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1.
昆明小鼠原核胚在不同培养液中的体外发育   总被引:1,自引:0,他引:1  
目的优化昆明小鼠原核胚胎体外培养系统,提高胚胎发育率.方法小鼠经超排获得原核期胚胎,制备小鼠输卵管上皮共培养系统,使用M16、CZB和KSOM培养液进行体外培养,并对体内和体外发育的囊胚细胞计数.结果在KSOM和CZB中添加胎牛血清能显著提高胚胎囊胚发育率(14.71%对85.71%;6.45%对10.81%);输卵管上皮共培养可以提高胚胎的卵裂率和囊胚发育率,同时提高胚胎质量和同步发育,小鼠胚胎在KSOMFBS中囊胚发育率达85.19%,显著高于CZB和M16.结论在小鼠输卵管上皮共培养条件下,KSOMFBS能够很好支持昆明小鼠原核期胚胎体外发育.  相似文献   

2.
丁芳  周红林 《动物学研究》2007,28(5):501-506
通过在CZB培养液中添加不同浓度葡萄糖及在胚胎发育的不同阶段加入葡萄糖,对小鼠胚胎进行体外培养,以探讨葡萄糖在小鼠早期胚胎体外发育中的作用。其结果表明,小鼠胚胎在含糖CZB与在无糖CZB中培养比较,4-细胞发育率无差异;各浓度葡萄糖组囊胚率显著高于无糖组,其中3.0mmol/L浓度组囊胚细胞数显著高于其余组;实验二:2-细胞至4-细胞、4-细胞至桑椹胚前添加葡萄糖囊胚率显著提高。上述结果证明,在小鼠胚胎体外培养中加入葡萄糖不会导致2-细胞阻滞;葡萄糖浓度增加至10mmol/L对小鼠胚胎无毒性作用,其最适浓度为3.0mmol/L;2-细胞至4-细胞、4-细胞至桑椹胚前添加葡萄糖是必要的。关键词 葡萄糖;小鼠;2-细胞阻滞;胚胎;体外发育  相似文献   

3.
利用小鼠抗5-甲基胞嘧啶(5MeC)单克隆抗体检测了体外培养小鼠四倍体早期胚胎的基因组甲基化模式。结果表明: 利用电融合方法制备的小鼠四倍体胚胎在体外培养体系中经历细胞质融合、细胞核融合及细胞继续分裂发育直到囊胚期的过程, 在细胞质融合的时候胚胎卵裂球同体内体外培养二倍体胚胎一样, 呈现高度甲基化状态; 在细胞核开始融合的时候, 甲基化水平急速下降, 在细胞核完全融合的时候甲基化水平达到最低点; 随着胚胎继续分裂, 胚胎甲基化水平逐渐增加, 在桑葚胚期甲基化水平最高; 但是囊胚期四倍体胚胎内细胞团同滋养层细胞甲基化荧光信号没有差别, 这与体内体外培养二倍体囊胚内细胞团细胞甲基化荧光强度高于滋养层细胞甲基化荧光强度不同。因此, 小鼠体外培养四倍体胚胎的甲基化模式是不正常的, 这可能是四倍体小鼠难以发育到妊娠足月的原因之一。这是对小鼠四倍体早期胚胎基因组甲基化模式的首次报道。  相似文献   

4.
旨在探讨丙酮酸和乳酸对猪(Susscrofa)胚胎早期发育的影响,将NCSU-23培养基中的5.56mmol/L葡萄糖替换为0.2mmol/L丙酮酸、5.7mmol/L乳酸,并将此培养基命名为mNCSU-23。根据实验设计,孤雌胚及核移植胚转移到mNCSU-23或NCSU-23中培养。激活第2天统计孤雌胚及核移植胚中的5~8细胞胚胎数。激活第6天统计孤雌胚及核移植胚囊胚形成率及囊胚细胞数。实验结果表明,mNCSU/NCSU处理组的5~8细胞胚胎数及囊胚数显著高于对照组(P0.05);单纯使用mNCSU培养猪胚胎时,囊胚率最低,发育结果最差(P0.05)。本研究证实,在体外培养前两天,用乳酸和丙酮酸代替培养基中的葡萄糖对胚胎发育有利。  相似文献   

