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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.
Convergent evolution of pregnancy-specific glycoproteins in human and horse.
Reproduction (Cambridge, England)    June 8, 2016   Volume 152, Issue 3 171-184 doi: 10.1530/REP-16-0236
Aleksic D, Blaschke L, Mißbach S, Hänske J, Weiß W, Handler J, Zimmermann W, Cabrera-Sharp V, Read JE, de Mestre AM, O'Riordan R, Moore T....Pregnancy-specific glycoproteins (PSGs) are members of the carcinoembryonic antigen cell adhesion molecule (CEACAM) family that are secreted by trophoblast cells. PSGs may modulate immune, angiogenic and platelet responses during pregnancy. Until now, PSGs are only found in species that have a highly invasive (hemochorial) placentation including humans, mice and rats. Surprisingly, analyzing the CEACAM gene family of the horse, which has a non-invasive epitheliochorial placenta, with the exception of the transient endometrial cups, we identified equine CEACAM family members that seem to be rel...
Placental abnormalities in equine pregnancies generated by SCNT from one donor horse.
Theriogenology    May 26, 2016   Volume 86, Issue 6 1573-1582 doi: 10.1016/j.theriogenology.2016.05.017
Pozor MA, Sheppard B, Hinrichs K, Kelleman AA, Macpherson ML, Runcan E, Choi YH, Diaw M, Mathews PM.Placental changes associated with SCNT have been described in several species, but little information is available in this area in the horse. We evaluated the ultrasonographic, gross, and histopathological characteristics of placentas from three successful and five unsuccessful equine SCNT pregnancies, established using cells from a single donor horse. Starting at approximately 6-month gestation, the pregnancies were monitored periodically using transrectal (TR) and transabdominal (TA) ultrasonography (US) to examine the placentas, fetal fluids, and fetuses. Of the five mares that aborted, one...
High Expression of Endogenous Retroviral Envelope Gene in the Equine Fetal Part of the Placenta.
PloS one    May 13, 2016   Volume 11, Issue 5 e0155603 doi: 10.1371/journal.pone.0155603
Stefanetti V, Marenzoni ML, Passamonti F, Cappelli K, Garcia-Etxebarria K, Coletti M, Capomaccio S.Endogenous retroviruses (ERVs) are proviral phases of exogenous retroviruses that have co-evolved with vertebrate genomes for millions of years. Previous studies have identified the envelope (env) protein genes of retroviral origin preferentially expressed in the placenta which suggests a role in placentation based on their membrane fusogenic capacity and therefore they have been named syncytins. Until now, all the characterized syncytins have been associated with three invasive placentation types: the endotheliochorial (Carnivora), the synepitheliochorial (Ruminantia), and the hemochorial pla...
Embryo-maternal communication during the first 4 weeks of equine pregnancy.
Theriogenology    April 21, 2016   Volume 86, Issue 1 349-354 doi: 10.1016/j.theriogenology.2016.04.048
Stout TA.The first month of equine pregnancy covers a period of rapid growth and development, during which the single-cell zygote metamorphoses into an embryo with a functional circulation and precursors of many important organs, enclosed within extraembryonic membranes responsible for nutrient uptake and gaseous exchange. After exiting the oviduct, the conceptus must influence uterine physiology to ensure adequate nutrition and preparation for implantation, while continued development results in the chorioallantois superseding the yolk sac as the primary interface for maternal interaction and exchange...
Comparative genomics of hormonal signaling in the chorioallantoic membrane of oviparous and viviparous amniotes.
General and comparative endocrinology    April 19, 2016   Volume 244 19-29 doi: 10.1016/j.ygcen.2016.04.017
Griffith OW, Brandley MC, Whittington CM, Belov K, Thompson MB.In oviparous amniotes (reptiles, birds, and mammals) the chorioallantoic membrane (CAM) lines the inside of the egg and acts as the living point of contact between the embryo and the outside world. In livebearing (viviparous) amniotes, communication during embryonic development occurs across placental tissues, which form between the uterine tissue of the mother and the CAM of the embryo. In both oviparous and viviparous taxa, the CAM is at the interface of the embryo and the external environment and can transfer signals from there to the embryo proper. To understand the evolution of placental ...
