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Notch signaling is significantly suppressed in basal cell carcinomas and activation induces basal cell carcinoma cell apoptosis

机译:Notch信号在基底细胞癌中被显着抑制并且激活可诱导基底细胞癌细胞凋亡

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摘要

A subset of basal cell carcinomas (BCCs) are directly derived from hair follicles (HFs). In some respects, HFs can be defined as ‘ordered’ skin appendage growths, while BCCs can be regarded as ‘disordered’ skin appendage growths. The aim of the present study was to examine HFs and BCCs to define the expression of common and unique signaling pathways in each skin appendage. Human nodular BCCs, along with HFs and non-follicular skin epithelium from normal individuals, were examined using microarrays, qPCR, and immunohistochemistry. Subsequently, BCC cells and root sheath keratinocyte cells from HFs were cultured and treated with Notch signaling peptide Jagged1 (JAG1). Gene expression, protein levels, and cell apoptosis susceptibility were assessed using qPCR, immunoblotting, and flow cytometry, respectively. Specific molecular mechanisms were found to be involved in the process of cell self-renewal in the HFs and BCCs, including Notch and Hedgehog signaling pathways. However, several key Notch signaling factors showed significant differential expression in BCCs compared with HFs. Stimulating Notch signaling with JAG1 induced apoptosis of BCC cells by increasing Fas ligand expression and downstream caspase-8 activation. The present study showed that Notch signaling pathway activity is suppressed in BCCs, and is highly expressed in HFs. Elements of the Notch pathway could, therefore, represent targets for the treatment of BCCs and potentially in hair follicle engineering.
机译:基底细胞癌(BCC)的子集直接来自毛囊(HF)。在某些方面,HF可以定义为“有序”的皮肤附件生长,而BCC可以看作是“无序”的皮肤附件生长。本研究的目的是检查HF和BCC,以定义每个皮肤附件中共同和独特信号通路的表达。使用微阵列,qPCR和免疫组织化学检查了正常个体的人结节性BCC,以及HF和非滤泡性皮肤上皮细胞。随后,培养来自HF的BCC细胞和根鞘角质形成细胞,并用Notch信号肽Jagged1(JAG1)处理。分别使用qPCR,免疫印迹和流式细胞术评估基因表达,蛋白质水平和细胞凋亡敏感性。发现特定分子机制参与了HF和BCC中细胞的自我更新过程,包括Notch和Hedgehog信号通路。然而,与HF相比,一些关键的Notch信号转导因子在BCC中显示出明显的差异表达。通过增加Fas配体表达和下游caspase-8激活,用JAG1刺激Notch信号诱导BCC细胞凋亡。本研究表明,Notch信号通路活性在BCC中受到抑制,并在HF中高表达。因此,Notch途径的元素可能代表了治疗BCC的目标,并可能成为毛囊工程的目标。

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