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S E Zhu

Publications and source records attributed to S E Zhu.

14 recordsLinked to original sources

Transgenic twin lambs cloned by granulosa cells.

The development potential of transgenic adult cells after nuclear transfer (NT) was evaluated. Primary ovine granulosa cells (GC(S)) from a slaughter ovary were transfected with pEGFP-N1 plasmid DNA. Three G418-resistance cell lines (A2, B2 and B4) were used as donor cells in NT. A total of 162 NT blastocysts were then frozen with ethylene glycol solution and stored for five months before transplanted into recipients. Twenty-nine frozen thawed NT blastocysts were transferred into 15 synchronized recipients. Twin lambs (6.9%) derived from B2 line were delivered by cesarean section on day 143 but died after birth. A tumor consisting of lung tissues was found on the surface of left lung of the 4-kg lamb and histological analysis indicated that it resembles a hamartoma. DNA analysis confirmed that two lambs were genetically identical to B2 donor cells. Gene insertion and expression have been detected in fibroblasts cells derived from muscle tissues of the lambs. This study indicates that granulosa cell is a suitable cell type for producing transgenic animals by nuclear transfer. Offspring were produced after long-term storage of NT blastocysts.

Animals↗

Vitrification of in vivo and in vitro produced ovine blastocysts.

Although cryopreservation of bovine embryo has made great progress in recent years, little achievement was obtained in ovine embryo freezing, especially in vitro produced embryos. However, a simple and efficient method for cryopreservation of sheep embryos will be important for application of ovine embryonic techniques such as in vitro fertilization, transgenic, cloning and etc. In this study ovine blastocysts, produced in vivo or in vitro, were cryopreserved by vitrification in EFS40 (40% ethylene glycol (EG), 18% ficoll and 0.5 M sucrose) or GFS40 (40% glycerol (GL), 18% ficoll and 0.5 Mol sucrose). In vitro produced, early blastocysts were directly plunged into liquid nitrogen (LN2) after preparation by one of the following procedures at 25 degrees C: (A) equilibration in EFS40 for 1 min; (B) equilibration in EFS40 for 2 min; (C) equilibration in EFS40 for 30 s following pretreatment in 10% EG for 5 min; (D) equilibration in EFS40 for 30 s following pretreatment in EFS20 for 2 min (E) equilibration in GFS30 for 30 s following pretreatment in 10% GL for 5 min. The survival rates observed after thawing and in vitro culture for 12 h were A 78.0% (39/50), B 50.0% (26/52), C 93.3% (70/75), D 92.0% (46/50) and E 68.0% (34/50). Survival rates were not significantly different for treatments C and D (p>0.05), but those for groups C and D were significantly higher than for A, B and E (p<0.05). After 24 h in vitro culture, hatched blastocyst rates were A 28.0% (14/50), B 21.1% (11/52), C 49.3% (37/75), D 48.0% (24/50), E 32.0% (16/50) and control 54.0% (27/50). The hatching rates for groups A, B and E were significantly lower than the control (p<0.05) in which early IVF blastocysts were cultured in fresh SOFaaBSA medium following treatment in PBS containing 0.3% BSA for 30 min, but for groups C and D it was similar to the control (p>0.05). The freezing procedures A, B and C were used to vitrify in vivo produced, early blastocysts recovered from superovulated ewes. The survival rates of frozen-thawed in vivo embryos were A 94.7% (72/76), B 75.0% (45/60) and C 96.4% (54/56) and for group B was significantly lower than for the other two treatment groups (p<0.05). Hatched blastocyst rates were A 46.0% (35/76), B 26.6% (16/60), C 51.8% (29/56) and the control 56.7% (34/60) in which early blastocysts from superovulation were cultured in fresh SOFaaBSA medium following treatment in PBS containing 0.3% BSA for 30 min. The hatching rate for treatment B was significantly lower than for the control (p<0.05) but did not differ between groups A, C and the control (p>0.05). Frozen-thawed embryos vitrified by procedure C were transferred into synchronous recipient ewes. Pregnancy and lambing rates were similar for embryos transferred fresh or frozen/thawed for both in vivo and in vitro produced embryos. These rates did not differ between in vivo and in vitro embryos transferred fresh (p>0.05). However, for frozen-thawed embryos, both rates were significantly lower for in vitro than for in vivo produced embryos (p<0.05).

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[Study on in vitro culture and cryopreservation by vitrification of blastocysts derived from single mouse 2-cell embryos' blastomeres].

