These studies were conducted to investigate the effects of culture temperature and time on the in vitro maturation and semen type and media on the in vitro fertilization of bovine follicular oocytes, and to asses in vitro fertilization rate of oocytes cultured by extraffollicular method following fertilization in vitro, or transfer into the pseudopregnant rabbit oviduct or uterus. The bovine oocytes recovered from follicles were cultrued for 18 hrs or 72hrs at 38$^{\circ}C$ with 5% CO2 in moist air. Flesh-diluted(2 folds) and frozen-thawed semen in 0.5ml straw from a fertile bull were used. In order to obtain capacitation of spermatozoa were treated with bovine follicular fluids(BFF) and Inophore A(IA). The results obtained were summarized as follows: 1. The oocytes were classified as "A, B, C, D and Degenerative" depending morphological integrity and those were 62.0%, 12.0%, 17.2%, 5.9% and 3.0% of the total oocytes harvested, respectively. 2. The oocytes matured to metaphase II were significantly increased between 24-48hrs of incubation and at 37-39$^{\circ}C$ with 5% CO2 in moist air. 3. The in vitro fertilization rate following transferred into rabbit oviduct or uterus with bull semen and in vitro matured oocytes were higher ligation than non-ligation of oviduct or uterus. 4. The in vitro fertilization rate of oocytes matured in vitro were higher neat than frozen semen and treatment of IA than BFF on the capacitation of spermatozoa. 5. The effects of semen types and media on in vitro fertilization of oocytes matured in vitro were higher fertilization rate of neat than friozen semen, and media was not significant.
Chimeric animals are referred to as an organism composed of tissues derived from more than one species. In order to examine if a pluripotency of embryonic stem cells can cross the limitation of a species, we tried to establish human-mouse chimeric animals. Human embryonic stem cells were genetically modified to express eGFP using eukaryonic expression vector pcDNA 3.1 (In Vitrogene) for an easy identification. After selection with neomycin, approximately 15 cells were implanted into mouse blastocoele cavity. Ten chimeric blastocysts were transferred to one of the uterine horn of 2.5 days pesudopregnent ICR female. Out of 272 blastocysts transferred to pseudopregnant recipients 20 live newborn were obtained after 20 days. When newborn were obtained, pups were quickly removed immersed into 4% PFA. By histological examination using fluorescent microscope, green fluorescence was observed from the liver, heart, and spleen in newborn mice. Three weeks after born, presence of eGFP sequence within mouse genome (tail and kidney) was reconfirmed by PCR. eGFP sequence was amplified from the progenies of the animal suggesting a genetic transmission of the transgene. These chimeric mice having human cells at the beginning of development, are expected to recognize human cells as “self”, therefore, human cells or tissues will be able to escape the immunological surveillance of the host if grafted into the animal. These animals will serve as a good model system for studying the graft rejection in tissue transplantation and the potential of the cells to work well in many human disease.
Park, S.M.;Song, S.J.;Uhm, S.J.;Cho, S.G.;Park, S.P.;Lim, J.H.;Lee, H.T.
Asian-Australasian Journal of Animal Sciences
/
v.17
no.12
/
pp.1641-1646
/
2004
The objective of this study was to generate transgenic mice expressing human resistin gene by using the tetraploidembryonic stem (ES) cell complementation method. Human resistin gene was amplified from human fetal liver cDNA library by PCR, cloned into $pCR^{(R)}$ 2.1 $TOPO^{(R)}$ vector and constructed in pCMV-Tag4C vector. Mammalian expression plasmid containing human resistin was transfected into D3-GL ES cells by Lipofectamine 2,000, and then after 10-12 days of transfection, the human resistin-expressing cells were selected with G418. In order to produce tetraploid embryos, blastomeres of diploid embryos at the two-cell stage were fused with two times of electric pulse using 60 V 30 $\mu$sec (fusion rate: 2,114/2,256, 93.5%) and cultured up to the blastocyst stage (development rate: 1,862/2,114, 94.6%). The selected 15-20 ES cells were injected into tetraploid blastocysts, and then transferred into the uteri of E 2.5 d pseudopregnant recipient mice. To investigate the gestation progress, two E 19.5 mused fetuses were recovered by Cesarean section of which one fetus was confirmed to contain human resistin gene by genomic DNA-PCR. Therefore, our findings demonstrate that tetraploid-ES mouse technology can be considered as a useful tool to produce transgenic mice for the rapid analysis of gene function in vivo.
