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Astragalus polysaccharides exerts immunomodulatory effects via TLR4-mediated MyD88-dependent signaling pathway in vitro and in vivo

机译:黄芪多糖通过TLR4介导的MyD88依赖性信号传导途径在体内和体外发挥免疫调节作用

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摘要

Astragalus polysaccharides (APS), which is widely used as a remedy to promote immunity of breast cancer patients, can enhance immune responses and exert anti-tumor effects. In this study, we investigated the effects and mechanisms of APS on macrophage RAW 264.7 and EAC tumor-bearing mice. Griess reaction and ELISA assays revealed that the concentrations of nitric oxide, TNF-α, IL-1β and IL-6 were increased by APS. However, this effect was diminished in the presence of TAK-242 (TLR4 inhibitor) or ST-2825(MyD88 inhibitor). In C57BL/10J (TLR4+/+wild-type) and C57BL/6J (MyD88+/+wild-type) tumor-bearing mice, the tumor apoptosis rate, immune organ indexes and the levels of TNF-α, IL-1β and IL-6 in blood increased and the tumor weight decreased by oral administration of APS for 25 days. APS had no obvious effects on IL-12p70. However, these effects were not significant in C57BL/10ScNJ (TLR4-deficient) and C57BL/B6.129P2(SJL)-Myd88m1.1Defr/J (MyD88-deficient) tumor-bearing mice. qRT-PCR and Western blot indicated that APS stimulated the key nodes in the TLR4-MyD88 dependent signaling pathway, including TLR4, MyD88, TRAF-6, NF-κB and AP-1, both in vitro and in vivo. However, TRAM was an exception. Moreover, TRAF-6 and NF-κB were not triggered by APS in gene-deficient tumor-bearing mice. Therefore, APS may modulate immunity of host organism through activation of TLR4-mediated MyD88-dependent signaling pathway.
机译:黄芪多糖(APS)被广泛用作提高乳腺癌患者免疫力的药物,可增强免疫反应并发挥抗肿瘤作用。在这项研究中,我们调查了APS对巨噬细胞RAW 264.7和EAC荷瘤小鼠的作用和机制。 Griess反应和ELISA分析表明,APS可增加一氧化氮,TNF-α,IL-1β和IL-6的浓度。但是,在TAK-242(TLR4抑制剂)或ST-2825(MyD88抑制剂)存在下,这种作用减弱。在C57BL / 10J(TLR4 + / + 野生型)和C57BL / 6J(MyD88 + / + 野生型)荷瘤小鼠中,肿瘤的凋亡率,口服APS 25天后,免疫器官指标和血液中TNF-α,IL-1β和IL-6的水平升高,肿瘤重量减轻。 APS对IL-12p70无明显影响。但是,这些效应在C57BL / 10ScNJ(TLR4缺陷)和C57BL / B6.129P2(SJL)-Myd88 / J(MyD88缺陷)荷瘤小鼠中并不明显。 qRT-PCR和Western印迹表明,APS在体外和体内均可刺激TLR4-MyD88依赖性信号通路中的关键节点,包括TLR4,MyD88,TRAF-6,NF-κB和AP-1。但是,TRAM是一个例外。此外,在携带基因缺陷的小鼠中,APS不会触发TRAF-6和NF-κB。因此,APS可能通过激活TLR4介导的MyD88依赖性信号通路来调节宿主生物体的免疫力。

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