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UVB Irradiation Induced Cell Damage and Early Onset of Junbb Expression in Zebrafish

机译:UVB辐照诱导细胞损伤和Zebrafish中JunbB表达的早期发作

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Ultraviolet B (UVB) radiation has drawn more attention over these past few decades since it causes severe DNA damage and induces inflammatory response. Serial gene profiling and high throughput data in UVB-associated phenomenon in human cultured cells or full rack of human skin have been investigated. However, results using different tissue models lead to ambiguity in UVB-induced pathways. In order to systematically understand the UVB-associated reactions, the zebrafish model was used, and whole organism gene profiling was performed to identify a novel biomarker which can be used to generate a new mechanistic approach for further screening on a UVB-related system biology. In this study, detailed morphological assays were performed to address biological response after receiving UVB irradiation at morphological, cellular, and molecular levels. Microarray screening and whole genome profiling revealed that there is an early onset expression of junbb in zebrafish embryos after UVB irradiation. Also, the identified novel biomarker junbb is more sensitive to UVB response than mmps which have been used in mouse models. Moreover, cellular and molecular response chronology after UVB irradiation in zebrafish provide a solid and fundamental mechanism for use in a UV radiation-associated study in the future.
机译:紫外线B(UVB)辐射在过去几十年中受到更多关注,因为它会导致严重的DNA损伤并诱导炎症反应。已经研究了人类培养细胞或全齿架上的UVB相关现象中的连续基因分析和高通量数据。然而,使用不同组织模型的结果导致UVB诱导的途径中的模糊性。为了系统地理解UVB相关的反应,使用斑马鱼模型,并进行整个生物体基因分析以鉴定一种新的生物标志物,可用于产生新的机制方法,用于进一步筛选与UVB相关的系统生物学进行进一步筛选。在该研究中,进行详细的形态学测定以在形态学,细胞和分子水平接受UVB辐射后解决生物反应。微阵列筛选和全基因组分析显示,在UVB辐照后斑马鱼胚胎中的早期发作表达。此外,所识别的新型生物标志物JunBB对UVB响应比在小鼠模型中使用的MMP更敏感。此外,斑马鱼辐射术后细胞和分子响应年表提供了未来UV辐射相关研究的固体和基本机制。

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