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首页> 外文期刊>Mutagenesis >UVA-induced apoptosis studied by the new apoecro-Comet-assay which distinguishes viable, apoptotic and necrotic cells
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UVA-induced apoptosis studied by the new apoecro-Comet-assay which distinguishes viable, apoptotic and necrotic cells

机译:通过新的载脂/坏死彗星试验研究了UVA诱导的凋亡,该试验可区分活细胞,凋亡和坏死细胞

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摘要

An adaptation of the Comet-assay was developed which enables the discrimination of viable, apoptotic and necrotic single cells by use of the common Annexin-V staining and a dye exclusion test on the cells already embedded in agarose gel on glass slides. Membrane integrity (Ethidium–Homodimer exclusion), cellular esterase activity (Calcein blue-AM) as well as translocation of phosphadidyl-serine (Annexin-V) were analysed using these stains. The advantage of the ‘apoecro-Comet-assay’ is that the viability status of individual cells can be determined and correlated with the DNA fragmentation pattern (comet) formed by the same cells. Hence, DNA damage can be assessed and correlated with viable cells or cells undergoing early, mid- or late stage apoptosis or necrosis as identified by the staining pattern. The staining was verified using heat and etoposide-induced apoptosis. This technique, among others, was used to study whether apoptotic fragmentation interferes with repair kinetics measured with the comet assay following UVA exposure (doses up to 1280 kJ/m2) in the cultured human keratinocytes (HaCaT). Therefore, a time course of apoptotic events (phosphatidyl translocation and TUNEL fragmentation) was established and correlated to the DNA fragmentation in the comet-assay. Apoptotic cells were detected more than 8 h later. The combined three-colour staining method with the comet assay showed that there was no significant interference of DNA repair by apoptotic fragmentation processes since DNA repair was almost completed before the onset of apoptotic fragmentation. The apoecro-Comet-assay reduces the general problem of false-positive results in genotoxicity tests using the Comet-assay.
机译:已开发出一种适用于彗星分析的方法,该方法可通过使用常见的膜联蛋白-V染色和对已经嵌入在载玻片上的琼脂糖凝胶中的细胞进行染料排斥测试来区分活的,凋亡和坏死的单细胞。使用这些染色剂分析了膜的完整性(排除了乙-同二聚体),细胞酯酶活性(钙黄蓝-AM)以及磷脂酰丝氨酸(Annexin-V)的易位性。 “载脂蛋白/坏死彗星分析”的优势在于可以确定单个细胞的生存状态,并将其与相同细胞形成的DNA片段化模式(彗星)相关联。因此,可以评估DNA损伤并将其与活细胞或经历早期,中期或晚期细胞凋亡或坏死的细胞相关联,如通过染色模式所鉴定的。使用热量和依托泊苷诱导的细胞凋亡来验证染色。除其他技术外,该技术还用于研究培养的人类角质形成细胞(HaCaT)中的UVA暴露(剂量高达1280 kJ / m 2 )后,细胞凋亡碎片是否会干扰用彗星试验测量的修复动力学。 。因此,建立了凋亡事件的时间过程(磷脂酰移位和TUNEL片段化),并将其与彗星测定中的DNA片段化相关。超过8小时后检测到凋亡细胞。结合彗星试验的三色染色法表明,凋亡片段化过程对DNA修复没有明显干扰,因为DNA修复几乎在凋亡片段化开始之前就完成了。载脂蛋白/坏死彗星试验减少了使用彗星试验进行遗传毒性试验中假阳性结果的一般问题。

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  • 来源
    《Mutagenesis》 |2006年第2期|105-114|共10页
  • 作者单位

    Royal Cornwall Hospital NHS Trust Sunrise Centre;

    Cornwall Dermatology Research Project Knowledge Spa Royal Cornwall Hospital Treliske Truro Cornwall UK and;

    Institute for Molecular Biotechnology Department of Single Cell and Molecule Techniques Beutenbergstr. 11 D-07745 Jena Germany;

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