| Literature DB >> 32283781 |
Maja Zakošek Pipan1, Margret L Casal2, Nataša Šterbenc1, Irma Virant Klun3, Janko Mrkun1.
Abstract
A challenge in freezing semen for short and long-term availability is avoiding damage to intact spermatozoa caused by the freezing process. Vitrification protocols provide better results through less manipulation of semen and shorter freezing time compared to slow freezing techniques. Our research was aimed at improving vitrification methods for canine semen. Semen quality was determined in 20 ejaculates after collection. Each ejaculate was divided into eight aliquots, each with a different extender. The control extender contained TRIS, citric acid, fructose, and antibiotics. Soy lecithin and sucrose were added to the control extender at different concentrations to make up the test extenders and final concentration of 50 × 106 spermatozoa/mL. From each group, a 33µL (1.65 × 106 spermatozoa) suspension of spermatozoa was dropped directly into liquid nitrogen and devitrified at least one week later and evaluated as before. Soy lecithin at 1% and 0.25 M sucrose added to the base vitrification media effectively preserved all sperm qualities. Our results demonstrate the effectiveness of our methods. Vitrification media containing sucrose and soy lecithin cause a minimal decline in quality of canine semen after devitrification. Furthermore, extenders used in our research did not contain egg yolk, which was replaced by soy lecithin, thus allowing for ease of shipping to other countries with strict requirements.Entities:
Keywords: Simple Summary: Soy lecithin and sucrose were used at different concentrations to develop and compare different vitrification methods for the cryopreservation of canine semen. All of the sperm quality characteristics were effectively preserved after devitrification when vitrification extenders containing soy lecithin at 1% and 0.25 M sucrose were used. The results suggest that vitrification is effective, fast, and simple for cryopreservation of canine semen. Furthermore, the use of soy lecithin in lieu of animal proteins (e.g., egg yolk) facilitates semen shipping to countries with strict import requirements.
Year: 2020 PMID: 32283781 PMCID: PMC7222707 DOI: 10.3390/ani10040653
Source DB: PubMed Journal: Animals (Basel) ISSN: 2076-2615 Impact factor: 2.752
Figure 1Spermatozoa after hypoosmotic swelling test. Arrow: hypoosmotic swelling test (HOST) positive spermatozoa that show signs of tail swelling; A: HOST negative spermatozoa without swelling.
Preparation of extenders used in the study.
| Control | Ext. A | Ext. B | Ext. C | Ext. D | Ext. E | Ext. F | Ext. G | |
|---|---|---|---|---|---|---|---|---|
|
| 2.4 g | 2.4 g | 2.4 g | 2.4 g | 2.4 g | 2.4 g | 2.4 g | 2.4 g |
|
| 1.4 g | 1.4 g | 1.4 g | 1.4 g | 1.4 g | 1.4 g | 1.4 g | 1.4 g |
|
| 1.0 g | 1.0 g | 1.0 g | 1.0 g | 1.0 g | 1.0 g | 1.0 g | 1.0 g |
|
| 5 µg | 5 µg | 5 µg | 5 µg | 5 µg | 5 µg | 5 µg | 5 µg |
|
| 10kIU | 10kIU | 10kIU | 10kIU | 10kIU | 10kIU | 10kIU | 10kIU |
|
| None | None | 0.2 M | 0.25 M | 0.3 M | 0.2 M | 0.25 M | 0.3 M |
|
| None | 1% | None | None | None | 1% | 1% | 1% |
Ext.—extender, unit M is for molarity, unit kIU is for ‘kilo’ international unit.
Figure 2Total motility in canine sperm after devitrification regarding the vitrification media. Data are expressed as mean ± SD.
Figure 3Progressive motility in canine sperm after devitrification regarding different vitrification media. Data are expressed as mean ± SD.
Figure 4Viability in canine sperm after devitrification regarding different vitrification media. Data are expressed as mean ± SD.
Figure 5Normal morphology in canine sperm after devitrification regarding different vitrification media. Data are expressed as mean ± SD.
