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Label-Free Detection of Small Organic Molecules byMolecularly Imprinted Polymer Functionalized Thermocouples: TowardIn Vivo Applications

机译:小型有机分子的无标记检测分子印迹聚合物功能化热电偶:向体内应用

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摘要

Molecularly imprinted polymers (MIPs), synthetic polymeric receptors, have been combined successfully with thermal transducers for the detection of small molecules in recent years. However, up until now they have been combined with planar electrodes which limits their use for in vivo applications. In this work, a new biosensor platform is developed by roll-coating MIP particles onto thermocouples, functionalized with polylactic acid (PLLA). As a first proof-of-principle, MIPs for the neurotransmitter dopamine were incorporated into PLLA-coated thermocouples. The response of the synthetic receptor layer to an increasing concentration of dopamine in buffer was analyzed using a homemade heat-transfer setup. Binding of the template to the MIP layer blocks the heat transport through the thermocouple, leading to less heat loss to the environment and an overall higher temperature in the measuring chamber. The measured temperature increase is correlated to the neurotransmitter concentration, which enables measurement of dopamine levels in the micromolar regime. To demonstrate the general applicability of the proposed biosensorplatform, thermocouples were functionalized with similar MIPs forcortisol and serotonin, indicating a similar response and limit-of-detection.As the platform does not require planar electrodes, it can easilybe integrated in, e.g., a catheter. In this way, it is an excellentfit for the current niche in the market of therapeutics and diagnostics.Moreover, the use of a biocompatible and disposable PLLA-layer furtherillustrates its potential for in vivo diagnostics.
机译:分子印迹聚合物(MIP),即合成聚合物受体,近年来已成功与热传感器结合用于检测小分子。然而,到目前为止,它们已经与平面电极组合在一起,这限制了它们在体内应用中的使用。在这项工作中,通过将MIP颗粒辊涂到热电偶上开发了一个新的生物传感器平台,该热电偶用聚乳酸(PLLA)功能化。作为第一个原理证明,将神经递质多巴胺的MIP掺入了涂有PLLA的热电偶中。使用自制的传热装置分析了合成受体层对缓冲液中多巴胺浓度增加的响应。模板与MIP层的结合会阻止通过热电偶的热传递,从而导致对环境的热损失更少,并且测量室内的总体温度更高。测得的温度升高与神经递质浓度相关,从而可以测量微摩尔状态下的多巴胺水平。证明所提出的生物传感器的普遍适用性平台上,热电偶通过类似的MIP进行了功能化皮质醇和5-羟色胺,表明相似的反应和检测限。由于平台不需要平面电极,因此很容易集成在例如导管中。这样,这是一个很好的适合当前在治疗和诊断市场上的利基市场。此外,进一步使用了生物相容的一次性PLLA层说明了其在体内诊断中的潜力。

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