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Label-free in vitro prostate cancer cell detection via photonic-crystal biosensor

机译:通过光子晶体生物传感器进行无标记体外前列腺癌细胞检测

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Prostate-specific antigen (PSA) biomarker assays are the current clinical method for mass screening of prostate cancer. However, high false-positive rates are often reported due to PSA's low specificity, leading to an urgent need for the development of a more specific detection system independent of PSA levels. In our previous research, we demonstrated the feasibility of using cellular refractive indices (RI) as a unique contrast parameter to accomplish label-free detection of prostate cancer cells via variance testing, but were unable to determine if a specific cell was cancerous or noncancerous. In this paper, we report the use of our Photonic-Crystal biosensor in a Total-Internal-Reflection (PC-TIR) configuration to construct a label-free imaging system, which allows for the detection of individual prostate cancer cells utilizing cellular RI as the only contrast parameter. Noncancerous prostate (BPH-1) cells and prostate cancer (PC-3) cells were mixed at varied ratios and measured concurrently. Additionally, we isolated and induced PC-3 cells to undergo epithelial-mesenchymal transition (EMT) by exposing these cells to soluble factors such as TGF-β1. The biophysical characteristics of the cellular RI were quantified extensively in comparison to non-induced PC-3 cells as well as BPH-1 cells. EMT is a crucial mechanism for the invasion and metastasis of epithelial tumors characterized by the loss of cell-cell adhesion and increased cell mobility. Our study shows promising clinical potential in utilizing the PC-TIR biosensor imaging system to not only detect prostate cancer cells, but also evaluate prostate cancer progression.
机译:前列腺特异性抗原(PSA)生物标志物测定是目前大规模筛查前列腺癌的临床方法。但是,由于PSA的特异性较低,经常会报告较高的假阳性率,因此迫切需要开发一种与PSA水平无关的更具体的检测系统。在我们以前的研究中,我们证明了使用细胞折光指数(RI)作为唯一的对比参数来通过方差测试完成前列腺癌细胞的无标记检测的可行性,但是无法确定特定细胞是癌性还是非癌性。在本文中,我们报告了在全内反射(PC-TIR)配置中使用我们的光子晶体生物传感器来构建无标签成像系统,该系统可利用细胞RI作为检测单个前列腺癌细胞的方法。唯一的对比度参数。非癌前列腺(BPH-1)细胞和前列腺癌(PC-3)细胞以不同的比例混合并同时测量。此外,我们通过将PC-3细胞暴露于TGF-β1等可溶性因子中,从而使其分离并诱导PC-3细胞经历上皮-间质转化(EMT)。与未诱导的PC-3细胞以及BPH-1细胞相比,细胞RI的生物物理特性得到了广泛的量化。 EMT是上皮肿瘤侵袭和转移的关键机制,其特征是细胞间粘附力的丧失和细胞移动性的增强。我们的研究表明,利用PC-TIR生物传感器成像系统不仅可以检测前列腺癌细胞,而且可以评估前列腺癌的进展,具有广阔的临床潜力。

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