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Topic:Semen Preservation

Semen preservation involves the collection, processing, and storage of stallion semen for future use in artificial insemination. This practice enables the extension of genetic material across geographical boundaries and temporal constraints. The preservation process typically includes semen evaluation, dilution with extenders, cooling, and sometimes cryopreservation. Factors such as semen quality, extender composition, and storage conditions influence the success of preservation. This page compiles peer-reviewed research studies and scholarly articles that explore techniques, challenges, and advancements in the field of equine semen preservation, focusing on optimizing fertility outcomes and extending the reproductive lifespan of stallions.
The effects of ph, osmolarity and urine contamination on equine spermatozoal motility.
Theriogenology    September 27, 2001   Volume 56, Issue 4 613-622 doi: 10.1016/s0093-691x(01)00593-3
Griggers S, Paccamonti DL, Thompson RA, Eilts BE.Urospermia has been reported as a cause of infertility in numerous species. The detrimental effects of urine on spermatozoa are due, at least in part, to changes in pH and osmolarity. Semen was collected and subjected to conditions of varying pH (Experiment 1), of varying osmolarity (Experiment 2), and various quantities and concentrations of urine (Experiment 3) and effects on motility were recorded. Finally, semen was contaminated with urine and then either of 2 semen extenders was added, with or without centrifugation, in an attempt to alleviate the detrimental effect of urine on motility (...
In vitro evaluation of frozen-thawed stallion semen: a review.
Acta veterinaria Scandinavica    August 16, 2001   Volume 42, Issue 2 199-217 doi: 10.1186/1751-0147-42-199
Katila T.The article reviews methods used for in vitro evaluation of sperm, with particular emphasis on frozen-thawed stallion sperm. The techniques, limitations of the methods and correlations with fertility results are discussed. Very few studies have tried to find correlation between fertility of frozen stallion semen and laboratory tests. It is difficult and expensive to inseminate an adequate number of mares to achieve statistically significant differences. Significant, but low correlations have been demonstrated between the foaling rate and subjective motility of sperm incubated for 2 h and 4 h a...
Effect of insemination time of frozen semen on incidence of uterine fluid in mares.
Theriogenology    July 27, 2001   Volume 56, Issue 1 123-131 doi: 10.1016/s0093-691x(01)00548-9
Watson ED, Barbacini S, Berrocal B, Sheerin O, Marchi V, Zavaglia G, Necchi D.Ninety five mares were inseminated with frozen semen either within 12 h before ovulation or within 8 h after ovulation. The effect of preovulatory versus postovulatory insemination (AI) on the subsequent detection of uterine fluid was studied. The overall pregnancy rate was 43% and this was not significantly influenced by preovulatory or postovulatory insemination. When mares were first examined 12 h after AI, 18 of 52 mares (35%) had accumulated uterine fluid. However, when mares were first examined 18 to 24 h after AI, only 6 of 43 mares (14%) had uterine fluid. Presence of intrauterine flui...
Generation of reactive oxygen species by equine spermatozoa.
American journal of veterinary research    May 1, 2001   Volume 62, Issue 4 508-515 doi: 10.2460/ajvr.2001.62.508
Ball BA, Vo AT, Baumber J.To characterize generation of reactive oxygen species (ROS) by equine spermatozoa. Methods: Multiple semen samples collected from 9 stallions. Methods: Equine spermatozoa were separated from seminal plasma on a discontinuous polyvinylpyrrolidone (PVP)-coated silica gradient and resuspended in a modified Tyrode albumin-lactate-pyruvate medium. Amount of hydrogen peroxide (H2O2) generated was assayed by use of a 1-step fluorometric assay, using 10-acetyl-3,7-dihydroxyphenoxazine as a probe for detection of H2O2 in a microplate assay format. Concentration of H2O2 was determined by use of a fluore...
Lipid fatty acid and protein pattern of equine prostasome-like vesicles.
Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology    April 6, 2001   Volume 128, Issue 4 661-666 doi: 10.1016/s1096-4959(00)00351-1
Arienti G, Polci A, De Cosmo A, Saccardi C, Carlini E, Palmerini CA.The semen of several mammals contains vesicles of different composition and origin. We have recently reported on the presence of lipoprotein vesicles in stallion semen. To a certain extent, these resemble human prostasomes, but differ from them in amount and composition. These horse-semen prostasome-like vesicles may be important, not only in horse reproductive physiology, but also in view of stallion semen cryopreservation. In this paper, we have studied horse-semen prostasome-like vesicles and found that they possess less saturated fatty acid than human prostasomes. Moreover, their protein p...
Influence of Eqvalan (ivermectin) on quality and freezability of stallion semen.
Theriogenology    March 14, 2001   Volume 55, Issue 3 785-792 doi: 10.1016/s0093-691x(01)00443-5
Janett F, Thun R, Ryhiner A, Burger D, Hassig M, Hertzberg H.The objective of this study was to evaluate the effect of Eqvalan (ivermectin) on stallion semen quality and freezability. Experiments were performed using 22 Freiberger stallions, randomly divided into a control and test group. Semen was collected once a week for 17 weeks from October 1997 to February 1998. Eqvalan was given orally to all stallions of the test group at a therapeutic dose of 0.2 mg ivermectin/kg. Besides measuring the scrotal width, ejaculates were collected to determine the volume, concentration, and the motility and morphology (normal sperm, major defects, vacuoles and acros...
Effect of cooling of equine spermatozoa before freezing on post-thaw motility: preliminary results.
Theriogenology    March 14, 2001   Volume 55, Issue 3 793-803 doi: 10.1016/s0093-691x(01)00444-7
Crockett EC, Graham JK, Bruemmer JE, Squires EL.The ability to ship cooled stallion semen to a facility that specializes in cryopreservation of spermatozoa would permit stallions to remain at home while their semen is cryopreserved at facilities having the equipment and expertise to freeze the semen properly. To accomplish this goal, methods must be developed to freeze cooled shipped semen. Three experiments were conducted to determine the most appropriate spermatozoal extender, package, time of centrifugation, spermatozoal concentration and length of time after collection that spermatozoa can be cooled before cryopreservation. In the first...
Assessment of stallion spermatozoa viability by flow cytometry and light microscope analysis.
Theriogenology    February 24, 2001   Volume 54, Issue 8 1215-1224 doi: 10.1016/s0093-691x(00)00428-3
Merkies K, Chenier T, Plante C, Buhr MM.Viability of spermatozoa can be assessed by numerous methods, but many are slow and poorly repeatable, and subjectively assess only 100 to 200 spermatozoa per ejaculate. We collected two ejaculates from each of 4 stallions, and extended them to 50x10(6) sperm/mL in a nonfat dried milk solids glucose extender (EZ Mixin). Half the ejaculate was freeze-killed by immersing in liquid nitrogen for 10 min. Aliquots using appropriate volumes of live and freeze-killed spermatozoa provided the following ratios of live:dead spermatozoa: 100:0, 75:25, 50:50, 25:75, 0:100. We determined the viability of ea...
Morphological and functional changes of stallion spermatozoa after cryopreservation during breeding and non-breeding season.
Animal reproduction science    February 22, 2001   Volume 65, Issue 1-2 75-88 doi: 10.1016/s0378-4320(00)00214-1
Blottner S, Warnke C, Tuchscherer A, Heinen V, Torner H.The study compared quality and freezability of stallion semen during breeding and non-breeding seasons. Ejaculates were collected twice per week from four stallions during May (n = 24) and December (n = 24). The semen was mixed with skim milk extender, centrifuged and resuspended in fresh extender. Aliquots of this sperm suspension were separated from extender and diluted in TALP medium for sperm evaluation or with cryoextender (type "Gent" or a combination of Triladyl and skim milk). Samples of 0.5ml were cryopreserved in straws using a programmed freezer. Parameters of sperm quality were eva...
Significance of plasmalemma disruption in bovine and equine spermatozoa.
Theriogenology    December 29, 2000   Volume 54, Issue 7 1075-1086 doi: 10.1016/s0093-691x(00)00416-7
Abraham-Peskir JV, Chantler E, Uggerhøj E.We have investigated fresh and cryopreserved bovine and equine spermatozoa using light and transmission soft X-ray microscopy. Spermatozoa were examined, in the presence or absence of semen, after using Percoll gradient centrifugation and re-suspending in medium. X-ray microscopy provided high resolution (30 nm) transmission images of whole cells in solution with high contrast, while retaining the simple preparation techniques used in light microscopy. We demonstrated translucent, membrane-bound vesicles in the acrosomal and midpiece regions that were similar in size and we noted their inciden...
