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Lab-on-a-chip platforms based on highly sensitive nanophotonic Si biosensors for single nucleotide DNA testing

机译:基于高灵敏的纳米光学Si生物传感器的实验室平台,用于单核苷酸DNA检测

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In order to solve the drawbacks of sensitivity and portability in optical biosensors we have developed ultrasensitive and miniaturized photonic silicon sensors able to be integrated in a "lab-on-a-chip" microsystem platform. The sensors are integrated Mach-Zehnder interferometers based on TIR optical waveguides (Si/SiO2/Si3N4) of micro/nanodimensions. We have applied this biosensor for DNA testing and for detection of single nucleotide polymorphisms at BRCA-1 gene, involved in breast cancer development, without target labeling. The oligonucleotide probe is immobilized by covalent attachment to the sensor surface through silanization procedures. The hybridization was performed for different DNA target concentrations showing a lowest detection limit at 10 pM. Additionally, we have detected the hybridization of different concentrations of DNA target with two mismatching bases corresponding to a mutation of the BRCA-1 gene. Following the way of the lab-on-a-chip microsystem, integration with the microfluidics has been achieved by using a novel fabrication method of 3-D embedded microchannels using the polymer SU-8 as structural material. The optofluidic chip shows good performances for biosensing.
机译:为了解决光学生物传感器中灵敏度和可移植性的缺点,我们开发了能够集成在“芯片实验室”微系统平台中的超敏和小型光子硅传感器。传感器是基于微/纳米二聚体的TIR光波导(Si / SiO 2 / Si3N4)的集成Mach-Zehnder干涉仪。我们已经应用这种生物传感器进行DNA测试,并检测在BRCA-1基因的单核苷酸多态性,参与乳腺癌发育,没有目标标签。通过硅烷化程序通过共价附着在传感器表面上固定寡核苷酸探针。对不同的DNA靶浓度进行杂交,显示在10μm下的最低检测限。另外,我们检测到不同浓度的DNA靶标与对应于BRCA-1基因突变的两个错配碱。通过使用聚合物SU-8作为结构材料的三维嵌入式微通道的新型制造方法,实现了利用微流动的与微流化的整合。替代芯片芯片展示了生物传感的良好性能。

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