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1.
发育至第19期和第28期的鸡胚性腺原始生殖细胞(PGCs)分离提纯后,在DMEM中添加冷冻保护剂DMSO(二甲基亚砜)、EG(乙二醇)、蔗糖进行超低温冷冻保存,比较冷冻保护剂在单独或联合使用条件下对PGCs的冷冻保护效果,复苏后台盼蓝染色测定细胞存活率,体外接种培养、传代。结果表明:(1)第19期PGCs冷冻保存中,10%EG+10%FBS+0.1mol/L。蔗糖条件下细胞存活率最高为(92.20±2.18)%,且与10%DMSO+10%FBS的存活率差异显著(P〈0.05),其余各冷冻保护液间存活率差异不显著;第28期PGCs冷冻保存中,5%DMsO+5%EG+10%FBS+0.1mol/L。蔗糖条件下细胞存活率最高为(92.41±2.82)%,但各冷冻保护液间存活率差异均不显著(P〉0.05)。(2)解冻后体外培养的PGCs,在饲养层和3种细胞因子(I。IF、SCF、bFGF)的共同作用下,可持续增殖,传至第3代的PGCs,PAS染色、AKP染色均呈阳性并保持完整的二倍体核型,仍处于未分化状态。  相似文献   

2.
研究不同冷冻液配方对鸡囊胚细胞的玻璃化冷冻保存效果。对新鲜种蛋囊胚细胞分离提纯后,在DMEM中添加不同的冷冻保护剂DMSO(二甲基亚砜)、EG(乙二醇)、蔗糖,分别组成6种玻璃化冷冻保护液,进行超低温冷冻保存。复苏后通过苔盼蓝染色测定活细胞存活率。结果:玻璃化冷冻保存中,囊胚细胞在玻璃化冷冻液配方2(10%EG+10%DMSO+0.5mol/L蔗糖+20%FBS+DMEM)条件下复苏后存活率最高(71.32%),与玻璃化冷冻液配方1和3条件下复苏后存活率之间差异显著(P〈0.05),且与玻璃化冷冻液配方4、5、6条件下复苏后存活率之间差异均极显著(P〈0.01),可以作为鸡囊胚细胞的玻璃化冷冻液。  相似文献   

3.
对发育至第19期和第28期鸡胚性腺原始生殖细胞(Primordial germ cells,PGCs),用6种玻璃化冷冻液1:10%DMS0+10%EG+10%PVP,Ⅱ:20%EG+10%PVP,Ⅲ:20%DMSO+10%PVP,Ⅳ:10%DMSO+10%EG+0.5mol/L Surcose,Ⅴ:20%EG+0.5mol/LSurcose,Ⅵ:20%DMSO+0.5mol/L Surcose进行冷冻保存。结果:第19期鸡胚PGCs玻璃化冷冻复苏后存活率,在冷冻液Ⅱ与Ⅳ之间差异不显著(P〉0.05),Ⅴ与Ⅵ之间差异显著(P〈0.05),其余各冷冻液之间差异均极显著(P〈0.01)。第28期鸡胚PGCs玻璃化冷冻复苏后存活率,在冷冻液Ⅳ与Ⅴ之间差异显著(P〈0.05),Ⅲ与Ⅳ、Ⅴ之间差异不显著(P〉0.05),Ⅱ与Ⅲ、Ⅳ之间差异不显著(P〉0.05),其余各玻璃化冷冻液之间差异均极显著(P〈0.01)。复苏后接种培养传至第2代的鸡胚PGCs细胞,PAS染色、AKP染色呈阳性并保持完整的二倍体核型。  相似文献   

4.
将小鼠生精上皮单细胞置20℃含不同抗冻剂的冻存液中一定时间后,台盼蓝染色测定细胞存活率,以筛选冷冻保存小鼠生精上皮细胞的侯选抗冻剂及使用浓度。结果,20℃30min,10%浓度的二甲基亚砜(DMSO)、丙二醇(PG)及乙二醇(EG)对7日龄小鼠生精上皮单细胞存活率均无显著影响,而10%甘油(G)则使细胞存活率显著下降;20℃ 30min,10%浓度的DMSO、PG、EG及G对成年小鼠生精上皮单细胞存活率均无显著影响;20℃ 5min,25%浓度的DMSO、PG、EG及G均使7日龄及成年小鼠生精上皮单细胞存活率显著下降。实验结果表明,10%DMSO、PG及EG可作为7日龄小鼠生殖细胞慢速冷冻保存时的侯选抗冻剂,10%DMSO、PG、EG及G可作为成年小鼠生殖细胞慢速冷冻保存时的侯选抗冻剂;在高浓度抗冻剂超速冷冻保存小鼠生殖细胞时,平衡时间应短于5min,或在4℃进行。  相似文献   

