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Evaluation of the Impact of Imprinted Polymer Particles on Morphology and Motility of Breast Cancer Cells by Using Digital Holographic Cytometry

机译:用数字全息细胞学评价压印聚合物颗粒对乳腺癌细胞形态和运动的影响

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摘要

Breast cancer is the second most common cancer type worldwide and breast cancer metastasis accounts for the majority of breast cancer-related deaths. Tumour cells produce increased levels of sialic acid (SA) that terminates the monosaccharide on glycan chains of the glycosylated proteins. SA can contribute to cellular recognition, cancer invasiveness and increase the metastatic potential of cancer cells. SA-templated molecularly imprinted polymers (MIPs) have been proposed as promising reporters for specific targeting of cancer cells when deployed in nanoparticle format. The sialic acid-molecularly imprinted polymers (SA-MIPs), which use SA for the generation of binding sites through which the nanoparticles can target and stain breast cancer cells, opens new strategies for efficient diagnostic tools. This study aims at monitoring the effects of SA-MIPs on morphology and motility of the epithelial type MCF-7 and the highly metastatic MDAMB231 breast cancer cell lines, using digital holographic cytometry (DHC). DHC is a label-free technique that is used in cell morphology studies of e.g., cell volume, area and thickness as well as in motility studies. Here, we show that MCF-7 cells move slower than MDAMB231 cells. We also show that SA-MIPs have an effect on cell morphology, motility and viability of both cell lines. In conclusion, by using DH microscopy, we could detect SA-MIPs impact on different breast cancer cells regarding morphology and motility.
机译:乳腺癌是第二个最常见的癌症类型和全世界乳腺癌转移占大多数乳腺癌相关的死亡。肿瘤细胞产生增加终止在糖基化蛋白的聚糖链的单糖的唾液酸(SA)的水平。 SA可以促进细胞识别,肿瘤侵袭和增加癌细胞的转移潜能。 SA为模板的分子印迹聚合物(MIP)已被提议作为有前途的记者特定纳米颗粒形式部署在目标癌细胞。唾液酸分子印迹聚合物(SA-MIPS),它使用SA结合位点的产生,通过该纳米颗粒可以靶向和染色乳腺癌细胞,打开用于有效的诊断工具的新策略。本研究的目的是监测在形态和上皮型MCF-7和高度转移性MDAMB231乳腺癌细胞系的活力SA-MIP的影响,使用数字全息术(DHC)。 DHC是无标记技术,该技术是在例如细胞形态研究,细胞体积,面积和厚度,以及在运动的研究中使用。在这里,我们表明,MCF-7细胞的移动速度慢于MDAMB231细胞。我们还表明,SA-MIPS对细胞形态,活力和活两种细胞系的效果。总之,通过使用DH显微镜,我们可以发现在关于形态和运动不同的乳腺癌细胞SA-MIPS影响。

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