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首页> 外文期刊>Molecular reproduction and development >INFLUENCE OF GENETIC BACKGROUND AND MEDIA COMPONENTS ON THE DEVELOPMENT OF MOUSE EMBRYOS IN VITRO
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INFLUENCE OF GENETIC BACKGROUND AND MEDIA COMPONENTS ON THE DEVELOPMENT OF MOUSE EMBRYOS IN VITRO

机译:遗传背景和培养基成分对小鼠胚胎体外发育的影响

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One-cell embryos from some inbred and random-bred mice, but not those derived from certain Fl hybrids, suffer from a block during in vitro development known as the two-cell block. This two-cell block can be overcome by removing glucose or inorganic phosphate from the culture system or by altering the ratio of other medium components such as sodium, potassium, or bicarbonate. This issue is made more complex by the fact that the rate of development is different for each strain of mouse and this rate of development is invariably slowed under in vitro culture conditions. This study investigated the role of glucose and inorganic phosphate, individually or in combination, in relation to the two-cell block, and rate of development in vitro of two random-bred strains (CF-1 and CD-1) and an F2 hybrid derived from a nonblocking Fl hybrid cross (C57B1/6NCr x C3H/HeNCr). Results were compared with in vivo data for each strain, and between media. There was a significant difference in the rate of preimplantation development in vivo of the three strains chosen, which was mirrored in vitro, regardless of the medium. The two random-bred strains suffered from a glucose-related two-cell block which was primarily mediated by inorganic phosphate. Inorganic phosphate was detrimental to embryo development regardless of strain or the presence of glucose. Although glucose, in the absence of inorganic phosphate, resulted in some blocking in development in the inbred strains initially, its presence in media was associated with increased rates of development at later stages in embryos that did not block. Glucose, but not inorganic phosphate, was beneficial but not essential to the development of the F2 embryos. The results of this study demonstrated that mouse embryos from different strains have differential rates of development in vivo and in vitro, and different sensitivities to glucose and inorganic phosphate. The two-cell block was primarily induced in the combined presence of glucose and inorganic phosphate. Glucose was beneficial in the absence of inorganic phosphate, and inorganic phosphate was detrimental to the rate of in vitro development. (C) 1996 Wiley-Liss, Inc.
机译:来自一些近交和随机繁殖的小鼠的单细胞胚胎,而不是衍生自某些F1杂种的那些,在体外发育过程中遭受被称为两细胞阻断的阻断。通过从培养系统中除去葡萄糖或无机磷酸盐或改变其他培养基成分(如钠,钾或碳酸氢盐)的比例,可以克服这种两细胞阻断的情况。每个小鼠品系的发育速率不同,并且在体外培养条件下,该发育速率总是减慢,这一事实使这一问题变得更加复杂。这项研究调查了葡萄糖和无机磷酸盐单独或组合在两细胞阻断方面的作用,以及两种随机繁殖的菌株(CF-1和CD-1)和F2杂种的体外发育速度衍生自无阻碍的F1杂种杂交(C57B1 / 6NCr x C3H / HeNCr)。将结果与每种菌株以及培养基之间的体内数据进行比较。所选择的三种菌株在体内的植入前发育速率存在显着差异,无论在何种培养基下均可在体外反映出来。这两个随机繁殖的菌株遭受葡萄糖相关的两细胞阻滞作用,这主要是由无机磷酸盐介导的。不管菌株或葡萄糖的存在,无机磷酸对胚胎发育都是有害的。尽管葡萄糖在缺乏无机磷酸盐的情况下最初导致近交菌株的发育受到一定程度的阻碍,但其在培养基中的存在与未阻断的胚胎后期发育速率的提高有关。葡萄糖而不是无机磷酸盐是有益的,但对F2胚胎的发育不是必需的。这项研究的结果表明,不同品系的小鼠胚胎体内和体外的发育速率不同,对葡萄糖和无机磷酸盐的敏感性也不同。主要在葡萄糖和无机磷酸盐的联合存在下诱导两细胞阻断。葡萄糖在没有无机磷酸盐的情况下是有益的,并且无机磷酸盐对体外发育的速度有害。 (C)1996 Wiley-Liss,Inc.

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