PO.CH01.04 · 化学

Polo样激酶4抑制通过调控凋亡和上皮-间质转化增强非小细胞肺癌的放射敏感性

Polo-like kinase 4 inhibition enhances radiosensitivity in non-small cell lung cancer via apoptosis and epithelial-mesenchymal transition regulation

编号 6393 展板 25 时间 4/21 02:00–05:00 区域 Section 38 主讲 Hye Won Lee, MD
分会场 Drug Delivery
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作者与单位 Authors & Affiliations

Hye Won Lee1, Shin Kim2, Jeong-Woo Hwang2, Eun-Young Gong1, Hyowon Hong3, SangJun Byun1, Sung Uk Bae1

1Keimyung University School of Medicine, Daegu, Korea, Republic of,2Keimyung University, Daegu, Korea, Republic of,3Keimyung University Dongsan Medical Center, Daegu, Korea, Republic of

摘要 Abstract

中文摘要
非小细胞肺癌(NSCLC)仍是全球癌症相关死亡的主要原因之一。放疗(RT)是治疗的支柱手段;然而,放射抵抗的频繁发生限制了其治疗疗效。Polo样激酶4(PLK4)是中心粒复制和中心体完整性的主要调控因子,已被认为与染色体不稳定、DNA损伤反应(DDR)和上皮-间质转化(EMT)相关。因此,靶向PLK4可能代表一种克服放射抵抗的新策略。在本研究中,我们研究了选择性PLK4抑制剂CFI-400945在接受RT的NSCLC细胞中的作用。与单一治疗相比,CFI-400945联合RT治疗显著降低了细胞活力和克隆形成存活率。在机制上,CFI-400945放大了凋亡信号,p53和裂解的PARP1显著上调。此外,PLK4抑制通过降低RT诱导的p-AKT和cyclin B1表达水平促进了G2/M细胞周期阻滞。此外,PLK4抑制增强了RT诱导的DNA损伤,表现为gammaH2AX表达增加。重要的是,单用RT促进了EMT进展,其特征为E-cadherin降低、N-cadherin和vimentin表达增加以及迁移能力增强。这些效应被CFI-400945显著逆转,表明PLK4抑制减弱了RT诱导的EMT进展。总之,这些发现表明,CFI-400945对PLK4的抑制通过增强DNA损伤和凋亡同时抑制RT诱导的EMT,使NSCLC细胞对RT敏感。我们的结果凸显了PLK4作为连接中心体异常、DDR和EMT的关键调控因子,并提示将PLK4抑制与RT联合可能提供一种克服NSCLC放射抵抗的有前景的治疗方法。
查看英文原文 English abstract
Non-small cell lung cancer (NSCLC) remains one of the leading causes of cancer-related mortality worldwide. Radiotherapy (RT) is a mainstay of treatment; however, the frequent development of radioresistance limits its therapeutic efficacy. Polo-like kinase 4 (PLK4), a master regulator of centriole duplication and centrosome integrity, has been implicated in chromosomal instability, DNA damage responses (DDR), and epithelial-mesenchymal transition (EMT). Therefore, targeting PLK4 may represent a novel strategy to overcome radioresistance. In this study, we investigated the effects of the selective PLK4 inhibitor CFI-400945 in NSCLC cells exposed to RT. CFI-400945 treatment significantly reduced cell viability and clonogenic survival in combination with RT compared to either treatment alone. Mechanistically, CFI-400945 amplified apoptotic signaling, with marked upregulation of p53 and cleaved PARP1. In addition, PLK4 inhibition promoted G2/M cell cycle arrest by reducing RT-induced p-AKT and cyclin B1 expression level. Furthermore, PLK4 inhibition enhanced RT-induced DNA damage as indicated by increased gammaH2AX expression. Importantly, RT alone promoted EMT progression, characterized by reduced E-cadherin and increased N-cadherin and vimentin expression, as well as enhanced migratory capacity. These effects were significantly reversed by CFI-400945, indicating that PLK4 inhibition attenuates RT-induced EMT progression. Collectively, these findings demonstrate that PLK4 inhibition with CFI-400945 sensitizes NSCLC cells to RT by augmenting DNA damage and apoptosis while suppressing RT-induced EMT. Our results highlight PLK4 as a critical regulator linking centrosome abnormalities, DDR, and EMT, and suggest that combining PLK4 inhibition with RT may provide a promising therapeutic approach to overcome radioresistance in NSCLC.
利益披露 Disclosure
H. Lee, None.. E. Gong, None.. S. Bae, None.

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