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In-depth Study of a Novel Class of Ditopic Gadolinium(III)-based MRI Probes Sensitive to Zwitterionic Neurotransmitters

机译:对两性离子神经递质敏感的新型基于对位topic的新型MRI探针的深入研究

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摘要

The efficacy of Gd-based low-molecular weight ditopic MRI probes on binding zwitterionic neurotransmitters (ZNTs) relies on their structural compatibility. ZNTs are challenging biomarkers for monitoring chemical neurotransmission due to their intrinsic complexity as target molecules. In this work, we focus on tuning the cyclen- and azacrown ether-based binding sites properties to increase the affinity toward ZNTs. Our approach consisted in performing structural modifications on the binding sites in terms of charge and size, followed by the affinity evaluation through T1-weighted relaxometric titrations. We prepared and investigated six Gd3+ complexes with different structures and thus properties, which were found to be acetylcholine insensitive; moreover, two of them displayed considerably stronger affinity toward glutamate and glycine over hydrogencarbonate and other ZNTs. Complexes with small and non-charged or no substituents on the azacrown moiety displayed the highest affinities toward ZNTs, followed by strong decrease in longitudinal relaxivity r1 of around 70%. In contrast, hosts with negatively charged substituents exhibited lower decrease in r1 of nearly 30%. The thorough investigations involving relaxometric titrations, luminescence, and NMR diffusion experiments, as well as theoretical density functional theory calculations, revealed that the affinity of reported hosts toward ZNTs is greatly affected by the remote pendant on the azacrown derivative.
机译:基于Gd的低分子量异位MRI探针对结合性两性离子神经递质(ZNT)的功效取决于它们的结构相容性。 ZNT由于其作为靶分子的内在复杂性,在监测化学神经传递方面是具有挑战性的生物标记。在这项工作中,我们专注于调整基于环己酮和氮杂冠醚的结合位点属性,以增加对ZNT的亲和力。我们的方法包括在结合位点上进行电荷和大小方面的结构修饰,然后通过T1加权弛豫滴定法进行亲和力评估。我们制备并研究了六种具有不同结构和性质的Gd 3 + 配合物,这些配合物对乙酰胆碱不敏感。此外,它们中的两个对谷氨酸和甘氨酸的亲和力比碳酸氢盐和其他ZNTs强得多。在氮杂冠部分上具有小的且不带电荷或没有取代基的配合物显示出对ZNT的最高亲和力,随后纵向弛豫率r1大幅降低了约70%。相反,带有负电荷取代基的主体的r1降低幅度较小,接近30%。彻底的研究涉及弛豫滴定,发光和NMR扩散实验,以及理论密度泛函理论计算,结果表明,报道的宿主对ZNTs的亲和力受氮杂皇冠衍生物上的远程侧链的影响很大。

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