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Topic:Estradiol

Estradiol is a steroid hormone belonging to the estrogen group, which plays a significant role in various physiological processes in horses. It is primarily produced by the ovaries and is involved in the regulation of the estrous cycle, reproductive behavior, and secondary sexual characteristics. In mares, estradiol levels fluctuate throughout the reproductive cycle, influencing follicular development and ovulation. Additionally, estradiol has effects on bone density, muscle growth, and metabolic processes. This page compiles peer-reviewed research studies and scholarly articles that explore the production, function, and clinical implications of estradiol in equine physiology and reproductive health.
The oestrous cycle of the mare.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 161-166 
Hughes JP, Stabenfeldt GH, Evans JW.In eleven non-pregnant mares examined for 2 years, oestrous cycle length was 20-6 days (range 13 to 34) excluding any anoestrous periods. The duration of oestrus was 5-7 days (range 1 to 24); from February to May it was 7-6 days (range 2 to 24) and from May to November 4-8 days (range 1 to 10). The majority of ovulations occurred between 16.00 and 08.00 hours and 78% of the mares ovulated within 48 hr of the end of oestrus. Mean follicular diameter was 45 mm on the day of ovulation and there was a 25-5% incidence of multiple ovulations. It was uncommon for oestrus to occur without ovulation, w...
Urinary oestrogen and plasma progesterone levels in non-pregnant mares.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 213-221 
Palmer E, Jousset B.Eight mares were observed clinically for 14 months to detect oestrus and ovarian activity, and assays of urinary oestrogens and plasma progesterone were performed. Cyclical ovarian activity occurred during 60% of the experimental period. Persistent luteal activity was found over 20% of the period and for the rest of the time activity was absent. Cyclical activity was characterized by the alternation of periods of low and high progesterone levels corresponding to the follicular and luteal phases of the ovarian cycle. During the follicular phase, urinary oestrogen levels increased to a maximum o...
Periovulatory changes in peripheral plasma progesterone and estrogen concentrations in the mare.
American journal of veterinary research    September 1, 1975   Volume 36, Issue 9 1359-1362 
Plotka ED, Foley CW, Witherspoon DM, Schmoller GC, Goetsch DD.Concentrations of progesterone and estrogen were measured in peripheral blood plasma samples from mares around the time of ovulation. Samples were collected every 2 hours from 36 hours before, to 26 hours after, ovulation and assayed by radioimmunoassay. Progesterone concentrations were between 60 and 100 pg/ml for the period 24 hours before ovulation through 8 hours after ovulation. By 10 hours after ovulation, concentrations increased to 140 pg/ml and, by 26 hours after ovulation, reached 346 pg/ml. Plasma estrogen concentrations did not change significantly throughout the same period.
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...
Luteinizing hormone and estradiol in peripheral blood of mares during estrous cycle.
Biology of reproduction    October 1, 1974   Volume 11, Issue 3 245-250 doi: 10.1095/biolreprod11.3.245
Pattison ML, Chen CL, Kelley ST, Brandt GW.No abstract available
Spontaneous prolongation of luteal activity in the mare.
Equine veterinary journal    October 1, 1974   Volume 6, Issue 4 158-163 doi: 10.1111/j.2042-3306.1974.tb03952.x
Stabenfeldt GH, Hughes JP, Evans JW, Neely DP.No abstract available
The role of the uterus in ovarian control in the mare.
Journal of reproduction and fertility    April 1, 1974   Volume 37, Issue 2 343-351 doi: 10.1530/jrf.0.0370343
Stabenfeldt GH, Hughes JP, Wheat JD, Evans JW, Kennedy PC, Cupps PT.The effect of hysterectomy on ovarian activity was studied in four mares. The cyclic secretion pattern of plasma progestins normally observed in the intact mare was interrupted by hysterectomy. Follicular activity was observed in all four hysterectomized mares, in spite of pro- longed luteal activity, with a large number of follicles attaining ovulatory size without the occurrence of ovulation. Some ovulations were observed at irregular intervals in two out of four hysterectomized mares in spite of plasma progestin levels which ranged from 2 to 6 ng/ml. While all ovulations which occur...
Progesterone concentration in the peripheral plasma of the mare during the oestrous cycle and early pregnancy.
Journal of the South African Veterinary Association    December 1, 1973   Volume 44, Issue 4 363-373 
van Niekerk CH, Morgenthal JC, Sanders CP, Malan JE.Progesterone concentrations were assayed by a competitive protein-binding technique in peripheral plasma samples collected twice daily during four oestrous cycles of three mares, and once a day during the first seven weeks of pregnancy in four mares. Large variations were found in progesterone levels between morning and evening samples on the same day in the same mare. The lowest progesterone concentration was found about the time of ovulation. Within 24 hours after ovulation the progesterone concentration increased and two peaks, one at 5 days and another at 8 days, were found. Be...
Plasma estrogens in pregnant and postpartum mares.
Journal of animal science    October 1, 1973   Volume 37, Issue 4 962-970 doi: 10.2527/jas1973.374962x
Nett TM, Holtan DW, Liné Estergreen V.No abstract available
Duration of estrus and ovulation time in nonlactating mares given human chorionic gondotropin during three successive estrous periods.
Journal of the American Veterinary Medical Association    May 15, 1973   Volume 162, Issue 10 895-898 
Sullivan JJ, Parker WG, Larson LL.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...
Estrous cycle and ovulation in the mare.
Journal of the American Veterinary Medical Association    December 1, 1972   Volume 161, Issue 11 1367-1374 
Hughes JP, Stabenfeldt GH, Evans JW.No abstract available
Modification of present procedures for the determination of conjugated estrogens (equine) in various low-dosage forms.
