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Topic:Developmental Biology

Developmental biology in horses involves the study of the processes by which horses grow and develop from a single fertilized egg into a fully formed organism. This field encompasses various stages, including embryonic development, fetal growth, and postnatal maturation. Researchers in this area examine cellular differentiation, gene expression, and morphogenetic movements that contribute to the formation of tissues and organs in equine species. Key topics include the molecular mechanisms that regulate developmental pathways, the influence of genetic and environmental factors on development, and the identification of developmental disorders. This page compiles peer-reviewed research studies and scholarly articles that explore the fundamental aspects of equine developmental biology, offering insights into the mechanisms driving normal and abnormal development in horses.
Trophoblast-uterine interactions during equine chorionic girdle cell maturation, migration, and transformation.
The American journal of anatomy    December 1, 1991   Volume 192, Issue 4 366-381 doi: 10.1002/aja.1001920405
Enders AC, Liu IK.The structure of the equine chorionic girdle between days 28 and 42 of gestation was examined. Of particular interest were differentiation of trophoblastic cells within the girdle, adhesion between girdle and endometrium, invasion and displacement of the uterine epithelium, and the nature of the endometrium when girdle cells migrate into it to form endometrial cup cells. The chorionic girdle, identified initially as a band of tall columnar cells, becomes a stratified columnar epithelium indented by clefts and pits. Adhesion to and penetration through the endometrial luminal epithelium are rapi...
Time of embryo transport through the mare oviduct.
Theriogenology    November 1, 1991   Volume 36, Issue 5 823-830 doi: 10.1016/0093-691x(91)90348-h
Freeman DA, Weber JA, Geary RT, Woods GL.The objectives of this study were 1) to determine the time of embryo transport through the mare oviduct, 2) to determine whether equine embryos increase in diameter prior to the time of oviductal transport, and 3) to assess the stage of equine embryonic development at the time of oviductal transport. The time of oviductal transport (interval from ovulation to uterine entry) was estimated by collecting embryos from the mare oviduct or uterus at 2-hour intervals from 120 to 168 h postovulation. The time of oviductal transport was 130 to 142 h, since 9 9 embryos were located in the oviduct from 1...
Co-culture of day-5 to day-7 equine embryos in medium with oviductal tissue.
Theriogenology    November 1, 1991   Volume 36, Issue 5 815-822 doi: 10.1016/0093-691x(91)90347-g
Freeman DA, Butler JE, Weber JA, Geary RT, Woods GL.Oviductal and uterine embryos were collected from mares at 5 to 7 days following ovulation 1) to evaluate the effects of oviductal tissue explants on in vitro growth and development of equine embryos and 2) to study the morphologic development of equine embryos in culture. Embryos were incubated for 5 days in a medium (control group) or in medium supplemented with oviductal tissue explants (co-culture group). Embryos were evaluated and the media changed daily. Following 5 days in culture, 10 10 (100%) control embryos and 27 29 (93%) co-cultured embryos had doubled in diameter. All embryos that...
Effect of age on the concentrations of amino acids in the plasma of healthy foals.
American journal of veterinary research    July 1, 1991   Volume 52, Issue 7 1014-1018 
Zicker SC, Spensley MS, Rogers QR, Willits NH.The concentrations of 23 amino acids in the plasma of 13 healthy foals were determined before suckling, when foals were 1 to 2 days old, 5 to 7 days old, 12 to 14 days old, and 26 to 28 days old. The ratio of the branched chain amino acids to the aromatic amino acids was also calculated at the 5 time points. Analysis of the concentrations at the 5 ages revealed a significant temporal relationship for each amino acid ranging from a polynomial order of 1 to 4 inclusively. There were significant differences between several concentrations of amino acids in plasma at specific sample times; however,...
In vitro development of day-2 equine embryos co-cultured with oviductal explants or trophoblastic vesicles.
Theriogenology    March 1, 1991   Volume 35, Issue 3 669-682 doi: 10.1016/0093-691x(91)90462-m
Ball BA, Altschul M, Ellington JE.This study compared the in vitro development of Day-2 equine embryos co-cultured with either trophoblastic vesicles or oviductal explants. Embryos were collected surgically from the oviducts of pony mares 2 d after ovulation and assessed for stage of development. Culture medium was Ham's F12 and Dulbecco's Modified Eagle's Medium (50:50 v/v) in a humidified atmosphere of 5% CO(2) in air at 38.5 degrees C with either trophoblastic vesicles or oviductal explants. The quality score of embryos was assessed daily. After 4 d in culture, embryos were stained (Hoechst 33342) and evaluated with epifluo...
