首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >In vivo antioxidant status, DNA damage, mutation and DNA repair capacity in cultured lymphocytes from healthy 75- to 80-year-old humans.
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In vivo antioxidant status, DNA damage, mutation and DNA repair capacity in cultured lymphocytes from healthy 75- to 80-year-old humans.

机译:75岁至80岁健康人的培养淋巴细胞的体内抗氧化剂状态,DNA损伤,突变和DNA修复能力。

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The accumulation of damage to cellular biomolecules, including DNA, over time may play a significant role in the aetiology of the ageing process. We have previously quantified DNA damage and mutation within cultured lymphocytes from healthy human male subjects in three different age groups (35-39, 50-54 and 65-69 years). The results of that study showed an age-related increase in DNA damage and mutations in lymphocytes. In addition, an age-related decrease in the capacity of the lymphocytes to repair H2O2-induced DNA damage was found. In this article, we report the findings of an extension to the earlier study. Thirty-one generally healthy male and female subjects between the ages of 75 and 80 years were recruited. Using a number of bioassays, we were able to determine; basal levels of DNA damage (for 18 subjects) and mutant frequency at the hypoxanthine phosphoribosyltransferase (hprt) gene locus (for 16 subjects) within cultured lymphocytes. In addition, in vivo antioxidant status (for all study subjects) and the capacity of lymphocytes to repair H2O2-induced DNA damage (for 18 subjects) were also assessed. The results obtained showed: that the mean basal level of DNA damage in lymphocytes from subjects in the 75- to 80-year age group (12.6 +/- 4.7%) was similar to that of the 35- to 39-year age group (13.3 +/- 3.3%), p = 0.42 (Mann-Whitney); there was no significant difference between log mean mutant frequency at the hprt gene locus in lymphocytes from the 75- to 80-year age group (0.31 +/- 0.33) compared to that observed in the 35- to 39-year age group (0.24 +/- 0.21; Student's t-test, t = 0.68, p > 0.05). Levels of the antioxidants glutathione peroxidase (GPx EC 1.11.1.9), catalase (CAT; EC 1.11.1.6) and caeruloplasmin (CPL; EC 1.16.3.1) were significantly elevated in the 75- to 80-year age group, compared to the 35- to 39-, 50- to 54- and 65- to 69-year age groups. Levels of bilirubin (BR) were reduced in the 75- to 80-year age group, the decrease being contributed by the female subjects. No differences in levels of superoxide dismutase (SOD; EC 1.15.1.1) or uric acid (UA) were found between the 4 age groups. Following treatment of lymphocytes with H2O2, we did not find any difference in the susceptibility of lymphocytes to DNA damage in the 75- to 80-year age group, compared to the other age groups. The DNA repair capacity in lymphocytes from individuals in the 75- to 80-year age group was similar to that of the 35- to 39-year age group, for all time points assessed. These results highlight the importance of DNA repair processes and antioxidant defence systems for maintaining genomic stability in vivo.
机译:随着时间的流逝,对细胞生物分子(包括DNA)的破坏积累可能在衰老过程的病因中起重要作用。我们之前已经量化了来自三个不同年龄段(35-39岁,50-54岁和65-69岁)的健康人类男性受试者的培养淋巴细胞中的DNA损伤和突变。该研究结果表明,DNA损伤和淋巴细胞突变与年龄相关。此外,发现与年龄相关的淋巴细胞修复H2O2引起的DNA损伤的能力下降。在本文中,我们报告了对早期研究的扩展发现。招募了75位年龄在75至80岁之间的31位总体健康的男性和女性受试者。使用多种生物测定,我们能够确定;培养的淋巴细胞中次黄嘌呤磷酸核糖基转移酶(hprt)基因位点(16位受试者)的DNA损伤的基础水平(18位受试者)和突变频率。此外,还评估了体内抗氧化剂状态(针对所有研究对象)和淋巴细胞修复H2O2诱导的DNA损伤的能力(针对18位对象)。获得的结果表明:75至80岁年龄组(12.6 +/- 4.7%)受试者淋巴细胞平均DNA损伤的基本水平与35至39岁年龄组( 13.3 +/- 3.3%),p = 0.42(Mann-Whitney);与35至39岁年龄组(0.24)相比,在75至80岁年龄组(0.31 +/- 0.33)的淋巴细胞中hprt基因位点的对数平均突变频率没有显着差异+/- 0.21;学生t检验,t = 0.68,p> 0.05)。与75岁至80岁年龄段相比,抗氧化剂谷胱甘肽过氧化物酶(GPx EC 1.11.1.9),过氧化氢酶(CAT; EC 1.11.1.6)和铜蓝蛋白(CPL; EC 1.16.3.1)的水平明显升高。 35至39岁,50至54岁和65至69岁年龄段。在75至80岁年龄段,胆红素(BR)的水平降低了,这是女性受试者造成的。在这四个年龄组之间,未发现超氧化物歧化酶(SOD; EC 1.15.1.1)或尿酸(UA)水平的差异。用H2O2处理淋巴细胞后,与其他年龄组相比,在75至80岁年龄组中,淋巴细胞对DNA损伤的敏感性没有任何差异。在所有评估的时间点上,年龄在75至80岁的人群淋巴细胞的DNA修复能力与35至39岁的年龄组相似。这些结果突出了DNA修复过程和抗氧化剂防御系统对于维持体内基因组稳定性的重要性。

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