Characteristics and zona binding ability of FRESH and cooled domestic cat epididymal spermatozoa

1993 ◽  
Vol 40 (5) ◽  
pp. 967-975 ◽  
Author(s):  
K.L. Goodrowe ◽  
M. Hay
1984 ◽  
Vol 9 (1) ◽  
pp. 21-30 ◽  
Author(s):  
S. Fournier-Delpech ◽  
S. Hamamah ◽  
C. Tananis-Anthony ◽  
M. Courot ◽  
M.-C. Orgebin-Crist

2018 ◽  
Vol 110 ◽  
pp. 148-152 ◽  
Author(s):  
Eugeny Brusentsev ◽  
Elena Kizilova ◽  
Valentina Mokrousova ◽  
Valeria Kozhevnikova ◽  
Irina Rozhkova ◽  
...  

2009 ◽  
Vol 21 (1) ◽  
pp. 138
Author(s):  
J. R. Saenz ◽  
C. Dumas ◽  
B. L. Dresser ◽  
M. C. Gómez ◽  
R. A. Godke ◽  
...  

Our purpose was to compare in vitro survivability and functionality of cat epididymal spermatozoa cryopreserved in TEST egg-yolk buffered extender (TYB) with that obtained by use of clear Tris-citrate and HEPES-buffered extenders containing BSA. Testes were transported to the lab in HEPES saline; epididymides were dissected in HEPES-199 medium (HE-199) and repeatedly sliced. The sperm suspension was filtered (40 μm), layered onto a density gradient column (Isolater, Irving Scientific, Santa Ana, CA), and centrifuged at 600g for 20 min. Aliquots of the sperm pellet were extended in TYB, Human Sperm Preservation Medium (HSPM), or Tris-citrate + 10% BSA (TCBSA). After cooling to 4°C, samples were diluted 1:1 with extender + 12% glycerol in 4 steps as modified from Gao DY et al. 1995 Hum. Reprod. 10, 1109–1122. Then, samples were loaded into 0.25-mL straws, sealed, and frozen on a dry ice block (–80°C) for 20 min before storage in LN2. Straws were thawed by exposure to air (22°C) for 5 s and immersion in a 60°C water bath for 5 s. Samples were diluted by addition of HE-199 in 7 steps as modified from Gao DY et al. 1995 Hum. Reprod. 10, 1109–1122, centrifuged at 200g for 10 min and pellets resuspended in HE-199. Motility (MOT, phase contrast, 37°C), membrane integrity (MI, SYBR 14–PI), and acrosomal status (AS, FITC–PNA) were evaluated at 0 h, after gradual cooling to 4°C, and after freezing at 0 h and 3 h post-thaw (37°C). Cumulus oocyte complexes (COC) were placed in modified TCM-199 and cultured for 24 h in 5% O2, 5% CO2, and 90% N2 at 38°C (IVM). For IVF, COC were co-incubated with spermatozoa frozen in either TYB or HSPM in droplets (1 million sperm mL–1) of IVF medium under 5% CO2 in air at 38°C. After 18 h, oocytes were rinsed and cultured using a 3-step system (Pope CE et al. 2006 Theriogenology 66, 59–71) until blastocyst development was evaluated (Day 8). There were no treatment differences at any time/temperature point for the 3 sperm parameters evaluated (one-way ANOVA; P > 0.05). As shown in Table 1, sperm motility in TCBSA and HSPM decreased by 20% after cooling to 4°C and another 20% after freezing, whereas motility in TYB was maintained after cooling and decreased <30% after freezing. Membrane integrity and acrosomal status values were 12 to 15% greater at collection, at 4°C and at 0 h post-thaw, and 25% greater at 3 h post-thaw than were the motility values. Cleavage frequency and blastocyst development rate of 203 IVM oocytes after IVF using sperm frozen in TYB and HSPM was 36 v. 33% and 50 v. 44%, respectively. In summary, we have shown that cat epididymal spermatozoa can be frozen successfully in cryoprotectant solutions that do not contain egg yolk. Table 1.Motility, membrane integrity and acrosomal status of cat epididymal sperm after cryo-storage


2010 ◽  
Vol 22 (1) ◽  
pp. 214
Author(s):  
J. R. Saenz ◽  
C. Dumas ◽  
B. L. Dresser ◽  
M. C. Gómez ◽  
R. A. Godke ◽  
...  