5.
成年小鼠雄性生殖细胞的冷冻保存   总被引:1,自引:0,他引:1  
在含10%小牛血清(NBS)的DMEM培养基中,分别各添加5%,10%,15%,20%和25%的二甲基亚砜(DMSO),丙二醇(PG),乙二醇(EG)和甘油(G),对成年小鼠睾丸生殖细胞冷冻保存;复苏后台盼蓝染色测定细胞复苏率。结果显示,5%-25%DMSO冻存液组的细胞复苏率分别为88.5%,88.0%,65.6%及51.3%;5%-25%PG冻存液组的细胞复苏率分别为87.2%,86.4%,79.0%,73.4%及40.1%.;5%-25%EG冻存液组的细胞复苏率分别为6.6%,80.9%,60.8%,51.3%及30.0%;5%-25%G冻存液组的细胞复苏率分别为86.5%,86.3%,65.3%,36.0%及31.4%。其中各抗冻剂5%和10%组的细胞复苏率最高,与15%组相比均存在显著或极显著差异。4种抗冻剂的最高细胞复苏率之间无显著差异。DMSO,PG,EG和G分别冷冻保存成年小鼠睾丸生殖细胞对的最小损失率分别为4.8%,6.1%,6.7%,6.8%。结果表明,采用慢速冷冻时,DMSO,PG,EG及G均适宜用作成年小鼠睾丸生殖细胞的抗冷冻剂,最佳使用含量均为5%-10%。成年小鼠睾丸生殖细胞分别在含5%-10%的DMSO,PG,EG和G的DMEM(含10%NBS)冻存液中,2步慢速降温,液氮储存,37℃水浴复苏,是一种具有较高复苏率的冷冻保存方法。  相似文献   

6.
本研究采用不同来源的体外生产胚胎(屠宰场卵巢IVF胚胎,OPU-IVF胚胎,SCNT胚胎),系统研究了不同冷冻方法对水牛体外生产胚胎冷冻效果的影响,以完善水牛体外生产胚胎冷冻方法,进一步提高胚胎冷冻效果。试验选用6~7日龄囊胚分别用不同的冷冻液和不同冷冻方法进行胚胎冷冻。玻璃化冷冻液分别为40%EG、25%EG+25%DMSO和20%EG+20%DMSO+0.5 mol/L蔗糖;程序化冷冻液分别为10%甘油和0.05 mol/L海藻糖+1.8 mol/L EG+0.4%BSA。结果表明:(1)在玻璃化冷冻中,无论何种胚胎不同冷冻液的冷冻效果有明显的差异,但均以20%EG+20%DMSO+0.5 mol/L蔗糖作为冷冻液的冷冻效果最好,并且高于程序化冷冻的存活率;而对于程序化冷冻,用10%甘油作为冷冻液,屠宰场卵巢IVF胚胎的冷冻后存活率略高于用0.05 mol/L海藻糖+1.8 mol/L EG+0.4%BSA的冷冻后存活率,但差异不显著(P>0.05)。(2)VF胚胎利用程序化冷冻胚胎解冻后,在0~24 h内有76.5%胚胎复活,高于玻璃化冷冻的复苏率(48.9%)(P<0.05);而与此相反,在24~48 h内,玻璃化冷冻胚胎的复苏率(42.6%)则高于程序化冷冻(23.5%)(P<0.05)。综上所述,各种来源的水牛体外生产胚胎均可进行冷冻保存,应用玻璃化冷冻的效果好于程序化冷冻,且以20%EG+20%DMSO+0.5 mol/L蔗糖作为冷冻液进行玻璃化冷冻效果最好,但程序化冷冻后的胚胎复苏速度明显快于玻璃化冷冻的速度。  相似文献   

