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Autophagy-induced RelB/p52 activation mediates tumour-associated macrophage repolarisation and suppression of hepatocellular carcinoma by natural compound baicalin

机译:自噬诱导的RelB / p52激活介导肿瘤相关巨噬细胞复极化和天然化合物黄ical苷抑制肝细胞癌。

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摘要

The plasticity of tumour-associated macrophages (TAMs) has implicated an influential role in hepatocellular carcinoma (HCC). Repolarisation of TAM towards M1 phenotype characterises an immune-competent microenvironment that favours tumour regression. To investigate the role and mechanism of TAM repolarisation in suppression of HCC by a natural compound baicalin, Orthotopic HCC implantation model was used to investigate the effect of baicalin on HCC; liposome-clodronate was introduced to suppress macrophage populations in mice; bone marrow-derived monocytes (BMDMs) were induced to unpolarised, M1-like, M2-like macrophages and TAM using different conditioned medium. We observed that oral administration of baicalin (50 mg/kg) completely blocked orthotopic growth of implanted HCC. Suppression of HCC by baicalin was diminished when mice macrophage was removed by clodronate treatment. Baicalin induced repolarisation of TAM to M1-like phenotype without specific toxicity to either phenotype of macrophages. Baicalin initiated TAM reprogramming to M1-like macrophage, and promoted pro-inflammatory cytokines production. Co-culturing of HCC cells with baicalin-treated TAMs resulted in reduced proliferation and motility in HCC. Baicalin had minimal effect on derivation of macrophage polarisation factors by HCC cells, while directly induced repolarisation of TAM and M2-like macrophage. This effect was associated with elevated autophagy, and transcriptional activation of RelB/p52 pathway. Suppression of autophagy or RelB abolished skewing of baicalin-treated TAM. Autophagic degradation of TRAF2 in baicalin-treated TAM might be responsible for RelB/p52 activation. Our findings unveil the essential role of TAM repolarisation in suppressive effect of baicalin on HCC, which requires autophagy-associated activation of RelB/p52.
机译:肿瘤相关巨噬细胞(TAMs)的可塑性暗示了在肝细胞癌(HCC)中的影响作用。 TAM向M1型复极化的特征是具有免疫功能的微环境有利于肿瘤消退。为了研究TAM复极化在天然黄ba苷抑制HCC中的作用和机制,采用原位HCC植入模型研究黄ical苷对HCC的作用。引入了氯膦酸脂质体以抑制小鼠中的巨噬细胞种群。使用不同的条件培养基,将骨髓衍生的单核细胞(BMDM)诱导为非极化的M1样,M2样巨噬细胞和TAM。我们观察到口服黄in苷(50μmg/ kg)完全阻断了植入的肝癌的原位生长。当通过氯膦酸盐处理去除小鼠巨噬细胞时,黄ical苷对HCC的抑制作用减弱。黄ical苷诱导TAM重新极化为M1样表型,而对任一巨噬细胞表型无特异性毒性。黄ical苷启动TAM重编程为M1样巨噬细胞,并促进促炎细胞因子的产生。 HCC细胞与黄ical素处理的TAM共同培养导致HCC增殖和运动性降低。黄ical苷对HCC细胞衍生巨噬细胞极化因子的影响极小,而直接诱导TAM和M2样巨噬细胞的复极化。这种作用与自噬的增强和RelB / p52途径的转录激活有关。自噬或RelB的抑制消除了黄ical苷处理的TAM的偏斜。黄ical素处理过的TAM中TRAF2的自噬降解可能是RelB / p52激活的原因。我们的发现揭示了TAM复极化在黄ical苷对HCC的抑制作用中的重要作用,这需要RelB / p52的自噬相关激活。

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