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新型体内相容基质金属蛋白酶(MMP)-2 和 MMP-9 抑制剂。

New in Vivo Compatible Matrix Metalloproteinase (MMP)-2 and MMP-9 Inhibitors.

机构信息

Organic Chemistry Institute , University of Münster , Corrensstraße 40 , 48149 Münster , Germany.

Cells-in-Motion Cluster of Excellence , University of Münster , Waldeyerstraße 15 , 48149 Münster , Germany.

出版信息

Bioconjug Chem. 2018 Nov 21;29(11):3715-3725. doi: 10.1021/acs.bioconjchem.8b00618. Epub 2018 Oct 24.

Abstract

Matrix metalloproteinases (MMPs) are emerging as pivotal fine-tuners of cell function in tissue homeostasis and in various pathologies, in particular inflammation. In vivo monitoring of the activity of specific MMPs, therefore, provides high potential for assessing disease progression and tissue function, and manipulation of MMP activity in tissues and whole organisms may further provide a mode of controlling pathological processes. We describe here the synthesis of novel fluorinated and nonfluorinated analogues of a secondary sulfonamide-based lead structure, compound 2, and test their efficacy as in vivo inhibitors and tracers of the gelatinases, MMP-2 and MMP-9. Using a murine neuroinflammatory model, we show that compound 2 is a highly effective in vivo inhibitor of both MMP-2 and MMP-9 activity with little or no adverse effects even after long-term daily oral administration. A fluorescein-labeled derivative compound 17 shows direct binding to activated gelatinases surrounding inflammatory cuffs in the neuroinflammation model and to pancreatic β-cells in the islets of Langerhans, colocalizing with MMP-2 and MMP-9 activity as detected using in situ zymography techniques. These results demonstrate that compound 2 derivatives have potential as in vivo imaging tools and for future development for specific MMP-2 versus MMP-9 probes. Our chemical modifications mainly target the residues directed toward the S1' and S2' pockets and, thereby, provide new information on the structure-activity relationships of this inhibitor type.

摘要

基质金属蛋白酶(MMPs)在组织稳态和各种病理学中,特别是炎症中,作为细胞功能的关键微调因子而崭露头角。因此,特异性 MMP 活性的体内监测为评估疾病进展和组织功能提供了巨大潜力,并且 MMP 在组织和整个生物体中的活性的操纵可能进一步提供了控制病理过程的模式。我们在这里描述了新型基于磺酰胺的二级先导结构化合物 2 的氟化和非氟化类似物的合成,并测试了它们作为明胶酶 MMP-2 和 MMP-9 的体内抑制剂和示踪剂的功效。使用鼠神经炎症模型,我们表明化合物 2 是 MMP-2 和 MMP-9 活性的高效体内抑制剂,即使在长期每日口服给药后也几乎没有或没有不良反应。荧光素标记的衍生物化合物 17 显示与神经炎症模型中炎症袖口周围的活化明胶酶直接结合,并与胰岛中的胰岛 β 细胞结合,与原位酶谱技术检测到的 MMP-2 和 MMP-9 活性共定位。这些结果表明,化合物 2 衍生物具有作为体内成像工具和未来针对特定 MMP-2 与 MMP-9 探针的开发的潜力。我们的化学修饰主要针对指向 S1'和 S2'口袋的残基,从而为该抑制剂类型的结构-活性关系提供了新的信息。

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