Hippotherapy: Remuneration issues impair the offering of this therapeutic strategy at Southern California rehabilitation centers.
NeuroRehabilitation    April 12, 2016   Volume 38, Issue 4 411-417 doi: 10.3233/NRE-161332
Pham C, Bitonte R.Hippotherapy is the use of equine movement in physical, occupational, or speech therapy in order to obtain functional improvements in patients. Studies show improvement in motor function and sensory processing for patients with a variety of neuromuscular disabilities, developmental disorders, or skeletal impairments as a result of using hippotherapy. Objective: The primary objective of this study is to identify the pervasiveness of hippotherapy in Southern California, and any factors that impair its utilization. Methods: One hundred and fifty-two rehabilitation centers in the Southern Californ...
Organogenesis of the Musculoskeletal System in Horse Embryos and Early Fetuses.
Anatomical record (Hoboken, N.J. : 2007)    March 15, 2016   Volume 299, Issue 6 722-729 doi: 10.1002/ar.23339
Barreto Rda S, Rodrigues MN, Carvalho RC, De Oliveira E Silva FM, Rigoglio NN, Jacob JC, Gastal EL, Miglino MA.Musculoskeletal system development involves heterotypical inductive interactions between tendons, muscles, and cartilage and knowledge on organogenesis is required for clarification of its function. The aim of this study was to describe the organogenesis of horse musculoskeletal system between 21 and 105 days of gestation, using detailed macroscopic and histological analyses focusing on essential developmental steps. At day 21 of gestation the skin was translucid, but epithelial condensation and fibrocartilaginous tissues were observed on day 25 of pregnancy. Smooth muscle was seen in lymphat...
Management of the pregnant mare and long-term consequences on the offspring.
Theriogenology    February 4, 2016   Volume 86, Issue 1 99-109 doi: 10.1016/j.theriogenology.2016.01.028
Peugnet P, Robles M, Wimel L, Tarrade A, Chavatte-Palmer P.The study of early developmental conditioning of health and disease in adulthood is particularly relevant in the horse, which is bred mainly to perform in demanding sport challenges. On the basis of this concept, the management of the broodmare could be considered an effective means to produce animals with the desired features. Knowledge on the Developmental Origins of Health and Disease in the equine species remains relatively scarce, with some experimental studies and one single epidemiologic study. Data highlight the determinant role of the maternal environment for postnatal body conformati...
Campylorrhinus lateralis, Bilateral microphthalmia and odontoma temporalis in an Oldenburg Foal.
Reproduction in domestic animals = Zuchthygiene    January 30, 2016   Volume 51, Issue 2 330-334 doi: 10.1111/rda.12665
Casteleyn C, Cornillie P, Tüllmann V, Van Cruchten S, Van Ginneken C.An Oldenburg colt with wry nose was autopsied after having lived for only 30 min. It presented cyanotic oral mucosae, underdeveloped eyes and a right-sided temporal osseous mass. The applicable nomenclature for the defects is discussed, and the potential etiopathogenesis is explored by describing the normal embryonic development of the affected body parts.
Equine-Induced Pluripotent Stem Cells Retain Lineage Commitment Toward Myogenic and Chondrogenic Fates.
Stem cell reports    January 16, 2016   Volume 6, Issue 1 55-63 doi: 10.1016/j.stemcr.2015.12.005
Quattrocelli M, Giacomazzi G, Broeckx SY, Ceelen L, Bolca S, Spaas JH, Sampaolesi M.Induced pluripotent stem cells (iPSCs) hold great potential not only for human but also for veterinary purposes. The equine industry must often deal with health issues concerning muscle and cartilage, where comprehensive regenerative strategies are still missing. In this regard, a still open question is whether equine iPSCs differentiate toward muscle and cartilage, and whether donor cell type influences their differentiation potential. We addressed these questions through an isogenic system of equine iPSCs obtained from myogenic mesoangioblasts (MAB-iPSCs) and chondrogenic mesenchymal stem ce...
A method for isolating and culturing placental cells from failed early equine pregnancies.
