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Published on: February 14, 2016
Use of polarized light microscopy in porcine reproductive technologies
J N Caamaño1, C Maside, M A Gil
1Genética y Reproducción Animal, Centro de Biotecnología Animal, SERIDA, Gijón, Principado de Asturias, Spain. jncaamano@serida.org
Abstract:
The meiotic spindle in the oocyte is composed of microtubules and plays an important role during chromosome alignment and separation at meiosis. Polarized light microscopy (PLM) could be useful for a non-invasive evaluation of the meiotic spindle and may allow removal of nuclear structures without fluorochrome staining and ultraviolet exposure. In this study, PLM was used to assess its potential application in porcine reproductive technologies. The objectives of the present study were to assess the efficiency of PLM to detect microtubule-polymerized protein in in vitro-matured porcine oocytes; to examine its effects on the oocyte developmental competence; to select oocytes based on the presence of the meiotic spindle detected by PLM; and to assess the efficiency oocyte enucleation assisted with PLM. In the first experiment, the presence of microtubule-polymerized protein was assessed and confirmed in oocytes (n = 117) by immunostaining and chromatin detection. In the second experiment, oocytes (n = 160) were exposed or not (controls) to PLM for 10 minutes, and then parthenogenetically activated and cultured in vitro. In the third experiment, development competence of oocytes with a positive or negative signal to PLM was analyzed after in vitro fertilization. Finally, oocytes (n = 54) were enucleated using PLM as a tool to remove the meiotic spindle. A positive PLM signal was detected in 98.2 % of the oocytes, which strongly correlated (r = 1; p < 0.0001) with the presence of microtubule-polymerized protein as confirmed by immunostaining. Oocytes exposed to PLM did not differ significantly from controls on cleavage, total blastocyst, expanded blastocyst rates and total cell numbers. The percentage of oocytes at the MII stage and blastocyst formation rate in the negative PLM group significantly differed from control and PLM positive groups. Overall efficiency of spindle removal using the PLM-Oosight system was 92.6%. These results suggest that polarized light microscopy is an efficient system to detect microtubule-polymerized protein in in vitro-matured porcine oocytes and does not exert detrimental effects on porcine oocyte developmental competence. Selecting oocytes by the presence of a PLM signal provides limited improvement on IVF results. Finally, PLM appears as an efficient method to enucleate porcine oocytes.
Insights
Polarized light microscopy (PLM) effectively detects microtubule-polymerized protein in porcine oocytes without harming development. While PLM aids in enucleation, selecting oocytes via PLM signal offers minimal IVF improvement.
Area of Science:
- Reproductive Biology
- Cell Biology
- Microscopy
Background:
- The meiotic spindle is crucial for chromosome segregation during oocyte meiosis.
- Polarized light microscopy (PLM) offers a non-invasive method for evaluating the meiotic spindle.
- PLM may enable nuclear structure manipulation without harmful stains or UV exposure.
Purpose of the Study:
- Evaluate PLM for detecting microtubule-polymerized protein in in vitro-matured porcine oocytes.
- Assess PLM's impact on oocyte developmental competence.
- Determine the efficacy of PLM-based oocyte selection and enucleation in porcine reproductive technologies.
Main Methods:
- Immunostaining and chromatin detection confirmed microtubule-polymerized protein presence.
- Porcine oocytes were exposed to PLM (10 min) or controls, then parthenogenetically activated.
- Oocyte developmental competence was analyzed post-in vitro fertilization (IVF) and enucleation using PLM.
Main Results:
- PLM detected microtubule-polymerized protein in 98.2% of oocytes, correlating strongly with immunostaining.
- PLM exposure did not significantly affect oocyte cleavage, blastocyst rates, or cell numbers compared to controls.
- Oocyte enucleation efficiency using the PLM-Oosight system was 92.6%.
Conclusions:
- PLM is effective for detecting microtubule-polymerized protein in porcine oocytes with no adverse developmental effects.
- Selecting oocytes based on PLM signal shows limited benefit for IVF outcomes.
- PLM is an efficient tool for porcine oocyte enucleation.
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