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荜茇果实甲醇提取物对实验动物的免疫调节活性。

Immunomodulatory activity of methanolic fruit extract of Aegle marmelos in experimental animals.

机构信息

Department of Pharmacology, Krupanidhi College of Pharmacy, Varthur Hobli, Chikkabellandur Village, Carmalaram Post, Bangalore 560 035, India.

出版信息

Saudi Pharm J. 2010 Jul;18(3):161-5. doi: 10.1016/j.jsps.2010.05.006. Epub 2010 May 31.

Abstract

AIM

The aim of the present study was to investigate the immunomodulatory action of methanolic extract of Aegle marmelos fruit (FEAM) in experimental model of immunity.

METHODS

Cellular immunity was carried out by neutrophil adhesion test and carbon clearance assay, whereas, humoral immunity was analyzed by mice lethality test and indirect haemagglutination assay. FEAM dose was selected by Stair case method (up and down) and administered at 100 and 500 mg/kg orally. The Ocimum sanctum (OSE, 100 mg/kg, p.o) was used as standard.

RESULTS

FEAM at 100 and 500 mg/kg produced significant increases in adhesion of neutrophils and an increase in phagocytic index in carbon clearance assay. Both high and low doses of FEAM significantly prevented the mortality induced by bovine Pasteurella multocida in mice. Treatment of animals with FEAM and OSE significantly increased the circulating antibody titre in indirect haemagglunation test. Among the different doses, low one was more effective in cellular immunity models than the high. However, all the doses exhibited similar protection in humoral immunity procedures.

CONCLUSION

From the above findings, it is concluded that FEAM possesses potential for augmenting immune activity by cellular and humoral mediated mechanisms more at low dose (100 mg/kg) than high dose (500 mg/kg).

摘要

目的

本研究旨在探讨酸橙果实甲醇提取物(FEAM)在免疫实验模型中的免疫调节作用。

方法

通过中性粒细胞黏附试验和碳清除试验进行细胞免疫分析,通过小鼠致死试验和间接血凝试验分析体液免疫。FEAM 剂量采用阶梯法(上下)选择,口服 100 和 500mg/kg。将神圣罗勒(OSE,100mg/kg,po)用作标准。

结果

FEAM 在 100 和 500mg/kg 剂量下可显著增加中性粒细胞黏附,并增加碳清除试验中的吞噬指数。FEAM 的高、低剂量均能显著预防牛多杀巴氏杆菌诱导的小鼠死亡。FEAM 和 OSE 处理动物可显著增加间接血凝试验中的循环抗体滴度。在不同剂量中,低剂量在细胞免疫模型中比高剂量更有效。然而,所有剂量在体液免疫过程中均表现出相似的保护作用。

结论

从上述发现可以得出结论,FEAM 通过细胞和体液介导的机制增强免疫活性的潜力,在低剂量(100mg/kg)下比高剂量(500mg/kg)更强。

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