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Implementing biological logic gates using gold nanoparticles conjugated to fluorophores

机译:使用与荧光团结合的金纳米颗粒实现生物逻辑门

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We describe recent research in which we explored biologically relevant logic gates using gold nanoparticles (GNPs) conjugated to fluorophores and tracing the results remotely by time-domain fluorescence lifetime imaging microscopy (FLIM). GNPs have a well-known effect on nearby fluorophores in terms of their fluorescence intensity (FI - increase or decrease) as well as fluorescence lifetime (FLT). We have designed a few bio-switch systems in which the FLIM-detected fluorescence varies after biologically relevant stimulation. Some of our tools include fluorescein diacetate (FDA) which can be activated by either esterases or pH, peptide chains cleavable by caspase 3, and the polymer polyacrylic acid which varies in size based on surrounding pH. After conjugating GNPs to chosen fluorophores, we have successfully demonstrated the logic gates of NOT, AND, OR, NAND, NOR, and XOR by imaging different stages of activation. These logic gates have been demonstrated both in solutions as well as within cultured cells, thereby possibly opening the door for nanoparticulate in vivo smart detection. While these initial probes are mainly tools for intelligent detection systems, they lay the foundation for logic gates functioning in conjunction so as to lead to a form of in vivo biological computing, where the system would be able to release proper treatment options in specific situations without external influence.
机译:我们描述了最近的研究,其中我们使用与荧光团结合的金纳米颗粒(GNP)探索生物学相关的逻辑门,并通过时域荧光寿命成像显微镜(FLIM)远程追踪结果。就其荧光强度(FI-增加或减少)以及荧光寿命(FLT)而言,GNP对附近的荧光团具有众所周知的作用。我们设计了一些生物开关系统,其中FLIM检测到的荧光在生物相关刺激后会发生变化。我们的一些工具包括可通过酯酶或pH活化的二乙酸荧光素(FDA),可被caspase 3裂解的肽链,以及根据周围pH大小变化的聚合物聚丙烯酸。将GNP与选定的荧光团缀合后,我们已通过成像的不同激活阶段成功证明了NOT,AND,OR,NAND,NOR和XOR的逻辑门。这些逻辑门已在溶液中以及在培养的细胞中得到证明,从而可能为纳米微粒体内智能检测打开大门。尽管这些初始探针主要是智能检测系统的工具,但它们为逻辑门共同起作用奠定了基础,从而导致一种形式的体内生物计算,该系统将能够在特定情况下释放适当的治疗方案而无需外部影响。

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