Placenta    December 24, 2015   Volume 38 107-111 doi: 10.1016/j.placenta.2015.12.014
Rose BV, Cabrera-Sharp V, Firth MJ, Barrelet FE, Bate S, Cameron IJ, Crabtree JR, Crowhurst J, McGladdery AJ, Neal H, Pynn J, Pynn OD, Smith C....Early pregnancy loss occurs in 6-10% of equine pregnancies making it the main cause of reproductive wastage. Despite this, reasons for the losses are known in only 16% of cases. Lack of viable conceptus material has inhibited investigations of many potential genetic and pathological causes. We present a method for isolating and culturing placental cells from failed early equine pregnancies. Trophoblast cells from 18/30 (60%) failed equine pregnancies of gestational ages 14-65 days were successfully cultured in three different media, with the greatest growth achieved for cells cultured in Amnio...
Regulatory mutations in TBX3 disrupt asymmetric hair pigmentation that underlies Dun camouflage color in horses.
Nature genetics    December 21, 2015   Volume 48, Issue 2 152-158 doi: 10.1038/ng.3475
Imsland F, McGowan K, Rubin CJ, Henegar C, Sundström E, Berglund J, Schwochow D, Gustafson U, Imsland P, Lindblad-Toh K, Lindgren G, Mikko S....Dun is a wild-type coat color in horses characterized by pigment dilution with a striking pattern of dark areas termed primitive markings. Here we show that pigment dilution in Dun horses is due to radially asymmetric deposition of pigment in the growing hair caused by localized expression of the T-box 3 (TBX3) transcription factor in hair follicles, which in turn determines the distribution of hair follicle melanocytes. Most domestic horses are non-dun, a more intensely pigmented phenotype caused by regulatory mutations impairing TBX3 expression in the hair follicle, resulting in a more circu...
Prospects and Challenges of Induced Pluripotent Stem Cells in Equine Health.
Frontiers in veterinary science    November 19, 2015   Volume 2 59 doi: 10.3389/fvets.2015.00059
Donadeu FX, Esteves CL.Pluripotent stem cells (PSCs) hold, through the capacity to differentiate into virtually all body cell types, unprecedented promise for human and animal medicine. PSCs are naturally found in the early embryo, and in rodents and humans they can be robustly harvested and grown in culture in the form of embryonic stem cells (ESCs); however, the availability of ESCs from horses is limited. ES-like cells named induced pluripotent stem cells (iPSCs) can be derived in vitro by transcription factor-mediated reprogramming of adult cells. As such, iPSCs can be generated in a patient-specific manner prov...
Pluripotent Stem Cells from Domesticated Mammals.
Annual review of animal biosciences    November 11, 2015   Volume 4 223-253 doi: 10.1146/annurev-animal-021815-111202
Ezashi T, Yuan Y, Roberts RM.This review deals with the latest advances in the study of embryonic stem cells (ESC) and induced pluripotent stem cells (iPSC) from domesticated species, with a focus on pigs, cattle, sheep, goats, horses, cats, and dogs. Whereas the derivation of fully pluripotent ESC from these species has proved slow, reprogramming of somatic cells to iPSC has been more straightforward. However, most of these iPSC depend on the continued expression of the introduced transgenes, a major drawback to their utility. The persistent failure in generating ESC and the dependency of iPSC on ectopic genes probably s...
Introduction.
Advances in anatomy, embryology, and cell biology    October 10, 2015   Volume 216 1-4 doi: 10.1007/978-3-319-15856-3_1
Geisert RD.Establishment and maintenance of pregnancy in a number of mammalian species depends upon a tightly regulated interaction between the semiallogeneic conceptus and the maternal uterine endometrium.The term "Maternal Recognition of Pregnancy" is attributed to Roger V. Short's paper titled "Implantation and the Maternal Recognition of Pregnancy" which was published in proceedings from the 1969 Symposium on Foetal Autonomy.Professor Short's landmark paper stimulated increased interest in elucidating how the conceptus signals its presence to assure maintenance of the corpus luteum beyond the normal ...
Early Developmental and Evolutionary Origins of Gene Body DNA Methylation Patterns in Mammalian Placentas.
