模拟太阳辐射敏感的 miR-205-5p 敲低不会诱导体外皮肤鳞状细胞癌的进展。
Knockdown of Simulated-Solar-Radiation-Sensitive miR-205-5p Does Not Induce Progression of Cutaneous Squamous Cell Carcinoma In Vitro.
机构信息
Skin Cancer Center, Division of Molecular Cell Biology, Elbe Kliniken Stade-Buxtehude, 21614 Buxtehude, Germany.
出版信息
Int J Mol Sci. 2023 Nov 17;24(22):16428. doi: 10.3390/ijms242216428.
Solar radiation is the main risk factor for cSCC development, yet it is unclear whether the progression of cSCC is promoted by solar radiation in the same way as initial tumorigenesis. Additionally, the role of miRNAs, which exert crucial functions in various tumors, needs to be further elucidated in the context of cSCC progression and connection to solar radiation. Thus, we chronically irradiated five cSCC cell lines (Met-1, Met-4, SCC-12, SCC-13, SCL-II) with a custom-built irradiation device mimicking the solar spectrum (UVB, UVA, visible light (VIS), and near-infrared (IRA)). Subsequently, miRNA expression of 51 cancer-associated miRNAs was scrutinized using a flow cytometric multiplex quantification assay (FirePlex, Abcam). In total, nine miRNAs were differentially expressed in cell-type-specific as well as universal manners. miR-205-5p was the only miRNA downregulated after SSR-irradiation in agreement with previously gathered data in tissue samples. However, inhibition of miR-205-5p with an antagomir did not affect cell cycle, cell growth, apoptosis, or migration in vitro despite transient upregulation of oncogenic target genes after miR-205-5p knockdown. These results render miR-205-5p an unlikely intracellular effector in cSCC progression. Thus, effects on intercellular communication in cSCC or the simultaneous examination of complementary miRNA sets should be investigated.
太阳辐射是 cSCC 发展的主要风险因素,但尚不清楚太阳辐射是否以与初始肿瘤发生相同的方式促进 cSCC 的进展。此外,miRNA 在各种肿瘤中发挥着关键作用,其在 cSCC 进展和与太阳辐射的联系方面的作用需要进一步阐明。因此,我们使用模仿太阳光谱(UVB、UVA、可见光(VIS)和近红外(IRA))的定制辐照装置对五株 cSCC 细胞系(Met-1、Met-4、SCC-12、SCC-13、SCL-II)进行慢性辐照。随后,使用流式细胞术多重定量分析(FirePlex,Abcam)检测 51 种癌症相关 miRNA 的表达。总共,有 9 种 miRNA 以细胞类型特异性和通用方式差异表达。miR-205-5p 是唯一一种与先前在组织样本中收集的数据一致的 SSR 辐照后下调的 miRNA。然而,尽管在 miR-205-5p 敲低后瞬时上调致癌靶基因,但用反义寡核苷酸抑制 miR-205-5p 并不影响体外细胞周期、细胞生长、凋亡或迁移。这些结果使得 miR-205-5p 不太可能成为 cSCC 进展中的细胞内效应物。因此,应该研究 cSCC 中细胞间通讯的影响或同时检查互补 miRNA 组。