5.
生长素是促进动物生长发育所必需的激素之一。本研究探索牛生长激素(bovine growth hormone,bGH)对小鼠胚胎发育的影响。将牛生长激素基因连接到慢病毒载体(Lenti-CMV-EF1-eGFP)形成Lenti-CMV-bGH/EF1-eGFP,重组病毒经293T细胞包装后直接感染小鼠胚胎和G1胚胎干细胞(embryonicstemcells,ESCs)。阳性表达的胚胎经体外培养,发育到囊胚期的胚胎进行胚胎移植,为直接感染组。感染的小鼠G1胚胎干细胞注射到正常昆明白小鼠囊胚制作嵌合胚胎后进行胚胎移植,为嵌合体组。分别解剖3只妊娠15d的直接感染组和嵌合组的小鼠,观察受体小鼠妊娠情况。结果发现,在1-细胞期感染胚胎,感染效率可达(74.7±6.7)%,在2-细胞期连续感染,感染效率为(79.4±5.7)%,两组感染方法的效率没有显著差异(P>0.05)。1次和2次感染胚胎发育和正常胚胎之间没有显著差异((87.6±3.5)%,(85.4±6.3)%VS(83.0±5.5)%,P>0.05)。所有移植的胚胎没有发育到足月,解剖妊娠15d的小鼠,发现直接感染组没有妊娠,嵌合组胎盘发育正常,但胚胎部分已经死亡和被吸收。因此,本研究证明bGH对小鼠附着前胚胎发育没有影响,但影响小鼠胚胎附着后的发育。这为后期bGH的研究提供参考。  相似文献   

6.
克服昆明小鼠体外受精卵发育阻滞方法的研究   总被引:2,自引:0,他引:2  
本研究应用CZB和WM培养液进行昆明小鼠体外受精胚胎的发育培养,建立了一个可行的胚胎体外培养的新方法,并通过改变培养液的成分及其含量,对胚胎发育的阻滞机理和突破方法进行了初步的探索。培养于WM中的受精卵发生阻滞,有48%停留于2细胞阶段;而CZB中的胚胎有81%发育为桑椹胚和囊胚。在WM中添加EDTA和谷氨酰胺得到了66%的囊胚;加大WM中乳酸钠和丙酮酸钠的比值未能克服发育的阻滞现象。实验结果表明,EDTA和谷氨酰胺在克服阻滞时具有协同作用。  相似文献   

7.
高浓度葡萄糖对昆明小鼠早期胚胎发育的影响   总被引:1,自引:0,他引:1  
建立昆明小鼠受孕模型,分离并体外培养胚胎细胞.检测了各培养浓度下的细胞增殖、分化与凋亡.胚胎细胞在0.2mmol/L和5.56mmol/L葡萄糖浓度的KSOM培养基中能正常发育和孵化;而在浓度为15.56mmol/L和25.56mmol/L葡萄糖培养基中胚胎发育和孵化均受到损害(P<0.005),且总细胞数和内细胞团细胞数也明显减少(P<0.01),但其细胞凋亡率与0.2mmol/L和5.56mmol/L葡萄糖浓度下胚胎细胞凋亡率无显著性差异(P>0.05).随着葡萄糖浓度的增高,胚泡总的表面积无明显变化,但胚胎细胞密度呈增加趋势.高血糖对早期胚胎的发育具有毒性作用,提示高糖可能导致妊娠合并糖尿病患者的流产和胎儿畸形率升高.  相似文献   

8.
小鼠母源因子对早期胚胎发育的影响   总被引:3,自引:0,他引:3  
在脊椎动物中发育过程中,卵母细胞要经历MII期停滞、受精、早期胚胎发育的启动、胚胎基因组的转录激活、并指导完成个体的发育过程。同时,核移植过程中,分化的细胞核在去核的卵母细胞中能够重编程到胚胎早期的状态并能完成个体的发育过程。在这些发育过程中母源因子都发挥了极其的重要作用。在小鼠胚胎发育研究中发现,小鼠的基因组激活发生在2细胞期,这一时期标志着合子的发育由卵母细胞控制向胚胎控制的过渡,期间发生一系列复杂的生化过程。体外培养的小鼠的胚胎的发育阻断也易发生的2细胞时期。因此对卵母细胞及早期胚胎母源因子的研究,将有利于了解早期体外培养胚胎和克隆胚胎发育失败的原因,为提高体外培养和克隆胚胎发育的成功率提供理论的基础。  相似文献   

