首页> 外文期刊>Applied Surface Science >Novel photonic technique creates micrometer resolution protein arrays and provides a new approach to coupling of genes, peptide hormones and drugs to nanoparticle carriers
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Novel photonic technique creates micrometer resolution protein arrays and provides a new approach to coupling of genes, peptide hormones and drugs to nanoparticle carriers

机译:新的光子技术创建了微米级分辨率的蛋白质阵列,并提供了一种将基因,肽激素和药物与纳米颗粒载体偶联的新方法

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We demonstrate that ultraviolet light can be used to make sterically oriented covalent immobilization of a large variety of protein molecules onto either thiolated quartz, gold or silicon. The reaction mechanism behind the reported new technology involves light-induced breakage of disulphide bridges in proteins upon UV illumination of nearby aromatic amino acids, resulting in the formation of free, reactive thiol groups that will form covalent bonds with thiol reactive surfaces. In general, the protein molecules retain their function. The size of the immobilization spot is limited to the focal point of illumination being as small as a few micrometers. This new technology allows for dense packing of different bio-molecules on a surface, allowing the creation of multi-potent functionalised new materials, such as nano-biosensors. We have developed the necessary technology for preparing large protein arrays of enzymes and fragments of monoclonal antibodies. Dedicated image processing software has been developed for making quality assessment of the protein arrays. This novel technology is ideal to couple drugs and other bio-molecules to nanoparticles which can be used as carriers into cells for therapeutic purposes.
机译:我们证明了紫外线可以用来使多种蛋白质分子在空间上共价固定在硫醇化石英,金或硅上。报道的新技术背后的反应机制涉及在紫外线照射附近的芳族氨基酸后,光诱导蛋白质中的二硫键断裂,导致形成游离的,反应性的硫醇基,该基团将与硫醇的反应性表面形成共价键。通常,蛋白质分子保留其功能。固定点的大小限于照明的焦点,其要小至几微米。这项新技术可以将不同生物分子紧密堆积在表面上,从而可以创建功能强大的功能化新材料,例如纳米生物传感器。我们已经开发出必要的技术,用于制备酶的大型蛋白质阵列和单克隆抗体片段。已经开发了专用图像处理软件来对蛋白质阵列进行质量评估。这项新颖的技术非常适合将药物和其他生物分子偶联到纳米颗粒上,这些纳米颗粒可以用作治疗目的的细胞载体。

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