These experiments were carried out to determine the effect of cell stage in embryo bisection on the sub-Sequent in vitro and in vivo development in mouse. The embryos of ICR mouse were microsurgicaily bisected at 2-cell, 4-cell, 8-cell, morula and blastocyst stage using a microsurgical blade attached a micromanipulator. These demi-embryos without zona pellucida were cultured up to blastocyst stage and transferred to pseudopregnant mice, and the development of these demi-embryos was compared with the results of intact embryos of the corresponding cell stage. The successful rate of mouse embryo bisection at 4-cell stage (59.0%) was significantly (p <0.05) lower than those at 8-cell (75.6%), 2ce11 (80.7%) or morula stage (84.8%), and highest at blastocyst stage (95.7%). When the bisected embryos without any damage from microsurgery were cultured in vitro up to blastocyst,the in vitro de'velopment of demi-embroys bisected at morula to blastocyst was 91.6 to 95.3%, which was similar to the culture result of intact embryos of corresponding stage. However, the in vitro development of demi-em-bryos bisected at 2- to 8-cell stage was signiflcantiy (p <0.05) lower.The post-transfer implantation rate of demi-embryos developed in vitro to eu-blastocyst were 19.6 and 25.4% in demi-embryos bisected at morula and blastocyst stage,respectively and not significantly (P <0.05)different from the result of intact embryos of the same stage. However, the implantation rates of demi-embryos bisected at 2- or 8-cell stage were significantly (P <0.05) lower than the result from the intact embryos of the corresponding stage.
In the studies on the hatching mechanisms in mammals, many investigators focused on the embryonic intrinsic factor(s) in in vitro culture, but the uterine environment as the extrinsic factor(s) is thought to play an important role in hatching mechanism. Therefore, to evaluate the effect of uterine environment on the hatching event in vivo, the immature(GV) and ovulated(MII) oocytes, and the late 2-cell embryos of mouse were transferred to pseudopregnant foster mother's uterus during peri-implantation period. So it was verified whether there would happen hatching by only uterine environment independently on embryonic stage. The ultrastructural changes of the zona surface of transferred group were compared with those 01 in vivo and vitro group by SEM. 36 hrs after transfer, the immature and ovulated oocytes almost degenerated, and the late 2-cell embryos developed to various embryonic stages. However, the embryos which didn't develop to blastula stage did not hatch. The ultrastructural network of ZP in transferred group seemed to be smoothed uniformly, which was different from in vitro group. In conclusion, it is suggested that the uterine environment during peri-implantation period enhances the embryo hatching by provoking the structural change of ZP.
J. R. Chun;S. J. Song;J. T. Do;K. S. Chung;Lee, H. T.
Proceedings of the Korean Society of Embryo Transfer Conference
/
2002.11a
/
pp.99-99
/
2002
The hormone resistin is associated with typeII diabetes mellitus in rodent model. Resistin impairs glucose tolerance and insulin action. A new class of anti-diabetic drugs were called thiazolidinediones (TZDs) downregulates a resistin which is induced during adipocyte differentiation. But the connection between increased adiposity and resistin remains unknown. The objectives of this study was to clone a mouse resistin cDNA and to generate transgenic mice overexpressing mouse resistin gene. The 555 bp of mouse resistin was amplified from mob cDNAS by polymerase chain reaction (PCR) and cloned into pCR$\^$(R)/ 2.1 TOPO T-vector. Mouse resistin mRNA on the basis of Genbank sequence (acession no. AF323080). Then, the PCR product was cloned into pTargeT$\^$TM/ mammalian expression vector that has pCMV promoter and chimeric intron. Restriction enzyme analysis with BamH I and Not I was carried out to determine an orientation of the insert in the vector. The pCMV-mus/resistin gene was prepared from previous recombinant pTargeT$\^$TM/-mus/resistin by digestion of Bgl II, and has used for microinjection into pronuclei of one cell embryos. The microinjected embryos were transfered to pseudopregnant foster-mother. Mouse resistin expression was detected in transgenic F1 mice by Reverse Transcriptase- Polymerase Chain Reaction (RT-PCR). Resistin gene expression mouse has heavier body weight which was measured higher level of plasma glucose than that of normal mouse. And in diet-induced experiments, the abdominal fat pads were isolated from each 24h starvation and re-feeding after fasting group mice that were assessed by RT-PCR analysis. In fasting group mice, resistin expression was higher than that of re-feeding group mice. This result suggests that the resistin gene overexpressing mice may be became to obesity and be useful as an animal disease model to be diabetes mellitus caused by insulin resistance of resistin.