9.
用两个不同基因型小鼠胚胎在其8细胞阶段进行体外胚胎融合。待融合的胚胎发育到囊胚期时,将其移植于另一种假孕雌鼠子宫腔内。约17天后发育成熟分娩得四亲体小鼠(Tetraparental mouse)。这种小鼠各组织和器官都含有两种来源的细胞群体。  相似文献   

10.
为了筛选出最佳的小鼠原核期受精卵的体外发育培养系统,分别进行了四个试验。试验I:在体外分别用自配的M16、mM16、KSOM、mKSOM、CZB进行体外发育培养,进而筛选出一种最佳的体外培养系统;试验Ⅱ、Ⅲ、Ⅳ分别:探讨了血清、PVA、rhLIF对小鼠胚胎发育的影响。结果,试验I中胚胎发育到2-细胞的比率差异不明显,但是在mM16和mKSOM中,发育到4-细胞的比率94.7%,90.7%(91/96;78/86)和发育到桑椹胚/囊胚的比率分别为78.1%,67.4%(75/96;58/86)均明显高于其他三种培养液;试验II用10?S代替M16中BSA时,胚胎的发育率均下降,即使在mM16中桑椹胚/囊胚率仅为4.8%(12/35)与对照组M16(40.5%)差异显著(p<0.05);试验Ⅲ用PVA取代mM16和mKSOM中的BSA其体外发育率显著下降,胚胎均无一例发育到桑椹胚/囊胚;试验Ⅳ:rhLIF能提高胚胎在体外的发育率可使mM16培养的胚胎囊胚率、囊胚脱出率分别达到84%(47/56)、39.2%(22/56)。结论:在不添减其他成分前提下,只在M16中添加0.1mMolEDTA、0.5mMol牛磺酸、1000IU/mlrhLIF便可获得84%的囊胚率,同时证明在M16或mM16添加血清都会降低其体外发育率;PVA还不能有效的取代mM16、mKSOM中的血清。  相似文献   

11.
The ratio of male/female embryos may be modified by environmental factors such as maternal diet in vivo and the composition of embryo culture media in vitro. We have used amino acid profiling, a noninvasive marker of developmental potential to compare the effect of sex on the metabolism of bovine blastocysts conceived in vivo and in vitro. Blastocysts were incubated individually for 24 hr in a close‐to‐physiological mixture of amino acids and the depletion or appearance of 18 amino acids measured using HPLC. Blastocysts were then sexed by PCR. Amino acid depletion by in vitro‐produced blastocysts and expanded blastocysts was higher than in embryos conceived in vivo (P = 0.02). When cultured in vitro, female embryos exhibited increased depletion of arginine, glutamate, and methionine and appearance of glycine, while male embryos displayed increased depletion of phenylalanine, tyrosine, and valine. Overall, in vitro‐produced blastocysts exhibited sex‐specific differences in metabolic profiles of 7 out of 18 amino acids; in vivo‐produced, in 2 out of 18. These differences had disappeared by the expanded blastocyst stages. We have also shown that amino acid metabolism can predict the ability of bovine zygotes to develop to the blastocyst stage, providing “proof of principle” for the use of this technology in clinical IVF to select single embryos for transfer and thereby avoid the problem of multiple births. Mol. Reprod. Dev. 77: 285–296, 2010. © 2010 Wiley‐Liss, Inc.  相似文献   

