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米托蒽醌通过调控Akt/FOXO3信号通路诱导骨肉瘤细胞凋亡。

Mitoxantrone induces apoptosis in osteosarcoma cells through regulation of the Akt/FOXO3 pathway.

作者信息

Park See-Hyoung, Lee Jongsung, Kang Mi-Ae, Jang Kyu Yun, Kim Jung Ryul

机构信息

Department of Bio and Chemical Engineering, Hongik University, Sejong, Chungcheong 30016, Republic of Korea.

Department of Genetic Engineering, Sungkyunkwan University, Suwon, Gyeonggi 16419, Republic of Korea.

出版信息

Oncol Lett. 2018 Jun;15(6):9687-9696. doi: 10.3892/ol.2018.8547. Epub 2018 Apr 20.

Abstract

The outcome of chemotherapy for osteosarcoma have improved during the past decade and more patients have access to combination chemotherapy, but there has been no significant clinical progress in the patient survival rate. Recently, forkhead-box O3 (FOXO3) was identified as a pivotal transcription factor responsible for the transcriptional regulation of genes associated with suppression of cancer. The purpose of the present study was to screen small chemicals activating FOXO3 and elucidate their underlying mechanism. Using a drug discovery platform based on the phosphorylation status of FOXO3 in osteosarcoma cells, mitoxantrone (MTZ), a type of DNA-damaging agent, was selected as a possible FOXO3 activator from the food and drug administration-approved drug library. MTZ treatments significantly inhibited the phosphorylation level of Akt-pS473 and caused nuclear localization of FOXO3 in osteosarcoma cells. MTZ treatment inhibited proliferation in osteosarcoma cells , whereas silencing FOXO3 potently attenuates MTZ-mediated apoptosis in osteosarcoma cells. Taken together, the results indicated that MTZ induces apoptosis in osteosarcoma cells through an Akt/FOXO3-dependent mechanism.

摘要

在过去十年中,骨肉瘤化疗的结果有所改善,更多患者能够接受联合化疗,但患者生存率并无显著的临床进展。最近,叉头框O3(FOXO3)被确定为一种关键转录因子,负责对与癌症抑制相关基因的转录调控。本研究的目的是筛选激活FOXO3的小分子化合物,并阐明其潜在机制。利用基于骨肉瘤细胞中FOXO3磷酸化状态的药物发现平台,从食品药品监督管理局批准的药物库中选择了一种DNA损伤剂米托蒽醌(MTZ)作为可能的FOXO3激活剂。MTZ处理显著抑制骨肉瘤细胞中Akt-pS473的磷酸化水平,并导致FOXO3在细胞核内定位。MTZ处理抑制骨肉瘤细胞增殖,而沉默FOXO3则能有效减弱MTZ介导的骨肉瘤细胞凋亡。综上所述,结果表明MTZ通过Akt/FOXO3依赖性机制诱导骨肉瘤细胞凋亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28bd/6004704/637c86cc2913/ol-15-06-9687-g00.jpg

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