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无症状生殖道感染不育男性精液白细胞亚群与精子DNA损伤的关系 被引量:13
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作者 刘旭晨 陈广社 贺晓龙 《中华男科学杂志》 CAS CSCD 北大核心 2018年第1期45-49,共5页
目的:探讨无症状生殖道感染的不育男性精液中白细胞亚群与精子DNA损伤的相关性。方法:选择2013年3月至2015年8月就诊的无症状生殖道感染的不育男性111例,精液常规分析后,采用免疫细胞化学法检测精液中CD45^+白细胞浓度,流式细胞术检测... 目的:探讨无症状生殖道感染的不育男性精液中白细胞亚群与精子DNA损伤的相关性。方法:选择2013年3月至2015年8月就诊的无症状生殖道感染的不育男性111例,精液常规分析后,采用免疫细胞化学法检测精液中CD45^+白细胞浓度,流式细胞术检测单核细胞/巨噬细胞系CD14抗原^+、活化巨噬细胞HLA-DR^+细胞浓度;TUNEL法检测精子DNA碎片及8-羟化脱氧鸟苷(8-OHd G)表达情况;分析精液白细胞亚群与精子DNA损伤及常规精液参数的相关性。结果:精液CD45^+细胞浓度与CD14^+、HLA-DR^+细胞浓度间有明显相关性(P<0.01),而不同亚群白细胞浓度与精液传统参数、碎片率、8-OHd G^+细胞比例均无明显相关性。8-OHd G^+精子百分率与精子碎片百分率呈正相关(r=0.48,P<0.01),而与精子浓度呈负相关(r=-0.44,P<0.01)。在调整年龄、禁欲时间和吸烟的基础上,精子浓度和精子碎片率(β=-0.25,P=0.008;β=0.23,P=0.05)与8-OHd G^+精子百分率的变化独立相关。结论:无症状生殖道感染的不育男性精子DNA损伤与精液质量下降相关,而与不同白细胞亚群无相关性。 展开更多
关键词 无症状生殖道感染 白细胞亚群 CD45 CD14 8-羟化脱氧鸟苷 精子DNA损伤
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Simulated Microgravity Conditions and Carbon Ion Irradiation Induce Spermatogenic Cell Apoptosis and Sperm DNA Damage 被引量:10
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作者 LI Hong Yan ZHANG Hong +10 位作者 MIAO Guo Ying XIE Yi SUN Chao DI Cui Xia LIU Yang LIU Yuan Yuan ZHANG Xin MA Xiao Fei XU Shuai GAN Lu ZHOU Xin 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2013年第9期726-734,共9页
Objective To investigate the effect of simulated microgravity and carbon ion irradiation (CIR) on spermatogenic cell apoptosis and sperm DNA damage to the testis of male Swiss Webster mice, and assess the risk assoc... Objective To investigate the effect of simulated microgravity and carbon ion irradiation (CIR) on spermatogenic cell apoptosis and sperm DNA damage to the testis of male Swiss Webster mice, and assess the risk associated with space environment. Methods Sperm DNA damage indicated by DNA fragmentation index (DFI) and high DNA stainability (HDS) was measured by sperm chromatin structure assay (SCSA). Apoptosis of spermatogenic cells was detected by annexin V-propidium iodide assay. Bax (the expression levels of p53) and proliferating cell nuclear antigen (PCNAI were measured by immunoblotting; p53 and PCNA were located by immunohistology. Results HDS, DFI, apoptosis index, and the expression levels of p53 and Bax were detected to be significantly higher in the experimental groups (P〈0.05) compared with those in the control group, however, the PCNA expression varied to a certain degree, p53- and PCNA- positive expression were detected in each group, mainly in relation to the spermatogonic cells and spermatocytes. Conclusion The findings of the present study demonstrated that simulated microgravity and CIR can induce spermatogenic cell apoptosis and sperm DNA damage. Sperm DNA damage may be one of the underlying mechanisms behind male fertility decline under space environment. These findings may provide a scientific basis for protectint~ astronauts and space traveler's health and safety. 展开更多
关键词 Simulated microgravity Carbon ion irradiation spermatogenic cells apoptosis sperm dnadamage
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