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Topic:Tissue

Tissue in horses refers to the various types of biological material that make up the body of the animal, including muscle, connective, epithelial, and nervous tissues. Each type of tissue has specific functions and characteristics, contributing to the overall physiology and health of the horse. Muscle tissue is responsible for movement and locomotion, connective tissue provides structural support and protection, epithelial tissue covers body surfaces and lines cavities, and nervous tissue is involved in transmitting signals for communication and coordination within the body. The study of equine tissue encompasses aspects such as growth, repair, and response to injury or disease. This page compiles peer-reviewed research studies and scholarly articles that explore the structure, function, and pathology of different tissue types in horses, offering insights into their role in equine health and disease management.
Diffusion of charged and uncharged contrast agents in equine mandibular condylar cartilage is not affected by an increased level of sugar-induced collagen crosslinking.
Journal of the mechanical behavior of biomedical materials    October 14, 2018   Volume 90 133-139 doi: 10.1016/j.jmbbm.2018.10.022
Mirahmadi F, Koolstra JH, Fazaeli S, Lobbezoo F, van Lenthe GH, Snabel J, Stoop R, Everts V.Nutrition of articular cartilage relies mainly on diffusion and convection of solutes through the interstitial fluid due to the lack of blood vessels. The diffusion is controlled by two factors: steric hindrance and electrostatic interactions between the solutes and the matrix components. Aging comes with changes in the cartilage structure and composition, which can influence the diffusion. In this study, we treated fibrocartilage of mandibular condyle with ribose to induce an aging-like effect by accumulating collagen crosslinks. The effect of steric hindrance or electrostatic forces on the d...
Lentiviral-based reporter constructs for profiling chondrogenic activity in primary equine cell populations.
European cells & materials    October 12, 2018   Volume 36 156-170 doi: 10.22203/eCM.v036a12
Martin-Pena A, Porter RM, Plumton G, McCarrel TM, Morton AJ, Guijarro MV, Ghivizzani SC, Sharma B, Palmer GD.Successful clinical translation of mesenchymal stem cell (MSC)-based therapies for cartilage repair will likely require the implementation of standardised protocols and broadly applicable tools to facilitate the comparisons among cell types and chondroinduction methods. The present study investigated the utility of recombinant lentiviral reporter vectors as reliable tools for comparing chondrogenic potential among primary cell populations and distinguishing cellular-level variations of chondrogenic activity in widely used three-dimensional (3D) culture systems. Primary equine MSCs and chondroc...
Effect of transforming growth factor -β1 on α-smooth muscle actin and collagen expression in equine endometrial fibroblasts.
Theriogenology    October 4, 2018   Volume 124 9-17 doi: 10.1016/j.theriogenology.2018.10.005
Szóstek-Mioduchowska AZ, Lukasik K, Skarzynski DJ, Okuda K.Transforming growth factor (TGF)-β1 not only regulates cell growth, development, and tissue remodeling, but it also participates in the pathogenesis of tissue fibrosis. In the equine endometrium, the concentration of TGF-β1 is correlated with endometrosis (equine endometrial fibrosis). In other tissues, TGF-β1 induces differentiation of many cell types into myofibroblasts. These cells are characterized by α-smooth muscle actin (α-SMA) expression and an ability to deposit excessive amounts of extracellular matrix (ECM) components. The aim of the study was to determine whether TGF-β1 plays...
Growth Factor-Mediated Tenogenic Induction of Multipotent Mesenchymal Stromal Cells Is Altered by the Microenvironment of Tendon Matrix.
Cell transplantation    September 25, 2018   Volume 27, Issue 10 1434-1450 doi: 10.1177/0963689718792203
Roth SP, Schubert S, Scheibe P, Groß C, Brehm W, Burk J.Age-related degenerative changes in tendon tissue represent a common cause for acute tendon pathologies. Although the regenerative potential of multipotent mesenchymal stromal cells (MSC) was reported to restore functionality in injured tendon tissue, cellular mechanisms of action remain partly unclear. Potential tenogenic differentiation of applied MSC is affected by various intrinsic and extrinsic factors. The current study presents an in vitro model to evaluate the combined extrinsic effects of decellularized equine tendon matrix, transforming growth factor beta 3 (TGFβ3) and bone morphoge...
