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新型多层多孔硅核酸生物传感器杂交法检测昆虫抗冻蛋白基因。

Hybridization assay of insect antifreezing protein gene by novel multilayered porous silicon nucleic acid biosensor.

机构信息

Postdoctoral Station of Computer Science and Technology, Xinjiang University, Urumqi 830046, PR China.

出版信息

Biosens Bioelectron. 2013 Jan 15;39(1):329-33. doi: 10.1016/j.bios.2012.07.047. Epub 2012 Aug 6.

Abstract

A fabrication of a novel simple porous silicon polybasic photonic crystal with symmetrical structure has been reported as a nucleic acid biosensor for detecting antifreeze protein gene in insects (Microdera puntipennis dzhungarica), which would be helpful in the development of some new transgenic plants with tolerance of freezing stress. Compared to various porous silicon-based photonic configurations, porous silicon polytype layered structure is quite easy to prepare and shows more stability; moreover, polybasic photonic crystals with symmetrical structure exhibit interesting optical properties with a sharp resonance in the reflectance spectrum, giving a higher Q factor which causes higher sensitivity for sensing performance. In this experiment, DNA oligonucleotides were immobilized into the porous silicon pores using a standard crosslink chemistry method. The porous silicon polybasic symmetrical structure sensor possesses high specificity in performing controlled experiments with non-complementary DNA. The detection limit was found to be 21.3nM for DNA oligonucleotides. The fabricated multilayered porous silicon-based DNA biosensor has potential commercial applications in clinical chemistry for determination of an antifreeze protein gene or other genes.

摘要

一种新型简单多孔硅多元光子晶体的制造方法,其具有对称结构,被报道为一种核酸生物传感器,用于检测昆虫(Microdera puntipennis dzhungarica)中的抗冻蛋白基因,这将有助于开发一些具有抗冻应激能力的新型转基因植物。与各种基于多孔硅的光子结构相比,多孔硅多型层状结构制备相当容易,且具有更高的稳定性;此外,具有对称结构的多元光子晶体具有有趣的光学特性,在反射谱中具有尖锐的共振,从而导致更高的 Q 因子,对传感性能具有更高的灵敏度。在该实验中,使用标准的交联化学方法将 DNA 寡核苷酸固定到多孔硅孔中。多孔硅多元对称结构传感器在进行非互补 DNA 的对照实验时具有高特异性。发现 DNA 寡核苷酸的检测限为 21.3nM。该多层多孔硅 DNA 生物传感器在临床化学中具有潜在的商业应用价值,可用于测定抗冻蛋白基因或其他基因。

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