In vitro production of haploid sperm cells from male germ cells of foetal cattle

2010 ◽  
Vol 118 (2-4) ◽  
pp. 103-109 ◽  
Author(s):  
Wu-Zi Dong ◽  
Jin-Lian Hua ◽  
Wen-Zheng Shen ◽  
Zhong-Ying Dou
2017 ◽  
Vol 90 ◽  
pp. 120-128 ◽  
Author(s):  
Shoulong Deng ◽  
Xiuxia Wang ◽  
Zhipeng Wang ◽  
Suren Chen ◽  
Yuqian Wang ◽  
...  

2006 ◽  
Vol 18 (2) ◽  
pp. 256
Author(s):  
R. Simões ◽  
M. P. Milazzotto ◽  
C. Yamada ◽  
W. B. Feitosa ◽  
A. R. S. Coutinho ◽  
...  

Production of transgenic mouse embryos by microinjection is a well established and successful technique. However, when microinjection protocols were used for bovine, the amount of the oocyte lipid content did not allow the production of bovine transgenic embryos. Sperm-mediated gene transfer (SMGT) is an alternative for this species because it has lower cost and does not require microinjection handling. One of the procedures to introduce exogen DNA into oocytes is by means of sperm capacitated with calcium ionophore (CaI). The aim of this work was to evaluate different CaI concentrations ([CaI]), sperm incubation times with CaI (tCa), and incubation times of sperm capacitated with DNA (tDNA) (EYFP; Clontech, Palo Alta, CA, USA) to establish a satisfactory method for IVP of bovine transgenic embryos. Slaughterhouse oocytes with compact cumulus and uniform ooplasm were in vitro maturated in TCM-199 medium + 10% FCS + FSH + hCG + estradiol (E2) + piruvate + gentamicin under 5% CO2 in air, at 39�C and high humidified atmosphere for 24 h. Semen was thawed in a water bath at 37�C for 30 s and separated by Percoll gradient (45/90%) at 600g for 30 min. After this procedure, sperm cells were washed in TALP-semen medium by centrifugation at 200g for 5 min at room temperature. Supernatant was removed and capacitation (5 � 106 spermatozoa/group) was induced with CaI (250 nM or 500 nM for 1 or 5 min). Capacitated sperm cells were incubated with 500 ng/mL DNA for 1 or 2 h. Nontreated spermatozoa were used as control group. Sperm cells (1 � 105) were used to inseminate 20 oocytes/90 mL microdroplets for 18 h. The presumptive zygotes were co-cultured in SOFaa medium with a granulosa cell monolayer under high humidified atmosphere, at 39�C and 5% CO2 in air. Blastocyst rates were analyzed by ANOVA. Independent variables were replicate, [CaI], tCa, tDNA, and the double and triple interactions among the last three variables; when appropriate, means were compared by orthogonal contrasts. There was [CaI] � tCa � tDNA interaction for blastocyst rate (P < 0.02). Treatments with 250 nM ([CaI]), 5 min (tCaI), and 1 h (tDNA) or 500 nM ([CaI]), 1 min (tCaI), and 1 h (tDNA) resulted in 36.1% and 37.4% blastocyst rates, respectively, similar to the control group (30.5%; P > 0.4). These results demonstrated that it is possible to capacitate spermatozoa with CaI to produce transgenic embryos, without alteration of blastocyst rate. This work was supported by FAPESP 03/08542-5 and 03/07456-8.


2020 ◽  
Vol 6 (10) ◽  
pp. 5823-5832
Author(s):  
Mina Vardiani ◽  
Marefat Ghaffari Novin ◽  
Morteza Koruji ◽  
Hamid Nazarian ◽  
Ellen Goossens ◽  
...  

2018 ◽  
Vol 10 (1) ◽  
pp. 160-168
Author(s):  
Kartini Eriani ◽  
Arief Boediono ◽  
Sony Heru Sumarsono ◽  
Al Azhar

Preservation of ovarian tissue from severely injured or dead valuable animals has the potential to preserve female germ cells of animals. The ability to mature and fertilize of oocytes from preserved ovary of endangered species will allow us to sustain genetic and global biodiversities. The aims of this study were to investigate the viability of oocytes collected from the preserved ovary and its potential utilization for the production of cat embryos followed by in vitro maturation and fertilization. Ovary was preserved immediately in phosphate buffer saline (PBS) at 4 °C for 24 or 48 hours. The quality and viability of oocytes after the maturation process were identified microscopically using aceto-orcein staining. Biological function of the oocytes was evaluated by using in vitro culture technique for the maturation and fertilization rate in CR1aa medium culture. The results showed that the percentage of oocytes collected from preserved ovary for 24 and 48 hours that remained at the stage of metaphase-II were 29.4% and 21.9% respectively. Fertilization rates produced in the IVF using oocytes collected from ovary preserved for 24 or 48 hours were significantly lower (30%) than that of unpreserved control (36.7%). In conclusion, female germ cells of cat ovary preserved at 4 °C in PBS for 2 days were still viable for in vitro fertilization and thus can be utilized for in vitro production of cat embryos. Information obtained can be used as a basis of knowledge of using a combination of physiological reagent and cold-based preservation technique in modern reproductive technology for animals.


