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基于恶二唑的咖啡酸苯乙酯新型生物电子等排体:合成、抗癌活性及对脂氧合酶产物生物合成的抑制作用

Novel Oxadiazole-Based Bioisostere of Caffeic Acid Phenethyl Ester: Synthesis, Anticancer Activity, and Inhibition of Lipoxygenase Product Biosynthesis.

作者信息

Robichaud Mika A, Chiasson Audrey Isabel, Doiron Jérémie A, Hébert Mathieu P A, Surette Marc E, Touaibia Mohamed

机构信息

Department of Chemistry and Biochemistry, Université de Moncton, Moncton, New Brunswick, Canada.

New Brunswick Center for Precision Medicine, Moncton, New Brunswick, Canada.

出版信息

Drug Dev Res. 2025 May;86(3):e70099. doi: 10.1002/ddr.70099.

Abstract

Caffeic acid phenethyl ester (1), a honeybee propolis component, possesses many bioactive properties, making it a useful scaffold for drug research. Further, CAPE (1) is a more effective inhibitor of the biosynthesis of 5-lipoxygenase (5-LO) products compared to Zileuton, the only clinically-approved direct 5-LO inhibitor. However, CAPE (1) suffers from a poor metabolic profile, being rapidly metabolized to caffeic acid (CA). In this study, we synthesized and performed several biological assays on a new bioisostere of CAPE (1) possessing a 1,2,4-oxadiazole ring. The new bioisostere (OB-CAPE (5)) has a similar antiproliferative effect to CAPE (1) on NCI-60 cancer cell lines and maintains the activity of CAPE (1) as an inhibitor of the biosynthesis of 5-, 12- and 15-LO products and as an iron chelator. In human polymorphonuclear leukocytes, OB-CAPE (5) inhibits the biosynthesis of 5-LO products with an IC of 0.93 µM compared to 1.0 µM for CAPE (1). Both compounds have similar antioxidant activity, with IC values of 1.2 µM for OB-CAPE (5) and 1.1 µM for CAPE (1). The new hydrogen bond predicted for the oxadiazole ring and the GLN363 amino acid in the 5-LO active site may explain the small improvement in the affinity of OB-CAPE (5) for the protein compared to CAPE (1). Finally, stability studies in human plasma reveal that OB-CAPE (5) is 25% more stable than CAPE (1). Therefore, the increase in stability associated with the replacement of the ester function with its bioisostere, while maintaining the anti-inflammatory and anticancer properties of CAPE (1), suggests that OB-CAPE (5) may be a comparable yet more stable candidate for in vivo studies in disease models.

摘要

咖啡酸苯乙酯(1)是蜜蜂蜂胶的一种成分,具有多种生物活性,使其成为药物研究的有用骨架。此外,与唯一临床批准的直接5-脂氧合酶(5-LO)抑制剂齐留通相比,咖啡酸苯乙酯(1)是5-脂氧合酶(5-LO)产物生物合成的更有效抑制剂。然而,咖啡酸苯乙酯(1)的代谢情况不佳,会迅速代谢为咖啡酸(CA)。在本研究中,我们合成了一种具有1,2,4-恶二唑环的咖啡酸苯乙酯(1)的新生物电子等排体,并进行了多项生物学试验。新生物电子等排体(OB-咖啡酸苯乙酯(5))对NCI-60癌细胞系具有与咖啡酸苯乙酯(1)相似的抗增殖作用,并保持了咖啡酸苯乙酯(1)作为5-、12-和15-LO产物生物合成抑制剂以及铁螯合剂的活性。在人多形核白细胞中,OB-咖啡酸苯乙酯(5)抑制5-LO产物生物合成的IC50为0.93 µM,而咖啡酸苯乙酯(1)为1.0 µM。两种化合物具有相似的抗氧化活性,OB-咖啡酸苯乙酯(5)的IC50值为1.2 µM,咖啡酸苯乙酯(1)为1.1 µM。预测在5-LO活性位点中恶二唑环与GLN363氨基酸形成的新氢键可能解释了与咖啡酸苯乙酯(1)相比,OB-咖啡酸苯乙酯(5)对该蛋白亲和力的小幅提高。最后,在人血浆中的稳定性研究表明,OB-咖啡酸苯乙酯(5)比咖啡酸苯乙酯(1)稳定25%。因此,用其生物电子等排体取代酯官能团后稳定性增加,同时保持了咖啡酸苯乙酯(1)的抗炎和抗癌特性,这表明OB-咖啡酸苯乙酯(5)可能是疾病模型体内研究中一种相当但更稳定的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdae/12050906/f0e39fc96dfa/DDR-86-e70099-g004.jpg

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