Different combinations of regulatory elements may explain why placenta-specific expression of the glycoprotein hormone alpha-subunit gene occurs only in primates and horses.
Biology of reproduction    February 1, 1991   Volume 44, Issue 2 231-237 doi: 10.1095/biolreprod44.2.231
Nilson JH, Bokar JA, Clay CM, Farmerie TA, Fenstermaker RA, Hamernik DL, Keri RA.Expression of the glycoprotein hormone alpha-subunit gene occurs in the pituitary of all mammals but in placenta of only primates and horses. In humans, two different elements, termed upstream regulatory element (URE) and cAMP response element (CRE), are required for placenta-specific expression of the alpha-subunit gene. The URE binds a protein unique to placenta whereas the CRE binds a ubiquitous protein. Comparative analysis of the promoter-regulatory region of the alpha-subunit gene from a number of mammals indicates that a functional URE has been retained and suggests the potential for pl...
Evolution of placenta-specific gene expression: comparison of the equine and human gonadotropin alpha-subunit genes.
Molecular endocrinology (Baltimore, Md.)    February 1, 1991   Volume 5, Issue 2 243-255 doi: 10.1210/mend-5-2-243
Steger DJ, Altschmied J, Büscher M, Mellon PL.Primate and equine species are thought to be unique among mammals in synthesizing placental gonadotropin glycoprotein hormones. Human chorionic gonadotropin (CG) and equine pregnant mare's serum gonadotropin (PMSG) are produced in placenta by the specific activation of a glycoprotein hormone alpha-subunit gene and a corresponding beta-subunit gene. The evolutionary mechanisms for the apparently independent acquisition of tissue specificity were investigated by cloning the 5' flanking region of the equine alpha-subunit gene and comparing the DNA elements and trans-acting factors involved in pla...
Embryonic development after intra-follicular transfer of horse oocytes.
Journal of reproduction and fertility. Supplement    January 1, 1991   Volume 44 369-374 
Hinrichs K, DiGiorgio LM.A technique was developed in which immature horse oocytes, obtained from slaughterhouse specimens, were transferred to the pre-ovulatory follicle of a mare in vivo, with resulting oocyte maturation, ovulation, fertilization and embryo development. Oocytes were collected from all follicles greater than 3 mm, and were classified as immature, maturing, expanded or denuded. The transfers were performed in the standing, tranquilized mare. The ovary containing the pre-ovulatory follicle was grasped per rectum. A trochar and cannula were placed through the abdominal wall in the flank area, ipsilatera...
Viability and ultrastructure of equine embryos following culture in a static or dynamic system.
Journal of reproduction and fertility. Supplement    January 1, 1991   Volume 44 405-410 
Pruitt JA, Forrest DW, Burghardt RC, Evans JW, Kraemer DC.The viability and ultrastructure of equine embryos were assessed following culture in a static or perifusion system. The percentage change in diameter was greater (P less than 0.025) for embryos in the static treatment (71%) than in the perifusion treatment (33%). Fluorescein diacetate (FD) scores, the percentage of fluorescing cells (FC) and fluorescent intensity (FI), also were greater (P less than 0.05 and P less than 0.01) following static culture than for embryos cultured in the perifusion system. Four of 9 control embryos resulted in pregnancies but no embryos cultured in either system p...
Lodgement of the equine blastocyst in the uterus from fixation through endometrial cup formation.
Journal of reproduction and fertility. Supplement    January 1, 1991   Volume 44 427-438 
Enders AC, Liu IK.The equine blastocyst becomes fixed in position in the uterus on approximately Day 16 of gestation, but allantochorionic villi are not formed until about Day 50. The purpose of this study was to examine evidence that the blastocyst is orientated during this time period, and to determine what morphological features might assist retention of the position of the blastocyst within the uterus. Implantation sites were collected on Days 10-42 of gestation, and the reproductive tracts perfused with fixative for light and electron microscopic examination. The conceptus is found at the bend of a uterine...
Measurements of glucose metabolism in single equine embryos during early development.
