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A UVB fingerprint mutation on the p53 tumor suppressor gene decreases in vitro.

机译:在体外,p53抑癌基因上的UVB指纹突变减少。

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摘要

The culture of tissue-derived human cells is an important aspect of tissue engineering. Prior to transplantation, the quality of the cultured cells/tissue should be routinely tested so that any enrichment of procarcinogenic cells can be excluded. On this account, a UVB-induced p53 fingerprint mutation would be a valuable quality control marker for skin cells cultured for use in tissue engineering. We developed an allele-specific real-time polymerase chain reaction assay based on SYBR Green which can quantitatively detect CC-TT transitions in the tumor suppressor gene p53. To analyze the transition 281/282, we used DNA from HaCaT cells, a keratinocyte cell line containing the investigated mutation, as a standard to determine the mutation frequency in cultured cutaneous cells. We analyzed a variety of skin cells grown in culture and found a notable decrease in the UVB fingerprint mutation in fibroblasts during proliferation. Furthermore, we quantified the total amount of mutated DNA in different cutaneous cells and detected a significantly higher level in melanocytes. These results are consistent with findings obtained in our laboratory concerning the common deletion, the most frequently reported mutation in the mitochondrial genome, which suggest a positive influence of prolonged in vitro cell proliferation on the quality of genomic DNA.
机译:组织来源的人类细胞的培养是组织工程学的重要方面。移植前,应常规检测培养细胞/组织的质量,以便排除任何致癌细胞富集。因此,UVB诱导的p53指纹突变将成为培养用于组织工程的皮肤细胞的有价值的质量控制标记。我们开发了基于SYBR Green的等位基因特异性实时聚合酶链反应测定法,该测定法可以定量检测肿瘤抑制基因p53中的CC-TT转变。为了分析转换281/282,我们使用来自HaCaT细胞(包含所研究的突变的角质形成细胞系)的DNA作为确定培养的皮肤细胞中突变频率的标准。我们分析了培养中生长的各种皮肤细胞,发现成纤维细胞在增殖过程中UVB指纹突变显着减少。此外,我们量化了不同皮肤细胞中突变的DNA的总量,并检测到黑素细胞中明显更高的水平。这些结果与我们实验室中有关线粒体基因组中最常见报道的突变-常见缺失的发现一致,这表明延长体外细胞增殖对基因组DNA质量的积极影响。

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