The use of pentoxifylline to improve motility of cryopreserved equine spermatozoa.
Theriogenology    December 29, 2000   Volume 54, Issue 7 1041-1047 doi: 10.1016/s0093-691x(00)00412-x
Gradil CM, Ball BA.Pentoxifylline was evaluated as a method to increase motility of cryopreserved equine spermatozoa. In a preliminary experiment, pentoxifylline (3.5 mM or 7.0 mM) was added to extended semen that was chilled to 4 degrees C. Motility was evaluated at 8-h intervals for 48 h. The addition of 3.5 or 7.0 mM pentoxifylline appeared to increase the motility of chilled spermatozoa compared to controls. Based on these results, similar concentrations of pentoxifylline were added to semen either before or after cryopreservation. The addition of pentoxifylline (3.5 or 7.0 mM) to semen before cryopreservati...
Centrifugation and addition of glycerol at 22 degres C instead of 4 degrees C improve post-thaw motility and fertility of stallion spermatozoa.
Theriogenology    November 30, 2000   Volume 54, Issue 6 907-919 doi: 10.1016/s0093-691x(00)00401-5
Vidament M, Ecot P, Noue P, Bourgeois C, Magistrini M, Palmer E.The aims of this study were to evaluate the effects of cooling rate to 4 degrees C and temperature at the time of centrifugation/glycerol-addition (freezing extender: INRA82 + 2% egg yolk + 2.5% glycerol) on postcentrifugation recovery rate, post-thaw motility and per-cycle fertility. When centrifugation/glycerol-addition was performed at 4 degrees C (14 ejaculates), a moderate cooling rate (37 degrees C to 4 degrees C in I h) resulted in higher post-thaw motility (45%) than when using a slow cooling rate (37 degrees C to 4 degrees C in 4 h) (39%; P<0.05). When centrifugation/glycerol-addit...
Acrosomal ultrastructure of stallion spermatozoa cryopreserved with ethylene glycol using two packaging systems.
Equine veterinary journal    November 28, 2000   Volume 32, Issue 6 541-545 doi: 10.2746/042516400777584749
Alvarenga MA, Landim-Alvarenga FC, Moreira RM, Cesarino MM.The present experiments aimed to examine the substitution of glycerol (G) by ethylene glycol (E) as a cryoprotective agent for stallion spermatozoa. Two different ethylene glycol concentrations (5% and 10%) and also the association of glycerol (2%) and ethylene glycol (3%) (E/G) were studied (Experiment 1). In Experiment 2, two packing systems (0.5 x 4.0 ml) were evaluated using both cryoprotectors. In both experiments, the sperm membrane integrity after freezing was evaluated using transmission electron microscopy. The mean post-thaw motility was 34.25, 36.5, 29.25 and 34.75% for G5%, E5%, E1...
Effect of centrifugation and partial removal of seminal plasma on equine spermatozoal motility after cooling and storage.
Theriogenology    September 16, 2000   Volume 54, Issue 1 129-136 doi: 10.1016/S0093-691X(00)00331-9
Brinsko SP, Crockett EC, Squires EL.The objective of this study was to determine if centrifugation and partial removal of seminal plasma would improve spermatozoal motility in semen from stallions whose whole ejaculates have poor tolerance to cooling and storage. Stallions were divided into two groups (n = 5/group) based on the ability of their extended semen to maintain spermatozoal motility after cooling and storage. Group 1 stallions ("good coolers") produced semen in which progressive spermatozoal motility after 24 h of cooling and storage was reduced by < or = 30% of progressive motility prior to storage. Group 2 stallions ...
Catalase activity in equine semen.