Journal of reproduction and fertility. Supplement    January 1, 1991   Volume 44 419-425 
Brück I, Hyland JH.The contributions of 2 biochemical pathways to the total metabolism of glucose (the Embden-Meyerhof pathway [EMP] and the pentose phosphate pathway [PPP]), were assessed for equine embryos recovered on Day 4.5, 7.5 and 11.5 post ovulation. At all developmental stages studied, glucose was metabolized through both pathways. Through the EMP, the amounts of glucose metabolized per nl embryo volume per hour were 4.0, 9.9 and 3.1 pmol, whereas via the PPP, amounts were 0.9, 1.7 and 0.07 pmol for Day-4.5, -7.5 and -11.5 embryos, respectively. The ratio of EMP:PPP with age was 9.7 for Day -4.5 embryos...
Culture of 5-day horse embryos in microdroplets for 10 to 20 days.
Theriogenology    October 1, 1990   Volume 34, Issue 4 643-653 doi: 10.1016/0093-691x(90)90020-t
Hinrichs K, Schmidt AL, Memon MA, Selgrath JP, Ebert KM.Embryos were recovered from the uteri of mares 5 d after ovulation. Six embryos, all morulae, were placed singly in 200-ul droplets of Ham's F-12 with 10% fetal calf serum and cultured at 37 degrees C in a 5% CO(2) atmosphere. The embryos expanded to form blastocysts by the third day of culture. The blastocysts hatched from their zona pellucida, rather than the zona thinning and flaking off, as occurs in vivo. Hatching from the zona pellucida began on the third day of culture and was complete in five of six embryos by the sixth day. The embryonic capsule, normally present in equine embryos aft...
Morphology of equine allantochorion at the tip of the pregnant horn.
Journal of comparative pathology    October 1, 1990   Volume 103, Issue 3 343-349 doi: 10.1016/s0021-9975(08)80055-2
Oikawa M, Yoshihara T, Kaneko M, Yoshikawa T.The morphology of the equine allantochorion at the tip of the pregnant horn was studied in the membranes of 14 mares. The findings in the allantochorion at the tip of the pregnant horn were of two types; one was growth retardation (hypoplastic villi, tunica adventitia of the vessels resembling embryonal connective tissue and the extended spaces of remnants of the extraembryonic coelom), the other was placental hypoxia or ischaemia (parakeratosis, stratified squamous metaplasia, necrosis of the trophoblasts, thickening of the basement membrane and fibrous hyperplasia of villous stroma). It seem...
Different combinations of regulatory elements may account for expression of the glycoprotein hormone alpha-subunit gene in primate and horse placenta.
Molecular endocrinology (Baltimore, Md.)    October 1, 1990   Volume 4, Issue 10 1480-1487 doi: 10.1210/mend-4-10-1480
Fenstermaker RA, Farmerie TA, Clay CM, Hamernik DL, Nilson JH.Expression of the glycoprotein hormone alpha-subunit gene occurs in the pituitaries of all mammals and in the placentas of primates and horses. In humans, tandem cAMP response elements (CREs), located in the proximal promoter-regulatory region of the alpha-subunit gene, act together with an adjacent upstream regulatory element to confer placenta-specific expression. Here, we report that the alpha-subunit genes of Old World Monkeys contain a single functional CRE. This suggests that tandem CREs are unique to higher primates and humans and are not absolutely required for placenta-specific expres...
Development of diurnal rhythm in some metabolic parameters in foals.
Comparative biochemistry and physiology. A, Comparative physiology    January 1, 1990   Volume 95, Issue 4 549-552 doi: 10.1016/0300-9629(90)90737-d
Komosa M, Flisinska-Bojanowska A, Gill J.1. The development of diurnal rhythm activity of FDPA, AspAT and A1AT and in levels of cortisol, T3 and T4 was observed in the blood serum of six foals. 2. The studies began when a foal was 7 days old and were repeated every month until foals reached 1 year of age. Blood samples were taken every 4 hr for one day each month. 3. As a control group four barren mares were used, kept and examined in the same conditions. 4. In mature mares, diurnal rhythms in activity of A1AT (acrophase at 2200 hr), AspAt (2400 hr) and cortisol (0630 hr) but in T3 only in summer months (acrophase at 0100 hr) were ob...
Development of the navicular bone in foetal and young horses, including the arterial supply.
