PO.ET02.11 · 实验与分子治疗
AURKA抑制在ER+炎性乳腺癌中的治疗潜力
Therapeutic potential of AURKA inhibition in ER+ inflammatory breast cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:ER+炎性乳腺癌(IBC)作为ER+乳腺癌的一个侵袭性亚群,尽管其转移率与三阴性(TN)IBC相当,却未得到充分认识和研究。近期对转移性乳腺癌患者肿瘤的全基因组分析显示,IBC样本中AURKA扩增的频率高于非IBC样本。我们在IBC中的初步研究验证了这些发现,并提示AURKA在TNIBC中发生扩增。我们假设Aurora激酶A(AURKA)是转移性IBC,尤其是ER+ IBC的一个可行治疗靶点,并可能在IBC中与ARID1A和SMARCA4呈现合成致死。
方法:我们回顾了MDACC中临床申请的BostonGene肿瘤检测的RNA和DNA数据,比较IBC与非IBC。使用ER- IBC细胞系检测了AURKA的蛋白表达,并用WST法在IBC细胞系中测试了Alisertib的疗效。用β-半乳糖苷酶染色和ELISA法检测衰老。在一种新型ER+ IBC患者来源异种移植(PDX)模型MDA-BCM-IBC-102中研究了体内疗效。
结果:我们此前使用一个大型多机构IBC数据集(包括用Affymetrix基因表达芯片分析的137例IBC患者组织)证明,按ER+亚型划分的ER应答基因间无明显聚类,且ER+和ER-病例中AURKA表达均较高。比较来自BostonGene的23例ER+ IBC与164例ER+非IBC患者样本,我们发现70%病例存在AURKA扩增,且IBC中AURKA与SMARCA4之间存在统计学显著的负相关关系。免疫印迹检测IBC细胞系中AURKA的表达,证明四种IBC细胞系存在AURKA表达,包括两种HER2+(IBC3和KPL4)和两种三阴性(A3250和SUM149)。较高剂量的Alisertib促进可逆性衰老(经SA-β-gal法检测),ELISA检测的高IL6验证了衰老相关分泌表型。我们的团队与Baylor医学院由Lewis博士领导的PDX项目合作,从一例ER+ IBC患者建立了首个新型ER+ PDX模型。体内研究表明,Alisertib与氟维司群联合治疗在ER+ PDX模型中于第28天时较任一单药治疗均显著抑制肿瘤生长,提示潜在的协同疗效。
结论:AURKA在IBC中常发生扩增,且常与可能预测AURKA靶向合成致死的基因改变相关。在ER+ IBC中,AURKA扩增与假定的合成致死伙伴SMARCA4呈负相关。我们已表征了AURKA高表达的IBC模型,并证明了其对AURKA抑制联合氟维司群的敏感性。TNIBC模型中较高剂量Alisertib所致的衰老可能为靶向耐药或逃逸提供方向。ER+类器官中的进一步研究正在进行。
查看英文原文 English abstract
Background: ER+ inflammatory breast cancer (IBC) is under-appreciated and under-investigated as an aggressive subset of ER+ breast cancer, despite having rates of metastasis comparable to triple negative (TN) IBC. Recent genome-wide profiling of tumors from patients with metastatic breast cancer has shown that IBC samples have a higher frequency of AURKA amplification than non-IBC samples. Our pilot studies in IBC validate these findings and suggest AURKA is amplified in TNIBC. We hypothesize that Aurora Kinase A (AURKA) is a viable therapeutic target in metastatic IBC and in particular ER+ IBC and may exhibit synthetic lethality with ARID1A and SMARCA4 in IBC.
Methods: We reviewed RNA and DNA data from clinically ordered BostonGene tumor assays for IBC versus non-IBC at MDACC. Using ER- IBC cell lines we examined the protein expression of AURKA and Alisertib efficacy was tested using WST assay in IBC cell lines. Senescence was examined using beta-gal staining and ELISA assay. In vivo efficacy was studied in a novel ER+ IBC patient derived xenograft (PDX) MDA-BCM-IBC-102.
Results: We previously demonstrated using a large multi-institutional IBC data set including 137 IBC patient tissues analyzed using Affymetrix gene expression arrays, no clear clustering among ER response genes by ER+ subtypes and high AURKA expression in both ER+ and ER- cases. Comparing 23 ER+ IBC to 164 ER+ NON-IBC patient samples from Boston Gene, we find AURKA is amplified in 70% cases and a statistically significant inverse relationship between AURKA and SMARCA4 in IBC. Expression of AURKA by immunoblotting in IBC cell lines demonstrates AURKA expression in four IBC cell lines, including two HER2+ (IBC3 and KPL4) and two triple negative (A3250 and SUM149). Higher doses of Alisertib promote reversible senescence assayed by SA-betagal assay and high IL6 by ELISA validated senescence associated secretory phenotype. In collaboration with the PDX program at Baylor College of Medicine led by Dr. Lewis, our team has developed first novel ER+ PDX model from an ER+ IBC patient. In vivo study demonstrated combination treatment with Alisertib and fulvestrant significantly inhibited tumor growth in ER+ PDX models at 28 days compared to either monotherapy, indicating potential synergistic efficacy.
Conclusions: AURKA is commonly amplified in IBC and often associated with gene alterations that may predict synthetic lethality to AURKA targeting. In ER+ IBC AURKA amplification is inversely correlated with putative synthetic lethal partner SMARCA4. We have characterized IBC models with high AURKA expression and demonstrated sensitivity to AURKA inhibition with fulvestrant. Senescence at higher doses of Alisertib in TNIBC models may provide a direction for targeting resistance or escape. Further studies in ER+ organoids are ongoing.
利益披露 Disclosure
T. Sharma,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
A. Nasrazadani,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
M. Wencai,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
J. Chen,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
M. Kai,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
B. Lim,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
M. Lewis, None..
L. Dobrolecki, None..
N. Kotlov, None..
O. Baranov, None..
D. Malani, None..
D. Goncharova, None..
A. Evdokimova, None..
F. Paradiso, None..
M. Hensley, None.
R. Layman,
BostonGene Corporation Employment.
Puma Biotechnology Employment.
W. Woodward,
BostonGene Corporation Employment.
Puma Biotechnology Employment.