Our purpose was to examine the effect of egg yolk concentration (EY; 2, 5, or 10%) on in vitro survivability and functionality of cat epididymal spermatozoa cryopreserved in TEST-buffered extender (TYB). Testes were transported in HEPES saline; epididymes were dissected in HEPES 199 medium (He199) and repeatedly sliced. The sperm suspension was filtered (40 μ), layered onto a density gradient column (Isolate®, Irving Scientific, Santa Ana, CA, USA), and centrifuged at 650 g for 20 min. Aliquots of the sperm pellet were extended in TYB containing 2, 5, or 10% EY. After cooling to 4°C, samples were diluted 1:1 with TYB containing 2, 5, or 10% EY + 12% glycerol in 4 steps as modified from Gao DY et al. Hum. Reprod. 1995 10, 1109-1122. Then, samples were loaded into 0.25-mL straws, sealed, and frozen on a dry ice block (-80°C) for 20 min before storage in LN2. Straws were thawed by exposure to air (˜22°C) for 5 s and immersion in a 60°C water bath for 5 s. Samples were diluted by addition of He199 in 7 steps as modified from Gao DY et al. Hum. Reprod. 1995 10, 1109-1122 centrifuged at 200g for 10 min, and pellets resuspended in He199. Motility (Mot, phase contrast, 37°C), membrane integrity (M.I., SYBR 14-PI), and acrosomal status (A.S., FITC-PNA) were evaluated at 0 h, after gradual cooling to 4°C and after freezing at 0 and 3 h post-thaw (37°C). Ten replicates were done. Cumulus oocyte complexes (COC) were placed in modified TCM-199 and cultured for 24 h in 5% O2, 5% CO2, and 90% N2 at 38°C (IVM). For IVF, COC were co-incubated with spermatozoa frozen in TYB + 2% egg yolk or HSPM (no egg yolk) in droplets (1 million sperm/mL) of IVF medium under 5% CO2 in air at 38°C. After 18 h, oocytes were rinsed and cultured until blastocyst development was evaluated (Day 8). There were no treatment differences at any time or temperature point for the 3 sperm characteristics evaluated (one-way ANOVA; P > 0.05). As shown in the Table 1, at 0 h post-thawing, sperm in each group retained ˜70% of their initial pre-freeze motility. After 3 h of post-thaw incubation, motility decreased to ˜50% of the pre-freeze value. Cooling to 4°C did not affect membrane integrity or acrosomal status, but post-thaw values were reduced by 30-35% as compared with pre-freeze. Cleavage frequency and blastocyst development of 284 IVM oocytes after IVF using sperm frozen in TYB + 2% EY and HSPM were 53 v. 52% and 42 v. 38%, respectively (P > 0.05). In summary, we have shown that cat epididymal spermatozoa can be frozen successfully in a cryoprotectant solution containing minimal egg yolk (2%). Table 1.Motility, membrane integrity, and acrosomal status of cat epididymal sperm after cryo-storage


2002 ◽  
Vol 62 (2) ◽  
pp. 265-270 ◽  
Author(s):  
Eva AxnÉr ◽  
Budhan S. Pukazhenthi ◽  
David E. Wildt ◽  
Catharina Linde-Forsberg ◽  
Rebecca E. Spindler

2020 ◽  
Vol 17 (1) ◽  
Author(s):  
Brenna de Sousa Barbosa ◽  
Fernanda Araujo dos Santos ◽  
Luãn Barbalho do Macêdo ◽  
Roberta Gonçalves Izzo ◽  
Denilsa Pires Fernandes ◽  
...  

Zygote ◽  
2009 ◽  
Vol 18 (1) ◽  
pp. 1-8 ◽  
Author(s):  
N. Cocchia ◽  
F. Ciani ◽  
R. El-Rass ◽  
M. Russo ◽  
G. Borzacchiello ◽  
...  

SummaryCryopreservation of gametes is an important tool in assisted reproduction programmes; long-term storage of oocytes or spermatozoa is necessary when in vitro fertilization (IVF) or artificial insemination is to be performed at a future date. Cryopreservation of epididymal spermatozoa offers a potential tool for rescuing genetic material from males of endangered populations. The objectives of this work were to: (1) examine sperm motility, viability, abnormality and acrosome integrity of frozen–thawed domestic cat epididymal spermatozoa; and (2) evaluate the same cryopreservation method on wild feline spermatozoa, needed to preserve their genetic resources. Epididymides were collected from 20 domestic cats during routine neutering procedure and from two wild felines at autopsy. The sperm samples, diluted with 4% glycerol/Tris/egg yolk, were loaded into 0.25 ml mini-straws, exposed to nitrogen vapour and stored in liquid nitrogen. After 4 weeks, samples were thawed and re-evaluated. The quality of each fresh and frozen–thawed sperm sample was tested by determining the motility (54.7 ± 11.3% and 32 ± 13.1% respectively for cat spermatozoa; 38.3 ± 18.7% and 21.5 ± 16.8% respectively for tiger spermatozoa), viability (74.3 ± 8.6% and 45.2 ± 9.4% respectively for cat spermatozoa; 42.4 ± 14.5% and 33.5 ± 12.9% respectively for wild felid spermatozoa), morphology and acrosomal status. The present study showed that feline epididymal spermatozoa can be frozen in egg-yolk extender with 4.0% glycerol in 0.25 ml straws. The procedure used in the present study for epididymal cat sperm cryopreservation may be applied to bank the genetic resources of wild felid species.


Cryobiology ◽  
2016 ◽  
Vol 73 (3) ◽  
pp. 348-355 ◽  
Author(s):  
A.T.M. Cunha ◽  
J.O. Carvalho ◽  
N.R. Kussano ◽  
C.F. Martins ◽  
G.B. Mourão ◽  
...  

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