Apoptosis and DNA damage in human spermatozoa

被引:253
作者
Aitken, R. John [1 ]
Koppers, Adam J. [2 ]
机构
[1] Univ Newcastle, Sch Environm & Life Sci, ARC Ctr Excellence Biotechnol & Dev, Prior Res Ctr Reprod Sci,Discipline Biol Sci, Callaghan, NSW 2308, Australia
[2] Monash Univ, Sch Biomed Sci, Dept Anat & Dev Biol, Clayton, Vic 3800, Australia
基金
英国医学研究理事会;
关键词
apoptosis; DNA damage; oxidative stress; spermatozoa; IN-VITRO FERTILIZATION; INTRACYTOPLASMIC SPERM INJECTION; BODY-MASS INDEX; OXIDATIVE STRESS; CASPASE ACTIVATION; INTEGRITY; MOUSE; FRAGMENTATION; GENERATION; IMPACT;
D O I
10.1038/aja.2010.68
中图分类号
R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
100221 [泌尿外科学];
摘要
DNA damage is frequently encountered in spermatozoa of subfertile males and is correlated with a range of adverse clinical outcomes including impaired fertilization, disrupted preimplantation embryonic development, increased rates of miscarriage and an enhanced risk of disease in the progeny. The etiology of DNA fragmentation in human spermatozoa is closely correlated with the appearance of oxidative base adducts and evidence of impaired spermiogenesis. We hypothesize that oxidative stress impedes spermiogenesis, resulting in the generation of spermatozoa with poorly remodelled chromatin. These defective cells have a tendency to default to an apoptotic pathway associated with motility loss, caspase activation, phosphatidylserine exteriorization and the activation of free radical generation by the mitochondria. The latter induces lipid peroxidation and oxidative DNA damage, which then leads to DNA fragmentation and cell death. The physical architecture of spermatozoa prevents any nucleases activated as a result of this apoptotic process from gaining access to the nuclear DNA and inducing its fragmentation. It is for this reason that a majority of the DNA damage encountered in human spermatozoa seems to be oxidative. Given the important role that oxidative stress seems to have in the etiology of DNA damage, there should be an important role for antioxidants in the treatment of this condition. If oxidative DNA damage in spermatozoa is providing a sensitive readout of systemic oxidative stress, the implications of these findings could stretch beyond our immediate goal of trying to minimize DNA damage in spermatozoa as a prelude to assisted conception therapy. Asian Journal of Andrology (2011) 13, 36-42; doi: 10.1038/aja.2010.68; published online 30 August 2010
引用
收藏
页码:36 / 42
页数:7
相关论文
共 79 条
[1]
World collaborative report on in vitro fertilization, 2000 [J].
Adamson, G. David ;
de Mouzon, Jacques ;
Lancaster, Paul ;
Nygren, Karl-G. ;
Sullivan, Elizabeth ;
Zegers-Hochschild, Fernando .
FERTILITY AND STERILITY, 2006, 85 (06) :1586-1622
[2]
On the possible origins of DNA damage in human spermatozoa [J].
Aitken, R. J. ;
De Iuliis, G. N. .
MOLECULAR HUMAN REPRODUCTION, 2010, 16 (01) :3-13
[3]
Aitken R. J., 2008, EXPERT REV OBSTET GY, V3, P267, DOI [10.1586/17474108.3.3.267, DOI 10.1586/17474108.3.3.267]
[4]
Analysis of the relationships between oxidative stress, DNA damage and sperm vitality in a patient population: development of diagnostic criteria [J].
Aitken, R. John ;
De Iuliis, Geoffry N. ;
Finnie, Jane M. ;
Hedges, Andrew ;
McLachlan, Robert I. .
HUMAN REPRODUCTION, 2010, 25 (10) :2415-2426
[5]
Biological and clinical significance of DNA damage in the male germ line [J].
Aitken, R. John ;
De Iuliis, Geoffry N. ;
McLachlan, Robert I. .
INTERNATIONAL JOURNAL OF ANDROLOGY, 2009, 32 (01) :46-56
[6]
Seeds of concern [J].
Aitken, RJ ;
Koopman, P ;
Lewis, SEM .
NATURE, 2004, 432 (7013) :48-52
[7]
Aitken RJ, 1997, MOL REPROD DEV, V47, P468, DOI 10.1002/(SICI)1098-2795(199708)47:4<468::AID-MRD14>3.0.CO
[8]
2-S
[9]
ANALYSIS OF THE RELATIONSHIP BETWEEN REACTIVE OXYGEN SPECIES PRODUCTION AND LEUKOCYTE INFILTRATION IN FRACTIONS OF HUMAN SEMEN SEPARATED ON PERCOLL GRADIENTS [J].
AITKEN, RJ ;
WEST, KM .
INTERNATIONAL JOURNAL OF ANDROLOGY, 1990, 13 (06) :433-451
[10]
Multiple forms of redox activity in populations of human spermatozoa [J].
Aitken, RJ ;
Ryan, AL ;
Curry, BJ ;
Baker, MA .
MOLECULAR HUMAN REPRODUCTION, 2003, 9 (11) :645-661