Equine veterinary journal    November 1, 1989   Volume 21, Issue 6 405-412 doi: 10.1111/j.2042-3306.1989.tb02185.x
Rijkenhuizen AB, Németh F, Dik KJ, Goedegebuure SA.A macroscopic, arteriographic and histological study of the development and the arterial anatomy of the navicular bone of 33 foetuses and 55 young horses is described. After 125 days of gestation the blood supply consists of two routes: one situated in the superficial layer of the fibrocartilage and the other similar to the blood supply of the navicular bone of the normal mature horse. After 270 days gestation, the blood vessels in the fibrocartilage gradually regressed and retracted until they have disappeared at six months after birth. At two months after birth the first macroscopic thinning...
Twin embryos in mares. I: From ovulation to fixation.
Equine veterinary journal    May 1, 1989   Volume 21, Issue 3 166-170 doi: 10.1111/j.2042-3306.1989.tb02132.x
Ginther OJ.Recent findings on the origin and development of twins from ovulation (Day 0) to fixation (mean: Day 16) are reviewed. Available data show that almost all twins originate from multiple ovulations. Results of recent ultrasound studies indicate that the number of days between double ovulations does not affect the conception rate per ovum or embryo survival during the first 16 days after each ovulation. Embryo reduction is the natural elimination of excess embryos so that only one embryo enters the foetal stage. In two studies, embryo reduction before or on the day of fixation was not considered ...
The developmental anatomy of the equine navicular bursa and associated structures.
Anatomy and embryology    January 1, 1989   Volume 179, Issue 4 355-367 doi: 10.1007/BF00305062
Hoffer MA, Leach DH, Doige CE.The navicular bone, navicular bursa and their associated structures were collected from 20 horses ranging in age from 80 days gestation to 2 years post-gestation. The right front foot of every horse was sampled for light microscopy. The development of the navicular bursa and associated structures were studied. Study of the developmental anatomy of the equine navicular bursa established that the bursa is a distinct entity in both the fetus and the adult horse. Development of the bursal cavity in the fetus was found to be complete by 120 days of gestation. Synovial membrane of the navicular burs...
Maternal immunological recognition of pregnancy in equids.
Journal of reproduction and fertility. Supplement    January 1, 1989   Volume 37 69-78 
Antczak DF, Allen WR.There is little evidence for maternal immunological recognition of pregnancy in most species with the striking exception of the members of the genus Equus. Almost all mares make strong cytotoxic antibody responses to paternally inherited fetal antigens by Day 60 of gestation. Most of these responses are directed against antigens of the Major Histocompatibility Complex (MHC), which constitutes the primary immunogenetic barrier to successful organ transplantation. The source of fetal MHC antigens in the pregnant mare appears to be the specialized trophoblast cells of the chorionic girdle region ...
The distribution of mucosal lymphoid nodules in the equine respiratory tract.
Journal of comparative pathology    August 1, 1988   Volume 99, Issue 2 159-168 doi: 10.1016/0021-9975(88)90069-2
Mair TS, Batten EH, Stokes CR, Bourne FJ.Mucosal lymphoid nodules were identified within the equine respiratory tract by an acetic acid fixation technique. Nodules were identified in foetuses from nine months gestational age, and estimates of total and regional nodule populations were made in foetal, neonatal and adult horses. Nodules occurred at specific sites within the tract, which probably relate to areas where inhaled antigens accumulate. The largest populations of nodules occurred in the nasopharynx and larynx, with smaller numbers in the nasal cavity, trachea and bronchi. There was an age-related change in the size of these no...
[Growth course of young warm-blooded stallions as the basis for the derivation of energy and protein requirement standards].
Archiv fur Tierernahrung    July 1, 1988   Volume 38, Issue 7-8 639-649 
Stamer M, Sumpf D.The live weight development of young warm-blooded stallions at the age of 0 to 30 months of life was investigated in order to derive their energy and protein requirement. The aim of the studies was the derivation of a standard curve for the course of growth. Choice of the best suited model and the corresponding calculations were one of the main investigation objects. The mathematical function developed by Janoschek provided a relatively good description of the material.
Loss of polar trophoblast during differentiation of the blastocyst of the horse.
Journal of reproduction and fertility    May 1, 1988   Volume 83, Issue 1 447-460 doi: 10.1530/jrf.0.0830447
Enders AC, Lantz KC, Liu IK, Schlafke S.Twelve blastocysts, collected 7-12 days after ovulation (Day 0), were examined by light and electron microscopy to investigate the nature of the relationship of the polar trophoblast (Rauber's layer) to the inner cell mass. On Day 7, the polar trophoblast was intact and formed a flattened layer overlying the epiblast cells of the inner cell mass. As blastocysts enlarged to greater than 1 mm in diameter, small discontinuities appeared in the polar trophoblast, where epiblast cells intruded onto the surface. At this time, trophoblast cells adhered closely to adjacent and underlying epiblast cell...
