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甘草素通过 GSK-3β/TNF-α 通路调控自噬抑制小鼠 S180 肿瘤生长的新机制。

Isoliquiritigenin inhibits mouse S180 tumors with a new mechanism that regulates autophagy by GSK-3β/TNF-α pathway.

机构信息

Pharmacological Center, Shandong New Time Pharmaceutical Co., Ltd, Linyi 273400, China; State Key Laboratory of Generic Manufacture Technology of Chinese Traditional Medicine, Lunan Pharmaceutical Group Co., Ltd, Linyi 273400, China.

Ophthalmology Department, Linyin People's Hospital, Linyi 273400, China.

出版信息

Eur J Pharmacol. 2018 Nov 5;838:11-22. doi: 10.1016/j.ejphar.2018.08.033. Epub 2018 Aug 29.

Abstract

In this study, the pharmacokinetic properties and stability of isoliquiritigenin (ILQ) in microsomes were evaluated. The data showed ILQ administrated by i.h had high absorption degree (absolute bioavailability> 90%), and strong elimination ability (average t≈ 67 min). ILQ in rat tissues could reach peak at 0.25 h, and be detected in almost all tissues. In vitro, stability of ILQ in four species liver microsomes were rat > beagle dog > monkey > human > mouse. On the basis of pharmacokinetic (PK) profiles, mechanism of ILQ against S180 was explored. ILQ could not inhibit S180 growth directly in vitro. However, ILQ extremely prohibited S180 tumor volume in vivo. And when TNF-α in NK cells was knocked down by siRNA, ILQ had no inhibiting effect on S180 tumor. ILQ enhanced TNF-α expression in NK cells by FCM detection. Autophagy-associated proteins LC3-II, Beclin-1, ATG-7 were elevated in S180 cells co-cultured with ILQ treating NK cells. When TNF-α was knocked down by siRNA, ILQ could not induce autophagy in S180 tumors. In the NK cells of osteosarcoma patients, TNF-α was negatively correlated with GSK-3β by ELISA detection. ILQ could inhibit GSK-3β expression and further increased p65 and c-Rel expression in NK cells. When GSK-3β was knocked down by siRNA, ILQ did not affect p65 and c-Rel expression. ILQ directly inhibited GSK-3β and then activated the NF-κB pathway to enhance TNF-α expression in NK cells, which could induce autophagy in sarcomas. The present study supplied a new mechanism for ILQ against tumors.

摘要

在这项研究中,评估了异甘草素(ILQ)在微粒体中的药代动力学特性和稳定性。数据显示,ILQ 通过 i.h 给药具有高吸收度(绝对生物利用度>90%)和强消除能力(平均 t≈67 分钟)。ILQ 在大鼠组织中可在 0.25 小时达到峰值,并可在几乎所有组织中检测到。在体外,ILQ 在四种物种肝微粒体中的稳定性为大鼠>比格犬>猴子>人>小鼠。基于药代动力学(PK)特征,探讨了 ILQ 对 S180 的作用机制。ILQ 不能直接在体外抑制 S180 的生长。然而,ILQ 极大地抑制了 S180 肿瘤的体内体积。当 NK 细胞中的 TNF-α 被 siRNA 敲低时,ILQ 对 S180 肿瘤没有抑制作用。FCM 检测显示,ILQ 增强了 NK 细胞中 TNF-α 的表达。自噬相关蛋白 LC3-II、Beclin-1、ATG-7 在与 ILQ 共培养的 S180 细胞中升高。当 TNF-α 被 siRNA 敲低时,ILQ 不能诱导 S180 肿瘤中的自噬。在骨肉瘤患者的 NK 细胞中,ELISA 检测显示 TNF-α 与 GSK-3β 呈负相关。ILQ 可抑制 GSK-3β 的表达,并进一步增加 NK 细胞中 p65 和 c-Rel 的表达。当 GSK-3β 被 siRNA 敲低时,ILQ 不影响 p65 和 c-Rel 的表达。ILQ 直接抑制 GSK-3β,然后激活 NF-κB 通路,增强 NK 细胞中 TNF-α 的表达,从而诱导肉瘤中的自噬。本研究为 ILQ 抗肿瘤提供了新的机制。

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