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Electrophilic nitro-fatty acids prevent astrocyte-mediated toxicity to motor neurons in a cell model of familial amyotrophic lateral sclerosis via nuclear factor erythroid 2-related factor activation.亲电子硝基脂肪酸通过激活核因子红细胞2相关因子,在家族性肌萎缩侧索硬化症细胞模型中预防星形胶质细胞介导的对运动神经元的毒性作用。
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Endogenous generation of nitro-fatty acid hybrids having dual nitrate ester (RONO) and nitroalkene (RNO) substituents.内源性生成具有双重硝酸酯(RONO)和硝基亚烯基(RNO)取代基的硝基金属化合物杂种。
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Nitro-fatty acid metabolome: saturation, desaturation, beta-oxidation, and protein adduction.硝基脂肪酸代谢组:饱和、去饱和、β-氧化及蛋白质加合作用
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Nitro-oleic acid (NO-OA) ameliorates erectile dysfunction in a rat model of diabetes mellitus via modulation of fibrosis, inflammation and autophagy.硝基油酸(NO - OA)通过调节纤维化、炎症和自噬改善糖尿病大鼠模型的勃起功能障碍。
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Electrophilic Compounds in the Human Diet and Their Role in the Induction of the Transcription Factor NRF2.人类饮食中的亲电化合物及其在诱导转录因子 NRF2 中的作用。
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本文引用的文献

1
Discovery, characterization and clinical utility of prostaglandin agonists for the treatment of glaucoma.前列腺素激动剂治疗青光眼的发现、特性和临床应用。
Br J Pharmacol. 2019 Apr;176(8):1051-1058. doi: 10.1111/bph.14327. Epub 2018 May 17.
2
Nitrolipids in kidney physiology and disease.肾脏生理学与疾病中的硝化脂质
Nitric Oxide. 2018 Mar 29. doi: 10.1016/j.niox.2018.03.021.
3
Experimental Nonalcoholic Steatohepatitis and Liver Fibrosis Are Ameliorated by Pharmacologic Activation of Nrf2 (NF-E2 p45-Related Factor 2).通过Nrf2(NF-E2 p45相关因子2)的药理学激活可改善实验性非酒精性脂肪性肝炎和肝纤维化。
Cell Mol Gastroenterol Hepatol. 2017 Dec 13;5(3):367-398. doi: 10.1016/j.jcmgh.2017.11.016. eCollection 2018 Mar.
4
Isothiocyanates: Translating the Power of Plants to People.异硫氰酸盐:将植物的力量转化为人类的力量。
Mol Nutr Food Res. 2018 Sep;62(18):e1700965. doi: 10.1002/mnfr.201700965. Epub 2018 Mar 26.
5
Bardoxolone Methyl Improves Kidney Function in Patients with Chronic Kidney Disease Stage 4 and Type 2 Diabetes: Post-Hoc Analyses from Bardoxolone Methyl Evaluation in Patients with Chronic Kidney Disease and Type 2 Diabetes Study.Bardoxolone 甲酯可改善慢性肾脏病 4 期合并 2 型糖尿病患者的肾脏功能:Bardoxolone 甲酯评估在慢性肾脏病合并 2 型糖尿病患者中的研究的事后分析。
Am J Nephrol. 2018;47(1):40-47. doi: 10.1159/000486398. Epub 2018 Jan 18.
6
Electrophilic fatty acid nitroalkenes regulate Nrf2 and NF-κB signaling:A medicinal chemistry investigation of structure-function relationships.亲电脂肪酸硝烯调节 Nrf2 和 NF-κB 信号:结构-功能关系的药物化学研究。
Sci Rep. 2018 Feb 2;8(1):2295. doi: 10.1038/s41598-018-20460-8.
7
KEAP1 and Done? Targeting the NRF2 Pathway with Sulforaphane.KEAP1与结束了?用萝卜硫素靶向NRF2信号通路。
Trends Food Sci Technol. 2017 Nov;69(Pt B):257-269. doi: 10.1016/j.tifs.2017.02.002. Epub 2017 Feb 16.
8
New pro-resolving n-3 mediators bridge resolution of infectious inflammation to tissue regeneration.新型促解决 n-3 介质将传染性炎症的解决与组织再生联系起来。
Mol Aspects Med. 2018 Dec;64:1-17. doi: 10.1016/j.mam.2017.08.002. Epub 2017 Sep 1.
9
Covalent inhibitors design and discovery.共价抑制剂的设计与发现。
Eur J Med Chem. 2017 Sep 29;138:96-114. doi: 10.1016/j.ejmech.2017.06.019. Epub 2017 Jun 10.
10
Prescription omega-3 fatty acid products containing highly purified eicosapentaenoic acid (EPA).含有高纯度二十碳五烯酸(EPA)的处方ω-3脂肪酸产品。
Lipids Health Dis. 2017 Jan 31;16(1):23. doi: 10.1186/s12944-017-0415-8.