Journal - Association of Official Analytical Chemists    September 1, 1972   Volume 55, Issue 5 1070-1073 
Allen RG.The presently used procedures for the colorimetric determination of conjugated estrogens (equine) have been modified for the assay of tablets, capsules, liquids, and creams of low declaration per dosage unit. Modifications in sample chromatographic column preparation and elution have provided a more efficient extraction of the steroids.
Formation of estrogens by the pregnant mare. II. Metabolism of 14C-acetate and 3H-cholesterol injected into the fetal circulation.
Endocrinology    November 1, 1971   Volume 89, Issue 5 1152-1157 doi: 10.1210/endo-89-5-1152
Bhavnani BR, Short RV, Solomon S.A mixture of 14C-sodium acetate and 3H-cholesterol was injected into the umbilical circulation of a pregnant mare in the 3OOth day of gestation. The abdomen was closed and urine was collected for 3.5 days. The mare delivered a normal live foal 23 days later. Steroid conjugates present in the maternal urine were hydrolyzed and separated into neutral and phenolic fractions. From the phenolic “sulfate” fraction estrone, 17α-estradiol, equilin, equilenin, and 17α-dihydroequilenin were isolated. Only estrone and 17α-estradiol contained both 3H and 14C, while the ring-B unsaturated estrogens ...
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
Formation of estrogens by the pregnant mare. I. Metabolism of 7-3H-dehydroisoandrosterone and 4-14C-androstenedione injected into the umbilical vein.
Endocrinology    December 1, 1969   Volume 85, Issue 6 1172-1179 doi: 10.1210/endo-85-6-1172
Bhavnani BR, Short RV, Solomon S.No abstract available
The fate of free and conjugated oestrogens injected into the Graffian follicle of equines.
The Journal of endocrinology    September 1, 1969   Volume 45, Issue 1 37-50 doi: 10.1677/joe.0.0450037
Giorgi EP, Addis M, Colombo G.No abstract available
The isolation of estrone sulfate and estradiol-17 beta sulfate from stallion testes.
Canadian journal of biochemistry    August 1, 1969   Volume 47, Issue 8 811-815 doi: 10.1139/o69-124
Raeside JI.No abstract available
[Biogenesis of unsaturated B-chain estrogens and of non-phenolic B-chain aromatic C-1-steroids in the horse].
Hoppe-Seyler's Zeitschrift fur physiologische Chemie    January 1, 1966   Volume 344, Issue 1 124-139 
Stárka L, Breuer H.No abstract available
[Biogenesis of estrogens in the horse placenta].
Die Naturwissenschaften    October 1, 1965   Volume 52, Issue 19 540-541 doi: 10.1007/BF00645829
Stsrka L, Breuer J, Breuer H.No abstract available
Formation of Estradiol by Granulosa and Theca Cells of the Equine Ovarian Follicle.
Endocrinology    January 1, 1965   Volume 76 108-114 doi: 10.1210/endo-76-1-108
RYAN KJ, SHORT RV.No abstract available
Studies on the Extragonadal Estrogens.
Nihon Naibunpi Gakkai zasshi    November 20, 1963   Volume 39 678-697 doi: 10.1507/endocrine1927.39.8_678
ONO S.No abstract available
Ovarian oestrogen levels in the non-pregnant mare: relationship to histological appearance of the uterus and to clinical status.
Journal of reproduction and fertility    May 1, 1961   Volume 2 130-137 doi: 10.1530/jrf.0.0020130
KNUDSEN O, VELLE W.No abstract available
The estrogens of the pregnant mare.
Endocrinology    March 1, 1961   Volume 68 411-416 doi: 10.1210/endo-68-3-411
SAVARD K.The urinary ketonic estrogens were studied at monthly intervals in five pregnant mares. Estrone and equilin appear to be the principal components and equilenin a minor constituent of the mares’ estrogens. The levels of equilin rise from the 4–5th months to equal and in some instances exceed those of estrone in the late months of pregnancy. A partition chromatographic method for the separation of the ketonic phenolic steroids of pregnant mares’ urine is described.
Biosynthesis of estrogen by the perfused stallion testis.
The Journal of biological chemistry    January 1, 1959   Volume 234, Issue 1 16-18 
NYMAN MA, GEIGER J, GOLDZIEHER JW.No abstract available
Studies on follicular hormones. VIII. Quantitative analysis of estrone and estradiol in pregnant mare and stallion urine by paper chromatography, measuring the area of colored spots.
Pharmaceutical bulletin    April 1, 1955   Volume 3, Issue 2 144-147 doi: 10.1248/cpb1953.3.144
NAGASAWA K, KOSHIMURA E, OKAZAKI S.No abstract available
The occurrence of alpha-estradiol in the urine of stallions; its identification and isolation.
The Journal of biological chemistry    March 1, 1949   Volume 178, Issue 1 229-240 
LEVIN L.No abstract available
On the principal estrogenic constituents of the urine of the stallion.
The Journal of clinical endocrinology and metabolism    July 1, 1948   Volume 8, Issue 7 601 
LEVIN L.No abstract available
Anoestrus in the mare and its treatment with oestrogen.
The Veterinary record    July 12, 1947   Volume 59, Issue 26 341 
BURKHARDT J.No abstract available
The isolation of estrone sulfate from the urine of stallions.
Revue canadienne de biologie    January 1, 1945   Volume 4, Issue 4 535-537 
JENSEN H, LARIVIERE M, ELIE JJ.No abstract available
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