Differences in the intrinsic chondrogenic potential of equine umbilical cord matrix and cord blood mesenchymal stromal/stem cells for cartilage regeneration.
Scientific reports    September 14, 2018   Volume 8, Issue 1 13799 doi: 10.1038/s41598-018-28164-9
Rakic R, Bourdon B, Demoor M, Maddens S, Saulnier N, Galéra P.Umbilical cord blood mesenchymal stromal/stem cells (UCB-MSCs) and umbilical cord matrix MSCs (UCM-MSCs) have chondrogenic potential and are alternative sources to standard surgically derived bone marrow or adipose tissue collection for cartilage engineering. However, the majority of comparative studies explore neonatal MSCs potential only on ISCT benchmark assays accounting for some bias in the reproducibility between in vitro and in clinical studies. Therefore, we characterized equine UCB-MSCs and UCM-MSCs and investigated with particular attention their chondrogenesis potential in 3D cultu...
Lentiviral vector expression of Klf4 enhances chondrogenesis and reduces hypertrophy in equine chondrocytes.
Gene    September 8, 2018   Volume 680 9-19 doi: 10.1016/j.gene.2018.09.013
Gurusinghe S, Bandara N, Hilbert B, Trope G, Wang L, Strappe P.Monolayer expansion of chondrocytes in culture results in the dedifferentiation of chondrocytes with inferior cartilage specific extracellular matrix synthesis and proliferation when compared with its native counterpart. We aimed to enhance chondrocyte proliferation and articular cartilage specific gene expression through ectopic expression of the major pluripotency transcription factors (Oct4, Sox2, Klf4 and c-Myc). We also aimed to provide insights to the modulation of TGFβ receptor mRNA with Klf4 overexpression. Equine chondrocytes pooled from three donors were transduced with lentiviral v...
Effect of culture duration on chondrogenic preconditioning of equine bone marrow mesenchymal stem cells in self-assembling peptide hydrogel.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    September 5, 2018   Volume 37, Issue 6 1368-1375 doi: 10.1002/jor.24123
Kisiday JD, Colbath AC, Tangtrongsup S.Ex vivo induction of chondrogenesis is a promising approach to improve upon the use of bone marrow mesenchymal stem cells (MSCs) for cartilage tissue engineering. This study evaluated the potential to induce chondrogenesis with days of culture in chondrogenic medium for MSCs encapsulated in self-assembling peptide hydrogel. To simulate the transition from preconditioning culture to implantation, MSCs were isolated from self-assembling peptide hydrogel into an individual cell suspension. Commitment to chondrogenesis was evaluated by seeding preconditioned MSCs into agarose and culturing in the ...
Endotoxin-induced changes of type VII collagen- cleaving matrix metalloproteinases in lamellar tissue of extracorporeally perfused equine limbs.
American journal of veterinary research    August 29, 2018   Volume 79, Issue 9 986-994 doi: 10.2460/ajvr.79.9.986
Patan-Zugaj B, Gauff FC, Egerbacher M, Licka TF.OBJECTIVE To investigate the effect of lipopolysaccharide (LPS) on type VII collagen- cleaving matrix metalloproteinases (MMPs) in the lamellar tissue of extracorporeally perfused equine limbs. SAMPLE 10 right forelimbs and 3 left forelimbs collected from 10 adult horses after slaughter at a licensed abattoir. PROCEDURES Extracorporeal perfusion of the isolated equine limbs was performed for 10 hours under physiologic conditions (control-perfused limbs; n = 5) and with the addition of 80 ng of LPS/L of perfusate (LPS-perfused limbs; 5). Lamellar tissue specimens were then collected from the do...
Functional anatomy of the equine temporomandibular joint: Histological characteristics of the articular surfaces and underlining tissues.
Veterinary journal (London, England : 1997)    August 13, 2018   Volume 239 35-41 doi: 10.1016/j.tvjl.2018.08.003
Adams K, Schulz-Kornas E, Arzi B, Failing K, Vogelsberg J, Staszyk C.It has been assumed that dental conditions cause disorders of the equine temporomandibular joint (TMJ), due to biomechanical overload or aberrant loading. However, the incidence of published TMJ disorders in horses is low and this leads to the question whether the equine TMJ is adapted well to its biomechanical requirements or is able to remodel its articular surfaces in response to modified loading conditions. The aim of this study was to determine the histological characteristics of healthy equine TMJs. The tissue components of the articular surfaces of 10 TMJs obtained from horses without a...
