Anlotinib induces apoptosis and second growth/mitosis phase block in cisplatin-resistant ovarian cancer cells via the aurora kinase A/p53 pathway.

IF 2.7 4区 医学 Q3 TOXICOLOGY Human & Experimental Toxicology Pub Date : 2023-01-01 DOI:10.1177/09603271231185774
Hongli Wang, Yu Wang
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引用次数: 1

Abstract

Background: Cisplatin (DDP) resistance in ovarian cancer (OC) patients usually leads to treatment failure and increased mortality. Anlotinib has been shown to improve progression-free survival and overall survival in patients with platinum-resistant ovarian cancer, but the mechanism is unclear. This study aims to explore the mechanism by which anlotinib ameliorates platinum resistance in OC cells.

Methods: Cell viability was detected by the 3-4,5-dimethylthiazol-2,5-diphenyltetrazolium bromide (MTT) method, and the apoptosis rate and changes in the cell cycle distribution were evaluated by flow cytometry. Bioinformatics analysis was used to predict the potential gene target of anlotinib in DDP-resistance SKOV3 cells, and its expression was verifies it by RT-qPCR, western blotting and immunofluorescence staining. Finally, ovarian cancer cells overexpressing AURKA were constructed, and the predicted results were verified by animal experiments.

Results: Anlotinib effectively induced apoptosis and G2/M arrest in OC cells and decreased the proportion of EdU-positive cells. AURKA was identified as a possible key target of anlotinib for inhibiting tumorigenic behaviors in SKOV3/DDP cells. Through combined immunofluorescence and western blot analyses, it was demonstrated that anlotinib could effectively inhibit the protein expression of AURKA and upregulate the expression of p53/p21, CDK1, and Bax protein. After overexpression of AURKA in OC cells, the induction of apoptosis and G2/M arrest by anlotinib were significantly inhibited. Anlotinib also effectively inhibited the growth of tumors in nude mice injected with OC cells.

Conclusions: This study demonstrated that anlotinib can induce apoptosis and G2/M arrest in cisplatin-resistant ovarian cancer cells through the AURKA/p53 pathway.

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Anlotinib通过极光激酶A/p53通路诱导顺铂耐药卵巢癌细胞凋亡和第二生长/有丝分裂期阻滞。
背景:卵巢癌(OC)患者对顺铂(DDP)耐药通常导致治疗失败和死亡率增加。Anlotinib已被证明可改善铂耐药卵巢癌患者的无进展生存期和总生存期,但其机制尚不清楚。本研究旨在探讨anlotinib改善OC细胞铂耐药的机制。方法:采用3-4,5-二甲基噻唑-2,5-二苯基溴化四唑(MTT)法检测细胞活力,流式细胞术检测细胞凋亡率及细胞周期分布变化。利用生物信息学分析预测anlotinib在ddp耐药SKOV3细胞中的潜在基因靶点,并通过RT-qPCR、western blotting和免疫荧光染色对其表达进行验证。最后构建过表达AURKA的卵巢癌细胞,并通过动物实验验证了预测结果。结果:Anlotinib有效诱导OC细胞凋亡和G2/M阻滞,降低edu阳性细胞比例。AURKA可能是anlotinib抑制SKOV3/DDP细胞致瘤行为的关键靶点。免疫荧光和western blot联合分析表明,anlotinib能有效抑制AURKA蛋白的表达,上调p53/p21、CDK1、Bax蛋白的表达。在OC细胞中过表达AURKA后,anlotinib对细胞凋亡的诱导和G2/M阻滞作用均被显著抑制。Anlotinib也能有效抑制裸鼠OC细胞的肿瘤生长。结论:本研究表明,anlotinib可通过AURKA/p53通路诱导顺铂耐药卵巢癌细胞凋亡和G2/M阻滞。
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来源期刊
CiteScore
5.70
自引率
3.60%
发文量
128
审稿时长
2.3 months
期刊介绍: Human and Experimental Toxicology (HET), an international peer reviewed journal, is dedicated to publishing preclinical and clinical original research papers and in-depth reviews that comprehensively cover studies of functional, biochemical and structural disorders in toxicology. The principal aim of the HET is to publish timely high impact hypothesis driven scholarly work with an international scope. The journal publishes on: Structural, functional, biochemical, and molecular effects of toxic agents; Studies that address mechanisms/modes of toxicity; Safety evaluation of novel chemical, biotechnologically-derived products, and nanomaterials for human health assessment including statistical and mechanism-based approaches; Novel methods or approaches to research on animal and human tissues (medical and veterinary patients) investigating functional, biochemical and structural disorder; in vitro techniques, particularly those supporting alternative methods
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