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Topic:Testosterone

Testosterone is a steroid hormone found in horses, primarily produced by the testes in males and, to a lesser extent, by the ovaries and adrenal glands in females. It plays a significant role in the development and maintenance of male reproductive tissues, as well as influencing secondary sexual characteristics and behavior. Testosterone levels can impact muscle mass, bone density, and overall physical condition, and they may vary due to factors such as age, season, and health status. This page compiles peer-reviewed research studies and scholarly articles that explore the production, regulation, and physiological effects of testosterone in equine biology, as well as its implications for behavior and health management in horses.
The control of oestrous behaviour in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 217-227 
Munro CD, Renton JP, Butcher R.Using a range of positive and negative sexual behaviour components, proceptivity of cycling, non-lactating mares and postpartum, lactating Pony mares was quantified around ovulation. Behavioural observations were compared to plasms concentrations of progesterone, total oestrogens and androstenedione. In addition, in cycling mares, comparison with plasma testosterone concentrations was carried out. Overall rejection behaviour by the mare was apparent both during dioestrus and during periods of basal plasma progesterone concentrations. Within cycling, non-lactating mares, and between postpartum ...
The role of the fetal gonads and placenta in steroid production, maintenance of pregnancy and parturition in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 499-509 
Pashen RL, Allen WR.The effects of fetal gonadectomy on steroid production and the maintenance of pregnancy in the mare were studied. Removal of the fetal gonads resulted in an immediate fall in maternal plasma concentrations of conjugated and unconjugated oestrogens whereas progestagen levels remained unchanged. Hormone profiles in mares carrying sham-operated fetuses remained similar to those in unoperated control mares. Plasma levels of 13,14-dihydro-15-oxo-PGF-2 alpha (PGFM) were much lower, and uterine contractions weaker, during labour in mares carrying gonadectomized foals than in control mares. Pregnancy ...
Formation of steroids by the pregnant mare. VI. Metabolism of [14C]farnesyl pyrophosphate and [3H]dehydroepiandrosterone injected into the fetus.
Endocrinology    December 1, 1978   Volume 103, Issue 6 2291-2298 doi: 10.1210/endo-103-6-2291
Bhavnani BR, Woolever CA.A mixture of [4,8,12-14C]farnesyl pyrophosphate and [3H]dehydroepiandrosterone was injected into a horse fetus im during laparotomy, after which maternal urine was collected for 6 days. Steroid conjugates in the urine were extracted with Amberlite XAD-2 resin, hydrolyzed, and separated into phenolic and neutral fractions. Estrone, 17 alpha-estradiol, equilin [3-hydroxy-1,3,5(10),7-estratetraen-17-one], and 17 alpha-dihydroequilin [1,3,4(10),7-estratetraene-3,17 alpha-diol] were isolated from the phenolic fraction and their radiochemical purities were established. Only estrone and 17 alpha-estr...
Effect of season and artificial photoperiod on levels of estradiol-17beta and estrone in blood serum of stallions.
Journal of animal science    July 1, 1978   Volume 47, Issue 1 184-187 doi: 10.2527/jas1978.471184x
Thompson DL, Pickett BW, Nett TM.No abstract available
Testosterone and progesterone in peripheral plasma during the oestrous cycle of the mare.
Journal of reproduction and fertility    May 1, 1978   Volume 53, Issue 1 1-5 doi: 10.1530/jrf.0.0530001
Silberzahn P, Quincey D, Rosier C, Leymarie P.Measurements every day or every other day showed that testosterone levels ranging from 15 to 70 pg/ml were higher at oestrus in 4 of the 6 mares studied. In these 4 mares, another testosterone peak occurred 11--13 days before the next oestrus either before (3 mares) or after the fall in progesterone levels.
Studies related to the metabolism of anabolic steroids in the horse: a gas chromatographic mass spectrometric method to confirm the administration of 19-nortestosterone or its esters to horses.
