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Topic:Testes

The testes in horses are reproductive organs responsible for the production of sperm and the secretion of hormones such as testosterone. Located in the scrotum, the testes play a vital role in male fertility and reproductive behavior. They consist of seminiferous tubules where spermatogenesis occurs, and interstitial cells, also known as Leydig cells, which produce testosterone. The function and health of equine testes can be influenced by factors such as age, season, and overall health status. This page compiles peer-reviewed research studies and scholarly articles that explore the anatomy, physiology, and pathology of the testes in horses, providing insights into their role in equine reproduction and breeding management.
Leiomyoma of the tunica albuginea in a horse.
Journal of comparative pathology    May 1, 1989   Volume 100, Issue 4 465-468 doi: 10.1016/0021-9975(89)90014-5
Johnson RC, Steinberg H.A leiomyoma of the left testicle was found in a 7-year-old Arabian stallion at routine castration. The neoplasm consisted of interlacing bundles of well-differentiated, haphazardly arranged, smooth muscle cells attached superficially to the tunica albuginea.
Temporal appearance of seasonal changes in numbers of Sertoli cells, Leydig cells, and germ cells in stallions.
Biology of reproduction    May 1, 1989   Volume 40, Issue 5 994-999 doi: 10.1095/biolreprod40.5.994
Johnson L, Tatum ME.The temporal appearance of seasonal changes in numbers of Leydig, Sertoli, and germ cells was evaluated to determine if seasonally increased daily spermatozoan production might be preceded by changes in numbers of either of two somatic testicular cells. A significant increase in numbers of spermatogonia and Sertoli cells preceded the significant increase in number of Leydig cells in the approaching breeding season. Seasonal changes in parenchymal weight and in numbers of Sertoli cells, Leydig cells, and germ cells were maximal in May and June. Numbers of A or B spermatogonia in June were 2.4 t...
Monorchidism in the horse.
Equine veterinary journal    May 1, 1989   Volume 21, Issue 3 215-217 doi: 10.1111/j.2042-3306.1989.tb02150.x
Parks AH, Scott EA, Cox JE, Stick JA.Six horses with monorchidism, identified at surgery for cryptorchidectomy, are reported. All six presented with a single scrotal testis. Following surgical removal of one testis, they were either hormonally, anatomically or behaviourally determined to be geldings. Three other horses reported in the literature are reviewed. Of these nine cases of monorchidism, eight were thought to be caused by testicular degeneration and one by testicular agenesis. The vaginal process was present in all of the former and absent in the latter. The left side was involved in five of these eight horses. In seven, ...
Synthesis and aromatization of 19-norandrogens in the stallion testis.
Journal of steroid biochemistry    April 1, 1989   Volume 32, Issue 4 537-544 doi: 10.1016/0022-4731(89)90387-7
Dintinger T, Gaillard JL, Zwain I, Bouhamidi R, Silberzahn P.The results of the measurement of 19-nortestosterone in the testiscular artery and vein of the stallion, the very low levels of this steroid in the peripheral blood of geldings and the similar patterns of increase in the peripheral levels of 19-nortestosterone and testosterone after hCG stimulation, show that 19-nortestosterone, like testosterone, is essentially synthesized in the testis. This testicular origin was confirmed by the ability of testicular tissue to synthesize 19-norandrogens from [4-14C]androgens in vitro. 19-Nortestosterone was 50% conjugated in the peripheral blood and almost ...
Influences of season and artificial photoperiod on stallions: pituitary and testicular responses to exogenous GnRH.
Journal of animal science    March 1, 1989   Volume 67, Issue 3 763-770 doi: 10.2527/jas1989.673763x
Clay CM, Squires EL, Amann RP, Nett TM.Effects of season and photoperiod on the anterior pituitary gland and testes were studied by responses to exogenous GnRH. Stallions were assigned to one of three treatments: 1) control, exposed to natural day length; 2) S-L, 8 h of light and 16 h dark (8:16) for 20 wk beginning July 16, 1982 then 16:8 from December 2, 1982 until March 5, 1984; or 3) S-S, 8:16 from July 16, 1982 until March 5, 1984. Approximately every 8 wk, stallions were administered GnRH (2 micrograms/kg BW) and blood was sampled at 20-min intervals for 2 h before and 8 h after GnRH administration. Concentrations of LH, FSH ...
Androgen and oestrogen response to a single injection of hCG in cryptorchid horses.
