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Large-scale chromatin remodeling in germinal vesicle bovine oocytes: interplay with gap junction functionality and developmental competence.牛生发泡期卵母细胞中的大规模染色质重塑:与间隙连接功能及发育能力的相互作用
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Effects of cryopreservation on the developmental competence, ultrastructure and cytoskeletal structure of porcine oocytes.冷冻保存对猪卵母细胞发育能力、超微结构和细胞骨架结构的影响。
Mol Reprod Dev. 2006 Nov;73(11):1454-62. doi: 10.1002/mrd.20579.
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Efficiency of oocyte cryopreservation: a meta-analysis.卵母细胞冷冻保存的效率:一项荟萃分析。
Fertil Steril. 2006 Jul;86(1):70-80. doi: 10.1016/j.fertnstert.2006.03.017.
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Formation of ovarian follicular fluid may be due to the osmotic potential of large glycosaminoglycans and proteoglycans.卵巢滤泡液的形成可能归因于大型糖胺聚糖和蛋白聚糖的渗透势。
Reproduction. 2006 Jul;132(1):119-31. doi: 10.1530/rep.1.00960.
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Gamete cryopreservation in the domestic cat.家猫的配子冷冻保存
Theriogenology. 2006 Jul 1;66(1):101-11. doi: 10.1016/j.theriogenology.2006.03.012. Epub 2006 Apr 18.
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Holding immature equine oocytes in the absence of meiotic inhibitors: effect on germinal vesicle chromatin and blastocyst development after intracytoplasmic sperm injection.在没有减数分裂抑制剂的情况下保存未成熟马属动物卵母细胞:对卵母细胞生发泡染色质及胞浆内单精子注射后囊胚发育的影响
Theriogenology. 2006 Sep 1;66(4):955-63. doi: 10.1016/j.theriogenology.2006.01.064. Epub 2006 Mar 30.
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Applications of emerging technologies to the study and conservation of threatened and endangered species.新兴技术在濒危物种研究与保护中的应用。
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Mitochondrial organization in prepubertal goat oocytes during in vitro maturation and fertilization.
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Membrane integrity and development of immature murine cumulus-oocyte complexes following slow cooling to -60 degrees C: the effect of immediate rewarming, plunging into LN2 and two-controlled-rate-stage cooling.慢速冷却至-60℃后未成熟小鼠卵丘-卵母细胞复合体的膜完整性及发育:即时复温、投入液氮及两段控速冷却的影响
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10
Effect of gonadotropins during in vitro maturation of feline oocytes on oocyte-cumulus cells functional coupling and intracellular concentration of glutathione.促性腺激素对猫卵母细胞体外成熟过程中卵母细胞-卵丘细胞功能偶联及谷胱甘肽细胞内浓度的影响。
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等渗条件对家猫生发泡期卵丘-卵母细胞复合体结构和功能完整性的影响

Impact of anisosmotic conditions on structural and functional integrity of cumulus-oocyte complexes at the germinal vesicle stage in the domestic cat.

作者信息

Comizzoli Pierre, Wildt David E, Pukazhenthi Budhan S

机构信息

Center for Species Survival, Department of Reproductive Sciences, Smithsonian's National Zoological Park, Washington, District of Columbia 20008-2598, USA.

出版信息

Mol Reprod Dev. 2008 Feb;75(2):345-54. doi: 10.1002/mrd.20769.

DOI:10.1002/mrd.20769
PMID:17701993
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2167628/
Abstract

During cryopreservation, the immature oocyte is subjected to anisosmotic conditions potentially impairing subsequent nuclear and cytoplasmic maturation in vitro. In preparation for cryopreservation protocols and to characterize osmotic tolerance, cat cumulus-oocyte complexes (COC) at the germinal vesicle (GV) stage were exposed for 15 min to sucrose solutions ranging from 100 to 2,000 mOsm and then examined for structural integrity and developmental competence in vitro. Osmolarities > or =200 and < or =750 mOsm had no effect on incidence of oocyte nuclear maturation, fertilization success, and blastocyst formation compared to control COC (exposed to 290 mOsm). This relatively high osmotic tolerance of the immature cat oocyte appeared to arise from a remarkable stability of the GV chromatin structure as well as plasticity in mitochondrial distribution, membrane integrity, and ability to maintain cumulus-oocyte communications. Osmolarities <200 mOsm only damaged cumulus cell membrane integrity, which contributed to poor nuclear maturation but ultimately had no adverse effect on blastocyst formation in vitro. Osmolarities >750 mOsm compromised nuclear maturation and blastocyst formation in vitro via disruption of cumulus-oocyte communications, an effect that could be mitigated through 1,500 mOsm by adding cytochalasin B to the hyperosmotic solutions. These results (1) demonstrate, for the first time, the expansive osmotic tolerance of the immature cat oocyte, (2) characterize the fundamental role of cumulus-oocyte communications when tolerance limits are exceeded, and (3) reveal an interesting hyperosmotic tolerance of the immature oocyte that can be increased two-fold by supplementation with cytochalasin B.

摘要

在冷冻保存过程中,未成熟卵母细胞会受到非等渗条件的影响,这可能会损害其随后的体外核成熟和胞质成熟。为了准备冷冻保存方案并表征渗透耐受性,将处于生发泡(GV)期的猫卵丘-卵母细胞复合体(COC)暴露于渗透压范围为100至2000 mOsm的蔗糖溶液中15分钟,然后检测其体外结构完整性和发育能力。与对照COC(暴露于290 mOsm)相比,渗透压≥200 mOsm和≤750 mOsm对卵母细胞核成熟率、受精成功率和囊胚形成率没有影响。未成熟猫卵母细胞这种相对较高的渗透耐受性似乎源于GV染色质结构的显著稳定性以及线粒体分布、膜完整性和维持卵丘-卵母细胞通讯能力的可塑性。渗透压<200 mOsm仅破坏卵丘细胞膜完整性,这导致核成熟不良,但最终对体外囊胚形成没有不利影响。渗透压>750 mOsm通过破坏卵丘-卵母细胞通讯损害体外核成熟和囊胚形成,通过在高渗溶液中添加细胞松弛素B至1500 mOsm可减轻这种影响。这些结果(1)首次证明了未成熟猫卵母细胞具有广泛的渗透耐受性,(2)表征了超过耐受极限时卵丘-卵母细胞通讯的基本作用,(3)揭示了未成熟卵母细胞有趣的高渗耐受性,通过补充细胞松弛素B可使其增加两倍。