单萜烯(+)-莰烯、对伞花烯和香叶乙酸酯在实验模型中的抗伤活性和氧化还原谱。

ISRN Toxicology Pub Date : 2013-01-14 Print Date: 2013-01-01 DOI:10.1155/2013/459530
Lucindo Quintans-Júnior, José C F Moreira, Matheus A B Pasquali, Soheyla M S Rabie, André S Pires, Rafael Schröder, Thallita K Rabelo, João P A Santos, Pollyana S S Lima, Sócrates C H Cavalcanti, Adriano A S Araújo, Jullyana S S Quintans, Daniel P Gelain
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引用次数: 112

摘要

目标。在体内和体外实验模型中评价单萜烯(+)-莰烯、对伞花烯和香叶乙酸酯的抗炎和氧化还原性能。方法。利用不同自由基生成系统评价(+)-莰烯、对花香烃和香叶乙酸酯的体外抗氧化活性,并通过醋酸致小鼠扭体和福尔马林致小鼠伤害性实验评价其抗伤害性作用。结果。对伞花烯的抗伤性最强,但(+)-莰烯和香叶乙酸酯在高剂量(200 mg/kg)时也有显著的抗伤性作用。(+)-Camphene在体外TBARS和TRAP/TAR实验中具有最强的抗氧化作用,并且对羟基和超氧自由基等不同自由基具有最高的清除活性。(+)-莰烯可促进硝普鲁士钠衍生NO的生成。香叶乙酸酯和对伞花烃也有一定的抗氧化作用,但根据所研究的自由基生成系统的不同,其抗氧化效果不同。结论。(+)-Camphene, p-cymene和geranyl acetate可能呈现出与炎症和疼痛相关过程相关的药理学特性,对于开发新的治疗策略具有潜在的用途,对-cymene和geranyl acetate的可能性有限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Antinociceptive Activity and Redox Profile of the Monoterpenes (+)-Camphene, p-Cymene, and Geranyl Acetate in Experimental Models.

Objective. To evaluate antinocicpetive and redox properties of the monoterpenes (+)-camphene, p-cymene, and geranyl acetate in in vivo and in vitro experimental models. Methods. Evaluation of the in vitro antioxidant activity of (+)-camphene, p-cymene, and geranyl acetate using different free radical-generating systems and evaluation of antinociceptive actions by acetic acid-induced writhing and formalin-induced nociception tests in mice. Results. p-Cymene has the strongest antinociceptive effect, but (+)-camphene and geranyl acetate also present significant activity at high doses (200 mg/kg). (+)-Camphene had the strongest antioxidant effect in vitro at TBARS and TRAP/TAR assays and also had the highest scavenging activities against different free radicals, such as hydroxyl and superoxide radicals. Sodium nitroprussiate-derived NO production was enhanced by (+)-camphene. Geranyl acetate and p-cymene also presented some antioxidant effects, but with a varying profile according the free radical-generating system studied. Conclusion. (+)-Camphene, p-cymene, and geranyl acetate may present pharmacological properties related to inflammation and pain-related processes, being potentially useful for development of new therapeutic strategies, with limited possibilities for p-cymene and geranyl acetate.

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