Equine veterinary journal    March 1, 1989   Volume 21, Issue 2 126-129 doi: 10.1111/j.2042-3306.1989.tb02116.x
Silberzahn P, Pouret EJ, Zwain I.Androgen (testosterone and androstenedione) and oestrogen (oestradiol -17 beta and oestrone) concentrations were measured by radio-immunoassay in the peripheral plasma of two geldings (five-years-old), three bilateral cryptorchids (two, two and a half, and five-years-old) and three normal intact stallions (four, five and five and a half-years-old) before and after a single injection of 10,000 iu human chorionic gonadotrophin (hCG). In the stallions, hCG administration resulted in an immediate sharp increase of conjugated oestrogens and a more gradual increase of unconjugated androgens. In the ...
Relationship of intratesticular testosterone content of stallions to age, spermatogenesis, Sertoli cell distribution and germ cell-Sertoli cell ratios.
Journal of reproduction and fertility    March 1, 1989   Volume 85, Issue 2 511-518 doi: 10.1530/jrf.0.0850511
Berndtson WE, Jones LS.Testes were obtained from 47 1-20-year-old stallions during the natural breeding season. Total testicular testosterone and testosterone/g testis increased with age (P less than 0.005), and total testicular testosterone was associated with larger testis size (P less than 0.05). Neither testosterone per gram nor per paired testes were related to total Sertoli cell number (P greater than 0.05), but greater testosterone per paired testes was associated with fewer Sertoli cells per unit of seminiferous tubule length (P less than 0.005) or basement membrane area (P less than 0.02) and with a higher ...
Steroids in equine testes: the identification of endogenous 19-hydroxy and 19-nor neutral steroids by gas chromatography–mass spectrometry.
The Journal of endocrinology    February 1, 1989   Volume 120, Issue 2 223-229 doi: 10.1677/joe.0.1200223
Dumasia MC, Houghton E, Jackiw M.After homogenization of testicular tissue from stallions aged 1, 2 and 5 years, the unconjugated and conjugated steroids were isolated by a combined solvent-solid extraction procedure. The conjugates were further separated into glucuronides and sulphates by chromatography using Sephadex LH-20. After enzyme hydrolysis and solvolysis of the respective conjugate classes, the three extracts, unconjugated steroids, aglycones and solvolysed sulphates, were purified by chromatography using Kieselgel 60H columns. Five fractions were resolved from each extract; an aliquot of each fraction was derivatiz...
Monorchidism in three colts.
Journal of the American Veterinary Medical Association    January 15, 1989   Volume 194, Issue 2 265-266 
Santschi EM, Juzwiak JS, Slone DE.Three monorchid colts were admitted for castration as cryptorchids. Two colts each had one normal descended testis, and the third colt had a small testis in the abdomen. Monorchidism was diagnosed at surgery by locating an incomplete epididymis without a testis. After the incomplete epididymis and other testis were removed, the absence of testicular tissue was confirmed by results of a human chorionic gonadotropin response test.
Sperm granuloma in a stallion.
Journal of the American Veterinary Medical Association    January 15, 1989   Volume 194, Issue 2 267-268 
Held JP, Prater P, Toal RL, Blackford JT, McCracken M.A 7-year-old stallion with a history of abdominal pain after it fell was examined and found to have a swelling of the right testis and epididymis. Semen evaluation revealed an increase in secondary sperm abnormalities. The stallion was unilaterally castrated. The histologic diagnosis was sperm granuloma, with no evidence of infection. Periductal fibrosis was observed and appeared to have developed before the trauma occurred. The changes seen could be compatible with chronic blockade of efferent ductules, resulting in extravasation of spermatozoa.
Sampling intensities and replication requirements for detection of treatment effects on testicular function in bulls and stallions: a statistical assessment.
Journal of animal science    January 1, 1989   Volume 67, Issue 1 213-225 doi: 10.2527/jas1989.671213x
Berndtson WE.Data from testes of 16, 2- to 3-yr-old stallions and 34 yearling beef bulls were utilized in a components of variance approach to calculate the number of observations required per testis and(or) the number of animals required per treatment group to provide experiments of known sensitivity and precision, where treatment was to be assessed by one of several endpoints. The latter included paired testes weight, seminiferous tubular diameter, the number of germ cells per seminiferous tubular cross-section, or the number of elongated spermatids per gram of testicular parenchyma or per testis. For al...
