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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.
Characteristics of cells derived from the girdle region of the pre-implantation blastocyst of the donkey.
Cell and tissue research    January 1, 1986   Volume 246, Issue 2 343-352 doi: 10.1007/BF00215896
Whyte A, Ockleford CD, Wooding FB, Hamon M, Allen WR, Kellie S.The establishment of a monolayer culture of cells derived from the girdle region of a 34-day-old donkey conceptus is described. These cells have had over 100 repeated passages in culture. Low levels of pregnant mares' serum gonadotrophin (PMSG, eCG) could be detected in the cells by indirect immunofluorescence using some monoclonal anti-eCG antibodies, but the cells did not secrete eCG as measured by radioimmunoassay or inhibition of haemagglutination. There was marked nuclear polymorphism with binucleate and occasional multinucleate cells. The cells were strongly reactive with wheatgerm agglu...
In vitro development of Strongylus edentatus to the fourth larval stage with notes on Strongylus vulgaris and Strongylus equinus.
The Journal of parasitology    August 1, 1985   Volume 71, Issue 4 489-499 
Farrar RG, Klei TR.Strongylus edentatus was successfully cultured in vitro to the fourth larval stage (L4). Some growth continued for periods of 40-50 days at which time reductions in viability were observed in some of the culture systems tested. Various combinations of media, sera, buffers and organ explant cultures were tested. All cultures were incubated at 37 C in an atmosphere of 95% air and 5% CO2. Larvae underwent growth and differentiation to the L4 in all medium-serum combinations with and without organ explant cultures. Development and growth did occur but viability was reduced to insignificant levels ...
In utero nature versus nurture.
Equine veterinary journal    March 1, 1985   Volume 17, Issue 2 97-98 doi: 10.1111/j.2042-3306.1985.tb02058.x
Woollam DH.No abstract available
Changes in the skeletal muscles volume in horses with growth.
Nihon juigaku zasshi. The Japanese journal of veterinary science    February 1, 1985   Volume 47, Issue 1 161-163 doi: 10.1292/jvms1939.47.161
Uehara N, Sawazaki H, Mochizuki K.The area of the largest transverse section and the number of muscle fibres in a unit sectional area (1 mm2) were examined in 8 trunk and 12 extremity muscles of young and adult 16 light horses and 8 ponies. It was found that the area of the largest transverse section was enlarged and the number of muscle fibres in a unit area was decreased, with the advance in age. This result suggests that the development of muscle volume does not depend on the increase in the number of fibres, but depends on the hypertrophy of each muscle fibre.
Development of the digestive system: comparative animal studies.
The American journal of clinical nutrition    February 1, 1985   Volume 41, Issue 2 Suppl 384-390 doi: 10.1093/ajcn/41.2.384
Widdowson EM.No abstract available
Spontaneous craniofacial malformations and central nervous system defects in an aborted equine foetus.
Journal of comparative pathology    January 1, 1985   Volume 95, Issue 1 131-135 doi: 10.1016/0021-9975(85)90086-6
Bunton TE.Developmental defects are rarely reported in the horse. Severe craniofacial and central nervous system defects in an equine foetus are described and their possible causation and pathogenesis are suggested.
Physiological peripubertal activation of the ovary is not reproduced by pregnant mare serum gonadotropin (PMSG) administration.
Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.)    January 1, 1985   Volume 178, Issue 1 121-125 doi: 10.3181/00379727-178-41992
Aguado LI, Ojeda SR.During the days preceding the first ovulation the ovary of the rat exhibits a remarkable increase in estradiol (E2) and progesterone (P) release in response to gonadotropins. No such increase is observed in the case of androgens (A, testosterone + dihydrotestosterone). The present experiments were undertaken to examine the possibility of reproducing these developmental events by stimulating the ovary with a gonadotropin that has substantial FSH-like activity. In vivo administration of pregnant mare serum gonadotropin (PMSG) to juvenile 29-day-old rats greatly increased the in vitro E2 and A re...
Invasive trophoblast in the genus Equus.
Annales d'immunologie    November 1, 1984   Volume 135D, Issue 3 325-331 doi: 10.1016/s0769-2625(84)81201-5
Antczak DF, Allen WR.No abstract available
Congenital malformations: genetic versus mechanistic factors.
Equine veterinary journal    September 1, 1984   Volume 16, Issue 5 399 doi: 10.1111/j.2042-3306.1984.tb01955.x
Woollam DH.No abstract available
Some aspects of equine placental exchange and foetal physiology.