PLoS genetics    August 4, 2015   Volume 11, Issue 8 e1005442 doi: 10.1371/journal.pgen.1005442
Schroeder DI, Jayashankar K, Douglas KC, Thirkill TL, York D, Dickinson PJ, Williams LE, Samollow PB, Ross PJ, Bannasch DL, Douglas GC, LaSalle JM.Over the last 20-80 million years the mammalian placenta has taken on a variety of morphologies through both divergent and convergent evolution. Recently we have shown that the human placenta genome has a unique epigenetic pattern of large partially methylated domains (PMDs) and highly methylated domains (HMDs) with gene body DNA methylation positively correlating with level of gene expression. In order to determine the evolutionary conservation of DNA methylation patterns and transcriptional regulatory programs in the placenta, we performed a genome-wide methylome (MethylC-seq) analysis of hu...
Analysis of the equine ovarian structure during the first twelve months of life by three-dimensional internal structure microscopy.
The Journal of veterinary medical science    July 18, 2015   Volume 77, Issue 12 1599-1603 doi: 10.1292/jvms.14-0539
Ono M, Akuzawa H, Nambo Y, Hirano Y, Kimura J, Takemoto S, Nakamura S, Yokota H, Himeno R, Higuchi T, Ohtaki T, Tsumagari S.A three-dimensional internal structure microscopy (3D-ISM) can clarify the anatomical arrangement of internal structures of equine ovaries. In this study, morphological changes of the equine ovary over the first 12 months of life were investigated by 3D-ISM in 59 fillies and by histological analysis in 2 fillies. The weight and volume of the paired ovaries initially decreased from 0 to 1 months to 2 to 3 months of age and then significantly increased at 8 to 12 months of age. The ovulation fossa was first observed around the 3rd month and became evident after the 6th month. The number of folli...
Cloned foal derived from in vivo matured horse oocytes aspirated by the short disposable needle system.
Journal of veterinary science    June 30, 2015   Volume 16, Issue 4 509-516 doi: 10.4142/jvs.2015.16.4.509
Lee W, Song K, Lee I, Shin H, Lee BC, Yeon S, Jang G.Transvaginal ultrasound-guided follicle aspiration is one method of obtaining recipient oocytes for equine somatic cell nuclear transfer (SCNT). This study was conducted: (1) to evaluate the possibility of oocyte aspiration from pre-ovulatory follicles using a short disposable needle system (14-G) by comparing the oocyte recovery rate with that of a long double lumen needle (12-G); (2) to investigate the developmental competence of recovered oocytes after SCNT and embryo transfer. The recovery rates with the short disposable needle vs. the long needle were not significantly different (47.5% an...
Differentiation of equine induced pluripotent stem cells into a keratinocyte lineage.
Equine veterinary journal    May 29, 2015   Volume 48, Issue 3 338-345 doi: 10.1111/evj.12438
Aguiar C, Therrien J, Lemire P, Segura M, Smith LC, Theoret CL.Skin trauma in horses often leads to the development of chronic nonhealing wounds that lack a keratinocyte cover, vital for healing. Reports in mouse and man confirm the possibility of generating functional keratinocytes from induced pluripotent stem cells (iPSC), thus presenting myriad potential applications for wound management or treatment of skin disease. Similarly, differentiation of equine iPSC (eiPSC) into a keratinocyte lineage should provide opportunities for the advancement of veterinary regenerative medicine. Objective: The purpose of this study was to develop an efficient method fo...
Improvement of development of equine preantral follicles after 6 days of in vitro culture with ascorbic acid supplementation.
Theriogenology    May 19, 2015   Volume 84, Issue 5 750-755 doi: 10.1016/j.theriogenology.2015.05.006
Gomes RG, Lisboa LA, Silva CB, Max MC, Marino PC, Oliveira RL, González SM, Barreiros TR, Marinho LS, Seneda MM.The aim of this study was to evaluate the effects of different concentrations of ascorbic acid (25, 50, and 100 μg/mL) in supplemented minimum essential medium (MEM+) on the development of equine preantral follicles that were cultured in vitro for 2 or 6 days. The contralateral ovaries (n = 5) from five mares in seasonal anestrus were collected from a local abattoir. Nine ovarian tissue fragments of approximately 5 × 5 × 1 mm were obtained from each animal. One fragment was immediately fixed and subjected to histologic analysis (control group; Day 0), and the other eight were placed in PBS ...
