Liquiritin improves macrophage degradation of engulfed tumour cells by promoting the formation of phagolysosomes via NOX2/gp91phox.

IF 8.9
Journal of pharmaceutical analysis Pub Date : 2025-05-01 Epub Date: 2024-08-28 DOI:10.1016/j.jpha.2024.101093
Caiyi Yang, Kehan Chen, Yunliang Chen, Xuting Xie, Pengcheng Li, Meng Zhao, Junjie Liang, Xueqian Xie, Xiaoyun Chen, Yanping Cai, Bo Xu, Qing Wang, Lian Zhou, Xia Luo
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Abstract

The incomplete degradation of tumour cells by macrophages (Mϕ) is a contributing factor to tumour progression and metastasis, and the degradation function of Mϕ is mediated through phagosomes and lysosomes. In our preliminary experiments, we found that overactivation of NADPH oxidase 2 (NOX2) reduced the ability of Mϕ to degrade engulfed tumour cells. Above this, we screened out liquiritin from Glycyrrhiza uralensis Fisch, which can significantly inhibit NOX2 activity and inhibit tumours, to elucidate that suppressing NOX2 can enhance the ability of Mϕ to degrade tumour cells. We found that the tumour environment could activate the NOX2 activity in Mϕ phagosomes, causing Mϕ to produce excessive reactive oxygen species (ROS), thus prohibiting the formation of phagolysosomes before degradation. Conversely, inhibiting NOX2 in Mϕ by liquiritin can reduce ROS and promote phagosome-lysosome fusion, therefore improving the enzymatic degradation of tumour cells after phagocytosis, and subsequently promote T cell activity by presenting antigens. We further confirmed that liquiritin down-regulated the expression of the NOX2 specific membrane component protein gp91 phox, blocking its binding to the NOX2 cytoplasmic component proteins p67 phox and p47 phox, thereby inhibiting the activity of NOX2. This study elucidates the specific mechanism by which Mϕ cannot degrade tumour cells after phagocytosis, and indicates that liquiritin can promote the ability of Mϕ to degrade tumour cells by suppressing NOX2.

Liquiritin通过NOX2/gp91phox促进吞噬溶酶体的形成,从而改善吞噬肿瘤细胞的巨噬细胞降解。
巨噬细胞对肿瘤细胞的不完全降解(Mϕ)是肿瘤进展和转移的一个促进因素,而Mϕ的降解功能是通过吞噬体和溶酶体介导的。在我们的初步实验中,我们发现NADPH氧化酶2 (NOX2)的过度激活降低了mφ降解吞噬肿瘤细胞的能力。在此基础上,我们从甘草中筛选出能够显著抑制NOX2活性和抑制肿瘤的liquiritin,以阐明抑制NOX2可以增强Mϕ对肿瘤细胞的降解能力。我们发现肿瘤环境可以激活mφ吞噬体中的NOX2活性,使mφ产生过多的活性氧(reactive oxygen species, ROS),从而阻止吞噬溶酶体在降解前形成。相反,liquiritin抑制Mϕ中的NOX2可以减少ROS,促进吞噬体-溶酶体融合,从而改善吞噬后肿瘤细胞的酶降解,进而通过递呈抗原促进T细胞活性。我们进一步证实,liquiritin下调NOX2特异性膜组分蛋白gp91 phox的表达,阻断其与NOX2细胞质组分蛋白p67 phox和p47 phox的结合,从而抑制NOX2的活性。本研究阐明了Mϕ被吞噬后不能降解肿瘤细胞的具体机制,表明liquiritin可以通过抑制NOX2来促进Mϕ降解肿瘤细胞的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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