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Published on: September 30, 2010
Analysis of cat oocyte activation methods for the generation of feline disease models by nuclear transfer
Chunmin Wang1, William F Swanson, Jason R Herrick
1Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.
Background:
Somatic cell nuclear transfer in cats offers a useful tool for the generation of valuable research models. However, low birth rates after nuclear transfer hamper exploitation of the full potential of the technology. Poor embryo development after activation of the reconstructed oocytes seems to be responsible, at least in part, for the low efficiency. The objective of this study was to characterize the response of cat oocytes to various stimuli in order to fine-tune existing and possibly develop new activation methods for the generation of cat disease models by somatic cell nuclear transfer.
Methods:
First, changes in the intracellular free calcium concentration [Ca2+]i in the oocytes induced by a number of artificial stimuli were characterized. The stimuli included electroporation, ethanol, ionomycin, thimerosal, strontium-chloride and sodium (Na+)-free medium. The potential of the most promising treatments (with or without subsequent incubation in the presence of cycloheximide and cytochalasin B) to stimulate oocyte activation and support development of the resultant parthenogenetic embryos was then evaluated. Finally, the most effective methods were selected to activate oocytes reconstructed during nuclear transfer with fibroblasts from mucopolysaccharidosis I- and alpha-mannosidosis-affected cats.
Results:
All treatments were able to elicit a [Ca2+]i elevation in the ooplasm with various characteristics. Pronuclear formation and development up to the blastocyst stage was most efficiently triggered by electroporation (60.5 +/- 2.9 and 11.5 +/- 1.7%) and the combined thimerosal/DTT treatment (67.7 +/- 1.8 and 10.6 +/- 1.9%); incubation of the stimulated oocytes with cycloheximide and cytochalasin B had a positive effect on embryo development. When these two methods were used to activate oocytes reconstructed during nuclear transfer, up to 84.9% of the reconstructed oocytes cleaved. When the 2 to 4-cell embryos (a total of 220) were transferred into 19 recipient females, 4 animals became pregnant. All of the fetuses developed from oocytes activated by electroporation followed by cycloheximide and cytochalasin B incubation; no fetal development was detected as a result of thimerosal/DTT activation. Although heartbeats were detected in two of the cloned fetuses, no term development occurred.
Conclusion:
Electroporation proved to be the most effective method for the activation of cat oocytes reconstructed by nuclear transfer. The combined thimerosal/DTT treatment followed by cycloheximide and cytochalasin B incubation triggered development effectively to the blastocyst stage; whether it is a viable option to stimulate term development of cloned cat embryos needs further investigations.
Insights
Somatic cell nuclear transfer in cats is hampered by low birth rates due to poor oocyte activation. Electroporation emerged as the most effective method for activating reconstructed cat oocytes, leading to successful pregnancies.
Area of Science:
- Reproductive biology
- Animal cloning
- Developmental biology
Background:
- Somatic cell nuclear transfer (SCNT) in cats is crucial for creating research models.
- Low birth rates in feline SCNT are primarily linked to inefficient oocyte activation and subsequent poor embryo development.
- Optimizing oocyte activation is key to improving SCNT efficiency in cats.
Purpose of the Study:
- To characterize feline oocyte responses to various artificial activation stimuli.
- To identify and refine optimal activation methods for SCNT in cats.
- To generate feline disease models using SCNT.
Main Methods:
- Assessed intracellular calcium ([Ca2+]i) changes in oocytes induced by electroporation, ethanol, ionomycin, thimerosal, strontium-chloride, and Na+-free medium.
- Evaluated the potential of stimuli, with or without cycloheximide and cytochalasin B, for oocyte activation and parthenogenetic embryo development.
- Applied selected methods to activate SCNT oocytes using fibroblasts from cats with mucopolysaccharidosis I and alpha-mannosidosis.
Main Results:
- All tested stimuli induced ooplasmic [Ca2+]i elevation.
- Electroporation and thimerosal/DTT treatments most effectively promoted pronuclear formation and blastocyst development.
- Post-activation incubation with cycloheximide and cytochalasin B improved embryo development.
- SCNT oocytes activated by electroporation resulted in pregnancies, with fetuses showing heartbeats, but no term development.
- Thimerosal/DTT activation did not lead to fetal development.
Conclusions:
- Electroporation is the most effective method for activating SCNT cat oocytes.
- Thimerosal/DTT followed by chemical treatment supports blastocyst development but requires further investigation for term development.
- SCNT holds promise for generating feline disease models, but further optimization is needed to achieve term pregnancies.
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