Novel equine conceptus?endometrial interactions on Day 16 of pregnancy based on RNA sequencing.
Reproduction, fertility, and development    May 5, 2015   doi: 10.1071/RD14489
Klein C.Maintenance of pregnancy is dependent on the exchange of signals between the conceptus and the endometrium. The objective of this study was to use next-generation sequencing to determine transcriptome blueprints of the conceptus and endometrium 16 days after ovulation in the horse. There were 7760 and 10 182 genes expressed in the conceptus and endometrium, respectively, of which 7029 were present in both. Genes related to developmental processes were enriched among conceptus-specific transcripts, whereas many endometrium-specific genes had known roles in cell communication, cell adhesion and ...
Maternal age and in vitro culture affect mitochondrial number and function in equine oocytes and embryos.
Reproduction, fertility, and development    April 17, 2015   Volume 27, Issue 6 957-968 doi: 10.1071/RD14450
Hendriks WK, Colleoni S, Galli C, Paris DB, Colenbrander B, Roelen BA, Stout TA.Advanced maternal age and in vitro embryo production (IVP) predispose to pregnancy loss in horses. We investigated whether mare age and IVP were associated with alterations in mitochondrial (mt) DNA copy number or function that could compromise oocyte and embryo development. Effects of mare age (<12 vs ≥12 years) on mtDNA copy number, ATP content and expression of genes involved in mitochondrial replication (mitochondrial transcription factor (TFAM), mtDNA polymerase γ subunit B (mtPOLB) and mitochondrial single-stranded DNA-binding protein (SSB)), energy production (ATP synthase-couplin...
Cell lineage allocation in equine blastocysts produced in vitro under varying glucose concentrations.
Reproduction (Cambridge, England)    April 7, 2015   Volume 150, Issue 1 31-41 doi: 10.1530/REP-14-0662
Choi YH, Ross P, Velez IC, Macías-García B, Riera FL, Hinrichs K.Equine embryos develop in vitro in the presence of high glucose concentrations, but little is known about their requirements for development. We evaluated the effect of glucose concentrations in medium on blastocyst development after ICSI. In experiment 1, there were no significant differences in rates of blastocyst formation among embryos cultured in our standard medium (DMEM/F-12), which contained >16 mM glucose, and those cultured in a minimal-glucose embryo culture medium (<1 mM; Global medium, GB), with either 0 added glucose for the first 5 days, then 20 mM (0-20) or 20 mM for th...
Timing factors affecting blastocyst development in equine somatic cell nuclear transfer.
Cellular reprogramming    April 1, 2015   Volume 17, Issue 2 124-130 doi: 10.1089/cell.2014.0093
Choi YH, Velez IC, Macías-García B, Hinrichs K.In nuclear transfer (NT), exposure of donor cell chromatin to the ooplast cytoplasm may aid reprogramming; however, the length of exposure feasible is limited by the developmental life span of the oocyte. We examined the effect of duration of nucleus-cytoplasmic exposure before activation and of in vitro maturation (IVM) in equine NT. In experiment 1, 24 h IVM and a delay of 2, 5, or 8 h between reconstruction and activation yielded 4%, 15%, and 11% blastocysts, respectively. In experiment 2, a 5-h activation delay yielded 17% and 22% blastocysts with two donor cell lines. In experiment 3, usi...
The cross-sectional area changes in digital flexor tendons and suspensory ligament in foals by ultrasonographic examination.
Equine veterinary journal    February 2, 2015   Volume 47, Issue 5 548-552 doi: 10.1111/evj.12330
Korosue K, Endo Y, Murase H, Ishimaru M, Nambo Y, Sato F.Flexural deformities are common conditions of growing horses and are suggested to have a relationship with the contraction of musculotendinous units. However, limited studies have documented the changes in each tendon and ligament in the metacarpal region with age. Objective: To investigate the changes in the cross-sectional area (CSA) of each tendon and ligament in the metacarpal region with age by ultrasonographic examination. Methods: Longitudinal study of foals from Day 1 to age 24 months. Methods: The CSA of the superficial digital flexor tendon, deep digital flexor tendon, accessory liga...
