昆布
THP1细胞系
TLR2型
白色念珠菌
生物
免疫系统
分子生物学
促炎细胞因子
分泌物
肿瘤坏死因子α
单核细胞
趋化因子
细胞培养
细胞因子
微生物学
先天免疫系统
多糖
生物化学
免疫学
炎症
遗传学
作者
Min Li,Ze‐Hu Liu,Qing Chen,Wu-qing Zhou,Meiwen Yu,Guixia Lu,Xinliang Lu,Ya Shen,Weida Liu,Shaoxi Wu
出处
期刊:PubMed
日期:2009-03-05
卷期号:122 (5): 496-501
被引量:6
摘要
beta-glucan is the major structure component of Candida albicans (C. albicans) cell wall. It has been demonstrated that Dectin-1 as the principal C-type lectin pattern-recognition receptor (PRR) can recognize fungal beta-glucan and induce immune responses. In this study, we sought to clarify whether insoluble beta-glucan from the cell wall of C. albicans (CaIG) could induce immune responses in human THP-1 monocytes (a human acute monocytic leukemia cell line) and to determine the underlying mechanisms.Human THP-1 monocytes were challenged with CaIG in vitro. The mRNA expression of Dectin-1, Toll-like receptors (TLR2), proinflammatory cytokine (TNF-alpha) and chemokine (IL-8) was assayed by real-time reverse transcription polymerase chain reaction (RT-PCR). The secretion of TNF-a and IL-8 were measured by enzyme-linked immunosorbent assay (ELISA). H(2)O(2) release was determined by microplate fluorescent assay. Western blotting was used to analyze IkappaB-a phosphorylation and degradation.Exposure of THP-1 monocytes to CaIG led to increased gene expression and secretion of TNF-alpha and IL-8. CaIG induced H(2)O(2) release in a time-dependent manner. CaIG hydrolyzed with zymolyase failed to induce gene expression and secretion of TNF-alpha, IL-8 and H(2)O(2) release. CaIG up-regulated the mRNA of Dectin-1, whereas the mRNA level of TLR2 was not altered. THP-1 monocytes challenged with CaIG resulted in the activation of NF-kappaB in a time-dependent manner. Dectin-1 inhibitor laminarin blocked the CaIG-induced production of TNF-alpha and H(2)O(2) in THP-1 monocytes, but no such effect was observed in pretreatment with anti-TLR2 neutralizing antibody and the LPS inhibitor (polymyxin B).CaIG may play a role in activation of immune responses in human THP-1 cells through Dectin-1, not TLR2.
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