American journal of veterinary research    September 8, 2000   Volume 61, Issue 9 1026-1030 doi: 10.2460/ajvr.2000.61.1026
Ball BA, Gravance CG, Medina V, Baumber J, Liu IK.To characterize the activity of catalase in equine semen. Methods: 15 stallions of known and unknown reproductive history. Methods: Seminal plasma was collected from raw equine semen by centrifugation, and samples of seminal plasma were frozen prior to assay for catalase activity. Tissue samples (n = 3 stallions) from the bulbourethral gland, prostate gland, vesicular gland, and testis were homogenized, and cauda epididymal fluid was collected for determination of catalase activity. Catalase activity was determined as an enzyme kinetic assay by the disappearance of H2O2 as measured by ultravio...
Effects of transport container and ambient storage temperature on motion characteristics of equine spermatozoa.
Theriogenology    July 7, 2000   Volume 53, Issue 8 1641-1655 doi: 10.1016/S0093-691X(00)00304-6
Brinsko SP, Rowan KR, Varner DD, Blanchard TL.This study was conducted to compare the cooling rates and storage temperatures within equine semen transport containers exposed to different ambient temperatures, and to evaluate the ability of these containers to preserve spermatozoal motility following 24 h of storage under these conditions. In Experiment 1, nonfat dried milk solids, glucose, sucrose, equine semen extender was divided into seven 40-mL aliquots and loaded into seven different semen transport containers: Equitainer I, Equitainer II, Equitainer III, ExpectaFoal, Bio-Flite, Lane STS, and Equine Express. After containers were loa...
Assessing equine sperm-membrane integrity.
Andrologia    June 23, 2000   Volume 32, Issue 3 163-167 doi: 10.1046/j.1439-0272.2000.00351.x
Lagares MA, Petzoldt R, Sieme H, Klug E.The swelling of cells in a hypo-osmotic medium has been described as an important criterion for assessing the functional integrity of the sperm plasma membrane. The resistance of equine spermatozoa to osmolarity changes was studied by extending 98 semen samples collected from nine stallions in media at five osmolarities (300, 200, 150, 100, and 50 mOsmol l(-1)). The response of the cells was measured by the spermatocrit technique and eosin staining. Spermatocrit determines the increase on spermatozoal volume under hypo-osmotic conditions, a sign of functional integrity of sperm plasma membrane...
Effectiveness of two systems for transporting equine semen.
Theriogenology    March 29, 2000   Volume 50, Issue 6 833-839 doi: 10.1016/s0093-691x(98)00188-5
Malmgren L.The storage and transport of cooled, liquid semen is an effective way of facilitating the use of desirable stallions for breeding mares located on distant farms. The Equitainer System is the most widely used transport container and it has been shown that it is possible to ship semen in this container and obtain good conception rates. However, the cost of Equitainers is high, and stud-farms that ship large quantities of semen have tended to rely on cheaper alternatives, even though little documentation exists concerning their reliability, especially under extreme temperature conditions. Two dif...
Delayed insemination is successful with a new extender for storing fresh equine semen at 15 degrees C under aerobic conditions.
Theriogenology    March 29, 2000   Volume 50, Issue 2 229-236 doi: 10.1016/s0093-691x(98)00130-7
Batellier F, Duchamp G, Vidament M, Arnaud G, Palmer E, Magistrini M.Milk-based semen diluents are known to be practical and effective in protecting equine spermatozoa during storage before artificial insemination. Milk is a biological fluid with a complex composition and contains components which are beneficial or harmful to spermatozoa. The aim of this study was to test the fertility of stallion semen after long-term storage using different milk diluents (INRA 82 or Kenney's diluent) vs one diluent chemically defined (INRA 96), which is composed of efficient milk components and optimized for sperm survival and storage temperature. The milk fraction used was t...
Effects of glutamine, proline, histidine and betaine on post-thaw motility of stallion spermatozoa.
Theriogenology    March 29, 2000   Volume 52, Issue 1 181-191 doi: 10.1016/s0093-691x(99)00120-x
Trimeche A, Yvon JM, Vidament M, Palmer E, Magistrini M.The supplementation of the freezing diluent with 3 amino acids (glutamine, proline and histidine) and 1 amino acid-related compound (betaine) in preserving stallion spermatozoa diluted in INRA82 extender containing 2.5% (v/v) glycerol and 2% (v/v) egg yolk (control extender) during freezing and thawing was studied at 0, 40, 80, 120 and 160 mM in 20 split ejaculates (10 stallions x 2 ejaculates; Experiment 1). Glutamine and proline were studied at 0, 10, 20, 30, 40, 50, 60, 70 and 80 mM in 20 split ejaculates (10 stallions x 2 ejaculates; Experiment 2). In each experiment, spermatozoa were eval...