7.
鸡胚原始生殖细胞的冷冻保存和体外培养   总被引:2,自引:1,他引:1  
采用Ficoll密度梯度离心,提取第19期(孵化72h)鸡受精蛋性腺中的原始生殖细胞(primordialgermcells,PGCs),用不同的冷冻保护液对PGCs采用提纯后直接冷冻保存和在培养体系中培养24h后再进行冷冻保存,7d后复苏,用台盼蓝染色检测其存活率,并用PAS染色对冷冻后的PGCs进行特异性鉴定。复苏后的PGCs在培养体系中培养5d后,更换为培养体系继续培养,进行体外分化试验。结果如下分离后直接进行冷冻保存的PGCs复苏后存活率最高为(85.93±1.24)%;复苏后的PGCs在培养体系中培养48h后进行了PAS染色鉴定,结果PGCs呈PAS阳性(细胞核不着色,细胞质呈红色),表明PGCs的染色特性没有因冷冻保存和体外培养而发生改变;复苏后的PGCs在培养体系中培养可形成细胞克隆,当把PGCs更换到培养体系培养5d后,PGCs克隆有的仍保持克隆状态,但体积缩小,克隆中细胞排列紧密,颜色较深,有的克隆由鸟巢状变为不规则形,且在克隆周围形成类神经细胞样细胞。而经体外培养后再进行冷冻保存的PGCs,复苏后存活率最高为(42.26±1.36)%。  相似文献   

8.
7日龄小鼠生精上皮单细胞冷冻保存   总被引:15,自引:3,他引:12  
在DMEM中添加10%小牛血清(NBS),并分别添加不同浓度的抗冻剂二甲基亚砚(DMSO)、丙二醇(PG)、乙二醇(EG)及甘油(G),对7日龄小鼠生精上皮单细胞进行冷冻保存,复苏后台齿蓝染色测定细胞复苏率。结果:当冻存液中DMSO分别为5%、10%、15%、20%时,细胞复苏率分别为77.1%、88.2%、86.5%、73.5%、65.5%,其中10%和15%DMSO组细胞复苏率最高,与其作各组间均差异极显著(P<0.01)。当冻存液中PG分别为5%、10%、15%、20%、25%时,细胞复苏率分别为66.2%、84.3%、72.1%、69.9%、47.5%,其中10%PG组细胞复苏率最高,与其余各组间均差异极显著(P<0.01)。当冻存液中EG分别为5%、10%、15%、20%时,细胞复苏率分别为64.9%、81.6%、60.9%、44.7%,其中10%EG组细胞复苏率最高,与其余各组间均差异极显著(P<0.01)。当冻存液中G分别为5%、10%、20%、25%时,细胞腹苏率均低于10%。10%DMSO组细胞复苏率与10%PG组和10%EG组之间均差异显著(P<0.05)或极显著(P<0.01)。结果表明,10%DMSO、10%PG及10%EG均适宜冷冻保存小鼠精原细胞,以及10%DMSO的冻存效果最好,而则不适宜冷冻保存。在含10%DMSO的冻存液中,二步慢速冷冻,液氮储存,37C水浴复苏小鼠精原细胞,是一种具有较高细胞复苏率的冷冻保存方法。  相似文献   

9.
《中国家禽》2006,28(19):102-102
目的:研究鸡胚胎原始生殖细胞(EPGCs)对不同冷冻体系的适合性。方法:对发育至第19期和第28期胚胎性腺PGCs,采用二甲基亚砜(DMSO)、乙二醇、聚乙二醇为冷冻保护液,在不同组合、不同浓度、不同的冷冻程序下进行超低温冷冻保存。结果:①采用同一种冷冻保护液,10%浓度与15%浓度之间,除DMSO+乙二醇(冷冻保护液Ⅳ)外,其他类型的冷冻液对EPGCs保存后存活率的影响差异不显著(P〉0.05);20%浓度的各种冷冻保护液对EPGCs保存后的存活率最低,且与10%和15%浓度相比差异显著(P〈0.05)或极显著(P〈0.01);②采用同一种冷冻保护液,浓度为10%时,  相似文献   

10.
为了提高玻璃化冷冻保存山羊卵母细胞的效果,试验用不含Ca2+的玻璃化冷冻液1[30%乙二醇(EG)]、玻璃化冷冻液2[27.5%EG+2.5%二甲基亚砜(DMSO)]和玻璃化冷冻液3(25%EG+5%DMSO)研究抗冻保护剂DMSO和EG的不同浓度配比对山羊卵母细胞形态正常率、孤雌激活率、体外受精卵裂率及胚胎发育能力的影响。结果表明:山羊卵母细胞经玻璃化冷冻液1,2,3处理后细胞形态正常率(97.1%、97.3%、97.3%)与对照组(100%)相比有所降低,但差异不显著(P>0.05),且对卵母细胞均不产生具有化学毒性作用的孤雌激活;山羊卵母细胞经3种玻璃化冷冻液冷冻保存后,玻璃化冷冻液2冷冻保存卵母细胞的囊胚率(13.8%)显著高于玻璃化冷冻液1(5.7%)和玻璃化冷冻液3(5.1%)(P<0.05)。说明采用玻璃化冷冻液2冷冻保存山羊卵母细胞可获得较为理想的效果。  相似文献   