Biomedical mass spectrometry    February 1, 1978   Volume 5, Issue 2 170-173 doi: 10.1002/bms.1200050213
Houghton E, Oxley GA, Moss MS, Evans S.A method is described to confirm the presence of 19-nortestosterone metabolites in urine after the administration of veterinary preparations of this anabolic steroid to horses. The method is based upon the detection, by gas chromatography mass spectrometry or selected ion monitoring, of an isomer of estrane-3,17-diol in the urine.
Factors influencing the quantity and quality of semen harvested from bulls, rams, boars and stallions.
Journal of animal science    January 1, 1978   Volume 47 Suppl 2 1-11 
Foote RH.Several inherited conditions associated with testicular defects, abnormal spermatogenesis and morphologically abnormal sperm have been found. These usually are controlled by single gene pairs. A notable exception is testicular size, with heritability in young bulls ranging from .42 to .88. Testicular size directly affects sperm output potential. The major contributor to variation in semen quality is the environment. Environmental effects may be temporary or permanent. Permanent effects occurring during prenatal and prepubertal periods and temporary or permanent factors acting after spermatogen...
Arrhenoblastoma in a mare.
Journal of the American Veterinary Medical Association    October 15, 1977   Volume 171, Issue 8 754-757 
Mills JH, Fretz PB, Clark EG, Ganjam VK.An ovarian neoplasm measuring 10 by 8 by 6 cm was surgically removed from a 14-year-old Appaloosa mare. For 2 years prior to surgery, the mare had manifested marked behavioral changes, becoming aggressive toward other broodmares. Histologically, the tumor was found to be an arrhenoblastoma. Preoperative endocrinologic findings (high serum testosterone and low serum estradiol concentrations) supported the diagnosis.
Application of radioimmunoassay method for detecting 19-nortestosterone (nandrolone) in equine and canine plasma.
The Veterinary record    June 25, 1977   Volume 100, Issue 26 560-562 doi: 10.1136/vr.100.26.560
Jondorf WR, Macdougall DF.No abstract available
Reproductive function in stallions treated with cambendazole.
Journal of the American Veterinary Medical Association    April 1, 1977   Volume 170, Issue 7 730-732 
Amann RP, Bowen JM, Pickett BW, Berndtson WE, Stashak RS, Voss JL.Twenty stallions were used to determine if the anthelmintic cambendazole affected seminal characteristics, spermatogenesis, concentration of testosterone in blood serum, or weights of the reproductive orgrans. With minor exceptions, significant differences were not found between values for 10 control and 10 stallions treated with a single oral dose (40 mg/kg body weight) of cambendazole. The treatment did not affect reproductive function and it was concluded that the drug should have no effect on the fertility of stallions.
Reproductive physiology of the stallion. VIII. Artificial photoperiod, collection interval and seminal characteristics, sexual behavior and concentrations of LH and testosterone in serum.
Journal of animal science    April 1, 1977   Volume 44, Issue 4 656-664 doi: 10.2527/jas1977.444656x
Thompson DL, Pickett BW, Berndtson WE, Voss JL, Mett TM.Stallions were subjected to a gradually increasing photoperiod beginning on October 15, 1973. The maximum artificial daylength (16 hr) was imposed on February 8, 1974, and maintained until October 6, 1974. Two ejaculates were collected from each of five treated and four control stallions weekly, with an interval of 24 hr between die paired ejaculates on the first and alternate weeks, and an interval of 1 hr on the second and alternate weeks. During summer, stallions subjected to the artificial photoperiod produced less (P<.05) gel-free semen and gel per ejaculate and had more (P<.05) spermatoz...
Seasonal variation in plasma androgens and testosterone in the North American wild horse.
The Journal of endocrinology    February 1, 1977   Volume 72, Issue 2 237-238 doi: 10.1677/joe.0.0720237
Kirkpatrick JF, Wiesner L, Kenney RM, Ganjam VK, Turner JW.No abstract available
Application of radioimmunoassay for testosterone to routine testing.
British journal of sports medicine    October 1, 1976   Volume 10, Issue 3 155-157 doi: 10.1136/bjsm.10.3.155
Boudene C, Jouany JM, Belegaud J, Despaux N.No abstract available
Effect of temperature and pregnant mare’s serum gonadotropin on testicular function in the spiny-tailed lizard, Uromastix hardwicki.
