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External and Genetic Conditions Determining Male Infertility

机译:确定男性不孕症的外部和遗传条件

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摘要

We explain environmental and genetic factors determining male genetic conditions and infertility and evaluate the significance of environmental stressors in shaping defensive responses, which is used in the diagnosis and treatment of male infertility. This is done through the impact of external and internal stressors and their instability on sperm parameters and their contribution to immunogenetic disorders and hazardous DNA mutations. As chemical compounds and physical factors play an important role in the induction of immunogenetic disorders and affect the activity of enzymatic and non-enzymatic responses, causing oxidative stress, and leading to apoptosis, they downgrade semen quality. These factors are closely connected with male reproductive potential since genetic polymorphisms and mutations in chromosomes 7, X, and Y critically impact on spermatogenesis. Microdeletions in the Azoospermic Factor AZF region directly cause defective sperm production. Among mutations in chromosome 7, impairments in the cystic fibrosis transmembrane conductance regulator gene are destructive for fertility in cystic fibrosis, when spermatic ducts undergo complete obstruction. This problem was not previously analyzed in such a form. Alongside karyotype abnormalities AZF microdeletions are the reason of spermatogenic failure. Amongst genes, the deleted in azoospermia gene family is reported as most frequently deleted AZF. Screening of AZF microdeletions is useful in explaining idiopathic cases of male infertility as well as in genetic consulting prior to assisted reproduction. Based on the current state of research we answer the following questions: (1) How do environmental stressors lessen the quality of sperm and reduce male fertility; (2) which chemical elements induce oxidative stress and immunogenetic changes in the male reproductive system; (3) how do polymorphisms correlate with changes in reproductive potential and pro-antioxidative mechanisms as markers of pathophysiological disturbances of the male reproductive condition; (4) how do environmental stressors of immunogenetic disorders accompany male infertility and responses; and (5) what is the distribution and prevalence of environmental and genetic risk factors.
机译:我们解释了确定男性遗传条件和不孕症的环境和遗传因素,并评估环境压力源在塑造防御反应中的意义,用于诊断和治疗男性不孕症。这是通过外部和内部压力源的影响及其对精子参数的不稳定性以及对免疫原性疾病和危险DNA突变的贡献来完成的。作为化学化合物和物理因素在免疫原性疾病的诱导中发挥着重要作用,并影响酶促和非酶促反应的活性,导致氧化应激,导致细胞凋亡,它们降级精液。这些因素与染色体7,x和Y中的遗传多态性和突变密切相关,因为染色体7,x和y致力于对精子发生影响。 Azoospermic因子AZF区域的微缺细胞直接导致精子产生缺陷。在染色体7中的突变中,当精粒管道经历完全梗阻时,囊性纤维化跨膜电导调节因子基因的损伤是对囊性纤维化的生育性的破坏性。此前未以这种形式分析此问题。除了核型异常,AZF微缺失是精子发生故障的原因。在基因中,删除在zooospermia基因家族中被报告为最常被删除的AZF。 AZF微缺失的筛选可用于解释在辅助繁殖前的男性不孕症以及遗传咨询中的特发性病例。基于目前的研究状态,我们回答以下问题:(1)环境压力师如何减少精子的质量,降低男性生育率; (2)哪种化学元素诱导雄性生殖系统中的氧化应激和免疫原性变化; (3)多态性如何与生殖潜力和促抗氧化机制的变化相关,作为雄性生殖条件的病理生理干扰的标志物; (4)伴随男性不孕症和反应的免疫原性疾病的环境压力伴侣; (5)环境和遗传风险因素的分布和患病率是多少。

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