安罗替尼通过负向调节 PI3K/Akt 信号通路抑制人食管癌 TE-1 细胞的生长

Yueli Liu, Fan Li, Qiongyu Wang, Yunfei Zhang, Shuhong Tian, Biao Li
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摘要

安罗替尼可有效治疗多种恶性肿瘤,但其对食管癌的抗肿瘤作用尚不明确。本研究旨在探讨其对食管癌的影响及其内在机制。安罗替尼和5-氟尿嘧啶+顺铂(5-FU+DDP)分别用于人食管癌TE- 1细胞异种移植小鼠模型,每3天一次。在每次治疗前和实验结束时测量肿瘤大小和体重。使用 TE- 1 细胞进行体外研究,以检验安罗替尼的作用。对细胞活力、迁移、增殖、凋亡、细胞周期、其调控蛋白和转录组变化进行了分析。安罗替尼减少了体内肿瘤大小、肿瘤重量以及肿瘤重量与体重之比。安罗替尼降低了 TE- 1 细胞的活力,其 50%生长抑制浓度为 9.454 μM,持续 24 小时,诱导细胞凋亡,并使 TE- 1 细胞周期停滞在 S 期。它在负向调节 PI3K/Akt 信号通路的同时,抑制了细胞的迁移和增殖。经安洛替尼处理后,P21、Bax的表达增强,而细胞周期蛋白A1、细胞周期蛋白B1、CDK1、PI3K、Akt、p-Akt和Bcl-2的表达降低。安罗替尼通过负向调节PI3K/Akt信号通路,从而改变增殖、凋亡和细胞周期相关蛋白的表达,对人食管癌TE- 1细胞具有抗肿瘤活性。
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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Anlotinib inhibits growth of human esophageal cancer TE-1 cells by negative regulating PI3K/Akt signaling pathway

Anlotinib is effective in treatment of many kinds of malignant cancer, but its antineoplastic effects on esophageal cancer remains unclear. This study aims to investigate its impact on esophageal cancer and the underlying mechanisms. Anlotiniband 5-fluorouracil + cisplatin (5-FU + DDP) was administered separately to human esophageal cancer TE- 1 cells tumor xenograft mouse models every 3 days. Tumor size and body weight were measured before each treatment and at the end of the experiment. In vitro studies were conducted using TE- 1 cells to examine the effects of Anlotinib. Cell viability, migration, proliferation, apoptosis, cell cycle, their regulatory proteins and the transcriptomic changes were analyzed. Anlotinib reduced tumor size, tumor weight, and the ratio of tumor weight to body weight in vivo. It decreased the viability of TE- 1 cells, with a 50% growth-inhibitory concentration of 9.454 μM for 24 h, induced apoptosis, and arrested TE- 1 cell cycle in the S phase. It inhibited migration and proliferation while negatively regulating the PI3K/Akt signaling pathway. Enhanced expressions of P21, Bax, and lowered expressions of cyclin A1, cyclin B1, CDK1, PI3K, Akt, p-Akt, and Bcl-2 were observed after Anlotinib treatment. Anlotinib exhibits antineoplastic activity against human esophageal cancer TE- 1 cells by negatively regulating the PI3K/Akt signaling pathway, consequently altering the expressions of proteins related to proliferation, apoptosis, and the cell cycle.

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