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具有增强效力和代谢稳定性的内肽酶神经溶素的咪唑生物电子等排体激活剂。

Imidazole Bioisostere Activators of Endopeptidase Neurolysin with Enhanced Potency and Metabolic Stability.

作者信息

Rahman Md Shafikur, Hadi Esfahani Shiva, Zhang Yong, Queen Aarfa, Aljarrah Manar, Kandil Haya, Baez Andrew, Abbruscato Thomas J, Karamyan Vardan T, Trippier Paul C

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Nebraska Medical Center, Omaha, Nebraska 68198, United States.

Department of Pharmaceutical Sciences, Jerry H. Hodge School of Pharmacy, Texas Tech University Health Sciences Center, Amarillo, Texas 79106, United States.

出版信息

ACS Med Chem Lett. 2024 Mar 29;15(4):510-517. doi: 10.1021/acsmedchemlett.4c00009. eCollection 2024 Apr 11.

Abstract

The peptidase neurolysin (Nln) has been validated as a potential target for developing therapeutics for ischemic stroke (IS). Overexpression of Nln in a mouse model of IS provides significant cerebroprotection, leading to reduced infarction size and edema volume. Pharmacological inhibition of Nln in the post-stroke brain worsens neurological outcomes. A virtual screen identified dipeptide small-molecule activators of Nln. Optimization studies resulted in a class of peptidomimetic compounds with promising activity. However, these compounds still possessed an amide bond that compromised their stability in plasma and the brain. Herein, we report the synthesis and characterization of a series of amide bioisosteres based on our peptidomimetic leads. Imidazole-based bioisosteres afford scaffolds with increased potency to activate Nln combined with enhanced mouse plasma stability and significantly better brain permeability over the original dipeptide hits.

摘要

肽酶神经溶素(Nln)已被确认为开发缺血性中风(IS)治疗药物的潜在靶点。在IS小鼠模型中Nln的过表达可提供显著的脑保护作用,导致梗死面积和水肿体积减小。中风后大脑中Nln的药理抑制会使神经功能结果恶化。一项虚拟筛选确定了Nln的二肽小分子激活剂。优化研究产生了一类具有良好活性的拟肽化合物。然而,这些化合物仍然具有酰胺键,这损害了它们在血浆和大脑中的稳定性。在此,我们报告了基于我们的拟肽先导物的一系列酰胺生物电子等排体的合成和表征。基于咪唑的生物电子等排体提供了具有更高激活Nln效力的支架,同时与原始二肽命中物相比,具有增强的小鼠血浆稳定性和显著更好的脑渗透性。

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In-Vivo and Ex-Vivo Brain Uptake Studies of Peptidomimetic Neurolysin Activators in Healthy and Stroke Animals.
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Discovery of First-in-Class Peptidomimetic Neurolysin Activators Possessing Enhanced Brain Penetration and Stability.
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