PO.CL07.02 · 临床研究
claudin 18.2作为胃癌进展中潜在驱动因子的新兴作用
The emerging role of claudin 18.2 as a potential driver in gastric cancer progression
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
胃癌(GC)是对人类健康影响最大的癌症之一。由于其强侵袭性和缺乏根治性疗法,研究正致力于寻找新的分子靶点和新的治疗策略。Claudin 18.2是一种由正常胃上皮表达的紧密连接蛋白。在恶性转化过程中,它暴露于整个肿瘤细胞表面,成为一个可及且可成药的靶点。然而,其在肿瘤进展和增殖中的作用研究甚少,部分原因是商业化可得的CLDN18.2表达细胞系稀缺。借助我们珍贵且经分子注释的GC患者来源异种移植(PDX)平台(其中包含约200个原代细胞系和类器官),我们通过RNA-Seq分析评估了Claudin 18.2的表达,以中位表达值作为分类阈值。RNA-seq结果在代表性PDX上通过实时定量PCR(Real-Time-qPCR)和免疫组化进行了验证。此外,在来源于低、中、高表达PDX的GC原代细胞系中评估了CLDN18.2表达(Real-Time-qPCR、Western Blot和免疫荧光)。在我们的分析中,我们聚焦于四个低表达(GTR181、GTR031、GTR498、GTR233)、三个中表达(GTR571、GTR797、GTR435)和三个高表达(GTR789、GTR568、GTR816)的CLDN18.2细胞系。为探究CLDN18.2作为胃癌驱动因子的潜在细胞自主作用,我们在中表达和高表达细胞系中沉默了CLDN18.2基因。在高表达细胞中,与其野生型对照相比,CLDN18.2沉默降低了细胞增殖,而在中表达细胞中未观察到显著差异,提示高表达模型对CLDN18.2成瘾。为进一步支持CLDN18.2作为高表达GC原代细胞系潜在驱动因子的作用,我们评估了低、中、高表达模型对Zolbetuximab的癌细胞自主敏感性——Zolbetuximab是一种抗CLDN18.2单克隆抗体,在体内能够诱导抗体依赖性细胞毒性(ADCC)和补体依赖性细胞毒性(CDC)。高表达细胞系高度敏感,而在中表达和低表达细胞中敏感性逐渐降低。这些结果提示高表达GC细胞系可能存在CLDN18.2依赖性,支持CLDN18.2作为GC增殖驱动因子的作用。从转化角度来看,我们的初步数据提示,抗CLDN18.2单克隆抗体Zolbetuximab在高CLDN18.2表达肿瘤细胞中的疗效,除其已确立的ADCC和CDC作用外,还可能通过癌细胞自主反应而得以增强。
查看英文原文 English abstract
Gastric cancer (GC) represents one of the most impactful cancers on human health. Because of its strong aggressiveness and lack of resolutive therapies, researches are focusing their efforts on identifying novel molecular targets and new therapeutic strategies. Claudin 18.2 is a tight-junction protein expressed by the normal gastric epithelium. During malignant transformation, it is exposed on the whole tumor cell surface, becoming an accessible and druggable target. However, its role in tumor progression and proliferation is poorly investigated, partly due to the paucity of commercially available CLDN18.2-expressing cell lines. Taking advantage of our precious and molecularly annotated GC Patient-Derived Xenograft (PDX) platform, which includes approximately 200 primary cell lines and organoids, we assessed the Claudin 18.2 expression through RNA-Seq analysis, using the median expression value as the threshold for classification. The RNA-seq results were validated on representative PDXs using Real-Time-qPCR and Immunohistochemistry. Further, CLDN18.2 expression was evaluated in GC primary cell lines derived from low-, median-, and high-expressing PDXs (Real-Time-qPCR, Western Blot, and Immunofluorescence). For our analysis, we focused on four low-expressing (GTR181, GTR031, GTR498, GTR233), three median-expressing (GTR571, GTR797, GTR435), and three high-expressing (GTR789, GTR568, GTR816) CLDN18.2 cell lines. To explore the potential cell-autonomous role of CLDN18.2 as a driver in gastric cancer, we silenced the CLDN18.2 gene in median- and high-expressing cell lines. In high-expressing cells, CLDN18.2 silencing reduced cell proliferation compared with their wild-type counterparts, whereas no significant difference was observed in median-expressing cells, suggesting that high-expressing models are addicted to CLDN18.2. To further support the role of CLDN18.2 as a potential driver in high-expressing GC primary cell lines, we evaluated the cancer cell-autonomous sensitivity to Zolbetuximab - an anti-CLDN18.2 monoclonal antibody capable of inducing, in vivo, Antibody-Dependent Cellular Cytotoxicity (ADCC) and Complement-Dependent Cytotoxicity (CDC) - of low-, median-, and high-expressing models. High-expressing cell lines were highly sensitive, whereas sensitivity progressively decreased in median-expressing and low-expressing cells. These results suggest a potential CLDN18.2 dependency in high expressing GC cell lines, supporting a role for CLDN18.2 as a driver in GC proliferation. From a translational point of view, our preliminary data suggest that the efficacy of the anti-CLDN18.2 monoclonal antibody Zolbetuximab in high CLDN18.2-expressing tumor cells may be enhanced by the cancer cell-autonomous response, in addition to its established ADCC and CDC.
利益披露 Disclosure
L. Negro, None..
E. Boccuni, None..
S. Corso, None..
S. Giordano, None.