标题: | 利用B型抗谐振反射光波导表面电浆子共振生物感测元件进行α-凝血蛋白酵素对单股DNA适体键结与登革热病毒DNA杂交之即时检测 Real-Time Detection of α-Thrombin Binding to Single-Strand DNA Aptamers and Dengue Virus DNA Hybridization by ARROW-B SPR Biosensors |
作者: | 黄继杰 Chi-Chieh Huang 黄远东 Yang-Tung Huang 电子研究所 |
关键字: | 表面电浆子;生物感测;α-凝血蛋白酵素;登革热病毒;SPR;Biosensors;α-Thrombin;dengue virus |
公开日期: | 2007 |
摘要: | 本论文研究适用于水中环境的B型抗谐振反射光波导表面电浆子共振生化感测元件。由于此生化感测元件具有免标定、高效率以及对于金表面所固定的生物分子层之折射率变化具有高灵敏度等特性,因此能应用在即时感测表面生物分子之交互作用。感测元件的设计以及制作过程在论文中有详尽的介绍与讨论,生物感测实验部分则根据生物分子不同键结特性分为两方面。(一)进行α-凝血蛋白酵素对单股DNA适体键结特性之即时检测,并且在两者键结之后,通入表面修饰抗α-凝血蛋白酵素抗体的奈米金粒子对α-凝血蛋白酵素进行抗体抗原亲合力键结以作为SPR讯号放大之用途。此生化感测器对α-凝血蛋白酵素之侦测极限可达到1 pM,与商品化的Biacore 3000之侦测极限 (1 pM)相同,但是本研究所建构之量测系统成本较低。最后,由实验结果验证了此生化感测元件能定性且定量地即时检测DNA适体与α-凝血蛋白酵素分子间具高度专一性的键结反应。(二)进行对于登革热病毒单股DNA杂交反应之即时检测,登革热单股DNA分子DENV2-P利用末端修饰的硫醇基先行固定化于金表面,之后登革热单股DNA分子DENV2-T再利用互补DNA序列与DENV2-P进行专一性键结。最后,由实验结果显示此生化感测元件能精确地定性且即时检测此杂交反应。 In this thesis, an antiresonant reflecting optical waveguide of type B (ARROW-B) surface plasmon resonance (SPR) biosensor operating in the aqueous environment has been investigated. The ARROW-B SPR biosensor is proposed to provide a label-free, high-throughput and highly surface-sensitive platform to detect the bimolecular interactions in real time. The design and fabrication process of the ARROW-B SPR sensor chips are described and discussed. Besides, the primary analytes for the bioassay experiments are divided into two categories based on different binding characteristics. First, the real-time detection of α-thrombin binding to ssDNA aptamers was under in-depth investigation. The gold nanoparticles modified with anti-thrombin antibodies were employed to bind to the α-thrombins for signal amplification. The detection limit of this biosensor to α-thrombin was measured at 1 pM level, which was comparable to that of the Biacore 3000 system but at much lower cost. Second, the real-time detection of dengue virus ssDNA hybridization was studied. The dengue virus DNA probe was modified with a thiol group at one end to achieve effective immobilization on the Au surface, while the DNA target utilized the complementary sequence to bind to the immobilized probe. In summary, the measurement results have shown that the ARROW-B SPR biosensors can be applied to detect the ssDNA aptamer/α-thrombin interaction and dengue virus ssDNA hybridization both quantitatively and qualitatively in real time. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009511530 http://hdl.handle.net/11536/38071 |
显示于类别: | Thesis |