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Cell-based sensor for analysis of EGFR biomarker expression in oral cancer

机译:基于细胞的传感器可用于分析口腔癌中EGFR生物标志物的表达

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摘要

Oral cancer is the sixth most common cancer worldwide and has been marked by high morbidity and poor survival rates that have changed little over the past few decades.Beyond prevention,early detection is the most crucial determinant for successful treatment and survival of cancer.Yet current methodologies for cancer diagnosis based upon pathological examination alone are insufficient for detecting early tumor progression and molecular transformation.To address this clinical need,we have developed a cell-based sensor to detect oral cancer biomarkers,such as the epidermal growth factor receptor (EGFR) whose over-expression is associated with early oral tumorigenesis and aggressive cancer phenotypes.The lab-on-a-chip (LOC) sensor utilizes an embedded track-etched membrane,which functions as a micro-sieve,to capture and enrich cells from complex biological fluids or biopsy suspensions.Once captured,"on-membrane" immunofluorescent assays reveal the presence and isotype of interrogated cells via automated microscopy and fluorescent image analysis.Using the LOC sensor system,with integrated capture and staining technique,EGFR assays were completed in less than 10 minutes with staining intensity,homogeneity,and cellular localization patterns comparable to conventional labeling methods.Further examination of EGFR expression in three oral cancer cell lines revealed a significant increase (p < 0.05) above control cells with EGFR expression similar to normal squamous epithelium.Results obtained in the microfluidic sensor system correlated well with flow cytometry (r2 - 0.98),the "gold standard" in quantitative protein expression analysis.In addition,the LOC sensor detected significant differences between two of the oral cancer cell lines (p < 0.01),accounting for disparity of approximately 34 000 EGFR per cell according to quantitative flow cytometry.Taken together,these results support the LOC sensor system as a suitable platform for rapid detection of oral cancer biomarkers and characterization of EGFR over-expression in oral malignancies.Application of this technique may be clinically useful in cancer diagnostics for early detection,prognostic evaluation,and therapeutic selection.Having demonstrated the functionality of this integrated microfluidic sensor system,further studies using clinical samples from oral cancer patients are now warranted.
机译:口腔癌是全球第六大最常见的癌症,其特征是高发病率和较差的存活率,在过去几十年中几乎没有改变。仅基于病理学检查的癌症诊断方法不足以检测早期肿瘤进展和分子转化。为了满足这一临床需求,我们开发了一种基于细胞的传感器来检测口腔癌生物标志物,例如表皮生长因子受体(EGFR)它的过度表达与早期口腔肿瘤发生和侵略性癌症表型有关。芯片实验室(LOC)传感器利用嵌入的刻蚀膜作为微筛,从复杂的细胞中捕获和富集细胞生物液体或活检悬浮液。一旦被捕获,“膜上”免疫荧光测定就会揭示被询问细胞的存在和同种型通过LOC传感器系统,采用集成的捕获和染色技术,在不到10分钟的时间内完成了EGFR测定,其染色强度,均一性和细胞定位模式可与传统标记方法相媲美。在三种口腔癌细胞系中的mRNA表达表明,与正常鳞状上皮类似的EGFR表达的对照细胞相比,它们的表达显着增加(p <0.05)。在微流体传感器系统中获得的结果与流式细胞术(r2-0.98)密切相关,“金标准”此外,LOC传感器检测到两种口腔癌细胞系之间的显着差异(p <0.01),根据定量流式细胞仪,每个细胞约有34 000 EGFR的差异。结果支持LOC传感器系统作为快速检测口腔癌生物标志物的合适平台EGFR在口腔恶性肿瘤中的过度表达。该技术在临床诊断,早期诊断,预后评估和治疗选择方面可能具有临床意义。已经证明了这种集成的微流体传感器系统的功能,并使用来自临床的临床样本进行了进一步的研究。现在需要对口腔癌患者进行检查。

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