Paulina García de Alba Graue , Mohamed Abdouh , Alicia Goyeneche , Julia Valdemarin Burnier , Miguel N. Burnier
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引用次数: 0
摘要
葡萄膜黑色素瘤(UM)是成人最常见的原发性眼内恶性肿瘤。虽然罕见,但它是一种致命的肿瘤,50% 以上的病例长期预后为死亡。它的特点是 GNAQ 和 GNA11 基因频繁(∼80%)发生驱动突变,而这两个基因都是由半胱氨酰白三烯受体(CYSLTRs)激活的。CYSLTR1 上调并参与了多种癌症的进展。在本研究中,我们试图确定 CYSLTR1 在 31 例人类 UM 标本和细胞系(3 例原发性和 1 例转移性)中的表达水平,并通过分析细胞代谢活性、细胞汇合度和细胞凋亡水平,确定其在这些细胞的增殖和存活中的作用。我们发现,所有分析的 UM 标本和细胞均高水平表达 CYSLTR1。值得注意的是,使用反向激动剂 MK571 对该受体进行药理阻断,可降低所有分析的 UM 细胞系的生长和代谢活性,并增加细胞凋亡。我们提供的证据表明,CYSLTR1 在人类 UM 中表达,并在 UM 进展行为中发挥重要作用。我们的数据凸显了靶向 CYSLTR1 在控制 UM 进展中的潜在益处。
CYSLTR1 antagonism displays potent anti-tumor effects in uveal melanoma
Uveal Melanoma (UM) is the most common primary intraocular malignancy in adults. Although rare, it is a deadly tumor, with a long-term prognosis of death occurring in more than 50% of the cases. It is characterized by frequent (∼80%) driver mutations in GNAQ and GNA11 genes, both of which are activated by cysteinyl leukotriene receptors (CYSLTRs). CYSLTR1 is upregulated and participated in the progression of several cancers. In the present study, we sought to determine the expression levels of CYSLTR1 in 31 human UM specimens and cell lines (3 primary and 1 metastatic), and its role in the proliferation and viability of these cells by analyzing cell metabolic activity, cell confluence and apoptosis levels. We show that all analyzed UM specimens and cells expressed CYSLTR1 at high levels. Notably, the pharmacological blockage of this receptor, using the inverse agonist MK571, reduced the growth and metabolic activity, and increased the apoptotic cell death of all analyzed UM cell lines. We provide evidence that CYSLTR1 is expressed in human UM and plays a significant role in UM progression behavior. Our data highlight the potential beneficial effects of targeting CYSLTR1 in the control of UM progression.
期刊介绍:
The primary goal of Experimental Eye Research is to publish original research papers on all aspects of experimental biology of the eye and ocular tissues that seek to define the mechanisms of normal function and/or disease. Studies of ocular tissues that encompass the disciplines of cell biology, developmental biology, genetics, molecular biology, physiology, biochemistry, biophysics, immunology or microbiology are most welcomed. Manuscripts that are purely clinical or in a surgical area of ophthalmology are not appropriate for submission to Experimental Eye Research and if received will be returned without review.