11.
目的 精液冷冻保存作为人工授精不可或缺的一个技术环节,对优质畜禽种群的繁衍和保存有着至关重要的意义。目前,因精液冻存时冻存液成分、冷冻方法和外部氧化应激等因素影响,导致冻存精液品质不一。蜂王浆(RJ)已被证明能提高动物精液品质,蜂王浆主蛋白(MRJPs)作为RJ主要生物活性成分物质,具有多种生物活性和抗氧化能力。方法 为提高冻存精子品质,本研究开展了在公牛精液冻存液中添加不同浓度(0 g/25 mL、0.01 g/25 mL、0.02 g/25 mL、0.03 g/25 mL、0.04 g/25 mL)的MRJPs冻干粉,对冻存48 h后解冻精子的总活力、前进性活力、畸形率等相关参数进行了观察评估。结果 添加MRJPs呈浓度依赖性方式显著降低精子总活力、快速前进性活力、缓慢前进性活力和直行性活力(P<0.05),而且精子畸形率和精子原地移动活力与对照组相比无显著差异(P> 0.05)。结论 精液冻存液中添加MRJPs会抑制冻存精子活力,因此,对MRJPs能以何种方式提高精液品质的研究还需要进一步开展。  相似文献   

12.
This study evaluated the effects of cryopreservation by slow freezing on the mitochondrial function, DNA integrity, and developmental ability of bovine embryos and examined whether resveratrol treatment of the frozen‐thawed blastocysts improved embryonic viability. In vitro produced bovine embryos were subjected to slow freezing. After thawing, the ATP content and mitochondrial DNA integrity (mtDNA), determined by real‐time PCR targeting short and long mitochondrial sequences, was found to be lower in frozen‐thawed embryos than in fresh embryos, and mtDNA copy number was significantly reduced during the 24‐hr incubation post warming. Furthermore, immunostaining against double‐strand DNA revealed DNA damage in frozen‐thawed embryos. When frozen‐thawed embryos were incubated in the medium containing 0.5 µM resveratrol, SIRT1 expression, and survival rate of the embryos significantly improved compared with the vehicle‐treated embryos. In addition, cell‐free mtDNA content in medium was higher in case of resveratrol‐treated embryos than of vehicle‐treated embryos. In conclusion, slow freezing affects mitochondrial integrity and function in the blastocysts. In the frozen‐thawed embryos, mitochondria were removed during post‐thawing incubation and resveratrol enhanced the process, resulting in improved survivability of the embryos.  相似文献   

13.
在简要介绍牛精液冷冻技术发展历史的基础上,分析了牛冷冻精液的现状和影响牛冷冻精液受胎率的主要因素,指出了我国牛冷冻精液存在的问题,应加强精液冷冻机理、精液冷冻保护剂、精子质量评估和分离精子的冷冻保存等方面的研究,最后展望了牛冷冻精液的发展前景。  相似文献   

14.
二甲基甲酰胺对猪精液冷冻保存效果的影响   总被引:3,自引:2,他引:1  
用二甲基甲酰胺(DMF)完全替代甘油,比较不同平衡时间和不同DMF添加量对猪精液冷冻保护效果的影响。结果表明,DMF能完全替代甘油,获得较好的冷冻保护效果。最佳平衡时间为90 min,解冻后精子活力为(44.57±0.72)%,显著高于对照组和其他组(P0.05)。当DMF添加量为5%时,冻后精子活力、活率、线粒体活性、顶体完整率和质膜完整率分别为(49.91±0.39)%(、46.51±0.26)%、(47.51±0.52)%(、49.84±0.56)%、(46.30±1.61)%,均显著高于2%、3%、6%DMF添加组(P0.05),但与4%DMF添加组相比,冻后精子活力、活率和质膜完整率差异不显著(P0.05)。本试验结果表明,DMF最适添加量为5%。  相似文献   