Gonadotropin releasing hormone (GnRH) affects precopulatory behavior in testosterone-treated geldings.
Physiology & behavior    January 1, 1989   Volume 45, Issue 1 145-149 doi: 10.1016/0031-9384(89)90177-7
McDonnell SM, Diehl NK, Garcia MC, Kenney RM.Twelve pony geldings with (n = 6) and without (n = 6) testosterone replacement (200 micrograms/kg testosterone propionate in oil, SC every 48 hours) received either gonadotropin releasing hormone (GnRH; 25 micrograms SC every 3 hours) or control treatment. Sexual behavior was recorded during 4-minute exposure to an estrous mare, 3 times weekly for 2 weeks before treatment, 3 weeks during treatment, and 3 weeks after treatment had been discontinued. The group receiving testosterone and GnRH (n = 3) exhibited significantly greater flehmen response frequency and attention duration and significant...
Cytochemical and ultrastructural characteristics of the stallion epididymis (Equus caballus).
Journal of submicroscopic cytology and pathology    January 1, 1989   Volume 21, Issue 1 103-120 
Lรณpez ML, Grez P, Gribbel I, Bustos-Obregรณn E.The epididymis of stallion castrated during the breeding and non breeding seasons were subdivided into six regions and their ultrastructural and cytochemical characteristics were studied in order to provide a better understanding of the structure-function relationship of this androgen target organ. Even when the stallion has been postulated to be a seasonal breeder, our results do not show significant ultrastructural or cytochemical differences in both seasons. The pseudostratified epithelium is composed mainly of principal and basal cells and intraepithelial lymphocytes. The principal cells s...
Normal and cryptorchid castration.
The Veterinary clinics of North America. Equine practice    December 1, 1988   Volume 4, Issue 3 493-513 doi: 10.1016/s0749-0739(17)30625-9
Trotter GW.Surgical exploration of the horse that has presumably had a normal castration or a previously successful cryptorchid surgery remains a distinct challenge. No hard and fast rules dictate a proper course of action for each case. If a horse was anesthetized for routine castration, discovered to have only one scrotal testis, had a brief exploratory on the nondescended side and was recovered, trauma to the inguinal region would probably be sufficiently minimal that an inguinal approach could be used at subsequent exploratory surgery. If the inguinal canal was extensively manipulated and the tail of...
Testosterone blood content is regulated by testicular aromatization-conjugation in the stallion.
Steroids    October 1, 1988   Volume 52, Issue 4 353-354 doi: 10.1016/0039-128x(88)90143-2
Silberzahn P, Bouhamidi R, Zwain I, Gaillard JL, Martin B.No abstract available
[The use of Leydig interstitial cells preserved by deep freezing in the testosterone production assay].
Archiv fur experimentelle Veterinarmedizin    May 1, 1988   Volume 42, Issue 3 430-434 
Tiemann U, Falge R, Blรถdow G, Bergfeld J.No abstract available
Influences of season and artificial photoperiod on stallions: luteinizing hormone follicle-stimulating hormone and testosterone.
Journal of animal science    May 1, 1988   Volume 66, Issue 5 1246-1255 doi: 10.2527/jas1988.6651246x
Clay CM, Squires EL, Amann RP, Nett TM.Influence of day length on seasonal endocrine responses were studied using stallions (seven per group). Treatments included 1) control, with natural day length; 2) 8 h light and 16 h dark (8:16) for 20 wk beginning July 16, 1982 then 16:8 from December 2, 1982 until March 5, 1984 (S-L); or 3) 8:16 from July 16, 1982 until March 5, 1984 (S-S). Blood was sampled hourly for 5 h every 4 wk; sera were pooled within horse, and luteinizing hormone (LH), follicle-stimulating hormone (FSH) and testosterone were quantified. Blood was collected every 20 min for 24 h every 8 wk and 2 wk before and after t...
Testis size and onset of spermatogenesis in Cape mountain zebras (Equus zebra zebra).
Journal of reproduction and fertility    May 1, 1988   Volume 83, Issue 1 371-375 doi: 10.1530/jrf.0.0830371
Penzhorn BL, van der Merwe NJ.Testis mass of adult Cape mountain zebra stallions (mean 70.0 g) was appreciably less than that of other zebra species and domestic horses. The histological appearance of the testes of 11-, 24- and 29-month-old colts was typically prepubertal. Spermatogenic activity of a 4-year-old stallion obtained at the end of summer was at a very low level, while a 4.5-year-old stallion obtained 6 weeks after the winter solstice showed a marked increase in spermatogenesis compared with the 4-year-old. Stallions 6.5-19 years of age collected in different seasons all showed active spermatogenesis.
