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Quick chip assay using locked nucleic acid modified epithelial cell adhesion molecule and nucleolin aptamers for the capture of circulating tumor cells

机译:使用锁定的核酸修饰的上皮细胞粘附分子和核仁素适体的快速芯片测定,用于捕获循环肿瘤细胞

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摘要

The role of circulating tumor cells (CTCs) in disease diagnosis, prognosis, monitoring of the therapeutic efficacy, and clinical decision making is immense and has attracted tremendous focus in the last decade. We designed and fabricated simple, flat channel microfluidic devices polydimethylsiloxane (PDMS based) functionalized with locked nucleic acid (LNA) modified aptamers (targeting epithelial cell adhesion molecule (EpCAM) and nucleolin expression) for quick and efficient capture of CTCs and cancer cells. With optimized flow rates (10 μl/min), it was revealed that the aptamer modified devices offered reusability for up to six times while retaining optimal capture efficiency (>90%) and specificity. High capture sensitivity (92%) and specificity (100%) was observed in whole blood samples spiked with Caco-2 cells (10-100 cells/ml). Analysis of blood samples obtained from 25 head and neck cancer patients on the EpCAM LNA aptamer functionalized chip revealed that an average count of 5 ± 3 CTCs/ml of blood were captured from 22/25 samples (88%). EpCAM intracellular domain (EpICD) immunohistochemistry on 9 oral squamous cell carcinomas showed the EpICD positivity in the tumor cells, confirming the EpCAM expression in CTCs from head and neck cancers. These microfluidic devices also maintained viability for in vitro culture and characterization. Use of LNA modified aptamers provided added benefits in terms of cost effectiveness due to increased reusability and sustainability of the devices. Our results present a robust, quick, and efficient CTC capture platform with the use of simple PDMS based devices that are easy to fabricate at low cost and have an immense potential in cancer diagnosis, prognosis, and therapeutic planning.
机译:循环肿瘤细胞(CTC)在疾病诊断,预后,疗效监测和临床决策中的作用是巨大的,并且在过去十年中引起了极大的关注。我们设计和制造了简单,平坦的通道微流控设备聚二甲基硅氧烷(基于PDMS),通过锁定核酸(LNA)修饰的适体(靶向上皮细胞粘附分子(EpCAM)和核仁素表达)进行了功能化,可快速有效地捕获CTC和癌细胞。通过优化的流速(10μl/ min),发现适体修饰的设备可提供高达六次的可重复使用性,同时保留最佳的捕获效率(> 90%)和特异性。在掺有Caco-2细胞(10-100?cells / ml)的全血样品中观察到高捕获灵敏度(92%)和特异性(100%)。在EpCAM LNA适体功能化芯片上对25位头颈癌患者的血液样本进行的分析显示,从22/25个样本中平均捕获了5±3 CTCs / ml血液(88%)。 EpCAM细胞内结构域(EpICD)免疫组织化学在9例口腔鳞状细胞癌中显示EpICD在肿瘤细胞中的阳性,证实了EpCAM在头颈癌的CTC中表达。这些微流体装置还保持了体外培养和表征的可行性。由于提高了设备​​的可重用性和可持续性,使用LNA修饰的适体在成本效益方面提供了更多好处。我们的结果通过使用简单的基于PDMS的设备,提供了一个强大,快速且高效的CTC捕获平台,该设备易于以低成本制造,并且在癌症诊断,预后和治疗计划中具有巨大的潜力。

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