PO.CT01.05 · 临床试验
胚系HFE突变预示胸膜间皮瘤对pegargiminase为基础化疗的精氨酸耗竭产生持久应答
Germline HFE mutations predict for durable response to arginine depletion with pegargiminase-based chemotherapy in pleural mesothelioma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:在随机、安慰剂对照的ATOMIC-Meso II-III期试验中,pegargiminase(ADI-PEG20)为基础的化疗使非上皮样(双相型和肉瘤样)胸膜间皮瘤患者3年总生存率提高了3倍(12%对3%)(AACR 2023,JAMA Oncol 2024)。在此,我们报告一种新型遗传生物标志物,即HFE相关遗传性血色病,作为使用pegargiminase进行癌症精氨酸剥夺治疗持久应答的预测因子。
方法:我们仔细研究了Barts患者队列(该队列招募了ATOMIC-Meso研究入组患者的20.9%[n=52/249]),以识别与延长治疗应答相关的潜在药物基因组学因素。这导致识别出一名携带HFE C282Y变异并完成2年pegargiminase治疗的指示患者。使用CRISPR/Cas9介导的诱变在MSTO间皮瘤细胞系中生成常见HFE变异(C282Y和H63D),随后对突变体和亲本对照进行体外药物敏感性、凋亡、单/双链DNA断裂(SSBs/DSBs)的特征分析,进行RNAseq以解析药物作用机制,并使用异种移植小鼠研究分析体内致瘤性和ADI-PEG20疗效。
结果:该指示患者为C282Y纯合子,在放血治疗其铁过载期间被诊断为肉瘤样间皮瘤。他入组ATOMIC-Meso并意外完成2年pegargiminase治疗,获得持久部分缓解。同一机构仅有另一名患者完成2年pegargiminase治疗并获得持久部分缓解,其为HFE H63D变异杂合子,患双相型间皮瘤。床边到实验室研究证实,使用3D肿瘤球状体模型,MSTO H63D+/-较亲本细胞对ADI-PEG20敏感性增加,表现为caspase 3激活、PARP切割、更高的Annexin V染色以及SSBs和DSBs上调。为理解对ADI-PEG20细胞毒性增强的机制,我们在MSTO H63D+/-和MSTO WT细胞中进行了RNA-Seq。这一分析识别出在ADI-PEG20处理的MSTO H63D+/-细胞中特异性地存在AP-1信号传导调控和Bcl-2抑制,至48小时时出现。在MSTO H63D+/-相比MSTO WT细胞中证实了Bcl-2家族的差异性调控触发凋亡增强。最后,使用小鼠异种移植,MSTO H63D+/-肿瘤相比MSTO WT亲本对照肿瘤对ADI-PEG20单药治疗表现出更早的敏感性(14天对28天)。MSTO H63D+/-和MSTO WT肿瘤之间生存无差异,尽管MSTO WT细胞存在具有统计学意义的更早生长优势。
结论:在Barts ATOMIC-Meso患者队列中,我们的数据揭示突变型HFE作为一种新型药物基因组学生物标志物,可增强对pegargiminase为基础的间皮瘤化疗的敏感性并延长缓解。对pegargiminase持久应答者的进一步分析正在进行中,并计划开展以HFE作为选择生物标志物的前瞻性临床试验。
查看英文原文 English abstract
Background: Pegargiminase (ADI-PEG20)-based chemotherapy quadrupled the overall survival of patients at 3 years (12% versus 3%) with non-epithelioid (biphasic and sarcomatoid) pleural mesothelioma in the randomized placebo-controlled ATOMIC-Meso phase 2-3 trial (AACR 2023, JAMA Oncol 2024). Here, we report a novel genetic biomarker, namely HFE -related hereditary haemochromatosis as a predictor for durable response to arginine deprivation therapy for cancer using pegargiminase.
Methods: We scrutinised the Barts patient cohort which recruited 20.9% (n=52/249) of patients enrolled on the ATOMIC-Meso study to identify potential pharmacogenomic factors linked to a prolonged therapeutic response. This led to identification of an index patient with the HFE C282Y variant who completed 2 years of pegargiminase. Common HFE variants (C282Y and H63D) were generated in the MSTO mesothelioma cell line using CRISPR/Cas9-mediated mutagenesis, followed by characterisation of mutant and parental controls relating to in vitro drug sensitivity, apoptosis, single/double strand DNA breaks (SSBs/DSBs), performed RNAseq to dissect the mechanism of drug action, and analyzed in vivo tumorigenesis and ADI-PEG20 efficacy using xenograft murine studies.
Results: The index patient was homozygous for C282Y and was diagnosed with sarcomatoid mesothelioma during venesection to manage his iron overload. He was enrolled on ATOMIC-Meso and unexpectedly completed 2 years of pegargiminase with a durable partial response. Only one other patient at the same institution completed 2 years of pegargiminase with a durable partial response and was heterozygous for the HFE H63D variant with a biphasic mesothelioma. Bed-to-benchside studies confirmed increased ADI-PEG20 sensitivity in MSTO H63D+/- compared to parental cells using a 3D tumor spheroid model as evidenced by caspase 3 activation, PARP cleavage, higher Annexin V staining and upregulation of SSBs and DSBs. To understand the mechanism of enhanced cytotoxicity to ADI-PEG20 we performed RNA-Seq in MSTO H63D+/- and MSTO WT cells. This identified regulation of AP-1 signalling and suppression of Bcl-2 specifically in ADI-PEG20 treated MSTO H63D+/- cells by 48hrs. Differential modulation of the Bcl-2 family triggering enhanced apoptosis was confirmed in the MSTO H63D+/- compared to MSTO WT cells. Finally, MSTO H63D+/- tumors displayed earlier sensitivity to ADI-PEG20 monotherapy compared to MSTO WT tumor parental controls (14 days vs. 28 days) using murine xenografts. There was no difference in survival between MSTO H63D+/- and MSTO WT tumors, although there was a statistically significant earlier growth advantage for MSTO WT cells.
Conclusions: In the Barts ATOMIC-Meso patient cohort, our data reveal mutant HFE as a novel pharmacogenomic biomarker for enhanced sensitivity and prolonged remission to pegargiminase-based chemotherapy for mesothelioma. Further analyses of durable responders to pegargiminase are ongoing with prospective clinical trials planned using HFE as a selection biomarker.
利益披露 Disclosure
P. W. Szlosarek,
Polaris Pharmaceuticals Inc ).
G. Field, None..
I. Pavlyk, None..
M. Young, None..
M. Allen, None..
J. Carpentier, None..
R. Shah, None..
N. Maskell, None..
D. Houghton, None.
A. Johnston,
Polaris Pharmaceuticals Inc Employment, Stock.
J. Bomalaski,
Polaris Pharmaceuticals Inc Employment, Stock, Stock Option, Patent.
L. Jones, None..
M. Sheaff, None.