General and comparative endocrinology    October 1, 1976   Volume 30, Issue 2 162-170 doi: 10.1016/0016-6480(76)90095-2
Jalali S, Arslan M, Qureshi S, Qazi MH.No abstract available
Diurnal variations of plasma testosterone in stallions.
Biology of reproduction    September 1, 1976   Volume 15, Issue 2 158-162 doi: 10.1095/biolreprod15.2.158
Sharma OP.Plasma testosterone was measured in the peripheral blood of normal stallions by radioimmunoassay. In 24 stallions a single blood sample was taken between 9:30 and 10:30 a.m. and the mean testosterone concentration was 3.06 ± 1.27 ng/ml. In the other 8 stallions, blood was withdrawn every 4 h. In all 8 stallions there was evidence of a diurnal rhythm. The maximum mean blood plasma concentration of testosterone was observed in the sample collected at 8:00 a.m. and the minimum at 8:00 p.m. These differences in the blood plasma testosterone level are significant (P<0.10).
Diurnal variation of plasma testosterone in wild stallions.
Biology of reproduction    August 1, 1976   Volume 15, Issue 1 98-101 doi: 10.1095/biolreprod15.1.98
Kirkpatrick JF, Vail R, Devous S, Schwend S, Baker CB, Wiesner L.No abstract available
Endogenous anabolic agents in farm animals.
Environmental quality and safety. Supplement    January 1, 1976   Issue 5 159-170 
Velle W.This presentation is limited to the three groups of steroid sex hormones which alone or in combination have been shown to be anabolic when used in farm animals. It seems essential for realistic evaluation of public health aspects of use of these hormones that the discussions include naturally occurring levels of the hormones. The following topics will be dealt with for each group of hormones: 1. Types and sources; 2. Production rates; 3. Plasma levels; 4. Tissue concentrations; 5. Metabolism and excretion. Gestagens. Progesterone and 20-dihydroprogesterones are mainly produced in ovaries and p...
Androgens and oestrogens in normal and cryptorchid stallions.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 67-73 
Ganjam VK, Kenney RM.Total androgens, testosterone and total oestrogens were measured in twenty-one intact, nine unilaterally cryptorchid, three bilaterally cryptorchid stallions and four geldings. Total oestrogens were significantly higher (P less than 0-005) and total androgens significantly lower (P less than 0-05) in the bilateral cryptorchid compared to other groups. There was a significant (P less than 0-025) day and night variation in total androgen levels. Thyroidectomized and intact animals showed a marked decrease in total androgen as well as testosterone levels during the winter period thus showing an e...
The cycle of oestrus, ovulation and plasma levels of hormones in the mare.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 189-192 
Noden PA, Oxender WD, Hafs HD.The duration of the oestrous cycle and day of ovulation were recorded in six mares which were used for concurrent assay of plasma levels of sex steroids and pituitary LH concentration. Peak of progesterone were reached during dioestrus and those of oestradiol and androstenedione occurred 2 days before ovulation and were in decline on the day of ovulation. Plasma oestrone remained constant (between 9 and 12 pg/ml) throughout the cycle. Plasma LH rose to a maximum near to the time of ovulation, and thereafter decreased gradually until mid-dioestrus. The pattern of secretion is compared with that...
Semen characteristics in thyroidectomized stallions.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 81-86 
Lowe JE, Baldwin BH, Foote RH, Hillman RB, Kallefelz FA.Three Quarter-horse stallions were surgically thyroidectomized at 18 months of age. Weekly semen collections were made from these and three control stallions from 25 to 39 months of age. Although the induced state of hypothyroidism in young stallions has a depressing effect on libido and general animation and can be corrected by thyroprotein supplementation, semen characteristics, testicular histology and fertility are not affected by the operation.
Equine granulosa cell tumors.
