食品科学 ›› 2011, Vol. 32 ›› Issue (21): 247-252.doi: 10.7506/spkx1002-6630-201121050

• 营养卫生 • 上一篇    下一篇

γ-亚麻酸对小鼠免疫系统的调节作用

乔 冬,庞广昌*,李 杨   

  1. 天津商业大学生物技术与食品科学学院,天津市食品生物技术重点实验室
  • 出版日期:2011-11-15 发布日期:2011-11-11
  • 基金资助:
    国家自然科学基金项目(30871591)

Immunoregulatory Function of γ- Linolenic Acid in Mouse

QIAO Dong,PANG Guang-chang*,LI Yang   

  1. (Tianjin Key Laboratory of Food Biotechnology, College of Biotechnology and Food Science, Tianjin University of Commerce, Tianjin 300134, China)
  • Online:2011-11-15 Published:2011-11-11

摘要: 目的:分析γ-亚麻酸3种不同作用途径对小鼠血清中24种细胞因子的影响,进而探索γ-亚麻酸对小鼠免疫系统的调节作用。方法:将γ-亚麻酸以口服灌胃、腹腔注射、耳静脉注射3种方式作用于小鼠,分别在3、2、2h后眼球取血,分离血清。采用液体芯片检测技术测定小鼠血清中24种细胞因子含量的变化。结果:口服灌胃组中,G-CSF、MCP-1、MIP-1α、VEGF、IL-1α、IL-3、IL-10、IL-13,8种细胞因子显著变化;腹腔注射组中有IFN-γ、TNF-α、IL-1β、IL-5、IL-6、IL-10,6种细胞因子显著变化;耳静脉注射组中G-CSF、KC、IP-10、IL-1α、IL-4、IL-12(p40)、IL-17 7种细胞因子显著变化。根据每种作用途径显著变化的细胞因子的产生及作用靶细胞,分别构建γ-亚麻酸作用后机体细胞通讯网络的变化。结论:γ-亚麻酸能通过小鼠胃肠黏膜系统和血液系统传递信号,调节机体的免疫,其作用的信号途径涉及NF-κB、P38/JNK/MAPK、JAK-STAT等途径。γ-亚麻酸不仅具有必需脂肪酸的作用,而且具有显著的免疫调节作用,不仅具有刺激炎症作用,同时还可以发挥抗炎症作用。

关键词: γ-亚麻酸, 细胞因子, 免疫调节, 细胞通讯网络

Abstract: Objective: To analyze the effects of three different administration approaches of γ-linolenic acid on 24 cytokines in mouse serum, with the purpose to reveal the immunoregulatory effect of γ-linolenic acid Methods: γ-linolenic acid was given to mice by intragastric administration, intraperitoneal injection or ear vein injection and serum was collected from eye ball at 3, 2 and 2 h after administration of γ-linolenic acid, respectively. Luminex xMAP technology was used to determine 24 cytokines in mouse serum. Results: 8 cytokines, 6 cytokines, and 7 cytokines, respectively, showed significant changes after intragastric administration, intraperitoneal injection and vein injection of γ-linolenic acid. Based on the change patterns of cytokines after administration of γ-linolenic acid, cells that secrete these cytokines and their target cells were analyzed and intercellular communication networks responding to these administration methods were proposed. Conclusion: γ-Linolenic acid signals through mouse gastrointestinal mucosa and blood system to regulate the immune system. Signal transduction might involve NF-KB, P38/JNK/MAPK, JAK-STAT etc. γ-Linolenic acid not only is an essential fatty acid, but also has significant immunoregulatory effects. It stimulates inflammation and plays an anti-inflammatory role as well.

Key words: γ- linolenic acid, cytokines, immunoregulatory, intercellular communication network

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