Different types of morphological abnormalities in different extenders expressed as mean ± SD.
| Morphological Defects | Fresh Semen | Control | Ext. A | Ext. B | Ext. C | Ext. D | Ext. E | Ext. F | Ext. G |
|---|---|---|---|---|---|---|---|---|---|
|
| 2.11 ± 2.71A | 2.75 ± 2.12 Aa | 4.85 ± 1.30 Bb | 3.30 ± 2.75 Aa | 2.93 ± 2.35 Aa | 3.95 ± 3.05 Bb | 2.33 ± 2.03 Aa | 2.20 ± 1.96 Aa | 2.45 ± 1.87 Aa |
|
| 0.78 ± 1.23 A | 4.85 ± 1.30 Ba | 4.75 ±1.49 Ba | 5.38 ± 1.30 Bb | 5.20 ± 1.06 Bab | 6.25 ± 1.40 Bc | 4.73 ± 1.26 Ba | 4.43 ± 0.85 Ba | 5.03 ± 1.28 Ba,b |
|
| 2.93 ± 2.91 A | 2.83 ± 1.89 Aa | 3.00 ± 2.99 Aa | 3.25 ± 2.56 Aa | 3.13 ± 2.34 Aa | 3.33 ± 2.68 Aa | 2.58 ± 2.68 Aa | 2.38 ± 2.74 Aa | 3.03 ± 3.28 Aa |
|
| 2.33 ±1.75 A | 4.03 ± 2.38 Aa | 3.43 ± 2.23 Aa | 4.03 ± 2.00 Aa | 3.83 ± 1.87 Aa | 4.63 ± 2.16 a | 3.05 ± 2.17 Aa | 3.13 ± 2.34 Aa | 3.10 ± 2.15 Aa |
|
| 4.00 ± 5.60A | 5.73 ± 3.81 Aa | 4.95 ± 3.48 Ab | 5.43 ± 3.18 Aa | 5.28 ± 2.61 Aa | 6.10 ± 2.91 Aa | 4.30 ± 3.35 Ab | 4.10 ± 2.90 Ab | 4.35 ± 3.52 Ab |
|
| 2.78 ± 1.79 A | 5.20 ± 2.73 Ba | 5.45 ± 2.76 Ba | 7.03 ± 3.30 Bb | 5.60 ± 2.90 Ba | 7.70 ± 3.51 Bb | 5.15 ± 2.68 Ba | 4.70 ± 2.78 Ba | 5.95 ± 3.04 Ba |
|
| 6.06 ± 6.71 A | 6.95 ± 4.41 Aa | 6.80 ± 4.75 Aa | 7.63 ± 3.98 Aa | 6.95 ± 4.29 Aa | 7.93 ± 3.79 Aa | 6.28 ± 3.94 Aa | 5.68 ± 3.43 Aa | 6.13 ± 3.40 Aa |
|
| 77.39 ± 10.51 A | 68.85 ± 8.01 Bac | 69.73 ± 8.38 Bac | 64.7 0 ± 7.22 Bab | 68.20 ± 7.58 Babc | 61.40 ± 6.68 Bb | 72.18 ± 7.51 Ac | 74.15 ± 6.02 Ac | 70.48 ± 6.92 Bc |
Ext.—extender. Uppercase letters (A, B): Morphological differences in fresh semen samples compared to all other extenders after devitrification and marked by different uppercase letters, differed significantly (p < 0.05). Lowercase letters (a, b, c): Morphological differences in semen quality after devitrification in different extenders, marked by different lowercase letters, differed significantly (p < 0.05).
Figure 6Intact acrosome based on Spermac staining in canine sperm after devitrification regarding different vitrification media. Data are expressed as mean ± SD.
Figure 7Sperm tail membrane integrity in canine spermatozoa after devitrification regarding different vitrification media. Data are expressed as mean ± SD.
Figure 8Percentage of spermatozoa with fragmented DNA in canine sperm after devitrification regarding different vitrification media. Data are expressed as mean ± SD.