槐定与TLR4/MD-2阻断剂对lps诱导RAW264.7巨噬细胞TLR4- nf -κB-TNF-α通路的影响

Yan-Rong Wang, Feng Yang, Jing Liu, Ya Zhou
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引用次数: 1

摘要

目的:研究槐定碱与TLR4/MD-2阻断剂对lps诱导的RAW264通路的影响。7巨噬细胞tlr4 - nf - kappab - tnf - α in及其抗内毒素药理机制方法:RAW264。培养7个巨噬细胞,分为空白对照组、LPS模型组、槐定碱+ LPS组、TLR4/MD-2阻断剂+ LPS组和抗TLR4/MD-2 +槐定碱+ LPS组。各组处理后120 min收集细胞及细胞培养液。western blot检测TLR4蛋白的表达,免疫细胞化学检测NF-kappaB蛋白的分布和表达,western blot和RT-PCR检测NF-kappaB和tnf - α mRNA的表达。用放射免疫法检测细胞上清中tnf - α的含量。结果:与LPS组比较,槐定碱+ LPS组细胞TLR4蛋白表达、NF-kappaB mRNA表达、NF-kappaB入核率、细胞上清中tnf - α mRNA表达及tnf - α含量均显著降低(P < 0.01)。TLR4/MD-2阻滞剂+ LPS组和TLR4/MD-2阻滞剂+槐定碱+ LPS组的NF-kappaB入核率和tnf - α均显著低于LPS模型组(P < 0.01),与空白对照组接近。但两组间差异无统计学意义。结论:TLR4/MD-2可能是槐定的靶点之一。槐定对tlr4 - nf - kappab - tnf - α通路活性的抑制作用可能是其抗内毒素机制之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of sophoridine and TLR4/MD-2 blocking agent on pathway of LPS-induced RAW264.7 macrophage TLR4-NF-κB-TNF-α
OBJECTIVE: To study the effect of sophoridine and TLR4/MD-2 blocking agent on pathway of LPS-induced RAW264. 7 macrophage TLR4-NF-kappaB-TNF-alpha in and its pharmacological mechanism of antiendotoxin. METHOD: RAW264. 7 macrophages were cultured and divided into 5 groups, namely the blank control group, the LPS model group, the sophoridine + LPS group, the TLR4/MD-2 blocking agent + LPS group and the anti-TLR4/MD-2 + sophoridine + LPS group. Cells and cell culture fluids were collected at 120 min after the each group was processed. The expression of TLR4 protein was measured by western blot, the distribution and expression of NF-kappaB protein were measured by immunocytochemistry, and the expression of NF-kappaB and TNF-alpha mRNA were measured by western blot and reverse transcriptase polymerase chain reaction (RT-PCR). The content of TNF-alpha in the cell supernatant was detected by using radioimmunoassay. RESULT: Compared with the LPS group, the expression of TLR4 protein, NF-kappaB mRNA, the rate of NF-kappaB entry the nucleus, TNF-alpha mRNA and TNF-alpha content in the cell supernatant were significantly decreased in the sophoridine + LPS group (P < 0.01). The rate of NF-kappaB entry the nucleus and TNF-alpha in the TLR4/MD-2 blocking agent + LPS group and the TLR4/MD-2 blocking agent + sophoridine + LPS group were notablly lower than that of the LPS model group (P < 0.01), close to that of the blank control group. However, there was no statistical significance between the two groups. CONCLUSION: TLR4/MD-2 may be one of sophoridine's targets. Sophordine's inhibitory effect on pathway activity of TLR4-NF-kappaB-TNF-alpha may be one of its antiendotoxin mechanisms.
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