Department of Chemistry, Sharif University of Technology, Tehran, 11155-9516, Iran.
Department of Chemistry, Isfahan University of Technology, Isfahan, 8415683111, Iran.
Anal Chim Acta. 2022 Oct 23;1231:340386. doi: 10.1016/j.aca.2022.340386. Epub 2022 Sep 16.
Chiral recognition has long been a challenging issue to deal with in biological systems, drug design and food authentication. Implementing nanoparticle-based probes with intrinsic or induced chirality in this field has addressed several issues concerning sensitivity, reliability, rapidness and the cost of chiral sensing platforms. Yet, research into chiral nanoprobes that can be used for visual monitoring of chiral substances is still in its infancy. As part of this study, a visual chiral recognition platform has been developed in which a combination of blue-emitting carbon dots (BCDs) and mercaptopropionic acid-capped CdTe quantum dots (MPA-QDs) with inherent chiroptical activity were employed for enantiomeric detection. The ratiometric probe displayed unique fluorescence response patterns in the presence of arginine (Arg) and histidine (His) enantiomers. Upon addition of l-amino acids, successive enhancement and quenching of emission intensity as well as a red-shift in emission wavelength of MPA-QDs were observed. The emission color of the nanoprobe changed from green to pink-red and green to brick-red red by increasing the concentration of L-Arg and L-His, respectively. In contrast, their d-amino acid equivalents have a negligible influence on the emission color and fluorescence signal of the developed nanoprobe. Due to the enantioselective vibrant color changes of the nanoprobe, RGB analysis was applied for the determination of enantiomeric excess (ee) in racemic mixture with satisfactory results, allowing smartphone-based onsite visual evaluation of ee (%). Circular dichroism, lifetime, size distribution and ζ-potential measurements were employed to study the chiroselective responses. First-principle calculations were also carried out with density functional theory (DFT) to confirm the experimental observation. Furthermore, chiroselective response patterns of the ratiometric nanoprobe were manipulated to construct a logic gate system mimicking AND, OR, and INHIBIT functions. The capability of the proposed chiral platform in visual monitoring of the fraction of enantiomers in racemic mixtures has a great potential for rapid and onsite visual discrimination of chiral compounds in the field of clinical diagnostics and drug analysis.
手性识别长期以来一直是生物系统、药物设计和食品鉴定中需要解决的难题。在该领域中,基于纳米粒子的探针具有内在或诱导的手性,解决了手性传感平台的灵敏度、可靠性、快速性和成本等几个问题。然而,对于可以用于手性物质可视化监测的手性纳米探针的研究仍处于起步阶段。在这项研究中,开发了一种可视化手性识别平台,该平台结合了具有手性光学活性的蓝色发射碳点(BCDs)和巯基丙酸封端的 CdTe 量子点(MPA-QDs)用于对映体检测。比率探针在手性物质对映体存在的情况下显示出独特的荧光响应模式。在加入精氨酸(Arg)和组氨酸(His)对映体后,观察到 MPA-QDs 的发射强度连续增强和猝灭以及发射波长红移。随着 L-Arg 和 L-His 浓度的增加,纳米探针的发射颜色分别从绿色变为粉红色-红色和绿色变为砖红色。相比之下,它们的 d-氨基酸等效物对开发的纳米探针的发射颜色和荧光信号几乎没有影响。由于纳米探针的对映选择性鲜艳的颜色变化,进行了 RGB 分析以对手性混合物中的对映体过量(ee)进行测定,结果令人满意,允许使用智能手机进行基于现场的 ee(%)的可视化评估。圆二色性、寿命、尺寸分布和 ζ-电位测量用于研究手性选择性响应。还进行了基于密度泛函理论(DFT)的第一性原理计算以确认实验观察。此外,手性比纳米探针的手性选择响应模式被操纵以构建模拟 AND、OR 和 INHIBIT 功能的逻辑门系统。所提出的手性平台在手性混合物中对映体分数的可视化监测方面的能力在手性化合物的临床诊断和药物分析领域中具有快速和现场可视化区分手性化合物的巨大潜力。