Author(s):  
T.I. Kuzmina ◽  
D.N. Tatarskaya ◽  
V. YU Kravtsov

In vitro production of animal embryos is an important tool for solving male and female infertility problems in animals. Modeling of extracorporeal maturation systems of oocytes using siliconcontaining compounds in the composition of culture media revealed the peculiarities of the realization of their effects on somatic and germ cells of ovarian follicles, depending on the structure. Highly dispersed silica nanoparticles (nHDS) positive effects on the fertility of female gametes in Bos Taurus and Sus Scrofa Domesticus. The gel substrate of silica (silicon dimethylglycerolate - DMGC) does not cause an increase in the level of embryos cleavage, while it does not have cytoand genotoxicity when tested on somatic and germ cells of antral follicles.Key words: siliconcontaining compounds, in vitro maturation, animal oocytes.


2007 ◽  
Vol 19 (5) ◽  
pp. 670 ◽  
Author(s):  
Xianwei Liang ◽  
Xiufang Zhang ◽  
Bingzhuang Yang ◽  
Mingtang Cheng ◽  
Fenxiang Huang ◽  
...  

The main objective of this study was to compare pregnancy and calving rates following transfer of in-vitro-produced fresh river and F1 (river × swamp) buffalo embryos in recipients synchronised by Ovsynch protocol or following natural oestrus. River embryos were produced from cumulus–oocyte complexes (COCs) derived by ovum pick up (OPU) on 40 Murrah and Nili-Ravi donor buffaloes over a twice-weekly collection schedule for 120 single OPUs. F1 embryos were produced by fertilisation of swamp COCs recovered from abattoir ovaries coincubated with river sperm cells. Both groups of embryos were produced following the same protocol for in vitro production. With regard to the OPU source of COCs, 923 antral follicles were punctured and 647 COCs were recovered (70%). From 462 selected COCs for IVM, 257 (55.6%) cleaved zygotes were recorded leading to 93 blastocysts (20.1%). In total, 590 swamp COCs were aspirated from abattoir ovaries and 476 were selected for IVM leading to 270 (56.7%) cleaved zygotes and resulting in 137 blastocysts (28.8%). River and F1 embryos were transferred between Day 6 to 7 of in vitro development, corresponding to blastocyst–expanding blastocyst, into F1 recipients synchronised by Ovsynch and swamp buffaloes following natural oestrus, respectively, each of them receiving two embryos. According to palpation per rectum of the ovaries at the time of embryo transfer, 26 of the 47 (55.3%) F1 recipients synchronised by Ovsynch were considered suitable for transfer, resulting in seven pregnancies (26.9%) and four calvings (15.3%) owing to three abortions occurring between 2 and 3 months of pregnancy. In total, 29 swamp recipients following natural oestrus were judged suitable as recipients, resulting in 12 pregnancies (41.4%) and 10 calvings (34.5%) owing to two abortions at 2 and 3 months of gestation respectively. Pregnancy and calving rates following transfer of river and F1 embryos were similar. Likewise, weight at birth of calves derived from transfer of river and F1 embryos was not different: 30.5 ± 1.4 and 32.9 ± 2.4 respectively. Pregnancy and calving rates following AI in a group of river and swamp buffaloes considered for reference in this study were similar to recipients carrying in-vitro-produced embryos. Collectively, no apparent postnatal complications were recorded in resulting live calves.


1964 ◽  
Vol 47 (2) ◽  
pp. 306-313 ◽  
Author(s):  
Denis Gospodarowicz

ABSTRACT Incubation in vitro of rabbit follicles in separate experiments with dehydroepiandrosterone-14C (DHEA-14C), progesterone-14C and pregnenolone-3H in the presence of FSH gave the following results: 39 % of the radioactivity of DHEA-14C is converted to androstenedione and testosterone, while only 3 % of the radioactivity of either progesterone-14C or pregnenolone-3H is found in the androgen fraction. From the ratio of testosterone to androstenedione formed from the three precursors, the results are interpreted to mean that DHEA and pregnenolone, and not progesterone, are precursors of androgens in the follicle.


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