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免疫学和分子谱与克唑替尼治疗腺泡状软组织肉瘤反应的相关性:一项与 EORTC 90101“CREATE”试验相关的探索性研究

英文原题:Correlation of Immunological and Molecular Profiles with Response to Crizotinib in Alveolar Soft Part Sarcoma: An Exploratory Study Related to the EORTC 90101 "CREATE" Trial.

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Correlation of Immunological and Molecular Profiles with Response to Crizotinib in Alveolar Soft Part Sarcoma: An Exploratory Study Related to the EORTC 90101 "CREATE" Trial.

PubMed 2022/05/19(内容时间) Int J Mol Sci Q1 · IF 5.6(JCR 2025)

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中文摘要

肺泡软部分肉瘤(ASPS)是一种罕见的软组织肉瘤亚型,其特征是不平衡易位,导致ASPSCR1-TFE3融合,从而在转录水平上调MET表达。欧洲癌症研究与治疗组织(EORTC)90101“CREATE”II期试验评估了MET抑制剂crizotinib在ASPS患者中的疗效,仅取得了有限的抗肿瘤活性。

我们对本试验中收集的ASPS组织样本进行了全面的分子分析,以识别与治疗结局相关的潜在生物标志物。使用包含47例ASPS病例的组织芯片,通过多重免疫荧光对肿瘤微环境进行表征。从34份可用肿瘤样本中提取DNA,通过低覆盖度全基因组测序和全外显子组测序分析,以检测复发性基因拷贝数改变(CNA)和突变。通路富集分析用于识别ASPS肉瘤发生中的疾病相关通路。Kaplan-Meier估计、Cox回归和Fisher精确检验用于将组织病理学和分子发现与crizotinib治疗相关的临床数据进行关联,旨在识别与患者结局相关的潜在因素。肿瘤微环境表征显示,分别有10例和2例肿瘤存在PD-L1和CTLA-4,所有标本中均不存在PD-1。

除CD68外,其他免疫标志物很少表达,提示ASPS中TIL(肿瘤浸润淋巴细胞)水平较低。通过CNA分析,我们检测到多个广泛和局灶性改变。最常见的改变是44%的病例中染色体区域1p36.32缺失。染色体区域1p36.32、1p33、1p22.2 和 8p 与较短的无进展生存期相关。使用全外显子组测序,发现 13 个癌症相关基因在至少三例中发生突变。通路富集分析确定了 NOTCH 信号通路、染色质组织和 SUMOylation 通路中的遗传改变。NOTCH4 胞内结构域失调与不良结局相关,而 beta-catenin/TCF 复合物的失活与接受 crizotinib 治疗的患者结局改善相关。ASPS 以分子异质性为特征。

我们识别了可能预测 crizotinib 治疗期间治疗结局的遗传异常,并为 ASPS 的生物学提供了额外见解,为改善这种极为罕见恶性肿瘤的治疗方法铺平了道路。

展开英文摘要原文

Alveolar soft part sarcoma (ASPS) is a rare subtype of soft tissue sarcoma characterized by an unbalanced translocation, resulting in ASPSCR1-TFE3 fusion that transcriptionally upregulates MET expression. The European Organization for Research and Treatment of Cancer (EORTC) 90101 "CREATE" phase II trial evaluated the MET inhibitor crizotinib in ASPS patients, achieving only limited antitumor activity.

We performed a comprehensive molecular analysis of ASPS tissue samples collected in this trial to identify potential biomarkers correlating with treatment outcome. A tissue microarray containing 47 ASPS cases was used for the characterization of the tumor microenvironment using multiplex immunofluorescence. DNA isolated from 34 available tumor samples was analyzed to detect recurrent gene copy number alterations (CNAs) and mutations by low-coverage whole-genome sequencing and whole-exome sequencing. Pathway enrichment analysis was used to identify diseased-associated pathways in ASPS sarcomagenesis. Kaplan-Meier estimates, Cox regression, and the Fisher's exact test were used to correlate histopathological and molecular findings with clinical data related to crizotinib treatment, aiming to identify potential factors associated with patient outcome. Tumor microenvironment characterization showed the presence of PD-L1 and CTLA-4 in 10 and 2 tumors, respectively, and the absence of PD-1 in all specimens.

Apart from CD68, other immunological markers were rarely expressed, suggesting a low level of tumor-infiltrating lymphocytes in ASPS. By CNA analysis, we detected a number of broad and focal alterations. The most common alteration was the loss of chromosomal region 1p36. 32 in 44% of cases. The loss of chromosomal regions 1p36. 32, 1p33, 1p22. 2, and 8p was associated with shorter progression-free survival.

Using whole-exome sequencing, 13 cancer-associated genes were found to be mutated in at least three cases. Pathway enrichment analysis identified genetic alterations in NOTCH signaling, chromatin organization, and SUMOylation pathways. NOTCH4 intracellular domain dysregulation was associated with poor outcome, while inactivation of the beta-catenin/TCF complex correlated with improved outcome in patients receiving crizotinib. ASPS is characterized by molecular heterogeneity.

We identify genetic aberrations potentially predictive of treatment outcome during crizotinib therapy and provide additional insights into the biology of ASPS, paving the way to improve treatment approaches for this extremely rare malignancy.

论文信息

作者
Lee CJ、Modave E、Boeckx B、Kasper B、Aamdal S、Leahy MG、Rutkowski P、Bauer S
单位
Laboratory of Experimental Oncology, Department of Oncology, KU Leuven, 3000 Leuven, Belgium.Belgium
期刊
International journal of molecular sciences2022 May 19
原文标识
PubMed 35628499 · DOI 10.3390/ijms23105689