Maintenance of contractile function of isolated airway smooth muscle after cryopreservation.
American journal of physiology. Lung cellular and molecular physiology    August 9, 2018   Volume 315, Issue 5 L724-L733 doi: 10.1152/ajplung.00064.2018
Ijpma G, Liang CQ, Kachmar L, Panariti A, Benedetti A, Lavoie JP, Lauzon AM.Isolated human airway smooth muscle (ASM) tissue contractility studies are essential for understanding the role of ASM in respiratory disease, but limited availability and cost render storage options necessary for optimal use. However, to our knowledge, no comprehensive study of cryopreservation protocols for isolated ASM has been performed to date. We tested several cryostorage protocols on equine trachealis ASM using different cryostorage media [1.8 M dimethyl sulfoxide and fetal bovine serum (FBS) or Krebs-Henseleit (KH)] and different degrees of dissection (with or without epithelium and c...
Composition, structure and tensile biomechanical properties of equine articular cartilage during growth and maturation.
Scientific reports    July 27, 2018   Volume 8, Issue 1 11357 doi: 10.1038/s41598-018-29655-5
Oinas J, Ronkainen AP, Rieppo L, Finnilä MAJ, Iivarinen JT, van Weeren PR, Helminen HJ, Brama PAJ, Korhonen RK, Saarakkala S.Articular cartilage undergoes structural and biochemical changes during maturation, but the knowledge on how these changes relate to articular cartilage function at different stages of maturation is lacking. Equine articular cartilage samples of four different maturation levels (newborn, 5-month-old, 11-month-old and adult) were collected (N = 25). Biomechanical tensile testing, Fourier transform infrared microspectroscopy (FTIR-MS) and polarized light microscopy were used to study the tensile, biochemical and structural properties of articular cartilage, respectively. The tensile modulus ...
Stem Cell Therapy for Tendon Regeneration: Current Status and Future Directions.
Advances in experimental medicine and biology    July 26, 2018   Volume 1084 61-93 doi: 10.1007/5584_2018_194
Conrad S, Weber K, Walliser U, Geburek F, Skutella T.In adults the healing tendon generates fibrovascular scar tissue and recovers never histologically, mechanically, and functionally which leads to chronic and to degenerative diseases. In this review, the processes and mechanisms of tendon development and fetal regeneration in comparison to adult defect repair and degeneration are discussed in relation to regenerative therapeutic options. We focused on the application of stem cells, growth factors, transcription factors, and gene therapy in tendon injury therapies in order to intervene the scarring process and to induce functional regeneration ...
DNA methylation patterns of the S100A14, POU2F3 and SFN genes in equine sarcoid tissues.
Research in veterinary science    July 24, 2018   Volume 119 302-307 doi: 10.1016/j.rvsc.2018.07.006
Semik-Gurgul E, Ząbek T, Fornal A, Wnuk M, Pawlina-Tyszko K, Gurgul A, Klukowska-Rötzler J, Koch C, Mählmann K, Bugno-Poniewierska M.Genetic and epigenetic alterations in the equine sarcoid, a locally invasive skin tumour of equids, are still poorly characterized. Numerous studies have provided reliable evidence for the relationship between the development of cancer and the loss of function of a number of tumour suppressor genes. In the present study, we assessed methylation levels in the promoter region of SFN, S100A14 and POU2F3 genes in sarcoid samples to clarify whether DNA methylation may be associated with previously identified changes in the expression level of these genes during the course of tumour progression. Usi...
Practical considerations for clinical use of mesenchymal stem cells: From the laboratory to the horse.
Veterinary journal (London, England : 1997)    July 17, 2018   Volume 238 49-57 doi: 10.1016/j.tvjl.2018.07.004
Barrachina L, Romero A, Zaragoza P, Rodellar C, Vázquez FJ.Since the clinical use of mesenchymal stem cells (MSCs) for treating musculoskeletal injuries is gaining popularity, practitioners should be aware of the factors that may affect MSCs from tissue harvesting for MSC isolation to cell delivery into the injury site. This review provides equine practitioners with up-to-date, practical knowledge for the treatment of equine patients using MSCs. A brief overview of laboratory procedures affecting MSCs is provided, but the main focus is on shipping conditions, routes of administration, injection methods, and which commonly used products can be combined...