12.
The potential role of endogenous triglyceride in bovine oocyte maturation and preimplantation development has been investigated. Bovine immature oocytes were recovered from abattoir-derived ovaries, matured and fertilised in vitro and the zygotes grown to the blastocyst stage in SOFaaBSA. Methyl palmoxirate (MP) blocks the oxidation of fatty acids by inhibiting mitochondrial carnitine palmitoyltransferase A. The development of zygotes exposed to MP during oocyte maturation, and of zygotes exposed to MP during embryo culture has been assessed in terms of oxygen consumption by oocytes and embryos during a 4-6 hr incubation period in the presence of MP and as blastocyst formation and cell number. Immature oocytes exposed to MP during maturation had reduced capacity to form blastocysts after fertilisation; the same effect was apparent, but to a lesser extent, in zygotes exposed to MP during embryo development. Oxygen consumption values of oocytes and blastocysts in the absence of exogenous substrates were similar to those in control medium containing nutrients. MP-inhibited oxygen consumption of immature oocytes, mature oocytes, cleavage stages embryos and blastocysts by 64, 45, 12 and 13%, respectively. The data are consistent with a role for triglyceride as a key energy source during bovine oocyte maturation and potentially, during preimplantation embryo development.  相似文献   

13.
Li R  Wen L  Wang S  Bou S 《Theriogenology》2006,66(2):404-414
In this study, we examined the development, freezability and amino acid consumption of in vitro produced bovine embryos cultured in a chemically defined medium (SOF+polyvinyl alcohol), supplemented with 24 amino acids at concentrations measured in bovine oviductal or uterine fluid. Amino acids at concentrations in oviductal fluid tested by Elhanssan (EOAA) significantly improved development to the hatched blastocyst stage, compared to Sigma amino acid solutions BME and MEM (SAA). Amino acids at concentrations in uterine fluid tested by Li (LUAA) were not compared to SAA, and development in LUAA was not significantly different from development in EOAA. Amino acids at concentrations in uterine fluid tested by Elhanssan (EUAA) significantly reduced cleavage rate and blocked further embryo development. When the IVF embryos were cultured in EOAA for 48, 72, 96, or 120 h and then transferred to LUAA, blastocyst and hatched blastocyst rates were not significantly affected. The freezability of blastocysts cultured in EOAA for the first 72 h and then moved to LUAA was improved compared to that in SAA. During the 1-8-cell stages, embryos secreted all 23 amino acids (total, 6,368 pmol/embryo). During the 8-cell to morula stages, embryos continued to secrete 21 amino acids (total, 2,495 pmol/embryo), meanwhile embryos began to absorb Arg (70 pmol/embryo) and Gln (18 pmol/embryo). After the morula stage, embryos began to absorb 15 amino acids including Glu, Gly, Arg, and Gln (total, 2,742 pmol/embryo) and secreted eight amino acids (total, 1,616 pmol/embryo). Embryos absorbed only Arg (183 pmol/embryo) and secreted the other 22 amino acids (total, 3,697 pmol/embryo) when the culture medium was not changed during the entire culture period (zygote to blastocyst).  相似文献   

14.
Excess reactive oxygen species (ROS) generated in embryos during in vitro culture damage cellular macromolecules and embryo development. Glutathione (GSH) scavenges ROS and optimizes the culture system. However, how exogenous GSH influences intracellular GSH and improves the embryo developmental rate is poorly understood. In this study, GSH or GSX (a stable GSH isotope) was added to the culture media of bovine in vitro fertilization embryos for 7 days. The cleavage rate, blastocyst rate, and total cell number of blastocysts were calculated. Similarly to GSH, GSX increased the in vitro development rate and embryo quality. We measured intracellular ROS, GSX, and GSH for 0–32-hr postinsemination (hpi) in embryos (including zygotes at G1, S, and G2 phases and cleaved embryos) cultured in medium containing GSX. Intracellular ROS significantly decreased with increasing intracellular GSH in S-stage zygotes (18 hpi) and cleaved embryos (32 hpi). γ-Glutamyltranspeptidase ( GGT) and glutathione synthetase ( GSS) messenger RNA expression increased in zygotes (18 hpi) and cleaved embryos treated with GSH, consistent with the tendency of overall GSH content. GGT activity increased significantly in 18 hpi zygotes. GGT and GCL enzyme inhibition with acivicin and buthionine sulfoximine, respectively, decreased cleavage rate, blastocyst rate, total cell number, and GSH and GSX content. All results indicated that exogenous GSH affects intracellular GSH levels through the γ-glutamyl cycle and improves early embryo development, enhancing our understanding of the redox regulation effects and transport of GSH during embryo culture in vitro.  相似文献   