Sperm transport and survival in the mare: a review.
Theriogenology    March 29, 2000   Volume 50, Issue 5 807-818 doi: 10.1016/s0093-691x(98)00185-x
Troedsson MH, Liu IK, Crabo BG.After the deposition of semen in the mare's uterus, spermatozoa must be transported to the site of fertilization, be maintained in the female tract until ovulation occurs, and be prepared to fertilize the released ovum. Sperm motility, myometrial contractions, and a spontaneous post-mating uterine inflammation are important factors for the transport and survival of spermatozoa in the mare's reproductive tract. Fertilizable sperm are present in the oviduct within 4 h after insemination. At this time, the uterus is the site of a hostile inflammatory environment. Our data suggest that spermatozoa...
Fertility comparison between breeding at 24 hours or at 24 and 48 hours after collection with cooled equine semen.
Theriogenology    March 29, 2000   Volume 50, Issue 5 693-698 doi: 10.1016/s0093-691x(98)00174-5
Shore MD, Macpherson ML, Combes GB, Varner DD, Blanchard TL.It has become a common practice in the equine breeding industry to send 2 insemination doses for breeding with transported cooled semen, one to be used for the initial insemination upon arrival, and the other to be held a second insemination the next day. One fertile stallion and 36 fertile mares were used to determine if breeding once with 1 dose of semen cooled for 24 h would improve fertility compared with breeding twice, 1 d apart, with half the dose of semen cooled for 24 h on the first day of breeding and half cooled for 48 h on the second day of breeding. Mares were given two intramuscu...
Effect of sperm number and frequency of insemination on fertility of mares inseminated with cooled semen.
Theriogenology    March 25, 2000   Volume 49, Issue 4 743-749 doi: 10.1016/S0093-691X(98)00023-5
Squires EL, Brubaker JK, McCue PM, Pickett BW.In this study, we tested the hypothesis that insemination of mares with twice the recommended dose of cooled semen (2 x 10(9) spermatozoa) would result in higher pregnancy rates than insemination with a single dose (1 x 10(9) spermatozoa) or with 1 x 10(9) spermatozoa on each of 2 consecutive days. A total of 83 cycles from 61 mares was used. Mares were randomly assigned to 1 of 3 treatment groups when a 40-mm follicle was detected by palpation and ultrasonography. Mares in Group 1 were inseminated with 1 x 10(9) progressively motile spermatozoa that had been cooled in a passive cooling unit t...
Effect of spermatozoal concentration and number on fertility of frozen equine semen.
Theriogenology    March 25, 2000   Volume 49, Issue 8 1537-1543 doi: 10.1016/s0093-691x(98)00099-5
Leipold SD, Graham JK, Squires EL, McCue PM, Brinsko SP, Vanderwall DK.Information on the number of motile spermatozoa needed to maximize pregnancy rates for frozen-thawed stallion semen is limited. Furthermore, concentration of spermatozoa per 0.5-mL straw has been shown to affect post-thaw motility (7). The objectives of this study were 1) to compare the effect of increasing the concentration of spermatozoa in 0.5-mL straws from 400 to 1,600 x 10(6) spermatozoa/mL on pregnancy rate of mares, and 2) to determine whether increasing the insemination dose from approximately 320 to 800 million progressively motile spermatozoa after thawing would increase pregnancy r...
Current methods for stallion semen cryopreservation: a survey.
Theriogenology    March 25, 2000   Volume 49, Issue 5 895-903 doi: 10.1016/s0093-691x(98)00039-9
Samper JC, Morris CA.Various factors affect the success of AI with frozen-thawed semen in horses. Stallion variability is thought to be one of the major factors, but semen processing and evaluation techniques, thawing protocols, packaging systems and timing of insemination are far from standardized among laboratories. Our objective was to survey current methods for stallion semen cryopreservation used commercially around the world. From the answers to the questions in the survey, we attempted to provide an overview of procedures that are standard as well as those that are used by only few laboratories and to revie...