Equine veterinary journal    July 1, 1984   Volume 16, Issue 4 227-233 doi: 10.1111/j.2042-3306.1984.tb01917.x
Silver M.THERE is no shortage of anatomical information on the equine foetus and its placenta, from the early work of Ruini in the 16th century to the recent studies of Steven and colleagues (Steven 1982); by contrast, knowledge of the physiology of the foal in utero is sparse. In other domestic animals there have been considerable ads ances in foetal and neonatal physiology and endocrinology in recent years due mainly to the develop-ment of the chronically catheterised foetal preparation in which sequential observations can he made in the conscious animal (Silver 1981). Some information about the deve...
Growth of the equine foetus.
Equine veterinary journal    July 1, 1984   Volume 16, Issue 4 247-252 doi: 10.1111/j.2042-3306.1984.tb01920.x
Platt H.No abstract available
Hypothyroidism in the foal.
Equine veterinary journal    July 1, 1984   Volume 16, Issue 4 302-306 doi: 10.1111/j.2042-3306.1984.tb01932.x
Irvine CH.Hypothyroidism in the foal occurs as two entities because of the separate actions of thyroid hormones in regulation of metabolic rate and in cell differentiation. The hypometabolic state which results in inadequate thermogenesis and lethargy, occurs concurrently with a period when thyroid hormone secretion is inadequate. Also the severity of the concurrent symptoms is related to the degree of hormone inadequacy as measured by plasma concentrations of free T4 and T3. By contrast, the developmental lesions caused by hypothyroidism are often observed during periods when plasma thyroid hormone con...
Intra- and interspecific embryo transfer.
The Journal of experimental zoology    November 1, 1983   Volume 228, Issue 2 363-371 doi: 10.1002/jez.1402280219
Kraemer DC.The procedures that are collectively referred to as embryo transfer (ET) have many uses. They were first used as research tools to study fetal-maternal physiology. Since the first successful mammalian embryo transfer in 1890, ET has been utilized for enhancement of genetic selection; diagnosis and treatment of infertility; control of infectious disease transmission; screening for genetic defects; propagation of rare and endangered species; and the study of developmental biology. Most of the embryo transfers have been intraspecific. A listing of the species includes rabbit, rat, sheep, mouse, g...
Biosynthesis of 3 beta-hydroxy-5,7-pregnadien-20-one by the horse fetal gonad.
FEBS letters    March 7, 1983   Volume 153, Issue 1 161-164 doi: 10.1016/0014-5793(83)80139-2
Tait AD, Hodge LC, Allen WR.The production of equilin and the other ring B-unsaturated estrogens by the pregnant mare is anomalous in that they are biosynthesised by a cholesterol-independent pathway. Fetal horse gonads were incubated with tritiated sodium acetate and radiochemically pure 3 beta-hydroxy-5,7-pregnadien-20-one and 3 beta-hydroxy-5,7-androstadien-17-one were isolated. A fetal gonad--placental system is proposed for equilin production, 3 beta-hydroxy-5,7-pregnadien-20-one being a precursor for 3 beta-hydroxy-5,7-androstadien-17-one in the fetal gonad and the latter being the precursor of equilin in the place...
Microangiographic studies of metaphyseal vessels in young foals.
Research in veterinary science    March 1, 1983   Volume 34, Issue 2 231-235 
Firth EC, Poulos PW.Selective perfusion and microangiographic examination of the radius and metacarpus of 30 foals were performed. Vessels of extraosseous origin supplying the peripheral part of the metaphysis were not demonstrated in young foals, but became more obvious in older animals. The development of this vessel system coincided with the reduction of transphyseal vessels from the epiphysis crossing the growth plate.
Placentation in the mare.
Journal of reproduction and fertility. Supplement    November 1, 1982   Volume 31 41-55 
Steven DH.No abstract available
Blood vessels in the developing growth plate of the equine distal radius and metacarpus.
Research in veterinary science    September 1, 1982   Volume 33, Issue 2 159-166 
Firth EC, Poulos PW.No abstract available
Development of horse embryos up to twenty two days after ovulation: observations on fresh specimens.
Journal of anatomy    August 1, 1982   Volume 135, Issue Pt 1 191-209 
Betteridge KJ, Eaglesome MD, Mitchell D, Flood PF, Beriault R.Forty nine embryos, twenty unfertilized eggs and five other fresh eggs of 'doubtful' status have been recovered from 58 pony mares in 122 flushes up to 22 days after ovulation. The fresh egg or embryo recovery rate was 78% with surgical methods (or at slaughter) and 40-60% with non-surgical methods of recovery. The fertilization rate was about 70%. It has been confirmed that horse embryos normally enter the uterus as blastocysts 5-6 days after ovulation. Three features of early embryo morphology have become clearer upon comparison with unfertilized eggs of similar ages; early embryos are often...
