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In Vitro Growth of Mouse Preantral Follicles Under Simulated Microgravity
Published on: December 17, 2017
Effects of chilling on structural aspects of early preantral mouse follicles
Leen Vanhoutte1, Rita Cortvrindt, Daniela Nogueira
1Follicle Biology Laboratory, University Hospital and Medical School, Vrije Universiteit Brussel, B-1090 Brussels, Belgium. leen.vanhoutte@ugent.be
Abstract:
Chilling injury is one of the major limiting factors for achieving optimal cryopreservation of gametes. This study aimed to determine potential chilling-induced damage on several structural aspects of early preantral mouse follicles. Mechanically isolated intact early preantral follicles (type 3b-4) were exposed to 0 degrees C for 1, 5, 10, or 30 min. Control and chilled follicles were analyzed by confocal microscopy after staining for tubulin, F-actin, and chromatin, and by electron microscopy. Chilling for only 1 min was sufficient to cause depolymerization of microtubules in the oocyte and the surrounding granulosa cell layer as evidenced by a substantial decrease in fluorescence intensity after antitubulin labeling. Cooling for longer periods caused alterations in microtubule organization in the follicle-enclosed oocyte. These alterations included the loss of interphase microtubules, concomitant with the formation of perinuclear or cortical microtubule asters and sometimes a complete disappearance of microtubules. The extent of microtubule modification was related to the time of chilling, but was fully reversible after rewarming follicles at 37 degrees C for 1 h. Chilling had only minor effects on the actin-containing elements located predominantly in the oocyte cortex and the transzonal projections. Ultrastructural analysis confirmed that oocyte-somatic cell interactions were present. There was no influence on the chromatin configuration within the follicle-enclosed oocyte. These results indicate that mouse follicles are relatively tolerant to direct chilling injury and, as a consequence, are able to withstand the cooling-warming steps during conventional cryopreservation procedures.
Insights
Early preantral mouse follicles show remarkable resilience to chilling injury. Microtubule damage from chilling is reversible, indicating tolerance for cryopreservation procedures.
Area of Science:
- Reproductive Biology
- Cell Biology
- Cryobiology
Background:
- Chilling injury significantly impacts gamete cryopreservation success.
- Understanding follicle structural response to chilling is crucial for improving fertility preservation techniques.
Purpose of the Study:
- To investigate the structural effects of chilling on early preantral mouse follicles.
- To assess the impact of chilling duration on oocyte and granulosa cell integrity.
Main Methods:
- Mechanical isolation of early preantral mouse follicles (type 3b-4).
- Exposure to 0°C for varying durations (1, 5, 10, 30 min).
- Confocal and electron microscopy analysis of tubulin, F-actin, and chromatin.
Main Results:
- Even 1 minute of chilling caused microtubule depolymerization in oocytes and granulosa cells.
- Prolonged chilling led to microtubule disorganization, but damage was reversible upon rewarming.
- Actin structures and chromatin configuration remained largely unaffected by chilling.
Conclusions:
- Early preantral mouse follicles exhibit significant tolerance to direct chilling injury.
- The observed reversibility of microtubule damage suggests follicles can withstand cryopreservation cooling-warming cycles.