Age-related morphological and functional changes in the Leydig cells of the horse.
Biology of reproduction    April 1, 1988   Volume 38, Issue 3 653-665 doi: 10.1095/biolreprod38.3.653
Almahbobi G, Papadopoulos V, Carreau S, Silberzahn P.Two ultrastructurally distinct types of Leydig cells were observed in the equine testis. Whereas the adult testis exhibited both postpubertal and adult Leydig cells, the testis of the pubertal horse contained only the postpubertal type, and that of the aged horse contained only the adult type. However, Percoll-purified testicular preparations from pubertal, adult, and aged horses all exhibited two distinct Leydig cell populations. The quantitative distribution and the functional characteristics of these Leydig cell populations (ability to bind human chorionic gonadotropin [hCG] and increase of...
Conformational restrictions of the sheep testicular receptor discriminates pituitary lutropin and placental gonadotropins.
The Journal of biological chemistry    March 15, 1988   Volume 263, Issue 8 3706-3712 
Sairam MR, Yarney TA, Bhargavi GN, Sanford LM.A membrane preparation from the testis of maturing Dorset-Leicester-Suffolk sheep, capable of discriminating pituitary LH (lutropin) from placental gonadotropins human choriogonadotropin (hCG) and equine choriogonadotropin is described. Maximum binding of 125I-oLH (ovine lutropin) to the testicular receptors occurred at 4 degrees C in a rapid manner, attaining equilibrium in 12-16 h. Under such optimal conditions, only unlabeled ovine LH or the structurally identical bovine LH effectively competed for receptor occupation. Other highly purified pituitary LH preparations from rat and human pitui...
Septic periorchitis in a horse.
Journal of the American Veterinary Medical Association    February 1, 1988   Volume 192, Issue 3 363-364 
Belknap J, Arden W, Yamini B.A 2-month-old Standard-bred colt with signs of abdominal pain and large scrotum was found to have septic periorchitis involving the right testis. Surgical exploration of the abdomen and scrotum was performed; the colt was then castrated. Actinobacillus equuli was isolated from specimens obtained at surgery. The colt was treated with broad-spectrum antibiotics and flunixin meglumine after surgery, and fully recovered. The clinical signs of periorchitis in the colt were similar to an inguinal/scrotal hernia.
Testosterone response to human chorionic gonadotropin injection in the stallion.
Equine veterinary journal    January 1, 1988   Volume 20, Issue 1 61-63 doi: 10.1111/j.2042-3306.1988.tb01456.x
Silberzahn P, Zwain I, Guerin P, Benoit E, Jouany JM, Bonnaire Y.No abstract available
Aromatization of testosterone and 19-nortestosterone by a single enzyme from equine testicular microsomes. Differences from human placental aromatase.
Journal of steroid biochemistry    January 1, 1988   Volume 29, Issue 1 119-125 doi: 10.1016/0022-4731(88)90385-8
Silberzahn P, Gaillard JL, Quincey D, Dintinger T, Al-Timimi I.A single enzyme in the stallion testis was able to aromatize both testosterone and nortestosterone. This enzyme had a much lower affinity for nortestosterone than for testosterone. In contrast to human placental estrogen synthetase, this enzyme aromatized testosterone and 19-nortestosterone with similar efficiency. The differences observed (effects of monovalent cations, inhibition of androstenedione aromatization by testosterone and 19-nortestosterone and, above all, rate of norandrogen aromatization) suggest that the aromatase in the horse testis is not the same as that in the human placenta...
A mixed germ cell-sex cord-stromal neoplasm of the testis in a stallion.
Veterinary pathology    November 1, 1987   Volume 24, Issue 6 575-577 doi: 10.1177/030098588702400620
Cullen JM, Whiteside J, Umstead JA, Whitacre MD.No abstract available
Effect of seasonal changes in Leydig cell number on the volume of smooth endoplasmic reticulum in Leydig cells and intratesticular testosterone content in stallions.