[Culture of human chorionic villi].
Revista da Faculdade de Farmacia e Odontologia de Ribeirao Preto    January 1, 1982   Volume 19, Issue 1 43-46 
Sala MA, Benedetti WL, Alvarez H.No abstract available
Transmission electron microscopy of horse embryos 3-16 days after ovulation.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 319-327 
Flood PF, Betteridge KJ, Diocee MS.The 23 embryos were obtained by flushing the reproductive tract. Though the general cytology was observed, most attention was given to the formation of the embryonic capsule. It first appeared as a thin uniform layer on the inner surface of the zona pellucida of embryos recovered from the uterus on Day 6. By Day 8 the capsule was about 1 micron thick and the zona pellucida had been shed. In fixed embryos of 11 days and over the capsule was 3 microns thick and had a finely stippled but otherwise homogeneous appearance.
Ultrastructural study of the development of the pars distalis (anterior pituitary) in the foal.
Journal of reproduction and fertility. Supplement    January 1, 1982   Volume 32 583-588 
Webb PD.The pituitary glands of 4 horse embryos (41-55 days of gestation) were examined by light microscopy, and the pars distalis from 10 fetal foals (75-300 days) was examined by electron microscopy. At Day 41 the development of Rathke's pouch and the saccus infundibuli was advanced; the former had almost lost its connection with the stomodaeum and the latter had started to differentiate into infundibular process and infundibular stalk. By Day 43 Rathke's pouch was completely dissociated from the stomodaeum and its walls were beginning to show uneven growth. The ventral wall of the pouch, the future...
The mammalian fetal membranes.
Journal of reproduction and fertility    July 1, 1981   Volume 62, Issue 2 321-335 doi: 10.1530/jrf.0.0620321
Perry JS.No abstract available
Development of the adrenal cortex in the fetal foal: an ultrastructural study.
Journal of developmental physiology    February 1, 1981   Volume 3, Issue 1 59-73 
Webb PD, Steven DH.The adrenal cortex from twelve fetal foals (gestational ages from 61 to 300 days) was examined by light and electron microscopy. Adrenal glands from three newborn foals were also examined by light microscopy. Between 61 and 100 days of gestation the adrenal cortex became organised into two distinct regions, the zona glomerulosa and zona fasciculata, which grew steadily in thickness until the 300th day. Between 300 days and birth there was a dramatic increase in the width of the zona fasciculata. From 200 days a narrow band of compact cells marked the cortico-medullary border. Though these cell...
The embryonic development of the equine heart.
Anatomia, histologia, embryologia    January 1, 1981   Volume 10, Issue 3 193-211 doi: 10.1111/j.1439-0264.1981.tb00518.x
Vitums A.No abstract available
Fetal and maternal gonads and gonadotropins in the pony.
Biology of reproduction    May 1, 1980   Volume 22, Issue 4 735-743 doi: 10.1095/biolreprod22.4.735
Wesson JA, Ginther OJ.No abstract available
The establishment and sexual differentiation of the horse gonad.
Boletin de estudios medicos y biologicos    January 1, 1980   Volume 31, Issue 1-2 3-23 
Merchant-Larios .No abstract available
Development of the equine venous sinuses of the dura mater.
Anatomia, histologia, embryologia    June 1, 1979   Volume 8, Issue 2 124-137 doi: 10.1111/j.1439-0264.1979.tb00685.x
Vitums A.No abstract available
Effect of vitamin D and sunlight on growth and bone development of young ponies.
Journal of animal science    April 1, 1979   Volume 48, Issue 4 882-886 doi: 10.2527/jas1979.484882x
El Shorafa WM, Feaster JP, Ott EA, Asquith RL.No abstract available
Development of the equine ovary and ovulation fossa.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 471-477 
Walt ML, Stabenfeldt GH, Hughes JP, Neely DP, Bradbury R.No abstract available
A precursor role for DHA in a feto-placental unit for oestrogen formation in the mare.
Journal of reproduction and fertility. Supplement    January 1, 1979   Issue 27 493-497 
Raeside JI, Liptrap RM, McDonell WN, Milne FJ.Plasma levels of total oestrogens and dehydroepiandrosterone (DHA) were measured by radioimmunossay in samples taken from various blood vessels in both maternal and fetal compartments in 11 Pony mates. High concentrations of oestrogens (greater than 100 ng/ml of plasma), expressed as oestrone equivalents, were found in the fetal circulation. On both the fetal and maternal sides, oestrogen concentrations were lower in blood going to than from the placenta. DHA concentrations, on the other hand, were higher in blood flowing to the placenta from the fetus. The fetal gonads were seen as the source...