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首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Relationship between intracellular ice formation in oocytes of the mouse and Xenopus and the physical state of the external medium--a revisit.
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Relationship between intracellular ice formation in oocytes of the mouse and Xenopus and the physical state of the external medium--a revisit.

机译:再次探讨小鼠和非洲爪蟾卵母细胞中细胞内冰的形成与外部介质的物理状态之间的关系。

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摘要

We have previously reported that intracellular ice formation (IIF) in mouse oocytes suspended in glycerol/PBS solutions or ethylene glycol (EG)/PBS solutions and rapidly cooled to -50 degrees C or below occurs at temperatures where a critical fraction of the external water remains unfrozen [P. Mazur, S. Seki, I.L. Pinn, F.W. Kleinhans, K. Edashige, Extra- and intracellular ice formation in mouse oocytes, Cryobiology 51 (2005) 29-53; P. Mazur, I.L. Pinn, F.W. Kleinhans, The temperature of intracellular ice formation in mouse oocytes vs. the unfrozen fraction at that temperature, Cryobiology 54 (2007) 223-233]. For mouse oocytes in PBS or glycerol/PBS that fraction is 0.06; for oocytes in EG that fraction was calculated to be 0.13, more than double. The fractions unfrozen are computed from ternary phase diagrams. In the previous publication, we used the EG data of Woods et al. [E.J. Woods, M.A.J. Zieger, D.Y. Gao, J.K. Critser, Equations for obtaining melting points for the ternary system ethylene glycol/sodium chloride/Water and their application to cryopreservation., Cryobiology 38 (1999) 403-407]. Since then, we have determined that ternary phase diagrams for EG/NaCl/water synthesized by summing binary phase data for EG/water NaCl/water gives substantially different curves, which seem more realistic [F.W. Kleinhans, P. Mazur, Comparison of actual vs. synthesized ternary phase diagrams for solutes of cryobiological interest, Cryobiology 54 (2007) 212-222]. Unfrozen fractions at the temperatures of IIF computed from these synthesized phase diagrams are about half of those calculated from the Woods et al. data, and are in close agreement with the computations for glycerol; i.e., IIF occurs when about 92-94% of the external water is frozen. A parallel paper was published by Guenther et al. [J.F. Guenther, S. Seki, F.W. Kleinhans, K. Edashige, D.M. Roberts, P. Mazur, Extra-and intra-cellular ice formation in Stage I and II Xenopus laevis oocytes, Cryobiology 52 (2006) 401-416] on IIF in oocytes of the frog Xenopus. It too examined whether the temperatures of IIF were related to the unfrozen fractions at those temperatures. It also used the Woods et al. ternary phase data to calculate the unfrozen fractions for EG solutions. As reported here, once again the values of these unfrozen fractions are substantially different from those calculated using synthesized phase diagrams. With the latter, the unfrozen fractions at IIF become very similar for EG and glycerol.
机译:我们以前曾报道过,悬浮在甘油/ PBS溶液或乙二醇(EG)/ PBS溶液中并迅速冷却至-50摄氏度或更低温度的小鼠卵母细胞中的细胞内冰形成(IIF)发生在一定比例的外部水温下保持冻结[P. Mazur,S.Seki,IL Pinn,F.W.Kleinhans,K.Edashige,小鼠卵母细胞中细胞外和细胞内冰的形成,《冷冻生物学》 51(2005)29-53。马修(P. Mazur) Pinn,F.W.Kleinhans,小鼠卵母细胞中细胞内冰形成的温度与该温度下的未冷冻部分的比较,Cryobiology 54(2007)223-233]。对于PBS或甘油/ PBS中的小鼠卵母细胞,该分数为0.06;对于EG中的卵母细胞,该分数被计算为0.13,是两倍多。从三元相图计算未冻结的分数。在以前的出版物中,我们使用了Woods等人的EG数据。 [E.J.伍兹,M.A.J.齐格(D.Y.高建国Critser,用于获得三元系统乙二醇/氯化钠/水的熔点的方程式及其在冷冻保存中的应用,Cryobiology 38(1999)403-407]。从那时起,我们已经确定了通过将EG /水NaCl /水的二元相数据相加而合成的EG / NaCl /水的三元相图给出了实质上不同的曲线,这似乎更现实。 Kleinhans,P. Mazur,冷冻生物学关注的溶质的实际与合成三元相图的比较,《冷冻生物学》 54(2007)212-222]。由这些合成相图计算得到的IIF温度下的未冷冻馏分约为Woods等人(美国)的计算的一半。数据,并且与甘油的计算非常吻合;即,当约92-94%的外部水被冻结时,就会发生IIF。 Guenther等人发表了一篇平行论文。 [J.F. Guenther,S.Seki,F.W. Kleinhans,K.Edashige,D.M. Roberts,P. Mazur,第I和II期非洲爪蟾卵母细胞的胞外和细胞内冰形成,关于冷冻Xenopus卵母细胞IIF的冷冻生物学52(2006)401-416]。它还检查了IIF的温度是否与那些温度下的未冷冻馏分相关。它还使用了伍兹等。三元相数据来计算EG溶液的未冻结分数。如此处所报告的,这些未冻结分数的值再次与使用合成相图计算出的值大不相同。对于后者,EG和甘油在IIF的未冷冻馏分变得非常相似。

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