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1-硝基-2-苯乙烯的抗炎潜力。

Anti-Inflammatory Potential of 1-Nitro-2-Phenylethylene.

机构信息

Laboratory of Inflammation Signaling, Department of Clinical Analysis, Faculty of Pharmacy, Federal University of Minas Gerais, Belo Horizonte 31270-901, MG, Brazil.

Laboratory of Biological Activity, Faculty of Pharmaceutical Sciences, Federal University of Amazonas, Manaus 69067-005, AM, Brazil.

出版信息

Molecules. 2017 Nov 15;22(11):1977. doi: 10.3390/molecules22111977.

Abstract

Inflammation is a reaction of the host to infectious or sterile stimuli and has the physiological purpose of restoring tissue homeostasis. However, uncontrolled or unresolved inflammation can lead to tissue damage, giving rise to a plethora of chronic inflammatory diseases, including metabolic syndrome and autoimmunity pathologies with eventual loss of organ function. Beta-nitrostyrene and its derivatives are known to have several biological activities, including anti-edema, vasorelaxant, antiplatelet, anti-inflammatory, and anticancer. However, few studies have been carried out regarding the anti-inflammatory effects of this class of compounds. Thereby, the aim of this study was to evaluate the anti-inflammatory activity of 1-nitro-2-phenylethene (NPe) using in vitro and in vivo assays. Firstly, the potential anti-inflammatory activity of NPe was evaluated by measuring TNF-α produced by human macrophages stimulated with lipopolysaccharide (LPS). NPe at non-toxic doses opposed the inflammatory effects induced by LPS stimulation, namely production of the inflammatory cytokine TNF-α and activation of NF-κB and ERK pathways (evaluated by phosphorylation of inhibitor of kappa B-alpha [IκB-α] and extracellular signal-regulated kinase 1/2 [ERK1/2], respectively). In a well-established model of acute pleurisy, pretreatment of LPS-challenged mice with NPe reduced neutrophil accumulation in the pleural cavity. This anti-inflammatory effect was associated with reduced activation of NF-κB and ERK1/2 pathways in NPe treated mice as compared to untreated animals. Notably, NPe was as effective as dexamethasone in both, reducing neutrophil accumulation and inhibiting ERK1/2 and IκB-α phosphorylation. Taken together, the results suggest a potential anti-inflammatory activity for NPe via inhibition of ERK1/2 and NF-κB pathways on leukocytes.

摘要

炎症是宿主对感染或无菌刺激的反应,具有恢复组织内稳态的生理目的。然而,失控或未解决的炎症会导致组织损伤,引发多种慢性炎症性疾病,包括代谢综合征和自身免疫病理学,最终导致器官功能丧失。β-亚硝基苯乙烯及其衍生物具有多种生物学活性,包括抗水肿、血管舒张、抗血小板、抗炎和抗癌作用。然而,关于此类化合物的抗炎作用,研究甚少。因此,本研究旨在通过体外和体内试验评估 1-硝基-2-苯乙烯(NPe)的抗炎活性。首先,通过测量人巨噬细胞在脂多糖(LPS)刺激下产生的 TNF-α来评估 NPe 的潜在抗炎活性。NPe 在无毒剂量下可拮抗 LPS 刺激诱导的炎症作用,即炎症细胞因子 TNF-α的产生以及 NF-κB 和 ERK 途径的激活(通过磷酸化 IκB-α和细胞外信号调节激酶 1/2 [ERK1/2]分别评估)。在急性胸膜炎的既定模型中,NPe 预处理 LPS 挑战的小鼠可减少胸腔腔中性粒细胞的积聚。与未处理的动物相比,这种抗炎作用与 NPe 处理小鼠中 NF-κB 和 ERK1/2 途径的活性降低有关。值得注意的是,NPe 在减少中性粒细胞积聚和抑制 ERK1/2 和 IκB-α磷酸化方面与地塞米松一样有效。综上所述,这些结果表明 NPe 通过抑制白细胞中的 ERK1/2 和 NF-κB 途径具有潜在的抗炎活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46ef/6150367/65ea7e6286e1/molecules-22-01977-g001.jpg

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