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首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Synthesis and biological evaluation of quinic acid derivatives as anti-inflammatory agents.
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Synthesis and biological evaluation of quinic acid derivatives as anti-inflammatory agents.

机译:奎尼酸衍生物作为抗炎药的合成及生物学评价。

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Quinic acid (QA) esters found in hot water extracts of Uncaria tomentosa (a.k.a. cat's claw) exert anti-inflammatory activity through mechanisms involving inhibition of the pro-inflammatory transcription factor nuclear factor kappa B (NF-kappaB). Herein, we describe the synthesis and biological testing of novel QA derivatives. Inhibition of NF-kappaB was assessed using A549 (Type II alveolar epithelial-like) cells that stably express a secreted alkaline phosphatase (SEAP) reporter driven by an NF-kappaB response element. A549-NF-kappaB cells were stimulated with TNF-alpha (10 ng/mL) in the presence or absence of QA derivative for 18 hours followed by measurement of SEAP activity. Amide substitution at the carboxylic acid position yielded potent inhibitors of NF-kappaB. A variety of modifications to the amide substitution were tolerated with the N-propyl amide derivative being the most potent. Further examination of the SAR demonstrated that acetylation of the hydroxyl groups reduced NF-kappaB inhibitory activity. QA amide derivatives lacked anti-oxidant activity and were found to be neither anti-proliferative nor cytotoxic at concentrations up to 100 microM. In conclusion, we have discovered a novel series of non-toxic QA amides that potently inhibit NF-kappaB, despite their lack of anti-oxidant activity. Mechanistic studies and pre-clinical efficacy studies in various inflammatory animal models are on-going.
机译:在绒毛Uncaria(a.k.a.猫的爪)的热水提取物中发现的奎尼酸(QA)酯通过涉及抑制促炎转录因子核因子κB(NF-kappaB)的机制发挥抗炎活性。在这里,我们描述了新型QA衍生物的合成和生物学测试。使用稳定表达由NF-kappaB反应元件驱动的分泌性碱性磷酸酶(SEAP)报告基因的A549(II型肺泡上皮样)细胞来评估NF-kappaB的抑制作用。在存在或不存在QA衍生物的情况下,用TNF-α(10 ng / mL)刺激A549-NF-kappaB细胞18小时,然后测量SEAP活性。羧酸位置的酰胺取代产生了有效的NF-κB抑制剂。 N-丙基酰胺衍生物是最有效的,可以耐受酰胺取代的各种修饰。 SAR的进一步检查表明羟基的乙酰化降低了NF-κB抑制活性。 QA酰胺衍生物缺乏抗氧化活性,最高浓度为100 microM时,既没有抗增殖作用,也没有细胞毒性。总之,我们发现了一系列新型的无毒QA酰胺,尽管它们缺乏抗氧化活性,但它们仍可有效抑制NF-κB。各种炎症动物模型的机理研究和临床前功效研究正在进行中。

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