您的位置: 专家智库 > >

国家自然科学基金(30930065)

作品数:4 被引量:12H指数:2
相关作者:宋亚丽朱秀兰修良昌黄浩邢福祺更多>>
相关机构:南方医科大学附属南海医院南方医科大学广东医学院更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:生物学医药卫生农业科学更多>>

文献类型

  • 4篇中文期刊文章

领域

  • 2篇生物学
  • 2篇医药卫生
  • 1篇农业科学

主题

  • 1篇氧化磷
  • 1篇氧化磷酸化
  • 1篇早期胚胎
  • 1篇早期胚胎发育
  • 1篇生殖生物学
  • 1篇受精
  • 1篇受精能力
  • 1篇胎发
  • 1篇皮质
  • 1篇皮质颗粒
  • 1篇小鼠
  • 1篇小鼠卵
  • 1篇小鼠卵子
  • 1篇磷酸化
  • 1篇卵母细胞
  • 1篇卵母细胞成熟
  • 1篇卵子
  • 1篇卵子发生
  • 1篇老化过程
  • 1篇孤雌

机构

  • 1篇广东医学院
  • 1篇南方医科大学
  • 1篇南方医科大学...

作者

  • 1篇杨尚武
  • 1篇王小婕
  • 1篇邢福祺
  • 1篇黄浩
  • 1篇修良昌
  • 1篇朱秀兰
  • 1篇宋亚丽

传媒

  • 2篇Journa...
  • 1篇中国计划生育...
  • 1篇Journa...

年份

  • 1篇2017
  • 1篇2013
  • 2篇2012
4 条 记 录,以下是 1-4
排序方式:
小鼠卵子老化过程中皮质颗粒的变化和自发孤雌激活的研究被引量:2
2012年
目的:通过卵子老化过程中皮质颗粒的变化和自发孤雌激活比例,探讨老化卵子受精异常的原因。方法:对8~10周龄雌鼠注射孕马血清促性腺激素和绒毛膜促性腺激素14h后,于不同时间段取出MII期成熟卵子分作体内不同时间老化组(MII+0h、MII+6h、MII+12h、MII+18h);成熟MII+0h卵子取出后体外分别培养6h、12h、18h作为体外老化组。对各组卵子免疫荧光染色,共聚焦显微镜成像显示染色体形态和皮质颗粒分布。体内各组卵子取出后继续体外培养8h统计自发孤雌激活的比例和碎裂卵子数。结果:体内和体外MII+12h、MII+18h组自发皮质颗粒排放比例和皮质颗粒内迁数明显高于MII+0h、MII+6h组。体外MII+18h组自发皮质颗粒排放比例和皮质颗粒内迁数低于体内MII+18h组。体内MII+12h、MII+18h组卵子取出继续体外培养8h后孤雌激活比例和死亡比例明显高于体内MII+0h和MII+6h组。结论:卵子在老化过程中存在皮质颗粒自发排放和皮质颗粒内迁,以及自发孤雌激活和碎裂化,这些因素均可能导致老化卵受精能力的降低。卵子老化过程中皮质颗粒排放和内迁可能受到体内环境的影响。
杨尚武黄浩王小婕朱秀兰宋亚丽修良昌邢福祺
关键词:小鼠卵子皮质颗粒孤雌激活
Sperm Mitochondria in Reproduction:Good or Bad and Where Do They Go?被引量:8
2013年
The mitochondrion is the major energy provider to power sperm motility.In mammals,aside from the nuclear genome,mitochondrial DNA(mtDNA) also contributes to oxidative phosphorylation to impact production of ATP by coding 13 polypeptides.However,the role of sperm mitochondria in fertilization and its final fate after fertilization are still controversial.The viewpoints that sperm bearing more mtDNA will have a better fertilizing capability and that sperm mtDNA is actively eliminated during early embryogenesis are widely accepted.However,this may be not true for several mammalian species,including mice and humans.Here,we review the sperm mitochondria and their mtDNA in sperm functions,and the mechanisms of maternal mitochondrial inheritance in mammals.
Shi-Ming LuoHeide SchattenQing-Yuan Sun
关键词:受精能力早期胚胎发育氧化磷酸化
CENP-A Regulates Chromosome Segregation during the First Meiosis of Mouse Oocytes被引量:2
2017年
Proper chromosome separation in both mitosis and meiosis depends on the correct connection between kinetochores of chromosomes and spindle microtubules. Kinetochore dysfunction can lead to unequal distribution of chromosomes during cell division and result in aneuploidy, thus kinetochores are critical for faithful segregation of chromosomes. Centromere protein A(CENP-A) is an important component of the inner kinetochore plate. Multiple studies in mitosis have found that deficiencies in CENP-A could result in structural and functional changes of kinetochores, leading to abnormal chromosome segregation, aneuploidy and apoptosis in cells. Here we report the expression and function of CENP-A during mouse oocyte meiosis. Our study found that microinjection of CENP-A blocking antibody resulted in errors of homologous chromosome segregation and caused aneuploidy in eggs. Thus, our findings provide evidence that CENP-A is critical for the faithful chromosome segregation during mammalian oocyte meiosis.
李莉戚树涛孙青原陈士岭
关键词:CHROMOSOMEOOCYTECHROMOSOMEHOMOLOGOUSALIGNED
New Understandings on Folliculogenesis/Oogenesis Regulation in Mouse as Revealed by Conditional Knockout
2012年
In comparison to conventional knockout technology and in vitro research methods,conditional gene knockout has remarkable advantages.In the past decade,especially during the past five years,conditional knockout approaches have been used to study the regulation of foUiculogenesis,follicle growth,oocyte maturation and other major reproductive events.In this review,we summarize the recent findings about folliculogenesis/oogenesis regulation,including the functions of four signaling cascades or glycoprotein domains that have been extensively studied by conditional gene deletion.Several other still fragmented areas of related work are introduced which are awaiting clarification.We have also discussed the future potential of this technology in clarifying gene functions in reproductive biology.
Meng-Wen HuZhen-Bo WangHeide SchattenQing-Yuan Sun
关键词:卵子发生生殖生物学卵母细胞成熟
共1页<1>
聚类工具0