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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A sensitive and microscale method for drug screening combining affinity probes and single molecule fluorescence correlation spectroscopy
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A sensitive and microscale method for drug screening combining affinity probes and single molecule fluorescence correlation spectroscopy

机译:结合亲和探针和单分子荧光相关光谱法的灵敏且微尺度的药物筛选方法

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In this paper, a sensitive and microscale method for drug screening is described using single molecule spectroscopy fluorescence correlation spectroscopy (FCS). The principle of this method is mainly based on the competition of candidate drugs to the fluorescent probe-target complexes and the excellent capacity of FCS for sensitively distinguishing the free fluorescent probes and the fluorescent probe-target complexes in solution. In this study, the screening of protein kinase inhibitors was used as a model, tyrosine-protein kinase ABL1 was used as a target and a known inhibitor dasatinib derivative labeled with a fluorescent dye was used as a fluorescent affinity probe. We firstly established the theoretical model of drug screening based on the binding process of fluorescent probes and targets, the competition of candidate drugs to the fluorescent probe-target complexes and FCS theory. Then, the dasatinib derivatives were synthesized and labeled with the fluorescent dye Alexa 488, and the binding and dissociation processes of Alexa 488-dasatinib and ABL1 were systematically investigated. The dissociation constant and the dissociation rate for the Alexa 488-dasatinib-ABL1 complex were determined. Finally, the established method was used to screen candidate drugs. The dissociation constants of ABL1 kinase to six known drugs for treating chronic myeloid leukemia (CML) were evaluated and the results obtained are well consistent with the reported values. Furthermore, a homemade chip with micro-wells was successfully utilized in FCS measurements as the carrier of samples, and the sample requirements were only 1-2 mu L in this case. Our results demonstrated that the drug screening method described here is universal, sensitive and shows small sample and reagent quantity requirements. We believe that this method will become a high throughput platform for screening of small molecule drugs.
机译:在本文中,描述了一种使用单分子光谱荧光相关光谱法(FCS)进行药物筛选的灵敏且微型的方法。该方法的原理主要基于候选药物与荧光探针-靶标复合物的竞争以及FCS灵敏地区分溶液中游离荧光探针和荧光探针-靶标复合物的出色能力。在这项研究中,以蛋白激酶抑制剂的筛选为模型,以酪氨酸蛋白激酶ABL1为靶标,以荧光染料标记的已知抑制剂dasatinib衍生物为荧光亲和探针。首先基于荧光探针与靶标的结合过程,候选药物与荧光探针-靶标复合物的竞争以及FCS理论建立了药物筛选的理论模型。然后,合成了dasatinib衍生物并用荧光染料Alexa 488进行标记,并系统地研究了Alexa 488-dasatinib和ABL1的结合和解离过程。测定了Alexa 488-dasatinib-ABL1复合物的解离常数和解离速率。最后,建立的方法用于筛选候选药物。评估了ABL1激酶与六种已知的用于治疗慢性粒细胞白血病(CML)的药物的解离常数,所得结果与报道值完全一致。此外,带有微孔的自制芯片已成功用于FCS测量中,作为样品的载体,在这种情况下,样品需求量仅为1-2μL。我们的结果表明,此处描述的药物筛选方法通用,灵敏,并且样品和试剂用量要求很小。我们相信,该方法将成为筛选小分子药物的高通量平台。

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