The present experiments were designed to study the effects of glucose, EDTA, glutamine on the in vitro development of single blastomeres from 2-cell embryos in mouse, and the efficiency of cryopreservation of blastocysts from single blastomers with different vitrification. Single blastomeres derived from female ICR x male BDF1 2-cell embryos were cultured in mKRB with or without glucose, EDTA and glutamine, respectively. The expanded blastocyst rates were significantly different between in mKRB with glucose and without glucose (34% vs 65%); The blastomeres were cultured in mKRB with EDTA and glutamine but glucose, the expanded blastocyst rate (90%) was significantly higher than other groups. The blastocysts derived from single blastomeres were vitrified in liquid nitrogen after equilibration in GFS40 for 0.5-2 min, the survival rate 24%-51%. The blastocysts were pretreated in mPBS with 10% glycerol for 5 min, followed by exposure to GFS40 at 25 degrees C for 0.5 min, then vitrified in liquid nitrogen(two-step method), the survival rate was 61%. However, the survival rates increased to 64% and 70% when the blastocysts were vitrified(one-step method) ater equilibration in EFS40 at 25 degrees C for 0.5-1 min.

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[Effects of hypotonic stress on the survival of hatched mouse blastocysts pericryopreservation].

The objective of this study to evaluate the effect of hypotonic stress on developmental potential of hatched blastocysts perivitrification. Hatched mouse blastocysts were vitrified in liquid nitrogen after equilibration in 10% or 20% GL for 5 min and in GFS40 for 30 sec respectively, the survival rates were 93%-97% after the frozen-thawed embryos were cultured in vitro for 24 h. There were no statistical difference between the frozen and the fresh group (P > 0.05). In order to evaluate effects of hypotonic stress on developmental abilities, fresh hatched mouse blastocysts were respectively exposed to 1.00 x, 0.50 x, 0.30 x, 0.25 x and 0.20 x PBS for 30 min, then cultured in mKRB for 24 h, the survival rates were 98%, 99%, 92%, 92% and 50% respectively. The rate in 0.20 X PBS group was significantly lower than in other groups (P < 0.01). When frozen-thawed embryos were directly treated with different osmotic solutions, the survival rates were 88%, 72%, 58%, 11% and 0 respectively in 1.00 x, 0.50 x, 0.30 x, 0.25 x and 0.20 x PBS group. The rate in 1.00 x PBS group was significantly higher than in other groups (P < 0.05). However, when frozen-thawed embryos were first cultured in vitro for 12 h, then exposed to 1.00 x, 0.50 x, 0.30 x, 0.25 x and 0.2 x PBS, the survival rates were 98%, 94%, 82%, 58% and 26% respectively. There was no statistical difference between 1.00 x and 0.50 x PBS group (P > 0.05). Although the rate in 0.30 x, 0.25 x and 0.20 x PBS group was significantly lower than in 1.00 x group(P < 0.01), it was significantly higher than in the same treatment group without in vitro culture(P < 0.05).

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An efficient method for in vitro fertilization in rabbits.

This experiment was carried out to study a simple and efficient method for in vitro production of rabbit embryos. Newly ejaculated rabbit spermatozoa were used to fertilize superovulated oocytes after capacitation in vitro with four different media: (A) isotonic defined medium (DM)+heparin, (B) DM only,(C) DM+ high ionic strength defined medium (HIS), and (D) DM supplemented with 10mM NaHCO3 (mDM) +HIS supplemented with 10mM NaHCO3 (mHIS). The presumptive zygotes were cultured in M199 supplemented with 10% FCS, 1.25mM Na Pyruvate and 0.1mM EDTA (mM199). The cleavage rates after 24h of incubation were 29.3%, 32.1%, 64.9%, and 91.6% respectively, and the rates of blastocyst formation after 72h were 0, 27.3%, 58.4% and 85.2%, respectively. The results in the (D) treatment were significantly better than the other three treatments (p<0.01). Developmental potential of in vivo and in vitro derived zygotes was also compared using the mM199. The percentages of blastocyst and hatching blastocyst in the two groups were 92.5% and 87.2% after 84h, and 84.9% and 83.7% after 108h, respectively, and the two groups were not significantly different (p>0.05). The developmental progress of the two groups was nearly synchronous towards the end of culture. When IVF embryos from 2- to 4-cell stage were transferred into recipients, the pregnancy rate did not differ from in vivo fertilization, but the rate of live young from IVF was significantly lower than from in vivo. The results of this experiment showed that ejaculated rabbit sperm could be capacitated efficiently after treatment of mDM and mHIS, and rabbit IVF embryos achieved great development in mM199 in vitro.

