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Non-invasive detection of biomechanical and biochemical responses of human lung cells to short time chemotherapy exposure using AFM and confocal Raman spectroscopy

机译:使用AFM和共聚焦拉曼光谱技术无创检测人肺细胞对短时化疗暴露的生物力学和生化反应

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Cellular biomechanical properties including cell elasticity and cell adhesion are regarded as criteria to differentiate cancer cells and normal cells. In this study, the biomechanical properties including the Young's modulus and adhesion force of human lung adenocarcinoma epithelial cell line A549 and noncancerous human primary small airway epithelial cells (SAECs) were measured by using atomic force microscopy (AFM). It was found that primary SAECs are stiffer and more adhesive than cancerous A549 cells, Upon treatment with anti-cancer drug doxorubicin (DOX) for a short time (4 hours), both biomechanical properties of A549 cells were found to be increased while those of SAECs were decreased, implying that DOX-induced response mechanisms are different between these two types of cells (cancerous vs. primary cells). Using confocal Raman spectroscopy, we measured the changes in (sub) cellular biochemical compositions of both cell types before and after DOX exposure. Our ultimate goal is to find out the potential relationship between the changes in biomechanics and biochemical compositions of lung epithelial cells in response to anti-cancer drugs.
机译:包括细胞弹性和细胞粘附性在内的细胞生物力学特性被视为区分癌细胞和正常细胞的标准。在这项研究中,通过使用原子力显微镜(AFM)测量了人肺腺癌上皮细胞系A549和非癌性人小气道上皮细胞(SAEC)的杨氏模量和粘附力的生物力学性能。已发现原发性SAEC比癌性A549细胞更坚硬且更具粘附性。在短时间内(4小时)用抗癌药阿霉素(DOX)处理后,发现A549细胞的两种生物力学性能均得到提高,而SAEC降低,这表明DOX诱导的反应机制在这两种类型的细胞(癌细胞与原代细胞)之间是不同的。使用共聚焦拉曼光谱法,我们测量了DOX暴露前后两种细胞类型的(亚)细胞生化成分的变化。我们的最终目标是找出响应抗癌药物的肺上皮细胞生物力学与生化成分变化之间的潜在关系。

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