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A prototype of giant magnetoimpedance-based biosensing system for targeted detection of gastric cancer cells

机译:基于巨磁阻抗的生物传感系统原型,用于胃癌细胞的靶向检测

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摘要

A targeted detection of gastric cancer cells is achieved by combining the giant magnetoimpedance (GMI)-based biosensing system and RGD-4C peptide coupled, chitosan covered superparamagnetic iron oxide particles (RGD-Fe_3O_4@chitosan). The micro-patterned GMI sensor for targeted detection is made of Co-based ribbon and fabricated by micro electromechanical system (MEMS) technology. Functionalized nanoparticles were designed by coating Fe_3O_4 with chitosan and conjugating with RGD-4C peptides. The targeted cells were trickled down into the detection area of the system. The detection of each sample is carried out in ten-fold manner and average value is taken as the final result. This system can identify the differences between targeted cells and non-targeted cells. It is of considerable interest due to its potential application in the biomedical field of various specific detections.
机译:通过结合基于巨磁阻抗(GMI)的生物传感系统和RGD-4C肽偶联的壳聚糖覆盖的超顺磁性氧化铁颗粒(RGD-Fe_3O_4 @ chitosan),可以实现胃癌细胞的靶向检测。用于目标检测的微图案GMI传感器由Co基色带制成,并通过微机电系统(MEMS)技术制造。通过用壳聚糖包被Fe_3O_4并与RGD-4C肽偶联来设计功能化的纳米颗粒。靶向细胞被滴入系统的检测区域。每个样品的检测以十倍的方式进行,并且将平均值作为最终结果。该系统可以识别靶细胞和非靶细胞之间的差异。由于其在各种特定检测的生物医学领域中的潜在应用,它引起了极大的兴趣。

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