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(+)-α-蒎烯的抗炎和软骨保护活性:结构和对映体选择性。

Anti-inflammatory and chondroprotective activity of (+)-α-pinene: structural and enantiomeric selectivity.

机构信息

Center for Neuroscience and Cell Biology, University of Coimbra , Coimbra, Portugal.

出版信息

J Nat Prod. 2014 Feb 28;77(2):264-9. doi: 10.1021/np400828x. Epub 2014 Jan 23.

Abstract

Previous studies have suggested that α-pinene, a common volatile plant metabolite, may have anti-inflammatory effects in human chondrocytes, thus exhibiting potential antiosteoarthritic activity. The objective of this study was to further characterize the potential antiosteoarthritic activity of selected pinene derivatives by evaluating their ability to modulate inflammation and extracellular matrix remodeling in human chondrocytes and to correlate the biological and chemical properties by determining whether the effects are isomer- and/or enantiomer-selective. To further elucidate chemicopharmacological interactions, the activities of other naturally occurring monoterpenes with the pinane nucleus were also investigated. At noncytotoxic concentrations, (+)-α-pinene (1) elicited the most potent inhibition of the IL-1β-induced inflammatory and catabolic pathways, namely, NF-κB and JNK activation and the expression of the inflammatory (iNOS) and catabolic (MMP-1 and -13) genes. (-)-α-Pinene (2) was less active than the (+)-enantiomer (1), and β-pinene (3) was inactive. E-Pinane (4) and oxygenated pinane-derived compounds, pinocarveol (5), myrtenal (6), (E)-myrtanol (7), myrtenol (8), and (Z)-verbenol (9), were less effective or even completely inactive and more cytotoxic than the pinenes tested (1-3). The data obtained show isomer- and enantiomer-selective anti-inflammatory and anticatabolic effects of α-pinene in human chondrocytes, (+)-α-pinene (1) being the most promising for further studies to determine its potential value as an antiosteoarthritic drug.

摘要

先前的研究表明,α-蒎烯,一种常见的挥发性植物代谢物,可能对人软骨细胞具有抗炎作用,因此表现出潜在的抗骨关节炎活性。本研究的目的是通过评估选定的蒎烯衍生物调节人软骨细胞炎症和细胞外基质重塑的能力,进一步表征其潜在的抗骨关节炎活性,并通过确定这些作用是否具有异构体和/或对映体选择性来关联其生物学和化学性质。为了进一步阐明化学生物相互作用,还研究了具有蒎烷核的其他天然单萜的活性。在非细胞毒性浓度下,(+)-α-蒎烯(1)对 IL-1β 诱导的炎症和分解代谢途径(即 NF-κB 和 JNK 激活以及炎症(iNOS)和分解代谢(MMP-1 和 -13)基因的表达)表现出最强烈的抑制作用。(-)-α-蒎烯(2)比(+)-对映异构体(1)活性低,而β-蒎烯(3)则无活性。E-蒎烯(4)和氧化蒎烯衍生化合物,蒎酮醇(5)、月桃醛(6)、(E)-myrtanol(7)、myrtenol(8)和(Z)-verbenol(9)的活性低于或甚至完全无活性,且比测试的蒎烯(1-3)更具细胞毒性。所得数据表明,(+)-α-蒎烯(1)在人软骨细胞中具有异构体和对映体选择性抗炎和抗分解代谢作用,是进一步研究确定其作为抗骨关节炎药物潜在价值的最有希望的候选药物。

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