Mavrogiannopoulou Elissavet, Petrou Panagiota S, Kakabakos Sotirios E, Misiakos Konstantinos
Immunoassay/Immunosensors Lab., I./R.-R.P., N.C.S.R. "Demokritos", GR-15310 Aghia Paraskevi, Greece.
Biosens Bioelectron. 2009 Jan 1;24(5):1341-7. doi: 10.1016/j.bios.2008.07.061. Epub 2008 Aug 6.
The monolithic silicon optocoupler presented here offers a platform for a new generation of fully integrated devices fabricated through the mature and inexpensive silicon technology. Using the developed optocoupler, real-time detection of the most common mutations in BRCA1 gene related to predisposition to hereditary breast/ovarian cancer was accomplished. For this purpose, oligonucleotides corresponding to wild- and mutant-type sequences were immobilized onto different optocouplers and the hybridization with fluorescently labeled complementary or non-complementary sequences was monitored in real time. Hybridization of fluorescently labeled oligonucleotides to the immobilized ones modulated the coupling efficiency between the light emitting diode and the detector in a concentration-dependent manner. Using as label the AlexaFluor 647 dye (whose absorption maximum fits the emission maximum of the light source) a detection limit of 0.9 nM (9 fmol) was achieved. Real-time signal monitoring, especially during dehybridization, improved considerably the discrimination between wild-type and mutant sequences due to the ability to calculate dissociation kinetics upon washing independently for each one mutation. The bioanalytical capabilities of the transducer along with the fact that dense transducer arrays can be fabricated on a single chip open new frontiers in the manufacturing of microsystems appropriate for point-of-care analysis.
本文介绍的单片硅光耦合器为通过成熟且廉价的硅技术制造的新一代完全集成设备提供了一个平台。利用所开发的光耦合器,实现了对与遗传性乳腺癌/卵巢癌易感性相关的BRCA1基因中最常见突变的实时检测。为此,将对应于野生型和突变型序列的寡核苷酸固定在不同的光耦合器上,并实时监测与荧光标记的互补或非互补序列的杂交情况。荧光标记的寡核苷酸与固定化寡核苷酸的杂交以浓度依赖的方式调节发光二极管与探测器之间的耦合效率。使用AlexaFluor 647染料作为标记(其最大吸收波长与光源的最大发射波长匹配),实现了0.9 nM(9 fmol)的检测限。实时信号监测,尤其是在解杂交过程中,由于能够针对每个突变独立计算洗涤后的解离动力学,大大提高了野生型和突变型序列之间的区分能力。该传感器的生物分析能力以及可以在单个芯片上制造密集传感器阵列这一事实,为适用于即时检测分析的微系统制造开辟了新的前沿领域。