食品科学 ›› 2010, Vol. 31 ›› Issue (17): 310-317.doi: 10.7506/spkx1002-6630-201017070

• 生物工程 • 上一篇    下一篇

口服酪蛋白复合肽对细胞通讯网络的作用

滑艳君,庞广昌*,郭 丽   

  1. 天津市食品生物技术重点实验室,天津商业大学生物技术与食品科学学院
  • 收稿日期:2010-07-05 修回日期:2010-08-27 出版日期:2010-09-15 发布日期:2010-12-29
  • 通讯作者: 庞广昌 E-mail:pgc@tjcu.edu.cn
  • 基金资助:

    国家自然科学基金项目(30871951)

Effect of Oral Administration of Casein Co-peptide on Human Intracellular Communication Networks

HUA Yan-jun,PANG Guang-chang*,GUO Li   

  1. Tianjin Key Laboratory of Food Biotechnology, College of Biotechnology and Food Science, Tianjin University of Commerce,
    Tianjin 300134, China
  • Received:2010-07-05 Revised:2010-08-27 Online:2010-09-15 Published:2010-12-29
  • Contact: PANG Guang-chang E-mail:pgc@tjcu.edu.cn

摘要:

为了研究酪蛋白复合肽对人体细胞通讯网络的影响,通过青年志愿者服用酪蛋白复合多肽,使用MilliporeHuman Kit 和液体芯片扫描仪检测服用前后血清中32 种细胞因子浓度的变化,结果表明:3 个剂量组共有EGF、GRO、IL-1ra、IL-5、IL-7、IL-17、sCD40L、MIP-1β、TNF-α共9 种细胞因子浓度显著降低。根据9 种显著变化的细胞因子进行信息检索,按照其合成与分泌细胞及其作用的靶细胞数据,构建口服不同剂量酪蛋白复合肽之后机体细胞通讯网络的变化。通过该细胞通讯网络的变化,可以直观地分析服用酪蛋白复合肽前后细胞之间的通讯规律;从细胞通讯网络可以看出酪蛋白复合肽具有下调免疫的作用;其作用的信号途径涉及NF- κB、JNK、JAK/STAT、P38/MAPK、PI-3K/AKT;不同剂量组显著变化的细胞因子不同,细胞通讯规律也不同,说明酪蛋白酶解肽对免疫系统的调节作用具有强剂量相关性。

关键词: 酪蛋白, 细胞因子, 细胞通讯网络

Abstract:

To explore the effect of casein co-peptide on the communication networks among human cytokines, young volunteers recruited orally took three different doses of casein co-peptide after breakfast and lunch each once, and blood was harvested at 3 h after the last administration and changes in the levels of 32 serum cytokines were assayed with Millipore Human Kit or liquid chip scanner. There were 9 serum cytokines exhibiting a significant decrease due to casein co-peptide administration at different doses. Information retrieval was carried out for these cytokines, and based on the data from cells synthesize and secrete these cytokines and their target cells, human intracellular communication networks responding to different doses of casein co-peptide were constructed and compared. The comparative results reveal that casein co-peptide has immune down-regulatory effect. Meanwhile, the signaling pathways of casein co-peptide might involve NF-κB, JNK, JAK/STAT, P38/MAPK and PI-3K/AKT. Different cytokines were changed obviously due to different doses of casein co-peptide, and different intracellular communication patterns were also observed, indicating that the immune regulatory effect of casein co-peptide is in an obvious dose-dependant fashion.

Key words: casein, cytokine, intracellular communication network

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