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Molecular Logic as a Means to Assess Therapeutic Antidotes

机译:分子逻辑学作为评估解毒剂的一种手段

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An emerging direction in the area of molecular logic and computation is developing molecular-scale devices that can operate in complex biological environments, such as within living cells, which are beyond the reach of conventional electronic devices. Herein we demonstrate, at the proof-of-principle level, how concepts applied in the field of molecular logic gates can be used to convert a simple fluorescent switch (YES gate) that lights up in the presence of glutathione s-transferase (GST), into a medicinally relevant INHIBIT gate that responds to both GST and beta-cyclodextrin (β-CD) as input signals. We show that the optical responses generated by this device indicate the ability to use it as an enzyme inhibitor and, more importantly, the ability to use β-CD as an ‘antidote’ that prevents GST inhibition. The relevance of this system to biomedical applications is demonstrated by using the INHIBIT gate and β-CD to regulate the growth of breast cancer cells, highlighting the possibility of applying supramolecular inputs, commonly used to control the fluorescence of molecular logic gates, as antidotes that reverse the toxic effect of chemotherapy agents. We also show that the effect of β-CD can be prevented by introducing 1-adamantecarboxylic acid (Ad-COOH) as an additional input signal, indicating the potential of obtaining precise, temporal control over enzyme activity and anticancer drug function.
机译:分子逻辑和计算领域的新兴方向是开发可以在复杂的生物环境中运行的分子级设备,例如在活细胞内,这是常规电子设备无法企及的。在本文中,我们从原理证明的角度证明了如何应用分子逻辑门领域的概念来转换简单的荧光开关(YES门),该开关在存在谷胱甘肽S-转移酶(GST)时会亮起进入与医学相关的INHIBIT门,该门对GST和β-环糊精(β-CD)都作为输入信号做出响应。我们证明了该装置产生的光学响应表明了将其用作酶抑制剂的能力,更重要的是,还可以将β-CD用作防止GST抑制的“解毒剂”。通过使用INHIBIT门和β-CD调节乳腺癌细胞的生长,证明了该系统与生物医学应用的相关性,突显了应用超分子输入作为解毒剂的可能性,超分子输入通常用于控制分子逻辑门的荧光逆转化疗药物的毒性作用。我们还表明,可以通过引入1-金刚烷酸(Ad-COOH)作为附加输入信号来预防β-CD的作用,这表明获得对酶活性和抗癌药功能进行精确,暂时控制的潜力。

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