硝酰基脂肪酸:用于治疗慢性炎症和纤维化疾病的新型药物候选物。

Nitro-fatty acids: New drug candidates for chronic inflammatory and fibrotic diseases.

机构信息

Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, PA, USA.

Department of Pharmacology and Chemical Biology, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

Nitric Oxide. 2018 Sep 1;79:31-37. doi: 10.1016/j.niox.2018.06.006. Epub 2018 Jun 23.

DOI:10.1016/j.niox.2018.06.006
PMID:29944935
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6280193/
Abstract

Nitrated oleic acid (NO-OA) was first identified in 2003, and after the characterization of its formation and thiol reactivity, it was used as a prototypical molecule to investigate the physiological actions of endogenous nitrated fatty acids (NO-FA). Based on in vitro observations showing significant activation of cytoprotective and anti-inflammatory signaling responses by NO-FA, experiments were designed to determine their pharmacological potential. Supported by strong intellectual protection and favorable pharmacokinetic and pharmacodynamic data, 10-NO-OA (CXA-10) underwent pharmaceutical development as a drug to treat fibrotic and inflammatory diseases. NO-FA are at the intersection of three unconventional drug candidate classes that include 1) fatty acids, 2) metabolic intermediates and 3) electrophilic molecules. These three groups use different scaffolds for drug development, are characterized by broad activities and are individually gaining traction as alternatives to mono-target drug therapies. In particular, NO-FA share key characteristics with currently approved pharmacological agents regarding reactivity, distribution, and mechanism of action. This review first presents the characteristics, liabilities, and opportunities that these different drug candidate classes display, and then discusses these issues in the context of current progress in the preclinical and clinical development of NO-FA as drugs. Lessons learned from the novel approaches presented herein were considered early on during development to structurally define and improve NO-FA and their disease targets.

摘要

硝酰基油酸(NO-OA)于 2003 年首次被发现,在对其形成和巯基反应性进行表征后,它被用作研究内源性硝酰基脂肪酸(NO-FA)生理作用的典型分子。基于体外观察表明,NO-FA 可显著激活细胞保护和抗炎信号反应,因此设计了实验来确定其药理学潜力。10-NO-OA(CXA-10)在具有强大的知识产权保护和有利的药代动力学和药效学数据的支持下,作为治疗纤维化和炎症性疾病的药物进行了药物开发。NO-FA 处于三个非传统候选药物类别(1)脂肪酸、(2)代谢中间产物和(3)亲电分子的交叉点。这三组药物使用不同的药物开发支架,具有广泛的活性,并且各自作为单靶标药物治疗的替代品获得了吸引力。特别是,NO-FA 在反应性、分布和作用机制方面与目前批准的药理学药物具有关键特征。本综述首先介绍了这些不同候选药物类别所显示的特点、缺点和机会,然后在当前关于作为药物的 NO-FA 的临床前和临床开发的进展背景下讨论了这些问题。在开发过程中,从本文提出的新方法中吸取的经验教训被尽早考虑,以结构定义和改进 NO-FA 及其疾病靶标。