Effects of age, sex, and post mortem interval on intestinal lengths of horses during development.
Equine veterinary journal    March 1, 1988   Volume 20, Issue 2 104-108 doi: 10.1111/j.2042-3306.1988.tb01469.x
Smyth GB.Lengths of small intestine, caecum, ascending colon and descending colon were measured in intestinal tracts from 103 foetuses, foals and adult horses. Intestinal tracts from 21 of the horses were measured at varying intervals after death. Total intestinal length increased markedly from mid-gestation to one year of age, then showed little increment up to 35 years. Small intestinal length increased most rapidly in the first month of life. Caecal length increased most rapidly from one to six months and length of ascending colon increased most rapidly between one week and one year. Descending colo...
Morphologic assessment of the equine embryo.
Journal of the American Veterinary Medical Association    February 1, 1988   Volume 192, Issue 3 401-406 
McKinnon AO, Squires EL.No abstract available
Cleavage lines of the skin in equine fetuses.
Kaibogaku zasshi. Journal of anatomy    October 1, 1987   Volume 62, Issue 5 541-549 
Wakuri H, Mutoh K.No abstract available
Aberrant sexual development in the horse.
The Veterinary record    April 4, 1987   Volume 120, Issue 14 348 doi: 10.1136/vr.120.14.348-b
Leadon DP.No abstract available
Analysis of X-chromosome inactivation in horse embryos.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 353-361 
Romagnano A, Richer CL, King WA, Betteridge KJ.To define the time of X-chromosome inactivation in the horse, 122 conceptuses were collected transcervically between Days 6 and 28 (ovulation = Day 0) and subjected to cytogenetic analysis: 59 of the embryos were divided and in 41 of these separate cytogenetic analysis of the embryonic disc and remaining tissues was possible. Conceptuses were measured and photographed before capsule removal, culture in the presence of 5-bromodeoxyuridine and subsequent fixation for cytogenetic analysis. On average, 15 slides were prepared per conceptus. C-banding was used to determine the sex of each conceptus...
Differentiation molecules of the equine trophoblast.
Journal of reproduction and fertility. Supplement    January 1, 1987   Volume 35 371-378 
Antczak DF, Oriol JG, Donaldson WL, Poleman C, Stenzler L, Volsen SG, Allen WR.Monoclonal antibodies raised against horse placenta were tested using an indirect immunoperoxidase-labelling technique for reactivity with a panel of tissues from adult horses and conceptuses of various gestational ages. The pattern of reactivity of 4 of the antibodies (F67.1, F71.3, F71.7, F71.14) on trophoblastic tissues described unique antigenic phenotypes for the non-invasive trophoblast of the allantochorion, the invasive trophoblast of the chorionic girdle, and the mature endometrial cup cells, which are derived from the chorionic girdle. Two of the monoclonal antibodies (F67.1 and F71....
Developmental behavior.
The Veterinary clinics of North America. Equine practice    December 1, 1986   Volume 2, Issue 3 573-590 doi: 10.1016/s0749-0739(17)30707-1
Crowell-Davis SL.Examination of the developmental changes that occur in the behavior of foals reveals three major periods that can be characterized by certain types of behavior. Although the beginnings and endings of these periods are not definitive, these periods may be conceptually useful in evaluating a foal's behavior. Period of Dependence. During the first 4 weeks of life, a foal is maximally dependent on its mother for sustenance, remains near her, and has little contact with other horses or ponies of any age. Period of Socialization. During the second and third months of life, foals have rapidly increas...
A quantitative study of Sertoli cell and germ cell populations as related to sexual development and aging in the stallion.
Biology of reproduction    August 1, 1986   Volume 35, Issue 1 138-148 doi: 10.1095/biolreprod35.1.138
Jones LS, Berndtson WE.Testes from 47 stallions, 1-20 yr of age, were used to examine the influence of age on Sertoli and germ cell populations as well as on functional activity of Sertoli cells. For these stallions, the number of Sertoli cells per paired testes declined linearly with age, and was only 41.7% as great at age 20 as at age 2. However, development of reproductive organs proceeded until age 12-13, as evident from increases in paired testes weight and quantitative rates of spermatozoal production. Although the absolute number of Sertoli cells declined during this period of development, individual Sertoli ...
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