This study was to establish in uitro culture system of mouse preantral follicles and to obtain higher in vitro development rates and production of live young. Preantral follicles were obtained from 12-day-old FI mouse (C57BL $\times$ CBA) by enzymatical methods. Oocyte-granulosa cell complexes (OGCs) of preantral follicles were loaded on Transwell-COL insert and cultured in $\alpha$MEM supplemented with 5% FBS, 100 mIU/$m\ell$ FSH and 100 mIU/$m\ell$ hMG for IVG. IVM was performed in $\alpha$MEM supplemented 1.5 IU/$m\ell$ hCG for 18 hrs and IVF was carried out in Ml6 medium. Embryos were cultured in modified Ml6 medium supplemented 10% FBS for 4 days. The effect of the OGCs size on the nuclear/cytoplasmic maturation was significantly higher in 120-150 ${\mu}{\textrm}{m}$ (MII: 33.0%, $\geq$2-cell: 36.7%, $\geq$morula: 20.9%) than in 70-110 ${\mu}{\textrm}{m}$ (MII: 12.2%, $\geq$2-cell: 10.2%, $\geq$morula: 4.8%) (p<0.001). In period of the IVG days, the rate of $\geq$2-cell was significantly higher in 10 days(38.2%) than in 12 days (20.0%) (p<0.01). In period of IVF time, 9 hrs ($\geq$2-cell: 31.5%, $\geq$ morula: 14.3%) indicated significantly higher cytoplasmic maturation rate than 4 hrs ($\geq$2-cell: 17.5%, This study was to establish in vitro culture system of mouse preantral follicles and to obtain higher in vitro development rates and production of live young. Preantral follicles were obtained from 12-day-old FI mouse (C57BL $\times$ CBA) by enzymatical methods. Oocyte-granulosa cell complexes (OGCs) of preantral follicles were loaded on Transwell-COL insert and cultured in $\alpha$MEM supplemented with 5% FBS, 100 mIU/$m\ell$ FSH and 100 mIU/$m\ell$ hMG for IVG. IVM was performed in $\alpha$MEM supplemented 1.5 IU/$m\ell$ hCG for 18 hrs and IVF was carried out in Ml6 medium. Embryos were cultured in modified Ml6 medium supplemented 10% FBS for 4 days. The effect of the OGCs size on the nuclear/cytoplasmic maturation was significantly higher in 120-150 ${\mu}{\textrm}{m}$ (MII: 33.0%, $\geq$2-cell: 36.7%, $\geq$morula: 20.9%) than in 70-110 ${\mu}{\textrm}{m}$ (MII: 12.2%, $\geq$2-cell: 10.2%, $\geq$morula: 4.8%) (p<0.001). In period of the IVG days, the rate of $\geq$2-cell was significantly higher in 10 days(38.2%) than in 12 days (20.0%) (p<0.01). In period of IVF time, 9 hrs ($\geq$2-cell: 31.5%, $\geq$ morula: 14.3%) indicated significantly higher cytoplasmic maturation rate than 4 hrs ($\geq$2-cell: 17.5%, $\geq$morula: 4.8%) and 7 hrs ($\geq$2-cell: 20.4%, $\geq$morula: 6.1%) (p<0.01). However, there was no difference in cytoplasmic maturation between co-cultured preantral follicle ( $\geq$morula: 17.4%) and preantral follicle cultured in Ml6 ( $\geq$morula: 17.4%). 22 morula and blastocysts produced in above optimal condition were transferred to uterus of 2 pseudopregnant recipients, 1 recipient was pregnant and then born 1 live young. This result demonstrates that in vitro culture system of preantral follicles can be used efficiently as another method to supply mouse oocyte.morula: 4.8%) and 7 hrs (2-cell: 20.4%, $\geq$morula: 6.1%) (p<0.01). However, there was no difference in cytoplasmic maturation between co-cultured preantral follicle ( $\geq$morula: 17.4%) and preantral follicle cultured in Ml6 ( $\geq$morula: 17.4%). 22 morula and blastocysts produced in above optimal condition were transferred to uterus of 2 pseudopregnant recipients, 1 recipient was pregnant and then born 1 live young. This result demonstrates that in vitro culture system of preantral follicles can be used efficiently as another method to supply mouse oocyte.
