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目的:研究小叶三点金提取物的抗炎作用及其机制,为该药用植物的进一步开发应用提供实验依据。方法:采用二甲苯、冰醋酸、角叉菜胶建立小鼠急性炎症模型,以地塞米松为阳性对照(0.005 g/kg),考察灌胃不同剂量小叶三点金提取物(50、30、15 g/kg)对二甲苯致正常小鼠和肾上腺摘除小鼠耳肿胀、冰醋酸致正常小鼠腹腔毛细血管通透性增加、角叉菜胶致正常小鼠和肾上腺摘除小鼠足肿胀的抑制作用,并对角叉菜胶致炎模型肾上腺摘除小鼠足趾炎性部位中的丙二醛(MDA)、超氧化物歧化酶(SOD)、一氧化氮(NO)水平进行检测;另设空白组小鼠为对照(灌胃等体积水)。结果:与空白组比较,小叶三点金提取物高、中剂量组正常小鼠和肾上腺摘除小鼠耳肿胀度均显著降低,而耳肿胀抑制率显著升高;小叶三点金提取物各剂量组正常小鼠腹腔毛细血管通透性均显著降低;小叶三点金提取物高、中剂量组正常小鼠和肾上腺摘除小鼠足肿胀度均显著降低,而足肿胀抑制率显著升高(P<0.05或P<0.01);小叶三点金提取物高、中剂量组肾上腺摘除小鼠足趾炎性部位中MDA、NO水平均显著降低,SOD水平均显著升高(P<0.05)。结论:小叶三点金提取物对小鼠急性炎症有明显抑制作用;其抗炎作用机制与降低MDA、NO水平并提高SOD水平有关,且该抗炎作用的发挥不依赖于下丘脑-垂体-肾上腺轴系统。
OBJECTIVE: To study the anti-inflammatory effect and its mechanism of the extract of Dcsmodium microphyllum, so as to provide experiment reference for further study of D. microphyllum. METHODS: Acute inflammatory model was established by xylene,glacial acetic acid and carrageenan. Using dexamethasone as positive control (0.005 g/kg), inhibitory effects of intragastric different doses of the extract of D. microphyllum (50, 30, 15 g/kg) on xylene-induced ear swelling in normal mice and adrenalectomized mice, glacial acetic acid-induced permeability increasing of abdominal capillaries in normal mice, carrageenan- induced paw swelling in normal mice and adrenalectomized mice were investigated. The levels of MDA, SOD and NO in the inflammatory tissue of toes of adrenalectomized mice were detected in carrageenan-induced inflammation model. Blank group was set for control (ig. equal volumn of water). RESULTS: Compared with blank group, ear swelling degree of normal mice and adrenalectomized mice were decreased significantly in D. microphyllum extract high-dose and medium-dose groups while inhibitory rate of ear swelling was increased significantly; the permeability of abdominal capillaries of normal mice was significantly decreased in D. microphyllum extract groups; the swelling degree of toes in normal mice of D. microphyllum extract high-dose and middle-dose groups and adrenalectomized mice were significantly decreased while inhibitory rate of toe swelling was increased significantly (P<0.05 or P<0.01). The levels of MDA and NO in the toe inflammatory site of adrenalectomized mice were decreased significantly in D. microphyllum extract high-dose and medium-dose groups, while the level of SOD was increased significantly (P<0.05). CONCLUSIONS: D. microphyllum extract can inhibit acute inflammation in mice significantly. Its anti-inflammatory mechanism is associated with decreasing MDA and NO while increasing SOD levels, and the anti-inflammatory effect does not depend on the hypothalamus-pituitary-adrenal axis system.
小叶三点金提取物抗炎作用机制下丘脑-垂体-肾上腺轴系统小鼠
Dcsmodium microphyllumExtractAnti-inflammationMechanismHypothalamus-pituitary-adrenal axis systemMice
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