拉曼信号和用于选择性光热消融肿瘤的近红外(NIR)吸收率。在本研究中,我们构建了HER2 IgY-SWNT复合体,并在由表达HER2的SK-BR-3细胞和HER2阴性的MCF-7组成的体外模型中证明了其双重功能,可检测和选择性破坏癌细胞。细胞。方法通过将羧基化SWNT与抗HER2鸡IgY抗体共价缀合来构建复合物,该抗体比哺乳动物IgG具有更高的特异性和敏感性。在拉曼光谱仪上用785 nm的激光激发记录拉曼信号。使用二极管激光系统进行NIR照射,并用808 nm激光以5 W / cm 2 照射经过或未经过纳米管处理的细胞2分钟。通过钙黄绿素AM /乙高聚物二聚体-1(EthD-1)染色检查细胞活力。结果使用拉曼光学显微镜,我们发现从经复合物处理的SK-BR-3细胞在单细胞水平收集的拉曼信号明显大于从各种对照细胞收集的拉曼信号。 NIR辐射选择性破坏了靶向复合物的乳腺癌细胞,而不损害无受体细胞。不需要癌细胞将SWNT内在化即可完成细胞死亡,这一发现以前没有报道。结论我们已经证明HER2 IgY-SWNT复合物特异性靶向表达HER2的SK-BR-3细胞,但不靶向阴性的MCF-7细胞。该复合物可潜在地用于受体阳性乳腺癌细胞的检测和选择性光热消融,而无需细胞内在化。因此,SWNTs的独特内在特性与IgY抗体的高特异性和敏感性相结合,可以导致癌症检测和治疗的新策略。

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