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铁(II)笼形螯合物的抗纤维原性活性研究。

Study of anti-fibrillogenic activity of iron(II) clathrochelates.

作者信息

Kovalska Vladyslava B, Losytskyy Mykhaylo Yu, Varzatskii Oleg A, Cherepanov Vsevolod V, Voloshin Yan Z, Mokhir Andriy A, Yarmoluk Sergiy M, Volkov Sergiy V

机构信息

Institute of Molecular Biology and Genetics NASU, 150 Zabolotnogo St., 03143 Kyiv, Ukraine.

Institute of Molecular Biology and Genetics NASU, 150 Zabolotnogo St., 03143 Kyiv, Ukraine.

出版信息

Bioorg Med Chem. 2014 Mar 15;22(6):1883-8. doi: 10.1016/j.bmc.2014.01.048. Epub 2014 Feb 2.

Abstract

The macrocyclic compounds mono- and bis-iron(II) clathrochelates were firstly studied as potential anti-fibrillogenic agents using fluorescent inhibitory assay, atomic force microscopy and flow cytometry. It is shown that presence of the clathrochelates leads to the change in kinetics of insulin fibrillization reaction and reduces the amount of formed fibrils (up to 70%). The nature of ribbed substituent could determine the activity of clathrochelates-the higher inhibitory effect is observed for compounds containing carboxybenzenesulfide groups, while the inhibitory properties only slightly depend on the size of complex species. The mono- and bis-clathrochelate derivatives of meta-mercaptobenzoic acid have close values of IC₅₀ namely 16 ± 2 and 24 ± 5 μM, respectively. The presence of clathrochelates decreases the fibril diameter from 5-12 nm for free insulin fibrils to 3-8 nm for these formed in the clathrochelate presence, it also prevents the lateral aggregation of mature fibrils and formation of superfibrillar clusters. However the addition of clathrochelate results in more heterogeneous (both by size and structure) insulin aggregates population as compared to the free insulin. This way, cage complexes-iron(II) clathrochelates are proposed as efficient agents able to suppress the protein aggregation processes.

摘要

首次使用荧光抑制测定、原子力显微镜和流式细胞术研究了大环化合物单铁(II)和双铁(II)笼形螯合物作为潜在的抗纤维化剂。结果表明,笼形螯合物的存在导致胰岛素纤维化反应动力学发生变化,并减少了形成的纤维数量(高达70%)。带肋取代基的性质可以决定笼形螯合物的活性——对于含有羧基苯硫醚基团的化合物,观察到更高的抑制效果,而抑制特性仅略微取决于配合物种类的大小。间巯基苯甲酸的单笼形螯合物和双笼形螯合物衍生物的IC₅₀值相近,分别为16±2和24±5μM。笼形螯合物的存在使纤维直径从游离胰岛素纤维的5-12nm减小到在笼形螯合物存在下形成的纤维的3-8nm,它还防止成熟纤维的横向聚集和超纤维簇的形成。然而,与游离胰岛素相比,添加笼形螯合物会导致胰岛素聚集体群体在大小和结构上更加不均一。通过这种方式,笼状配合物——铁(II)笼形螯合物被认为是能够抑制蛋白质聚集过程的有效试剂。

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