15.
The main objective of the present work was to study the effect of cryopreservation of European eel sperm both on the sperm viability and the spermatozoa head morphology. Spermatozoa morphology was evaluated with computer-assisted morphology analysis after collection in fresh samples, after adding the freezing medium containing dimethyl sulfoxide as cryoprotectant and, finally, after the cryopreservation process and thawing. Cell viability was assessed, in both fresh and thawed samples, by Hoechst 33258 staining. Computer-assisted sperm analysis (CASA) was used to determine the percentage of motile cells and to measure motility parameters in sperm samples. A significant decrease of head perimeter (12.56%) and area (17.90%) was detected from spermatozoa in fresh to thawed samples, indicating that cells do not recover the original size after the cryopreservation process. CASA was used to measure the percentage of motile cells (51.9%) and spermatozoa motility parameters such as curvilinear, straight line and angular path velocities, as well as beating cross frequency. This technique was employed in the fresh sperm samples but proteins present at the freezing medium (L-alpha-phosphatidylcholine) made impossible to use this last technique in thawed samples. When sperm viability was assessed by Hoechst staining, a significant decrease of approximately 15% (73.10 vs 58.26%) of alive spermatozoa was registered from fresh to thawed samples. The percentage of motile cells measured by CASA in fresh samples (51.9%) was lower than the percentage of alive cells determined by Hoechst stainning, suggesting the existence of different batches of spermatozoa in different stages of development, even during the eight to tenth weeks of treatment, when the highest sperm quality was found.  相似文献   

16.
The aim of this study was to investigate the influence of boar breed on the optimal concentration of gamma‐oryzanol on the qualities of cryopreserved boar semen. Semen was collected from 20 boars (10 Duroc, 5 Large white and 5 Landrace boars). The semen sample was divided into five groups (A–E) according to the concentration of gamma‐oryzanol in extender II, that is 0, 0.08, 0.16, 0.24 and 0.32 mm , respectively. The semen was cryopreserved by nitrogen vapour and storage in nitrogen tank (?196°C). After storage for a week, samples were thawed at 50°C for 12 s and evaluated for progressive motility, sperm viability and acrosome integrity. The results demonstrated that gamma‐oryzanol significantly improved progressive motility, viability and acrosome integrity of frozen–thawed boar semen. Considering the influence of breeds on the optimal concentration of gamma‐oryzanol, for Duroc boar, gamma‐oryzanol at 0.16 mm (group C) yielded the highest percentage of progressive motility, sperm viability and acrosome integrity. For Large white and Landrace boars, gamma‐oryzanol at 0.24 mm (group D) showed a significantly higher percentage of progressive motility, viability (not significant in Landrace) and acrosome integrity than other concentrations. In conclusion, the optimal concentration of gamma‐oryzanol needed for boar semen cryopreservation in lactose–egg yolk (LEY) freezing extender is not only depended on individual boar but also breed of boar, that is 0.16 mm for Duroc and 0.24 mm  for Large white and Landrace.  相似文献   

17.
The objective of this study was to investigate the effects of beta‐mercaptoethanol (β‐ME) on post‐thaw embryo developmental competence and implantation rate of mouse pronuclear (PN) embryos that were cryopreserved after slow freezing, solid surface vitrification (SSV) or open‐pulled straw (OPS) vitrification methods. Mouse PN embryos were cryopreserved by using slow freezing, SSV and OPS methods. After cryopreservation, freeze–thawed PN embryos were cultured up to blastocyst stage in a defined medium supplemented without or with 50 μm β‐ME. The blastocyst formation rate of embryos that were cryopreserved by slow freezing method (40.0%) or vitrified by OPS method (18.3%) were lower than those vitrified by SSV method (55.6%) and fresh embryos (61.9%) in the absence of 50 β‐ME in the culture media (p < 0.05). The blastocyst formation rate of embryos that were cryopreserved by slow freezing method (53.1%) or by OPS method (41.9%) were lower than those vitrified by SSV method (79.5%) and that of fresh (85.7%) in the presence of β‐ME in the culture media (p < 0.05). The embryos transfer results revealed that the implantation rate of blastocyst derived from mouse PN embryos vitrified by SSV method (31.9% vs 51.2%) was similar to that of the control (39.0% vs 52.5%), but higher than those cryopreserved by slow freezing (28.2% vs 52.0%) and by OPS method (0.0% vs 51.2%) (p < 0.05). In conclusion, supplementation of β‐ME in an in vitro culture medium was shown to increase survival of embryo development and implantation rate of frozen–thawed mouse PN embryos after different cryopreservation protocols.  相似文献   

