Related Experiment Videos
Cryopreservation of macropodid spermatozoa: new insights from the cryomicroscope
W V Holt1, L M Penfold, S D Johnston
1Institute of Zoology, Zoological Society of London, UK. bill.holt@ioz.ac.uk
Abstract:
This study examined the effects of cooling and cryopreservation upon macropod spermatozoa (eastern grey kangaroo, Macropus giganteus and red-necked wallaby, Macropus rufogriseus). Sperm survival during and after freezing to -30 degrees C or 70 degrees C in minimum essential medium (MEM) + 5, 10, 20 or 30% (v/v) glycerol, MEM + 10 or 20% (v/v) ethylene glycol and MEM containing a mixture of 7.5% (v/v) glycerol + 10% (v/v) dimethylsulphoxide was examined by cryomicroscopy. The MEM/glycerol mixtures permitted better post-thaw sperm recovery than the other cryoprotectants. After freezing to -30 degrees C at 10 degrees C min(-1) in 20% glycerol, then rewarming at 20 degrees C min(-1), flagellar activity resumed in more than 50% of spermatozoa when the temperature increased into the range 5-10 degrees C. However, as the temperature increased, into the range 20-25 degrees C, motility declined rapidly so that less than 5% motile cells were seen at 35 degrees C. Spermatozoa in MEM without cryoprotectant were also examined by cryomicroscopy to evaluate changes in flagellar configuration, swimming behaviour and viability during cooling from 35 degrees C to approximately -7 degrees C, and rewarming to 35 degrees C. Cooling from 35 to 28 degrees C induced kangaroo spermatozoa to exhibit rigid principal-piece bending and non-linear motility, which was reversed by further cooling and the spermatozoa resumed their normal linear movement. Rewarming induced principal-piece bending in the range of 20-30 degrees C, but this effect was reversed by further warming. Although red-necked wallaby spermatozoa showed these effects, they also exhibited a tendency to form rosette-like clusters during rewarming, especially when the temperature reached approximately 14 degrees C. The clusters were induced when the flagellar end-pieces became anteriorly reflected, producing hook-like flagellar conformations, which then became interlinked.
Insights
Cryopreservation of macropod spermatozoa using glycerol-based extenders improved post-thaw recovery. Sperm motility was temperature-dependent, with specific cooling and rewarming protocols affecting flagellar activity and cell viability in kangaroos and wallabies.
Area of Science:
- Reproductive biology
- Cryobiology
- Wildlife conservation
Background:
- Macropod spermatozoa require specific cryopreservation protocols for successful artificial breeding programs.
- Understanding the effects of cooling and cryoprotectants on sperm viability is crucial for conservation efforts.
Purpose of the Study:
- To evaluate the efficacy of different cryoprotective agents and cooling rates on macropod sperm survival.
- To investigate the effects of temperature changes on sperm motility and flagellar morphology during cooling and rewarming.
Main Methods:
- Cryomicroscopy was used to assess sperm survival and motility after freezing in various cryoprotectant solutions (glycerol, ethylene glycol, DMSO).
- Spermatozoa were cooled to -30°C or -70°C and rewarmed at controlled rates.
- Flagellar configuration and swimming behavior were analyzed during cooling and rewarming in the absence of cryoprotectants.
Main Results:
- Glycerol-based extenders (MEM/glycerol) yielded better post-thaw sperm recovery compared to other cryoprotectants.
- Optimal sperm motility recovery occurred between 5-10°C after rewarming, with rapid decline at higher temperatures.
- Cooling induced reversible flagellar bending in kangaroo and wallaby sperm; wallaby sperm also formed temperature-dependent clusters.
Conclusions:
- Glycerol is an effective cryoprotectant for macropod spermatozoa, enhancing post-thaw recovery.
- Sperm motility and flagellar behavior are highly sensitive to temperature fluctuations during cryopreservation and rewarming.
- Specific temperature ranges and cryoprotectant concentrations are critical for preserving macropod sperm viability.