首页> 外文会议>NSTI Nanotechnology Conference and Trade Show(NSTI Nanotech 2005) vol.1; 20050508-12; Anaheim,CA(US) >New light induced molecular switch allows sterically oriented micrometer sized immobilization of biomolecules
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New light induced molecular switch allows sterically oriented micrometer sized immobilization of biomolecules

机译:新的光诱导分子开关可实现空间定位的微米级生物分子固定化

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Fundamental knowledge on protein structures and the effect of ultraviolet light on these structures has paved the way for the development of a unique light-based immobilization technology that allows oriented protein immobilization onto micrometer sized spots. The methodology is considered to be a strong alternative to the conventional procedures which often include the use of harsh conditions such as strong chemicals and elevated temperatures. The technology behind this immobilization technique -here termed "light assisted immobilization" - is based on the fact that disulphide bridges that are naturally present within the protein structure can be broken as a result of UV-illumination. The free thiol groups (-SH) created upon disruption of a disulphide bridge are very reactive and can be used as linkers for covalent attachment to a surface. The surface can for example be gold or thiol-derivatized silicon, making this technology extremely useful for a large range of application areas, including biosensors.
机译:关于蛋白质结构以及紫外线对这些结构的影响的基础知识为开发独特的基于光的固定技术铺平了道路,该技术可将定向的蛋白质固定在微米大小的斑点上。该方法被认为是常规程序的强大替代方法,该常规程序通常包括使用苛刻的条件,例如强化学药品和高温。固定化技术背后的技术(此处称为“光辅助固定化”)基于以下事实:由于紫外线照射,天然存在于蛋白质结构中的二硫键可能会断裂。在二硫键断裂时产生的游离巯基(-SH)具有很高的反应性,可以用作共价连接到表面的连接基。表面可以是例如金或硫醇衍生的硅,这使得该技术对于包括生物传感器在内的广泛应用领域极为有用。

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