Sperm transport and survival in the mare.
Theriogenology    March 25, 2000   Volume 49, Issue 5 905-915 doi: 10.1016/s0093-691x(98)00040-5
Troedsson MH, Liu IK, Crabo BG.Following the deposition of semen in the mares uterus, spermatozoa must be transported to the site of fertilization, be maintained in the female tract until ovulation occurs, and be prepared to fertilize the released ovum. Sperm motility, myometrial contractions, and a spontaneous post-mating uterine inflammation are important factors for the transport and survival of spermatozoa in the mares reproductive tract. Fertilizable sperm are present in the oviduct within 4 hours after insemination. At this time, the uterus is the site of a hostile inflammatory environment. Our data suggest that sperm...
Bacteriology of preserved stallion semen and antibiotics in semen extenders.
Theriogenology    March 25, 2000   Volume 50, Issue 4 559-573 doi: 10.1016/s0093-691x(98)00161-7
Varner DD, Scanlan CM, Thompson JA, Brumbaugh GW, Blanchard TL, Carlton CM, Johnson L.Three experiments were conducted to evaluate the effects of different antibiotics in a milk-glucose semen extender on motility of equine sperm and elimination of bacteria following storage of extended semen in vitro. In Experiment 1, 7 antibiotics were compared: amikacin, gentamicin, streptomycin, potassium penicillin, sodium penicillin, ticarcillin, and polymixin B. In Experiment 2, 3 antibiotic treatments were compared: potassium penicillin G, amikacin, or a combination of potassium penicillin G and amikacin. In Experiment 3, 3 antibiotic treatments were compared: potassium penicillin G-amik...
Hypoosmotic test in equine spermatozoa.
Theriogenology    March 23, 2000   Volume 51, Issue 4 721-727 doi: 10.1016/s0093-691x(99)00021-7
Neild D, Chaves G, Flores M, Mora N, Beconi M, Agüero A.The aim of the study was to evaluate equine sperm membrane integrity using the hypoosmotic swelling (HOS) test and to correlate this test with different sperm parameters in raw and frozen thawed semen. The HOS solutions were made with fructose, sucrose, lactose and sodium citrate each at 300, 150, 100, 50 and 25 mosm. Maximum numbers of swollen spermatozoa were observed in solutions of fructose, sucrose and lactose each at 100, 50 and 25 mosm. Correlations between progressive motility, morphologically normal spermatozoa and the HOS test were r = 0.75 and r = 0.51 in raw semen and r = 0.26 and ...
Quality of stallion semen obtained by a new semen collection phantom (Equidame) versus a Missouri artificial vagina.
Theriogenology    March 23, 2000   Volume 51, Issue 6 1157-1173 doi: 10.1016/s0093-691x(99)80019-3
Lindeberg H, Karjalainen H, Koskinen E, Katila T.A study was performed to test a new semen collection device (Equidame phantom) that fractionates the ejaculate by comparing the quality of semen obtained by the Equidame phantom with that obtained by a Missouri artificial vagina. Semen from 4 Finnhorse stallions was collected 4 times per stallion by both methods. Half of the ejaculate was frozen and the other half extended and loaded into 2 Equitainer transport containers (24- and 48-h samples). Motility parameters were determined by a Hamilton-Thorn motility analyzer after cooled storage for 24 and 48 h and again after freezing/thawing. Raw a...
Comparison of the longevity of motility of stallion spermatozoa incubated at 38 degrees C in different capacitating media and containers.
Theriogenology    March 23, 2000   Volume 51, Issue 3 637-646 doi: 10.1016/s0093-691x(99)00002-3
Bedford SJ, Gowdy HL, Hinrichs K.This study was designed to compare the effects of different media and containers on longevity of motility of spermatozoa during in vitro incubation at 38 degrees C in either air or 5% CO2 atmosphere. Three ejaculates were collected from each of 4 stallions. The media tested were skim milk-glucose, modified Krebs/Ringer and Hank's salts solution for incubation in an air atmosphere, and modified Krebs/Ringer and Brackett and Oliphant (BO) defined medium for incubation in a 5% CO2 atmosphere. All samples were incubated in 5-mL borosilicate glass tubes filled with 3 mL of extended spermatozoa, 5-m...
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