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首页> 外文期刊>Acta ophthalmologica >Levels of oxidative DNA DNA damage are low in ex?vivo ex?vivo engineered human limbal epithelial tissue
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Levels of oxidative DNA DNA damage are low in ex?vivo ex?vivo engineered human limbal epithelial tissue

机译:氧化DNA DNA损伤的水平低于前α体内的损伤率低。体内工程化人斜缘上皮组织

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Abstract Purpose To examine levels of oxidative DNA base damage and expression of selected genes and proteins related to DNA damage repair in human limbal epithelium engineered ex?vivo . Methods Cells were expanded from limbal tissue on cell culture‐treated inserts in medium containing fetal bovine serum, recombinant growth factors, hormones and cholera toxin ( COM ) and in medium with human serum as the single growth‐promoting additive ( HS ). Cells were analysed after two, three and four weeks in culture for DNA strand breaks and oxidized purine bases (Comet assay using the enzyme formamidopyrimidine DNA glycosylase, Fpg) and for expression of DNA repair enzymes APE 1, OGG 1 and Pol β by in?situ hybridization ( ISH ) and by immunohistochemistry ( IHC ). Results Levels of strand breaks were substantial while levels of net Fpg‐sensitive sites (8‐oxoguanine and ring‐opened FaPy bases) were relatively low in cells engineered in COM and in HS . Both types of medium were found to support expression of base excision repair ( BER ) enzymes APE 1, OGG 1 and Pol β at the gene level. At the protein level, expression of APE 1 and OGG 1 was noticeable in both conditions while expression of Pol β was low. Conclusion Our findings indicate low levels of oxidative stress and/or efficient DNA purine base damage repair in human limbal epithelium engineered in a medium with human serum as the single growth‐promoting additive as well as in traditional medium with xenobiotics.
机译:摘要目的,用于检查氧化DNA碱基损伤和所选基因和蛋白质表达与人缘上皮的DNA损伤修复相关的蛋白质和蛋白质的表达。方法将细胞从胎儿牛血清,重组生长因子,激素和霍乱毒素(COM)中的培养基中的细胞培养处理的插入物中的细胞组织中膨胀,作为单一生长促进添加剂(HS)。在2,3和四周的培养后分析细胞,用于DNA链和氧化嘌呤碱(使用酶甲状腺胺DNA糖基糖基糖糖苷,FPG)和表达DNA修复酶APE 1,OGG 1和POLβ原位杂交(ISH)和免疫组织化学(IHC)。结果链断裂水平是基本的,而在COM和HS中的细胞中,净FPG敏感位点(8-氧通和环形疗法碱)的水平相对较低。发现两种类型的培养基在基因水平上支持基础切除修复(BER)酶APE1,OGG 1和POLβ的表达。在蛋白质水平中,在两个条件下,在两种条件下,在两种情况下,在两种条件下表达β低。结论我们的研究结果表明,在用人血清的培养基中为单一生长促进添加剂以及具有异种学的传统培养基中的人缘上皮和/或有效的DNA嘌呤损伤修复水平的低氧化应激和/或有效的DNA嘌呤损伤修复。

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