...
首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Quantitative microinjection of trehalose into mouse oocytes and zygotes, and its effect on development.
【24h】

Quantitative microinjection of trehalose into mouse oocytes and zygotes, and its effect on development.

机译:海藻糖定量显微注射到小鼠卵母细胞和受精卵中,及其对发育的影响。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Sugars such as trehalose are effectively used by various organisms as protective agents to undergo anhydrobiosis and cryobiosis. The objective of this study was first to establish a method for quantitative delivery of trehalose as a model sugar into oocytes, and then to evaluate its effect on development of mouse zygotes. To this end, a quantitative microinjection technique was developed using volumetric response of microdroplets suspended in dimethylpolysilaxene. To verify accuracy of this technique, both microdroplets and oocytes were microinjected with fluorophore-labeled dextran. Thereafter, injection volumes were calculated from fluorescence intensity, and volumetric responses of both microdroplets and oocytes. Comparison of calculated injection volumes revealed that this technique reflects microinjection into oocytes with pL-accuracy. The next series of experiments focused on toxicity of injection buffers (i.e., 10mM Tris and 15mM Hepes) and trehalose. Microinjection of Hepes and Tris buffer in the presence of 0.1M trehalose resulted in blastocyst rates of 86 and 72%, respectively, without a significant difference when compared to controls (86%). In subsequent experiments, Hepes was used as the injection buffer, and embryonic development of zygotes was studied as a function of intracellular trehalose concentrations. Microinjection of trehalose up to 0.15M resulted in development to blastocyst stage similar to controls (85 and 87%, respectively) while the blastocyst rate was significantly decreased (43%) in the presence of 0.20M intracellular trehalose. When transferred to foster mothers, trehalose-injected zygotes (0.1M) implanted and developed to day 16 fetuses similar to controls, healthy pups were born. The findings of this study suggest that trehalose at effective intracellular concentrations does not impair development of mouse zygotes.
机译:诸如海藻糖之类的糖已被各种生物有效地用作保护剂,以进行脱水和冷冻。这项研究的目的是首先建立一种将海藻糖作为模型糖定量递送到卵母细胞中的方法,然后评估其对小鼠受精卵发育的影响。为此,利用悬浮在二甲基聚硅ax烯中的微滴的体积响应,开发了定量显微注射技术。为了验证该技术的准确性,对微滴和卵母细胞均进行了荧光团标记的葡聚糖微注射。此后,从荧光强度以及微滴和卵母细胞的体积响应计算注射量。计算注射量的比较显示,该技术反映了以pL精度向卵母细胞显微注射。接下来的一系列实验着重于注射缓冲液(即10mM Tris和15mM Hepes)和海藻糖的毒性。在0.1M海藻糖存在下显微注射Hepes和Tris缓冲液的囊胚率分别为86%和72%,与对照组(86%)相比无显着差异。在随后的实验中,将Hepes用作注射缓冲液,并研究了受精卵的胚胎发育与细胞内海藻糖浓度的关系。微量注射海藻糖至0.15M导致发育至囊胚期,与对照组相似(分别为85%和87%),而在0.20M细胞内海藻糖存在下,囊胚率显着降低(43%)。当将其移植到寄养母亲时,植入海藻糖注射的受精卵(0.1M)并发育至与对照组相似的第16天胎儿,从而诞生了健康的幼崽。这项研究的发现表明,有效细胞内浓度的海藻糖不会损害小鼠受精卵的发育。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号