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Topic:Anestrus

Anestrus in horses refers to a period of reproductive inactivity in mares, during which they do not exhibit estrous cycles. This phase can occur seasonally, particularly in the winter months when daylight hours are shorter, leading to a reduction in reproductive hormone activity. Anestrus is a natural part of the mare's reproductive cycle and is influenced by environmental factors such as light exposure and temperature. Understanding anestrus is key for managing breeding programs and ensuring optimal reproductive health in mares. This page compiles peer-reviewed research studies and scholarly articles that explore the physiological mechanisms, environmental influences, and management strategies related to anestrus in horses.
Relationships between antral follicle count and reproductive characteristics of embryo-recipient mares.
Journal of equine veterinary science    February 10, 2024   Volume 134 105029 doi: 10.1016/j.jevs.2024.105029
Delchiaro SB, Oliveira PVLF, Júnior RJP, Gonçalves GD, Morotti F, Seneda MM.Mares (n = 77) were evaluated by antral follicle count (AFC) and selected as embryo recipients. Cyclic recipients received embryos between days 4-6 after ovulation. The acyclic recipients received an intramuscular (i.m.) protocol with 5mg of estradiol benzoate (EB) on the day of donor ovulation (D0; D-4 recipient), 3mg of EB on the following day (D1; D-3 recipient), and 3mg of EB (D2; D-2 recipient). Furthermore, 1500mg of progesterone (P4) i.m. given on D0 of the recipient (D4 donor) followed by 1500mg of P4 on the day of ET (D4-6 recipient). On the ET day, the AFC and animals' weight, body c...
Comprehensive analysis of the whole-transcriptome landscape of the ovarian cortex from Mongolian horses that reproduce seasonally.
Comparative biochemistry and physiology. Part D, Genomics & proteomics    December 15, 2023   Volume 49 101179 doi: 10.1016/j.cbd.2023.101179
Shen Y, Ulaangerel T, Ren H, Liu Q, Davshilt T, Yi M, Dugarjaviin M, Bou G.The reproductive cycle of equines tends to be seasonal and is influenced by factors such as light and temperature. The process and methods of regulating the mare oestrous cycle in the anestrus period are still immature. The effects of noncoding RNAs and mRNAs on the oestrous cycle have aroused much interest, but corresponding analyses of seasonal mare ovaries have not been reported. Here, we report a whole transcriptome analysis of the Mongolian horse ovarian cortex collected in anestrus and diestrus periods. In total, 1081 mRNAs, 205 lncRNAs, 54 circRNAs, and 13 miRNAs were upregulated in win...
Seasonal absence of supplementary corpora lutea in pregnant mares and the relationship with pregnancy loss.
Journal of equine veterinary science    November 3, 2023   Volume 131 104960 doi: 10.1016/j.jevs.2023.104960
Newcombe JR, Wilsher S, Silva ESM, Sala-Ayala L, Cuervo-Arango J.Two experiments were conducted in the Northern (UK) and Southern (Brazil) hemispheres to determine the effect of season (month of conception) on the development of supplementary CL (SCL) and the relationship with pregnancy loss. In experiment 1, 199 pregnancies were followed between Day 14 and term, to determine the number of SCL and pregnancy viability (Northern Hemisphere). From the 199 pregnancies, 178 were obtained from inseminations during the breeding season (March-September), while the rest, 21 pregnancies resulted from conceptions in the non-breeding season (October to February). Pregn...
Progesterone Device Use Improves Ovum Pick-Up Efficiency in Acyclic Donors.
Journal of equine veterinary science    September 29, 2023   Volume 131 104933 doi: 10.1016/j.jevs.2023.104933
Fanhani GG, Cavalieri FLB, Andreazzi MA, da Silva CI, Andreazzi KC, Pereira LDC, Emanuelli IP, Dos Santos JMG, Moreski DAB, Colombo AHB, Morotti F....The aim of this study was to evaluate follicular dynamics and ovum pick-up (OPU) efficacy in untreated mares or mares treated with an intravaginal progesterone (P4) device during seasonal anestrus (acyclic) and during the breeding season (cyclic). Six mares (mean age = 5 years), were recruited into an ovum pick-up scheme that was performed every 14 days with and without the P4 device, during the acyclic and cyclic phases. Aspirations amounted to seven procedures with or without the P4 device during each phase. Five ultrasound assessments were performed at each interval between the OPUs. Data...
Evidence for Increased Content of PGF2α, PGE2, and 6-keto-PGF1α in Endometrial Tissue Cultures From Heavy Draft Mares in Anestrus With Endometritis.
