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Altered calcium regulation by thermosensitive transient receptor potential channels in etoposide-resistant WERI-Rb1 retinoblastoma cells

机译:依托泊苷抗性WERI-Rb1视网膜母细胞瘤细胞中热敏瞬时受体电位通道改变钙调节

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Differences in transient receptor potential (TRP) and cannabinoid receptor type 1 (CB1) expression levels can serve as prognostic factors for retinoblastoma (RB) tumor progression. We hypothesized in RB tissue that such differences are also indicators of whether or not they are sensitive to etoposide. Accordingly, we compared in malignant etoposide-sensitive and etoposide-resistant WERI-Rb1 cells TRPV1, TRPM8 and TRPA1 subtype and CB1 gene expression pattern levels and accompanying functional activity using quantitative real-time RT-PCR, immunohistochemistry, immunofluorescence microscopy, calcium imaging as well as patch-clamp technology. Gene expression patterns were evaluated in enucleated human RB tissues (n=4). Both etoposide-resistant and etoposide-sensitive WERI-Rb1 cells expressed all of the aforementioned channels based on responses to known activators and thermal challenges. However, TRPA1 was absent in the etoposide-resistant counterpart. Even though both types of RB cells express TRPV1 as well as TRPM8 and CB1, the capsaicin (50μM) (CAP)-induced Ca 2+ rise caused by TRPV1 activation was prompt and transient only in etoposide-resistant RB cells (n=8). In this cell type, the inability of CB1 activation (10μM WIN) to suppress Ca 2+ responses to CAP (50μM; n=4) may be attributable to the absence of TRPA1 gene expression. Therefore, using genetic approaches to upregulate TRPA1 expression could provide a means to induce etoposide sensitivity and suppress RB cell tumorigenesis.
机译:瞬时受体电位(TRP)和1型大麻素受体(CB1)表达水平的差异可作为视网膜母细胞瘤(RB)肿瘤进展的预后因素。我们在RB组织中假设这种差异也是它们对依托泊苷是否敏感的指标。因此,我们比较了恶性依托泊苷敏感性和依托泊苷抗性的WERI-Rb1细胞中TRPV1,TRPM8和TRPA1亚型和CB1基因表达模式的水平以及使用定量实时RT-PCR,免疫组织化学,免疫荧光显微镜检查,钙成像的伴随功能以及膜片钳技术。在去核的人RB组织中评估基因表达模式(n = 4)。依托泊苷抗性和依托泊苷敏感性的WERI-Rb1细胞均基于对已知激活剂的反应和热挑战表达所有上述通道。但是,依托泊苷抗性对应物中不存在TRPA1。即使两种类型的RB细胞都表达TRPV1以及TRPM8和CB1,辣椒素(50μM)(CAP)诱导的由TRPV1激活引起的Ca 2+升高也仅在依托泊苷耐药的RB细胞中迅速且短暂(n = 8) 。在这种细胞类型中,CB1激活(10μMWIN)无法抑制Ca 2+对CAP的反应(50μM; n = 4)可能是由于TRPA1基因表达的缺乏。因此,使用遗传方法上调TRPA1表达可以提供诱导依托泊苷敏感性和抑制RB细胞肿瘤发生的手段。

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