18.
为优化猪精子冷冻技术,提高解冻后精子的活力和受精能力,本试验分别以含精浆浓度为10%、20%和30%的冷冻保护剂处理精子,以冷冻前、解冻后精子活力和质膜完整性,解冻后精子进行体外受精(IVF)的卵裂率和囊胚率等作为检测指标,同时以含有卵黄的Tris-柠檬酸-葡萄糖(Tris-citric acid-glucose,TCG)冷冻基础液作为对照研究精浆对猪冷冻精子的保护作用。结果显示,在含有10%精浆浓度的稀释液中,冷冻前质膜完整性,解冻后精子活率、质膜完整性、IVF囊胚率相对于对照组均显著提高(P<0.05);当含有10%精浆的冷冻精液解冻后用于人工授精时,与配母猪妊娠率、窝产仔数、窝产活仔数等仍显著低于鲜精授精组(P<0.05)。上述结果表明,含10%精浆的冷冻保护剂能提高精子的冷冻后活力和IVF胚胎发育率,但用于人工授精配种与鲜精相比还有一定差距。  相似文献   

19.
鸡胚精原干细胞体外保存能力的研究   总被引:4,自引:1,他引:4  
采用二酶3步法获取孵化第19 d的鸡胚精原干细胞(SSCs),比较在快速冷冻条件下3种冷冻保护剂(DMSO、乙二醇、甘油)在3个浓度5%、10%、15%条件下对鸡胚精原干细胞的冷冻保存效果进行研究。结果显示:(1)当DMSO的浓度为5%、10%及15%时,复苏后细胞存活率分别为73.1%、88.6%和74.8%,三者差异显著(P〈0.05);而10%DMSO保存精原干细胞的存活率、复苏后培养细胞生长和集落形成均显著高于其它2个浓度;当乙二醇浓度为5%、10%和15%时,复苏后细胞存活率分别为69.4%、83.1%和65.2%,三者差异显著(P〈0.05);复苏后无论饲养层存在与否,SSCs均能增殖,但未有AKP阳性集落生成;当甘油浓度为5%、10%、15%时,复苏后细胞存活率均小于15%,三者差异不显著(P〉0.05);复苏后细胞存活时间极短,仅存活12 h左右;(2)当在10%DMSO浓度条件,复苏后SSCs在有饲养细胞层的条件下,培养5 d形成集落,表明10%DMSO是鸡胚精原干细胞适宜的冷冻保护剂。  相似文献   

20.
为探讨在冷冻稀释液中添加谷胱甘肽(GSH)对犬精液冷冻保存效果的影响,采用按摩法采集5只杂种土犬的精液,离心去精清后,在冷冻液中分别加入0.5、1.0、1.5、2.0、2.5 mmol/L的GSH,制成0.25 mL的冻精进行冷冻保存,以不添加GSH的处理组作为对照组。解冻后在含有5% CO2的空气、37 ℃、相对饱和湿度条件下孵育10 h,分别在孵育0、2、4、6、8、10 h时检查精子活力。结果显示:冻融后0 h,0.5、1.0 mmol/L GSH处理组的精子活力较高,分别为0.36和0.38,均显著(P<0.05)高于对照组和2.0、2.5 mmol/L处理组,且两者之间差异不显著(P>0.05);1.0 mmol/L处理组的精子顶体完整率最高,为85.10%,显著(P<0.05)高于对照组,同时,其精子畸形率最低,为23.00%,显著(P<0.05)低于对照组。冻融后体外孵育2、4 h时,0.5、1.0 mmol/L处理组的精子活力均较高,其中,0.5 mmol/L处理组在体外孵育4 h时,其精子活力仍可达到0.30;孵育6 h时,1.0 mmol/L处理组精子活力最高,显著(P<0.05)高于对照组和2.0、2.5 mmol/L处理组;孵育8 h时,各GSH处理组的精子活力均显著(P<0.05)高于对照组;在孵育至10 h时,各GSH处理组的精子活力较其他孵育时间均有较大幅度的下降,未检测到对照组中有呈直线运动的精子。综上提示,在犬精液冷冻液中添加0.5~1.0 mmol/L的GSH能够显著提高冻融后的精子质量和体外存活时间。  相似文献   

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