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Whole Ovary Immunofluorescence, Clearing, and Multiphoton Microscopy for Quantitative 3D Analysis of the Developing Ovarian Reserve in Mouse
Published on: September 3, 2021
A phenotypic study of murine oocyte death in vivo
1Department of Microbiology, College of Medicine, Dankook University, Korea.
Abstract:
Most studies of oocyte apoptosis have been performed in vitro and have employed the method of artificial induction of apoptosis by an anti-cancer agent. However, the process of oocyte death in vivo has not been clearly identified. To investigate the death process in unfertilized oocytes in vivo, we examined the cytochemical change of oocytes collected by oviduct flushing at various intervals after hCG injection. At each collection time, the collected oocytes were phenotypically classified under the microscope into four groups: single-cell oocytes (non-activated and without a nucleus and cytokinesis), activated oocytes (single-, 2- or 4-cell with a nucleus), fragmented oocytes, and dead oocytes. The number of single oocytes decreased and dead oocytes increased with the lapse of time, but the number of activated oocytes or fragmented oocytes did not. Also, most of the dead oocytes observed were single cell. At each time point, single oocytes were stained with anti-tubulin antibody to examine their spindle status. At 24 h after hCG injection, all ovulated oocytes had a normal bipolar spindle, while at 64 h all single-cell oocytes had no spindle. From these observations, we concluded that most oocyte deaths in vivo occur in the single oocyte stage, not in activated or fragmented oocytes.
Insights
Oocyte death in vivo primarily occurs at the single-cell stage, not after activation or fragmentation. This study tracked cytochemical changes in unfertilized oocytes post-hCG injection to identify the timing of oocyte demise.
Area of Science:
- Reproductive Biology
- Cellular Biology
- Oocyte Development
Background:
- Oocyte apoptosis research predominantly uses in vitro models with artificial induction.
- The in vivo process of oocyte death remains poorly understood.
Purpose of the Study:
- To investigate the in vivo death process of unfertilized oocytes after ovulation.
- To identify the specific stage at which oocyte death occurs in vivo.
Main Methods:
- Oocytes were collected from oviducts at various intervals post-hCG injection.
- Collected oocytes were phenotypically classified (single-cell, activated, fragmented, dead).
- Spindle status in single-cell oocytes was examined using anti-tubulin antibody staining.
Main Results:
- The number of single oocytes decreased while dead oocytes increased over time.
- Most oocyte deaths occurred at the single-cell stage.
- Single-cell oocytes lost their spindle structure by 64 hours post-hCG injection.
Conclusions:
- In vivo oocyte death predominantly occurs in the single-cell stage.
- Oocyte death does not typically happen in activated or fragmented oocytes.
- The loss of spindle integrity may be linked to oocyte death in vivo.