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Uncv (uncovered): a new mutation causing hairloss on mouse chromosome 11.

A pair of mutant mice with a first sparse coat appeared spontaneously in the production stock of BALB/c mice with a normal coat. After being sib-mated, they produced three phenotypes in their progeny: mice with normal hair, mice with a first sparse coat and then a fuzzy coat, and uncovered mice. Genetic studies revealed the mutants had inherited an autosomal monogene that was semi-dominant. By using 11 biochemical loci--Idh, Car2, Mup1, Pgm1, Hbb, Es1, Es10, Gdc, Ce2, Mod1 and Es3--as genetic markers, two-point linkage tests were made. The results showed the gene was assigned to chromosome 11. The result of a three-point test with Es3 and D11Mit8 (microsatellite DNA) as markers showed that the mutation was linked to Es3 with the recombination fraction 7.89 +/- 2.19%, and linked to D11Mit8 with the recombination fraction 26.30 +/- 3.57%. The recombination fraction between Es3 and D11Mit8 was 32.90 +/- 3.81%. It is suggested that the mutation is a new genetic locus that affected the skin and hair structure of the mouse. The mutation was named uncovered, with the symbol Uncv. Further studies showed the mutation affected not only the histology of skin and hair but also the growth and reproductive performance of the mice. The molecular characterization of the Uncv locus needs to be further studied.

Alopecia↗

Effects of hypotonic stress on the survival of mouse oocytes and embryos at various stages.

To examine the sensitivity of mammalian oocytes and embryos to osmotic swelling, which can occur during the removal of cryoprotectant from cryopreserved cells, the effect of hypotonic stress on the survival of fresh and vitrified mouse oocytes/embryos at various stages was examined. Oocytes and embryos were suspended in phosphate-buffered saline (PBS) media of various hypotonicities for 30 min at 25 degrees C. They were then returned to isotonic PBS medium, and the survival was assessed by the apparent integrity of the blastomeres and/or the developmental potential during culture. The survival of stressed embryos at one- to eight-cell stages assessed by the appearance was close to that assessed by the developmental ability, suggesting that hypotonic stress causes physical damage in the cell membrane. Fresh oocytes and embryos were almost totally unaffected by exposure to a 0.5x isotonic solution at all developmental stages examined. However, the extent of injury resulting from exposure to 0.3 to 0.2x isotonic solutions varied and depended on the developmental stage of the embryos. For example, zygotes were the least sensitive and morulae were the most sensitive to the hypotonic stresses. Except for morulae, vitrified cells were more sensitive to hypotonic stresses than were fresh ones. However, in many cases, the sensitivity was reduced or eliminated when the oocytes and embryos were cultured for a short period before exposure to the hypotonic stress. Furthermore, the survival rate of some stressed embryos which had been equilibrated in vitrification solution without cooling was higher than the survival of embryos stressed immediately following vitrification. These results show that sensitivity to osmotic swelling is variable among oocytes and embryos. The results also show that cryopreserved cells just after warming are more sensitive to osmotic swelling than are fresh ones, and even swelling corresponding to that in 0.5x solution may decrease survival in some stages.

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Fracture damage of embryos and its prevention during vitrification and warming.

The frequency of fracture damage in mouse blastocysts was examined by repeated cycles of vitrification and warming. Mouse blastocysts suspended in a solution of ethylene glycol, Ficoll, and sucrose in a straw were plunged into liquid nitrogen either directly (rapidly) or after holding them in liquid nitrogen vapor for 3 min or more (moderately). Vitrified samples were warmed by plunging them into 25 degrees C water either immediately (rapidly) or after holding in air for 5-30 s (moderately). Warmed straws were recooled and rewarmed up to 9 times, to exaggerate the effect of cooling and warming. When embryos were cooled and warmed rapidly once, the incidence of the zona damage was only 1.2%, and 91% of recovered embryos reexpanded in culture. However, with repeated rapid cooling and warming, the incidence of zona damage increased, reaching 75% after 10 vitrifications; survival also dropped. When embryos were subjected to 10 cycles of moderate cooling and moderate warming with 15 or 30 s of suspension in air, 100% of the embryos had intact zonae. On the other hand, with moderate cooling followed by rapid warming or with rapid cooling followed by moderate warming, 41 and 16% of embryos had damaged zona, respectively, after 10 vitrifications. Therefore, fracture damage occurs during both cooling and warming, but it can be prevented completely by employing somewhat slower rates of cooling and warming. Furthermore, a high survival rate (88%) after 10 cycles of moderate cooling and moderate warming with 15 s of suspension in air indicates that vitrification, melting, or temperature fluctuation per se do not affect embryonic survival.