Journal of reproduction and fertility    September 1, 1987   Volume 81, Issue 1 227-232 doi: 10.1530/jrf.0.0810227
Johnson L, Thompson DL.Testes from 47 adult (4-20 years) stallions obtained in November-January (non-breeding season) and 41 adult stallions obtained in May-July (breeding season) were perfused with glutaraldehyde, placed in osmium and embedded in Epon 812. Percentage Leydig cell cytoplasm or nuclei in the testis was determined by point counting of 0.5 micron sections under bright-field microscopy. Testes from 6 randomly selected horses per season were processed for electron microscopy. The volume (ml) of SER/testis was calculated from the % SER in the cytoplasm % Leydig cell cytoplasm, and parenchymal volume. Numbe...
The effects of stanozolol and boldenone undecylenate on plasma testosterone and gonadotropins and on testis histology in pony stallions.
Theriogenology    July 1, 1987   Volume 28, Issue 1 109-119 doi: 10.1016/0093-691x(87)90190-7
Garcia MC, Ganjam VK, Blanchard TL, Brown E, Hardin K, Elmore RG, Youngquist RS, Loch WE, Ellersieck MR, Balke JM.Fifty 2- to 16- yr old pony stallions were randomly assigned to one of five treatments: Group 1, controls (no treatment); Group 2, 0.55 mg/kg stanozolol weekly for 13 treatments; Group 3, 1.1 mg/kg stanozolol every 3 wk for 5 treatments; Group 4, 1.1 mg/kg boldenone undecylenate every 3 wk for 5 treatments; and Group 5, 0.55 boldenone undecylenate weekly for 13 treatments. Mean plasma testosterone levels for Groups 2, 4, and 5 were elevated over controls (P0.05). There were no differences in mean plasma luteinizing hormone (LH) and follicle stimulating hormone (FSH) levels among groups (P>0...
Equine testicular interstitial cell tumors.
Veterinary pathology    May 1, 1987   Volume 24, Issue 3 231-234 doi: 10.1177/030098588702400306
Gelberg HB, McEntee K.Interstitial cell tumors from nine stallions were described. In all but one horse the tumors were found in undescended testes. Five animals had bilateral tumors. Two animals showed increased aggression. Tumors contained two cell types. The first type were large distinctly bordered eosinophilic cells interpreted to be hyperplastic and hypertrophic interstitial cells. They blended with pleomorphic often spindloid neoplastic cells which had fibrillar, vacuolated cytoplasm and indistinct cell borders. This latter cell population was arranged in nodules or broad sheets as endocrine-like packets or ...
Aromatization of 19-norandrogens by equine testicular microsomes.
The Journal of biological chemistry    April 25, 1987   Volume 262, Issue 12 5717-5722 
Gaillard JL, Silberzahn P.In the stallion testis, aromatase activity was localized in the microsomal fraction. Androgen aromatization occurred through the loss of 1 beta,2 beta hydrogen atoms and appeared to involve free sulfhydryl groups. A single enzyme system seemed to aromatize androgen and norandrogen at the same rate while having a much lower affinity for norandrogens.
Influences of season and artificial photoperiod on stallions: testicular size, seminal characteristics and sexual behavior.
Journal of animal science    February 1, 1987   Volume 64, Issue 2 517-525 doi: 10.2527/jas1987.642517x
Clay CM, Squires EL, Amann RP, Pickett BW.To investigate the influence of daylength on the seasonal reproductive cycle of stallions, 21 stallions were assigned to one of three treatments: control, ambient (natural) photoperiod; S-L, 8 h light and 16 h dark (8:16) for 20 wk beginning July 16, 1982 then 16:8 from December 2, 1982 until March 5, 1984; S-S, 8:16 from July 16, 1982 until March 1984. Temperature was not controlled and was similar for all groups. Total scrotal width (TSW) was measured every 4 wk throughout the experiment. During 10 periods, semen was collected and evaluated every other day for 3 wk and sexual behavior was as...
In-vitro biosynthesis of C18 neutral steroids in horse testes.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 71-78 
Smith SJ, Cox JE, Houghton E, Dumasia MC, Moss MS.Deuterium, 14C- and 3H-labelled steroid substrates were incubated with minced testicular tissue from stallions of different ages. After extraction and separation of the neutral and phenolic fractions the metabolites were identified by gas chromatography-mass spectrometry. The presence of the expected C19 neutral and C18 phenolic steroids was confirmed. An isomer of 5(10)-oestrene-3,17-diol was also identified.
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