Journal of equine veterinary science    February 23, 2019   Volume 77 107-113 doi: 10.1016/j.jevs.2019.02.014
Siemieniuch MJ, Kozdrowski R, Szóstek-Mioduchowska AZ, Raś A, Nowak M.Endometritis is one of the most important causes of infertility in mares. Mares may suffer from endometritis outside the breeding season; however, pathological condition is often undiagnosed in anestrus. The aim of this study was to examine whether the secretion profiles of prostaglandin F2α (PGF2α), prostaglandin E2 (PGE2), and a metabolite of prostacyclin I2 (6-keto-PGF1α) differ in endometrial tissue cultures of heavy draft mares in anestrus with endometritis compared to those without endometritis. The endometrial biopsies were collected from 51 heavy draft mares. Inclusion criteria for ...
Distribution of sialoglycoconjugates in the oviductal isthmus of the horse during anoestrus, oestrus and pregnancy: a lectin histochemistry study.
European journal of histochemistry : EJH    February 19, 2005   Volume 48, Issue 4 403-412 doi: 10.4081/914
Desantis S, Acone F, Corriero A, Deflorio M, Zubani D, Ventriglia G, Palmieri G, De Metrio G.The distribution of sialic acid residues as well as other glycosidic sugars has been investigated in the horse oviductal isthmus during anoestrus, oestrus and pregnancy by means of lectin and pre-lectin methods. Ciliated cells and non-ciliated (secretory) cells exhibited different lectin binding profiles that were found to change during the investigated stages. Ciliated cells did not show any reactivity in the basal cytoplasm, while the supra-nuclear cytoplasm displayed a few of oligosaccharides with terminal and internal alphamannose (Man) and/or alphaglucose (Glc) during oestrus and pregnanc...
Suppressing reproductive activity in horses using GnRH vaccines, antagonists or agonists.
Animal reproduction science    July 24, 2004   Volume 82-83 633-643 doi: 10.1016/j.anireprosci.2004.04.009
Stout TA, Colenbrander B.There are a number of situations in which it is desirable to suppress part or all of the reproductive endocrine system in a horse, notably the competing animal whose tractability during training, or performance during competition, is compromised by the expression of sexual or aggressive behavior. The current therapeutic approaches to reproductive endocrine suppression include gonadectomy and progestagen administration, where the former carries surgical risks and entails irreversible loss of breeding potential, and effective progestagen therapy requires frequent administration for extended peri...
Characterization and distribution of gonadotrophs in the pars distalis and pars tuberalis of the equine pituitary gland during the estrous cycle and seasonal anestrus.
Biology of reproduction    August 23, 2000   Volume 63, Issue 3 826-832 doi: 10.1095/biolreprod63.3.826
Eagle RC, Tortonese DJ.Little is known about the neuroendocrine control of fertility in the horse. In this species, unusual features characterize the normal estrous cycle such as a prolonged preovulatory LH surge during the follicular phase and a distinctive FSH surge during the midluteal phase. This study investigated the distribution and hormonal identity of gonadotrophs in the pars distalis (PD) and pars tuberalis (PT) of the equine pituitary gland as possible morphological bases for the referred unusual endocrine characteristics. In addition, the proportion of gonadotrophs in relation to other pituitary cell typ...
Uncoupling of the equine reproductive axes during transition into anoestrus.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 153-161 
Nequin LG, King SS, Roser JF, Soderstrom BL, Carnevale EM, Neumann KR.The reproductive activity of light horse mares (n=12) was monitored each day from 3 September until 29 January, or until the mares entered anoestrus, by behaviour evaluation, ultrasonography and blood sampling. Follicles, corpora lutea and ovulation, as well as oestradiol, progesterone, and LH and FSH concentrations, were analysed to determine a reproductive profile for the transition into anoestrus. The results of the present study indicate that light horse mares progress through four phases during the autumn transition into anoestrus: (i) normal cycles; (ii) aberrant cycles; (iii) anovulatio...
Relationship between thyroid function and seasonal reproductive activity in mares.
Journal of reproduction and fertility. Supplement    January 1, 2000   Issue 56 163-172 
Huszenicza G, Nagy P, Juhász J, Kóródi P, Kulcsár M, Reiczigel J, Guillaume D, Rudas P, Solti L.The relationship between thyroid function and seasonal reproductive activity in mares was investigated by comparing plasma triiodothyronine and thyroxine concentrations in anoestrous mares and in mares with cyclic ovarian activity during the anovulatory season. In study 1, the diurnal changes in plasma triiodothyronine and thyroxine concentrations on a single day were compared in anoestrous and cyclic mares. The mean thyroxine concentrations were significantly higher (P < 0.001) in the cyclic mares than in the anoestrous mares, whereas mean triiodothyronine concentrations were similar in bo...
Serum progesterone levels in mares in winter and during transitional periods.
