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使用锁频光学微谐振器对zeptomolar浓度下的膜结合事件进行无标记实时监测。

Label-free, real-time monitoring of membrane binding events at zeptomolar concentrations using frequency-locked optical microresonators.

作者信息

Gin Adley, Nguyen Phuong-Diem, Melzer Jeffrey E, Li Cheng, Strzelinski Hannah, Liggett Stephen B, Su Judith

机构信息

Wyant College of Optical Sciences, The University of Arizona, Tucson, AZ 85721.

Department of Biomedical Engineering, The University of Arizona, Tucson, AZ 85721.

出版信息

bioRxiv. 2023 Sep 22:2023.09.20.558657. doi: 10.1101/2023.09.20.558657.

Abstract

Binding events to elements of the cell membrane act as receptors which regulate cellular function and communication and are the targets of many small molecule drug discovery efforts for agonists and antagonists. Conventional techniques to probe these interactions generally require labels and large amounts of receptor to achieve satisfactory sensitivity. Whispering gallery mode microtoroid optical resonators have demonstrated sensitivity to detect single-molecule binding events. Here, we demonstrate the use of frequency-locked optical microtoroids for characterization of membrane interactions at zeptomolar concentrations using a supported biomimetic membrane. Arrays of microtoroids were produced using photolithography and subsequently modified with a biomimetic membrane, providing high quality (Q) factors () in aqueous environments. Fluorescent recovery after photobleaching (FRAP) experiments confirmed the retained fluidity of the microtoroid supported-lipid membrane with a diffusion coefficient of . Utilizing this frequency-locked membrane-on-a-chip model combined with auto-balanced detection and non-linear post-processing techniques, we demonstrate zeptomolar detection levels The binding of Cholera Toxin B- monosialotetrahexosyl ganglioside (GM1) was monitored in real-time, with an apparent equilibrium dissociation constant . The measured affiny of the agonist dynorphin A 1-13 to the -opioid receptor revealed a using the same approach. Radioligand binding competition with dynorphin A 1-13 revealed a in agreement (1.1 nM) with the unlabeled method. The biosensing platform reported herein provides a highly sensitive real-time characterization of membrane embedded protein binding kinetics, that is rapid and label-free, for toxin screening and drug discovery, among other applications.

摘要

与细胞膜元件的结合事件充当调节细胞功能和通讯的受体,并且是许多小分子药物发现中激动剂和拮抗剂研究工作的目标。探测这些相互作用的传统技术通常需要标记物和大量受体才能获得令人满意的灵敏度。回音壁模式微环光学谐振器已证明能够检测单分子结合事件。在此,我们展示了使用频率锁定光学微环来表征zeptomolar浓度下使用支持的仿生膜的膜相互作用。使用光刻技术制备微环阵列,随后用仿生膜进行修饰,在水性环境中提供高质量(Q)因子()。光漂白后荧光恢复(FRAP)实验证实了微环支持的脂质膜具有保留的流动性,扩散系数为。利用这种频率锁定的芯片上膜模型结合自动平衡检测和非线性后处理技术,我们展示了zeptomolar检测水平。实时监测霍乱毒素B-单唾液酸四己糖神经节苷脂(GM1)的结合,表观平衡解离常数为。使用相同方法,激动剂强啡肽A 1-13与-阿片受体的亲和力测量显示为。与强啡肽A 1-13的放射性配体结合竞争显示为,与未标记方法一致(1.1 nM)。本文报道的生物传感平台提供了膜嵌入蛋白结合动力学的高灵敏度实时表征,快速且无标记,可用于毒素筛选和药物发现等其他应用。

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