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Cryopreservation of zona-hatched mouse blastocysts.

Experiments were conducted to determine the conditions for successful and efficient cryopreservation of hatched mouse blastocysts, using simple vitrification procedures. Hatched blastocysts were obtained by culture of morulae in vitro. Vitrification solutions used were EFS40 and GFS40, which were 40% (v/v) ethylene glycol and 40% (v/v) glycerol, respectively, diluted in PB1 medium containing 30% Ficoll (w/v) and 0.5 mol sucrose l-1. In the one-step method, embryos were directly exposed to the vitrification solutions at 25 degrees C for 0.5 or 2 min; in the two-step method, embryos were equilibrated with a dilute (10-20%, v/v) ethylene glycol or glycerol solution for 5-10 min, before a 0.5 min exposure to EFS40 or GFS40, respectively. They were then vitrified in liquid nitrogen. When the embryos were vitrified in EFS40, the post-warming survival rates, assessed by the re-expansion of the blastocoel during 16 h of culture, were higher in embryos that had hatched from the zona earlier (120-132 h after hCG) than in those hatched later (142-150 h after hCG); however, the highest survival rate was only 65%, which was obtained by a one-step method. When embryos were vitrified in GFS40, a high survival rate (89-94%) was obtained especially by the two-step methods. Vitrified blastocysts developed into live young just as well as did fresh blastocysts; survival was highest after transfer to recipients on day 3 or day 4 of pseudopregnancy. These findings show that hatched mouse blastocysts can be successfully cryopreserved by a simple vitrification method, and that a glycerol-based vitrification solution is more suitable than the corresponding ethylene glycol-based solution for the vitrification, probably because slower permeation of glycerol avoids toxic injury.

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Influence of the mucin coat on the survival of rabbit and mouse embryos stored at 0 degrees C.

To examine the factors affecting the survival of refrigerated embryos, rabbit and mouse morulae were stored at 0 degrees C in modified phosphate-buffered saline (PB1) or in PB1 containing 0.75 M sucrose. Survival was defined as the ability to develop into an expanded blastocyst in culture. The data was analyzed with special reference to the presence of a mucin coat around the embryos. When rabbit morulae were stored in isotonic PB1 for 2, 4, 6, and 8 days, survival rates were 98%, 88%, 85%, and 50%, respectively. However, if the mucin coat had been removed before storage, the rates were lower (95%, 75%, 36%, and 3%, respectively). Sucrose impaired the survival of rabbit morulae irrespective of the presence of the mucin coat. Only 11% of mouse morulae survived 2 days of storage in PB1 medium, but if the medium contained sucrose, survival rates after storage for 2, 3, 4, and 5 days were higher (83%, 55%, 31%, and 7%, respectively). To provide them with a mucin coat around the zona pellucida, mouse embryos were incubated in a rabbit oviduct. Survival rates of these embryos after storage in the presence of sucrose did not decrease over 4 days of refrigeration (98-92%), and the rates after storage for 5, 6, and 7 days were 65%, 40%, and 30%, respectively; embryos that had been stored for 5 days were transferred to recipient mice, and live young were born. Agar embedding of mouse morulae did not have the same effect as the mucin coat.(ABSTRACT TRUNCATED AT 250 WORDS)

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Vitrification of mouse oocytes and embryos at various stages of development in an ethylene glycol-based solution by a simple method.

Mouse oocytes and embryos at various developmental stages were exposed directly to an ethylene glycol-based vitrification solution (EFS) for 2 or 5 minutes at 20 degrees C. They were then vitrified at -196 degrees C and were warmed rapidly. At the germinal vesicle stage, the proportion of morphologically normal oocytes was 36 to 39% if they had cumulus cells, whereas in cumulus-removed immature oocytes and in ovulated oocytes it was only 2 to 4%. This low survival was attributed to the harmful action of ethylene glycol. After fertilization, on the other hand, the post-warming survival rate of 1-cell zygotes, as assessed by cleavage to the 2-cell stage, increased markedly (62%). As the developmental stage proceeded, higher proportions of vitrified embryos developed to expanded blastocysts; the rates increased up to 77 and 80% in 2-cell and 4-cell embryos, respectively. For embryos at the 8-cell, morula and early blastocyst stages, the proportion of embryos developed after vitrification (90 to 95%) was not significantly different from that of the untreated embryos (95 to 100%) when the period of exposure to EFS solution was 2 minutes. As the blastocoel began to enlarge, however, survival began to decrease again, with rates of 79 and 57% in blastocysts and expanded blastocysts, respectively. After the cryopreserved 2-cell, 4-cell and 8-cell embryos as well as morulae and blastocysts were transferred to recipients, 43 to 57% of the recipients became pregnant, and 48 to 60% of these various stage embryos developed into live young.

