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Surface plasmon resonance biosensing towards real biological sampleanalysis

机译:真实生物酶分析的表面等离子体共振生物溶解

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The development of monolayer chemistry based on amino acid and short peptides decreases significantly the nonspecific adsorption from biological samples such as serum. Nonspecific adsorption of proteins onto the surface of biosensors currently limits the applicability of many biosensing techniques in real biological samples. In order to minimize this problem, a methodology to immobilize short peptides on surface plasmon resonance (SPR) biosensors was developed using a short chain alkyl thiol monolayer derived with the selected peptides. The chain length of the alkane thiol linking the amino acid to the gold surface influences the physico-chemical properties of the layer and the amount of nonspecifically adsorbed proteins. Varying the composition of the monolayer with peptides formed from the natural amino acids investigates the physico-chemical properties required to minimize nonspecific adsorption of serum. It was observed from monolayers of single amino acids that the composition of the side chain of the amino acid greatly influences the resistance to nonspecific adsorption, with more polar, ionic and small chains resulting in an improved performance in biological samples. Building peptides of different lengths resulted in a further decrease of the amount of nonspecifically bound proteins from serum. Leaving the terminal carboxylic acid end of the peptide unreacted provides an anchoring point for a molecular receptor in the design of a biosensor. Biosensing will be demonstrated with a model system of β-lactamase.
机译:基于氨基酸和短肽的单层化学的发展显着降低了生物样品如血清的非特异性吸附。非特异性对蛋白质的吸附在生物传感器表面上目前限制了许多生物传感技术在真实生物样品中的适用性。为了使该问题最小化,使用与所选肽的短链烷基硫醇单层开发了一种固定表面等离子体共振(SPR)生物传感器的短肽的方法。将氨基酸与金表面连接的烷烃硫醇的链长影响了层的物理化学性质和非格脂吸附蛋白的量。将单层与由天然氨基酸形成的肽的组合物改变了最小化血清的非特异性吸附所需的物理化学性质。从单层氨基酸中观察到氨基酸侧链的组成极大地影响了对非特异性吸附的抗性,具有更极性,离子和小链,导致生物样品中的性能提高。不同长度的构建肽导致来自血清的非特异性结合蛋白的量进一步降低。离开肽的末端羧酸末端未反应提供用于在生物传感器设计中的分子受体的锚定点。将用β-内酰胺酶的模型系统证明生物溶剂。

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