The aggregation of four reconstructed zygotes is the limit to improve the developmental competence of cloned equine embryos.
PloS one    November 14, 2014   Volume 9, Issue 11 e110998 doi: 10.1371/journal.pone.0110998
Gambini A, De Stefano A, Bevacqua RJ, Karlanian F, Salamone DF.Embryo aggregation has been demonstrated to improve cloning efficiency in mammals. However, since no more than three embryos have been used for aggregation, the effect of using a larger number of cloned zygotes is unknown. Therefore, the goal of the present study was to determine whether increased numbers of cloned aggregated zygotes results in improved in vitro and in vivo embryo development in the equine. Zona-free reconstructed embryos (ZFRE's) were cultured in the well of the well system in four different experimental groups: I. 1x, only one ZFRE per microwell; II. 3x, three per microwell;...
Stem cells and regenerative medicine in domestic and companion animals: a multispecies perspective.
Reproduction in domestic animals = Zuchthygiene    October 4, 2014   Volume 49 Suppl 4 2-10 doi: 10.1111/rda.12392
Gonçalves NN, Ambrósio CE, Piedrahita JA.Since their original isolation, the majority of the work on embryonic stem cells (ESC) has been carried out in mice. While the mouse is an outstanding model for basic research, it also has considerable limitations for translational work, especially in the area of regenerative medicine. This is due to a combination of factors that include physiological and size differences when compared to humans. In contrast, domestic animal species, such as swine, and companion animal species, such as dogs, provide unique opportunities to develop regenerative medicine protocols that can then be utilized in hu...
The embryogenesis of the equine femorotibial joint: The equine interzone.
Equine veterinary journal    September 10, 2014   Volume 47, Issue 5 620-622 doi: 10.1111/evj.12321
Jenner F, van Osch GJ, Weninger W, Geyer S, Stout T, van Weeren R, Brama P.Articular cartilage regeneration is the focus and goal of considerable research effort. Since articular chondrocytes descend from a distinct cohort of progenitor cells located in embryonic nascent joints (interzones), establishing the timing of equine interzone formation is an essential first step towards understanding equine joint and articular cartilage development. Objective: To establish the time frame during which the equine femorotibial interzone forms. Methods: Descriptive anatomical study. Methods: Equine embryos were harvested at 37 (E37), 40, 42, 45, 50 and 65 days' gestation. The fe...
Cell and matrix modulation in prenatal and postnatal equine growth cartilage, zones of Ranvier and articular cartilage.
Journal of anatomy    September 1, 2014   Volume 225, Issue 5 548-568 doi: 10.1111/joa.12232
Löfgren M, Ekman S, Svala E, Lindahl A, Ley C, Skiöldebrand E.Formation of synovial joints includes phenotypic changes of the chondrocytes and the organisation of their extracellular matrix is regulated by different factors and signalling pathways. Increased knowledge of the normal processes involved in joint development may be used to identify similar regulatory mechanisms during pathological conditions in the joint. Samples of the distal radius were collected from prenatal and postnatal equine growth plates, zones of Ranvier and articular cartilage with the aim of identifying Notch signalling components and cells with stem cell-like characteristics and...
Expression of putative markers of pluripotency in equine embryonic and adult tissues.
Veterinary journal (London, England : 1997)    August 29, 2014   Volume 202, Issue 3 533-535 doi: 10.1016/j.tvjl.2014.08.026
Esteves CL, Sharma R, Dawson L, Taylor SE, Pearson G, Keen JA, McDonald K, Aurich C, Donadeu FX.Expression of several putative markers of pluripotency (OCT4, SOX2, NANOG, LIN28A, REX1, DNMT3B and TERT) was examined in a range of equine tissues, including early embryos, induced pluripotent stem cells (iPSCs), testis, adipose- and bone marrow-derived mesenchymal stromal cells (MSCs), and keratinocytes. Transcript levels of all markers were highest in embryos and iPSCs and, except for SOX2, were very low or undetectable in keratinocytes. Mean expression levels of all markers were lower in testis than in embryos or iPSCs and, except for DNMT3B, were higher in testis than in MSCs. Expression ...
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