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阿糖胞苷耐药的U937白血病细胞中自噬增强及其作为克服耐药靶点的潜力

Enhanced autophagy in cytarabine arabinoside-resistant U937 leukemia cells and its potential as a target for overcoming resistance.

作者信息

Cheong June-Won, Kim Yundeok, Eom Ju In, Jeung Hoi-Kyung, Min Yoo Hong

机构信息

Department of Internal Medicine, Yonsei University College of Medicine, Seoul 120‑752, Republic of Korea.

Medical Research Center, Yonsei University College of Medicine, Seoul 120‑752, Republic of Korea.

出版信息

Mol Med Rep. 2016 Apr;13(4):3433-40. doi: 10.3892/mmr.2016.4949. Epub 2016 Feb 29.

Abstract

Autophagy is a lysosomal degradation mechanism that is essential for cell survival, differentiation, development, and homeostasis. Autophagy protects cells from various stresses, including protecting normal cells from harmful metabolic conditions, and cancer cells from chemotherapeutics. In the current study, a cytarabine arabinoside (Ara‑C)‑sensitive U937 leukemia cell line and an Ara‑C‑resistant U937 (U937/AR) cell line were assessed for baseline autophagy activity by investigating the LC3‑I conversion to LC3‑II, performing EGFP‑LC3 puncta, an acidic autophagolysosome assay, and measuring the expression of various autophagy‑related genes. The results demonstrated significantly higher autophagic activity in the U937/AR cells compared with the U937 cells, when the cells were cultured with or without serum. Furthermore, an increase in the autophagic activity in starved U937/AR cells was demonstrated, compared with that in the starved U937 cells. Administration of an autophagy inhibitor demonstrated no change in cell death in the two cell lines when cultured with serum, however, it induced cell death regardless of the Ara‑C sensitivity when the cell lines were cultured without serum. In addition, the U937 cells demonstrated an Ara‑C resistance when cultured without serum. Co‑treatment with Ara‑C and the autophagy inhibitor significantly induced cell death in the U937/AR and Ara‑C‑sensitive U937 cells. In conclusion, autophagy serves an important role in protecting U937 cells from Ara‑C and in the development of Ara‑C resistance. Inhibition of autophagy combined with the Ara‑C treatment in the U937 cells augmented the anti‑leukemic effect of Ara‑C and overcame Ara‑C resistance, suggesting that autophagy may be an important therapeutic target to further improve the treatment outcome in patients with acute myeloid leukemia.

摘要

自噬是一种溶酶体降解机制,对细胞存活、分化、发育及内环境稳态至关重要。自噬保护细胞免受各种应激,包括保护正常细胞免受有害代谢状况影响,以及保护癌细胞免受化疗药物作用。在本研究中,通过研究LC3-I向LC3-II的转化、进行EGFP-LC3斑点分析、酸性自噬溶酶体分析以及测量各种自噬相关基因的表达,对阿糖胞苷(Ara-C)敏感的U937白血病细胞系和Ara-C耐药的U937(U937/AR)细胞系的基础自噬活性进行了评估。结果表明,无论细胞是否在有血清条件下培养,U937/AR细胞中的自噬活性均显著高于U937细胞。此外,与饥饿的U937细胞相比,饥饿的U937/AR细胞的自噬活性有所增加。当在有血清条件下培养时,给予自噬抑制剂显示两种细胞系的细胞死亡无变化,然而,当细胞系在无血清条件下培养时,无论Ara-C敏感性如何,自噬抑制剂均诱导细胞死亡。此外,U937细胞在无血清培养时表现出Ara-C耐药性。Ara-C与自噬抑制剂联合处理显著诱导U937/AR和Ara-C敏感的U937细胞死亡。总之,自噬在保护U937细胞免受Ara-C作用及Ara-C耐药性形成中起重要作用。在U937细胞中抑制自噬并联合Ara-C治疗增强了Ara-C的抗白血病作用并克服了Ara-C耐药性,这表明自噬可能是进一步改善急性髓系白血病患者治疗结局的重要治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/916b/4805098/fb1a6b5613a7/MMR-13-04-3433-g00.jpg

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