This study was carried out to investigate the in vivo development rates of vitrified-thawed mouse expanding, hatching and hatched blastoc ysts(BL). In vitro fertilization produced blastocysts were vitrified in EFS40(40% ethylene glycol, 30% Ficoll and 0.3 M sucrose in phosphate buffer saline containing 10% FBS). Expanding a and hatching blastocysts were equilibrated in 20% ethylene glyco](EG) for 5 min. before exposure to EFS40 at 25°C for 1 min., they were then vitrified in liquid nitrogen. Hatched blastocysts which cultured in m-CR1 medium supple mented 0.4% bovine serum albumin on day 5. were equilibrated in 10% EG for 5 min. and then vitrified in EFS40 for 30 sec. After thawing, re-expanding blastocysts were transferred to recipients(3 day of pseudopregnant) on one or both uterine horns(6-8 embryos per a horn). Preg¬n nancy rates of recipients and implantation were a assccessed by autopsy on 15 gestation. The res¬u ults obtained in these experiments were summar¬1 ized as follows; 1) The pregnancy and live fetus rates, for vitrified expanding BL(77.8 and 25.0%) and hatching BL(77.8 and 26.4%)n vitro were not significantly difference in those of control BL (66.7 and 42.9%: 83.3 and 40.4%), respectively, 2) in vitro development of vitrified hatched BL was 34.0%. and 3) in vivo developmental rate of vitrified hatched BL was only 33.3%. These results suggested that proposed rapid vitrification p procedures used EFS40 cryoprotectant can be effectively performed in mouse expanding Ihatching blastocysts and that mouse blastocysts a after being hatched from zona pellucida can be successfully cryopreserved.
This study was carried out to confirm whether the in vivo developmental potential of mouse hatched blastocysts (HBs) can be obtained by vitrification method using the cryoprotectant EFS35. The HBs ($\theta$ 130$\mu\textrm{m}$) were cultured in vitro until day 5 from zygotes produced in vivo and were equilibrated in 10% ethylene glycol(EG) for 5 min, and then were exposed or vitrified in EFS35 (35% EG, 18% Ficoll and 0.3M sucrose). After 30 min thawing, re-expanding HBs were transferred into one or both uterine horns of pseudopregnant recipients on day 3 (4~6 embryos /horn). Pregnancy rates of recipients and implantation were assessed by autopsy on day 15 of gestation. The results obtained in these experiments were summarized as follows : After thaw-ing, in vitro survival of HBs was not significantly different between exposed (65.5%) and vitrified(54.5%) group. Also, when the in vivo development potential was examined, total implantation was not different between control (58.5% ) and vitrified (41.0%) group, although the live fetus formation of vitrified group (24.0%) was significantly lower than that of control (58.3%) group (p< 0.05). These results suggested that vitrification freezing method of mouse HBs using EFS35 can be used to make wide the utility of embryo transfer of the more embryos produced in vitro.
The objective of this study was to investigate the in vitro / in vivo embryonic development after vitrification of mouse zygotes and the chrom osomal normality of delivered live young after embryo transfer. Mouse IVF zygotes were cryopreserved by vitrification using vitrification solution, EFS40 (40% ethylene glyc이, 30% Ficoll a and 0.3 M sucrose in phosphate buffer saline c containing 10% FBS ) . After mouse zygotes were exposed to EFS40 at 25"C for 30 sec., they were immediately plunged into LN$_2$. Vitrified thawed mouse zygotes were cultured upto bIastocysts in M16 for 4 days. The rates of in vitro development were 71.5% under this condition. Cultured blastocysts were transferred to recipients (3 day of pseudopregnant) on one or both uterus horns (6-8 embryos per a uterus horn). And all recipients were allowed to produce litters. The results obtained in these experiments were summarized as follows: The pregnancy rates and in vivo survival rates, live fetus rates, for vitrified zygotes (80.0, 39.6%) were not significantly difference in those of control zygotes (77.8%, 50.0%). Also, all of live-born young mice were chromosomally normal (n=40). This results suggested that proposed rapid vitrification procedures can be effectively use in 1-cell mouse zygotes cryopreservation.
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