15.
Two-cell-stage embryos were flushed from the oviducts on Day 2. Zygotes were collected from oviducts on Day 1 (Fertilization In Situ, ISF) or derived from fertilization in vitro (IVF). 2-cell embryos had a high rate of blastocyst development to each embryo concentration from 1 embryo/microliter to 1 embryo/1000 microliters. The zygotes produced by either ISF or IVF were adversely affected by reducing the embryo concentration over this range (P < 0.001), with approximately 82.5% of ISF zygotes developing to blastocysts at highest concentration but only 22.3% at the lowest. For IVF zygotes the corresponding results were 46.3% and 5.2%. The number of cells in each blastocyst from 2-cell embryos was significantly higher than that from ISF and IVF group. The media supplementing Platelet-activating factor (PAF) caused a significant increase in the rate of blastocyst development of IVF zygotes at embryo concentration of 1 embryo/10 microliters (10 ng/ml) and 1 embryo/100 microliters (100 ng/ml). Insulin-like growth factor (IGF) (10 ng/ml) also stimulated development of IVF zygotes when they were cultured at the concentration of 1 embryo/10 microliters. Epidermal growth factor (EGF) was no effect over range of 1-1000 ng/ml to embryo development. The results show that factors necessary for normal embryo development are diluted to suboptimal levels during culture at low embryo concentration. The PAF, IGF-I partially compensate the effects of low embryo concentration during culture and play important roles as autocrine embryotrophic factors.  相似文献   

16.
Hamster embryo development to the blastocyst stage in vitro can be modulated by amino acids. This series of experiments employed both empirically and statistically designed approaches to elucidate which of 20 amino acids inhibit or stimulate development and to devise a complement of amino acids that best supports in vitro development of hamster 1-cell embryos. Development and/or mean cell number were significantly inhibited by the presence of leucine, tyrosine, valine, isoleucine, phenylalanine, arginine, methionine, or cysteine (at 0.5 mM) and isoleucine, phenylalanine, or tryptophan (at 0.05 mM). Three amino acids—glutamine, taurine, and glycine—were stimulatory and in combination improved development; the culture medium containing these amino acids was designated Hamster Embryo Culture Medium-5. Moreover, addition of another eight amino acids—asparagine, aspartic acid, serine, glutamic acid, histidine, lysine, proline and cysteine (medium designated HECM-6)—had a significant stimulatory effect on development over previously formulated culture media for hamster embryos. These results demonstrated that amino acids, alone and in combination, can markedly stimulate or inhibit hamster embryo development in vitro up to the blastocyst stage. Embryo transfer experiments showed that HECM-5 and ?6 (chemically defined, protein-free culture media) supported normal preimplantation embryo development in vitro. This study also indicates that empirically designed embryo culture media formulations can be as effective as those obtained by application of statistical methodologies. © 1995 wiley-Liss, Inc.  相似文献   

17.
Mouse preovulatory oocytes, zygotes, parthenogenetically activated pronuclear oocytes, and early embryos, as well as hamster zygotes, were analyzed, by autoradiography, for the distribution of either “maternal” or newly synthesized RNAs. Early mouse embryos were also examined for the distribution of newly replicated DNA. Special attention was attributed to NLBs in oocytes or to NPBs in early embryos. In mouse oocytes, [5-3H]uridine radioactivity accumulated (after a 2-hr pulse) in vitro, in addition to other nuclear compartments, in the central compact material of the NLBs. There was no cytoplasmic labeling. In all parthenogenetic pronuclear embryos developed from similarly labeled oocytes, this label was distinctly detectable in the central compact material of the NPBs; less intensive labeling was seen in the nucleoplasm and cytoplasm. On the contrary, the central compact part of the mouse NPB did not show labeling in DNA after a continuous culture with [6-3H]thymidine. In mouse and hamster pronuclear zygotes, convincing evidence was obtained for a lack of any newly synthesized nucleic acids in the compact material of NPBs using 4- to 10-hr culture with [8-3H]adenosine. Based on these data, it was shown that the NLBs of oocytes or NPBs of early embryos probably contain RNAs synthesized during the last stages of antral follicle oocyte differentiation. This unique pathway of RNAs in the oocyte—embryo system may explain the specific morphology of both oocyte and early embryo “nucleoli.” © 1995 Wiley-Liss, Inc.  相似文献   

