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首页> 外文期刊>Theriogenology >Effect of cumulus cell coculture and oxygen tension on the in vitro developmental competence of bovine zygotes cultured singly
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Effect of cumulus cell coculture and oxygen tension on the in vitro developmental competence of bovine zygotes cultured singly

机译:卵丘细胞共培养和氧分压对单培养牛合子体外发育能力的影响

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摘要

The customary practice in bovine in vitro embryo production (IVP) is to handle oocytes and embryos in groups; although there are several reasons for establishing an IVP system for individual embryos that allows for following a single oocyte from retrieval through development to the blastocyst stage. To date, reports of individual IVP are inconsistent, and in most cases, resulted in unsatisfactory blastocyst rates. The objective of this study was to develop an efficient system for routine in vitro culture of individual bovine embryos. Single culture of zygotes in 2 different culture volumes (20 and 500muL) yielded less than 3% blastocysts in experiment 1. In an attempt to improve these results, cumulus cells were added to the culture medium in experiment 2, after which blastocyst rates increased from 2.9 to 21.8% (P<0.05). The third experiment revealed that an atmospheric oxygen tension, which is commonly used with somatic cell coculture, was not beneficial during individual embryo-cumulus cell coculture, because it resulted in lower blastocyst rates (Odds ratio 0.57, P<0.001) and in lower blastocyst cell numbers (P<0.05), when compared to culture in 5% oxygen. Grouped vs. single culture and reduced oxygen tension did not have a significant effect on cleavage and hatching rates. In experiment 4, three different cumulus cell coculture conditions during individual culture were tested and compared with the cleavage, blastocyst and hatching rates, and cell number of group culture (73.2%, 36.4%, 66.7% and, 155.1+/-7.26, respectively). The outcome variables after individual embryo culture on a 5-day-old cumulus cell monolayer (74.1%, 38.2%, 71.9% and 133.4+/-9.16, respectively), and single culture in the presence of added cumulus cells (69.9%, 31.9%, 66.7% and 137.3+/-8.01, respectively) were not significantly different from those obtained after group culture (P<0.05). Though, individual culture in a cumulus cell conditioned medium significantly reduced both the cleavage (59.0%) and blastocyst rates (6.3%). These results demonstrate that single culture of bovine zygotes can be fully sustained by coculture with cumulus cells in a low oxygen environment; implementation of these findings in our IVP system produced blastocysts comparable in quantity and quality to those obtained by group culture. These results were consistently achieved after acquiring experience and expertise in the handling of single zygotes.
机译:牛体外胚胎生产(IVP)的惯例是分组处理卵母细胞和胚胎。尽管为单个胚胎建立IVP系统的原因有很多,这些系统允许跟踪单个卵母细胞从恢复到发育到胚泡期。迄今为止,有关单个IVP的报告不一致,并且在大多数情况下,导致的胚泡发生率不令人满意。这项研究的目的是开发一种有效的系统,用于单个牛胚胎的常规体外培养。在2个不同的培养体积(20和500μL)中,受精卵的单一培养在实验1中产生不到3%的胚泡。为了改善这些结果,在实验2中向培养基中添加了卵丘细胞,之后胚泡率从2.9至21.8%(P <0.05)。第三个实验表明,常用于体细胞共培养的大气氧张力在单个胚胎-累积细胞共培养期间无益,因为它导致较低的胚泡率(赔率比0.57,P <0.001)和较低的胚泡与在5%氧气中培养的细胞数相比(P <0.05)。分组培养与单培养和降低氧气张力对卵裂和孵化率没有显着影响。在实验4中,测试了单个培养过程中三种不同的卵丘细胞共培养条件,并将其与卵裂,胚泡和孵化率以及分组培养的细胞数进行了比较(分别为73.2%,36.4%,66.7%和155.1 +/- 7.26) )。在5天大的卵丘细胞单层上分别进行胚胎培养后的结果变量(分别为74.1%,38.2%,71.9%和133.4 +/- 9.16),以及在添加卵丘细胞的情况下进行单次培养(69.9%, 31.9%,66.7%和137.3 +/- 8.01)与组培养后的差异无统计学意义(P <0.05)。但是,在卵丘细胞条件培养基中进行单独培养会显着降低卵裂率(59.0%)和胚泡率(6.3%)。这些结果表明,在低氧环境下与卵丘细胞共培养可以完全维持牛合子的单一培养。在我们的IVP系统中实施这些发现后,所产生的胚泡在数量和质量上均与群体培养获得的胚泡相当。在获得单一合子的处理经验和专业知识后,这些结果始终如一。

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