Journal of the American Veterinary Medical Association    July 15, 1975   Volume 167, Issue 2 148-151 
Stickle RL, Erb RE, Fessler JF, Runnels LJ.Unilateral ovariectomy was performed on 3 mares affected with granulosa cell tumors. Tumor fluid in each mare was found to contain estrogen, testosterone, and progesterone. In 2 mares, preoperative blood plasma concentrations of these hormones were comparable to those of a series of clinically normal mares. The other mare, which had a history of aggressive, masculine behavior, had higher testosterone content in the tumor fluid and in the preoperative blood sample. After surgical removal of the tumors, each mare developed follicles and ovulated with the remaining ovary. Each was eventually bred...
Formation of steroids by the pregnant mare. V. Metabolism of 14C-isopentenylpyrophosphate and 3H-dehydroisoandrosterone injected into the fetus.
Endocrinology    April 1, 1975   Volume 96, Issue 4 1009-1017 doi: 10.1210/endo-96-4-1009
Bhavnani BR, Martin LJ, Baker RD.A mixture of 1-14C-isopentenylpyrophosphate and 3H-dehydroisoandrosterone was injected into a horse fetus intramuscularly during laparotomy, after which maternal urine was collected for 4 days. Steroid conjugates in the urine were extracted with Amberlite XAD-2 resin, hydrolysed and separated into phenolic and neutral fractions. From the phenolic fraction estrone, 17alpha-estradiol, equilin and equilenin were isolated. Only estrone and 17alpha-estradiol contained both 3H and 14C, while the ring B unsaturated estrogens contained only 14C. From the neutral fraction 14C-labeled 3beta-hydroxy-5alp...
[Advances in the endocrinology of reproduction in domestic animals. 8. Endocrinology of male gonads].
DTW. Deutsche tierarztliche Wochenschrift    October 15, 1974   Volume 81, Issue 20 491 
Holtz W.No abstract available
Reproductive physiology of the stallion. 3. Extra-gonadal transit time and sperm reserves.
Journal of animal science    October 1, 1974   Volume 39, Issue 4 737-742 doi: 10.2527/jas1974.394737x
Gebauer MR, Pickett BW, Swierstra EE.No abstract available
Reproductive physiology of the stallion. IV. Seasonal changes in the testosterone concentration of peripheral plasma.
Journal of reproduction and fertility    July 1, 1974   Volume 39, Issue 1 115-118 doi: 10.1530/jrf.0.0390115
Berndtson WE, Pickett BW, Nett TM.No abstract available
The fertility of stallions.
The Veterinary record    January 19, 1974   Volume 94, Issue 3 55 doi: 10.1136/vr.94.3.55
Cutler RS.No abstract available
Testosterone in normal, cryptorchid and castrated male horses.
Equine veterinary journal    April 1, 1973   Volume 5, Issue 2 85-90 doi: 10.1111/j.2042-3306.1973.tb03200.x
Cox JE, Williams JH, Rowe PH, Smith JA.No abstract available
Intermicrosomal distribution of aromatizing enzyme system in equine testicular tissue.
Acta endocrinologica    February 1, 1973   Volume 72, Issue 2 366-375 doi: 10.1530/acta.0.0720366
Oh R, Tamaoki BI.The microsomal fraction (10 000–105 000 × g precipitate) of equine testes was fractionated into the smooth- and the rough-surfaced microsomal subfractions by a sucrose density-gradient centrifugation in the presence of CsCl. The validity of this fractionating procedure was confirmed by electron microscopic examination and also by chemical analysis of the RNA contents in these subfractions. The aromatizing enzyme system (19-hydroxylase and aromatase) which was concentrated in the microsomal fractions among the organellae was found to be localized in the smoothsurfaced microsomal fraction. Th...
The place of the seasonal breeder in research on male reproduction.
Advances in the biosciences    January 1, 1973   Volume 10 235-246 
Glover TD.No abstract available
Occurrence of 19-oxoandrost-4-ene-3,17-dione in the course of oestrogen biosynthesis by equine testicular microsomes.
Acta endocrinologica    January 1, 1971   Volume 67, Issue 4 665-676 doi: 10.1530/acta.0.0670665
Oh R, Tamaoki B.No abstract available