Acta veterinaria Scandinavica    January 1, 1996   Volume 37, Issue 4 409-414 doi: 10.1186/BF03548080
Koskinen E, Huhtinen M, Katila T.Weekly blood samples were collected for serum progesterone determination from 68 mares during the period from September 1990 to June 1991. A total of 78% (53/68) of the mares became anoestrous: 88% (15/17) of mares with foals and 75% (38/51) of dry mares (p = 0.323). Six mares of the 15 which continued cycling showed persistent corpus luteum for 77 days on average (range 42-106 days). Anoestrus began between September and February, most frequently in December, and ended in January to June, most frequently in March. Mares with foal at foot became anoestrous in 2 separate groups, in September an...
Effect of administration of an alpha 2-adrenergic agonist, xylazine, on pulsatile gonadotrophin secretion in anoestrous horse mares.
Journal of reproduction and fertility    November 1, 1988   Volume 84, Issue 2 693-700 doi: 10.1530/jrf.0.0840693
Fitzgerald BP, Mellbye LB.Two experiments were performed to test the hypothesis that the seasonal suppression of gonadotrophin pulse frequency in anoestrous horse mares reflects inhibitory neural mechanisms. In a preliminary experiment (Exp. 1) conducted in February, 4 anoestrous mares were sedated by repeated intravenous injections of xylazine, an alpha 2-adrenergic receptor agonist. On the day of treatment, 1-2 LH pulses were observed in xylazine-treated mares. In contrast, during a 12-h period only 1/8 untreated control mares exhibited a LH pulse. In Exp. 2, the effect of xylazine-induced sedation on pulsatile gonad...
Pituitary responsiveness of mares challenged with GnRH at various stages of the transition into the breeding season.
Journal of animal science    March 1, 1987   Volume 64, Issue 3 790-796 doi: 10.2527/jas1987.643790x
Silvia PJ, Squires EL, Nett TM.Four groups of mares, representing anestrus (AN; n = 8), early transition (ET; n = 7), late transition (LT; n = 8) and estrus (EST; n = 12) were used to examine release of luteinizing hormone (LH) and follicle stimulating hormone (FSH) after a bolus injection of gonadotropin releasing hormone (GnRH) during the transition from anestrus into the breeding season. Estrous mares received GnRH on d 2 or 3 of estrus in the cycle immediately preceding slaughter. Anestrous, ET and LT mares received GnRH exactly 1 wk prior to slaughter. A single injection of GnRH (Sigma LHRH, L-0507, 2.0 micrograms/kg b...
Seasonal effects on ovarian follicular development in pony mares.
Reproduction, nutrition, developpement    January 1, 1983   Volume 23, Issue 2a 207-215 doi: 10.1051/rnd:19830205
Driancourt MA, Prunier A, Palmer E, Mariana JC.To define ovarian follicular kinetics in the equine ovary during anestrus and the breeding season, the follicular population of pony mares was investigated at mid-anestrus and at the beginning and end of the breeding season. There was a clear effect of season on the exit of reserve (primordial and initiated) follicles since at the beginning of the breeding season we noticed a higher mitotic index for the smaller preantral follicles, leading to an accumulation of small and medium antral follicles. In contrast, the ovaries sampled during anestrus or at the end of the breeding season were very si...
Use of clomiphene citrate to induce estrus in anestrous mares.
Veterinary medicine, small animal clinician : VM, SAC    April 1, 1977   Volume 72, Issue 4 605-607 
Robinson JR.No abstract available
Influence of intrauterine saline infusion upon the oestrous cycle of the mare.
Journal of reproduction and fertility. Supplement    October 1, 1975   Issue 23 231-234 
Arthur GH.The effect of intrauterine saline on reproductive function was studied by infusion of mares in anoestrus, dioestrus, oestrus and prolonged dioestrus. Anoestrous mares were unaffected except near the beginning and end of the breeding season when anovulatory heats were induced. Dioestrous mares infused between Days 5 and 9 returned to heat an average of 3-8 days earlier than expected, and infusions during dioestrus were followed by ovulatory heats of normal fertility. Three mares in prolonged dioestrus showed ovulatory heats within 3 to 9 days of infusion. Infusions during oestrus had no appreci...
Effect of photoperiod on reproductive activity and hair in mares.
American journal of veterinary research    October 1, 1975   Volume 36, Issue 10 1413-1419 
Kooistra LH, Ginther OJ.The effects of photoperiod on reproductive activity and hair changes in pony mares were studied in 2 experiments. In experiment I, the effect of a fixed daily photoperiod on the onset of the breeding season was studied in 36 mares from Nov 13, 1973, to June 13, 1974. The 4 treatment groups were as follows: daily photoperiod equivalent to the normal day length (control group); constant light 24 hours a day with no dark (L24:D0 group); 16-hour daily photoperiod with 8 hours of dark (L16:D8 group); and 9-hour daily photoperiod with 15 hours of dark (L9:D15 group). The intervals from beginning of ...