Journal Article↗

Cryopreservation of expanded mouse blastocysts by vitrification in ethylene glycol-based solutions.

Experiments were conducted to find optimal conditions for obtaining high survival of expanded mouse blastocysts after vitrification. The vitrification solutions used were designated EFS20, EFS30 and EFS40, and contained 20%, 30% and 40% ethylene glycol, respectively, diluted in PB1 medium containing 30% Ficoll plus 0.5 mol sucrose l-1. In the toxicity test of the solutions and each cryoprotectant, ethylene glycol was found to be toxic to embryos. For vitrification, expanded blastocysts were exposed to the vitrification solutions at 10, 20 or 25 degrees C for various periods; they were then cooled rapidly in liquid nitrogen, after which they were warmed rapidly. When the embryos were directly exposed to EFS40 at 20 degrees C for 2 min before vitrification, 66% of them re-expanded during 48 h of post-warming culture. The re-expansion rates decreased when exposure time was shortened (0.5 min), when exposure temperature was lowered (10 degrees C), or when embryos were vitrified in EFS20 and EFS30, although these conditions should be less toxic. When embryos had been pretreated in a dilute (10-20%) ethylene glycol solution for 5 min, followed by short exposure (0.5 min) to EFS40 at 20 degrees C, post-vitrification survival rate increased to 83-84%; furthermore, the rate reached 94% when the temperature was increased to 25 degrees C. Expanded blastocysts cryopreserved by this two-step method developed into live young as well as control embryos after transfer.(ABSTRACT TRUNCATED AT 250 WORDS)

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High survival of rabbit morulae after vitrification in an ethylene glycol-based solution by a simple method.

Rabbit morulae were exposed to a vitrification solution-modified PBS [PB1] medium containing 40% ethylene glycol + 18% Ficoll + 0.3 M sucrose (EFS) for 2, 5, or 10 min at 20 degrees C and were vitrified in liquid nitrogen. When morulae were rapidly warmed, 96% had an intact zona pellucida. When embryos were cultured after removal of the mucin coat, high proportions of them formed blastocoel (79-100%), but the percentage of embryos developed to fully expanded blastocysts decreased with increased exposure time 87%, 40%, and 17%). The survival rate of morulae vitrified after removal of the mucin coat was lower than that of mucin-intact embryos. To assess the development potential in vivo, 131 embryos were vitrified after 2 min of exposure to EFS solution; all the embryos were recovered and 120 were transferred to recipients without removal of the mucin coat, resulting in 78 (65%) full-term fetuses or young. This simple method, which yields high survival both in vitro and in vivo, will be of practical use for vitrifying rabbit embryos.

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Survival of mouse morulae vitrified in an ethylene glycol-based solution after exposure to the solution at various temperatures.

Mouse morulae were exposed in one step to a vitrification solution (EFS, a modified PBS containing 40% ethylene glycol, 18% Ficoll, and 0.3-M sucrose) at various temperatures, then cooled rapidly in liquid nitrogen, and then warmed rapidly. All of the embryos exposed to the EFS solution for 0.5 min at 25 degrees C before vitrification developed in culture. However, survival rates were lower if the duration of exposure was prolonged to 2, 5, or 10 min. At lower ambient temperatures (20, 10, and 5 degrees C), high survival rates were associated with longer exposure to the EFS solution. The toxicity of the EFS solution was also lower at lower temperatures. The toxic injury of morulae was manifested as decompaction of the blastomeres. Among the three additives in the EFS solution, ethylene glycol, which can cross cell membranes, was responsible for the toxicity. The results show that the optimum time for exposure of the embryos to the EFS solution before rapid cooling varies with the ambient temperature, i.e., 0.5 min at 25 degrees C, 0.5-5 min at 20 degrees C, 2-5 min at 10 degrees C, and 2-10 min at 5 degrees C. If they are exposed for an optimum period, almost all mouse morulae can survive vitrification (94-100%).

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