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THE DEVELOPMENT OF NON-RADIATIVE PROBES FOR IN VIVO APPLICATIONS

机译:体内应用的非辐射探针的开发

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Recently, the field of activatable probes has been extended from fluorescence to magnetic resonance (MR). Magnetic relaxation switches take advantage of the change in T2 relaxation time that occurs upon binding of multiple bioconjugated superparamagnetic iron-oxide nanoparticles to a target. Here, we use a model system to detect biotinilated BSA using switchable magnetic particles. The presence of the biotinilated BSA results in the aggregation of nanoparticles and leads to a substantial decrease in the T2 relaxation time. Magnetic relaxation switches show great promise for clinical in vitro diagnostics and in vivo imaging since changes in T2 are independent of the sample medium. Tests can be performed in turbid solutions without loss of sensitivity, unlike with fluorescence measurements.
机译:最近,可活化探针的领域已从荧光扩展到磁共振(MR)。磁性弛豫开关利用多种生物缀合的超顺磁铁氧化物纳米颗粒与靶的结合时发生的T2松弛时间的变化。在这里,我们使用模型系统使用可切换磁性颗粒来检测生物污水的BSA。生物素化BSA的存在导致纳米颗粒的聚集并导致T2松弛时间的显着降低。磁性松弛开关对于临床体外诊断和体内成像表示巨大的希望,因为T2的变化与样品介质无关。与荧光测量不同,可以在浊度溶液中进行无损失而不损失敏感性。

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