18.
Tests were made of the effects of altering nitrogen metabolism in zygote donor ewes on fetal development and expression of the gene encoding the type II insulin-like growth factor receptor (IGF2R) following the transfer of ovine embryos cultured from these zygotes, either in the absence or presence of serum. Zygotes, recovered from superovulated ewes (32 on a urea supplemented (30 g urea/kg) diet (high N) and 32 on a control diet (low N)) 36 h after intrauterine AI using semen from a single sire, were cultured for 5 days in synthetic oviductal fluid (SOF) media either with BSA and amino acids (SOF-) or with 10% (v/v) steer serum (SOF+). In total, 166 embryos, including 30 in vivo controls, were transferred singly at day 6 post-AI to synchronous recipients and the products of conception recovered at day 125 of gestation. Elevated plasma urea concentrations in zygote donors were associated with accelerated early embryo development, low pregnancy rates (16%) for embryos from the high N, SOF+ treatment, and significantly influenced fetal development and the expression of IGF2R in the fetal heart at day 125 of gestation. Importantly, the culture of sheep zygotes under serum-free conditions led to a high incidence of aberrant conceptus development and IGF2R expression. Consequently, maternal nitrogen metabolism prior to zygote recovery and in vitro culture can influence fetal development and the expression of an imprinted gene following embryo transfer, and these data support the notion that environmental effects on the follicle-enclosed oocyte may contribute to the etiology of the Large Offspring Syndrome.  相似文献   

19.
The developmental response of in vitro fertilized embryos to oxygen and amino acids were compared between in-house bred C57BL/6JNrs (Nrs) and commercially available C57BL/6JSlc (Slc) mice. Under 20% oxygen, the percentage of embryos that developed to blastocysts and expanded blastocysts, and nuclear numbers were lower in Slc embryos than in Nrs embryos. Moreover, the nuclear number did not increase in Slc embryos during 72-96 h culture. Effects of amino acids were beneficial on development of Slc embryos under 20% oxygen, but inhibitory on blastocoel formation at 78 h under 5% oxygen. On the other hand effects of amino acids on Nrs embryos were observed in nuclear number at 72 and 78 h culture under 5% oxygen. Because the present study showed differences in sensitivity to culture conditions between the C57BL/6J substrains, care must be taken in embryo manipulation of this inbred strain in studies of embryo development or other studies.  相似文献   

20.
In angiosperms, a zygote generally divides into an asymmetric two-celled embryo consisting of an apical and a basal cell. This unequal division of the zygote is a putative first step for formation of the apical–basal axis of plants and is a fundamental feature of early embryogenesis and morphogenesis in angiosperms. Because fertilization and subsequent embryogenesis occur in embryo sacs, which are deeply embedded in ovular tissue, in vitro fertilization of isolated gametes is a powerful system to dissect mechanisms of fertilization and post-fertilization events. Rice is an emerging molecular and experimental model plant, however, profile of the first zygotic division within embryo sac and thus origin of apical–basal embryo polarity has not been closely investigated. Therefore, in the present study, the division pattern of rice zygote in planta was first determined accurately by observations employing serial sections of the egg apparatus, zygotes and two-celled embryos in the embryo sac. The rice zygote divides asymmetrically into a two-celled embryo consisting of a statistically significantly smaller apical cell with dense cytoplasm and a larger vacuolated basal cell. Moreover, detailed observations of division profiles of zygotes prepared by in vitro fertilization indicate that the zygote also divides into an asymmetric two-celled embryo as in planta. Such observations suggest that in vitro-produced rice zygotes and two-celled embryos may be useful as experimental models for further investigations into the mechanism and control of asymmetric division of plant zygotes.  相似文献   

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