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Functional attachment of horse radish peroxidase to plasma-treated surfaces

机译:辣根过氧化物酶对等离子体处理表面的功能性

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Controlling the interaction of surfaces with macromolecules, such as proteins and antibodies, is the key to producing biocompatible prosthetic devices, biosensors and diagnostic arrays. The development of technologies to control these interactions will result in the early detection of disease and have the potential to dramatically reduce costs associated with clinical treatment. For example, tethering functional anti-bodies to a surface in a patterned array allows the selection of specific proteins from a microlitre serum sample, immediately identifying diseases, well before the symptoms are manifested. Unfortunately, simple physical absorption of proteins onto most surfaces results in changes in their structure and loss of function. The use of ions from plasmas allows flexibility in surface modification by accessing a variety of ion energies and activated chemical species. In this paper we describe plasma based techniques which are being developed to modify the chemistry and morphology of surfaces in order to optimise their interaction with biomolecules. Early results of plasma processes to activate surfaces for non specific attachment of proteins by hydrophilic /hydrophobic interactions are presented, with particular attention to the time stability of such treatments, which is of special interest.
机译:控制与大分子,如蛋白质和抗体表面的相互作用,是关键的制造生物相容的假体装置,生物传感器和诊断阵列。的技术来控制这些相互作用的发展会导致疾病的早期发现,并有显着减少与临床治疗相关的成本的潜力。例如,栓系官能抗体在图案化阵列的表面允许特定蛋白质的选择从微升血清样品,立即识别疾病,则表现症状之前。不幸的是,蛋白质的简单的物理吸收到最表面中在它们的结构和功能丧失的变化的结果。从等离子体中使用的离子允许表面改性灵活性通过访问各种离子能量和激活的化学物质。在本文中,我们描述了正在开发以修改化学和表面的形态,以优化其与生物分子相互作用基于等离子体的技术。通过亲水/疏水相互作用等离子体工艺以用于蛋白质的非特异性附着激活表面的早期结果被呈现,特别要注意的这种治疗的时间的稳定性,这是特别感兴趣的。

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