Expression of activin receptors in the equine uteroplacental tissue: an immunohistochemical analysis.
Journal of equine science    July 6, 2018   Volume 29, Issue 2 33-37 doi: 10.1294/jes.29.33
Kimura Y, Sasaki M, Watanabe K, Dhakal P, Sato F, Taya K, Nambo Y.Activin is secreted from equine uterine glands and plays important roles in establishment and maintenance of pregnancy in mares. This study aimed to localize activin receptors (ActRs) IA/B and IIA/B using immunohistochemistry in the uteroplacental tissues of seven pregnant Thoroughbred mares. At the time of tissue collection, the mares were at the following days of pregnancy: 88, 120, 161, 269, 290, 313, and 335 days. We fixed the uteroplacental tissues in 4% paraformaldehyde and obtained serial sections that were subsequently stained for analysis. All four isoforms of ActR were expressed in t...
Long-term expansion of primary equine keratinocytes that maintain the ability to differentiate into stratified epidermis.
Stem cell research & therapy    July 4, 2018   Volume 9, Issue 1 181 doi: 10.1186/s13287-018-0918-x
Alkhilaiwi F, Wang L, Zhou D, Raudsepp T, Ghosh S, Paul S, Palechor-Ceron N, Brandt S, Luff J, Liu X, Schlegel R, Yuan H.Skin injuries in horses frequently lead to chronic wounds that lack a keratinocyte cover essential for healing. The limited proliferation of equine keratinocytes using current protocols has limited their use for regenerative medicine. Previously, equine induced pluripotent stem cells (eiPSCs) have been produced, and eiPSCs could be differentiated into equine keratinocytes suitable for stem cell-based skin constructs. However, the procedure is technically challenging and time-consuming. The present study was designed to evaluate whether conditional reprogramming (CR) could expand primary equine...
Equine mesenchymal stromal cells from different tissue sources display comparable immune-related gene expression profiles in response to interferon gamma (IFN)-γ.
Veterinary immunology and immunopathology    June 11, 2018   Volume 202 25-30 doi: 10.1016/j.vetimm.2018.06.008
Cassano JM, Fortier LA, Hicks RB, Harman RM, Van de Walle GR.Mesenchymal stromal cells (MSC) have the therapeutic potential to decrease inflammation due to their immunomodulatory properties. They can be isolated from various tissue sources such as bone marrow, adipose tissue, and blood, but it is unknown how the tissue source of origin affects the responses of MSC to inflammatory stimuli. Here, we conceptually addressed this question by evaluating the immune-related gene expression profiles of equine MSC from different tissue sources in response to interferon gamma (IFN-γ) stimulation, with the goal to determine if there is a preferable MSC source for ...
Self-Complementary Adeno-Associated Virus-Mediated Interleukin-1 Receptor Antagonist Gene Delivery for the Treatment of Osteoarthritis: Test of Efficacy in an Equine Model.
Human gene therapy. Clinical development    June 6, 2018   Volume 29, Issue 2 101-112 doi: 10.1089/humc.2017.143
Watson Levings RS, Smith AD, Broome TA, Rice BL, Gibbs EP, Myara DA, Hyddmark EV, Nasri E, Zarezadeh A, Levings PP, Lu Y, White ME, Dacanay EA....The authors are investigating self-complementary adeno-associated virus (scAAV) as a vector for intra-articular gene-delivery of interleukin-1 receptor antagonist (IL-1Ra), and its therapeutic capacity in the treatment of osteoarthritis (OA). To model gene transfer on a scale proportional to the human knee, a frequent site of OA incidence, studies were focused on the joints of the equine forelimb. Using AAV2.5 capsid and equine IL-1Ra as a homologous transgene, a functional ceiling dose of ∼5 × 10 viral genomes was previously identified, which elevated the steady state levels of eqIL-1R...
Development of an immunochromatographic assay for the β-adrenergic agonist feed additive zilpaterol.
Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment    June 6, 2018   Volume 35, Issue 8 1519-1529 doi: 10.1080/19440049.2018.1463568
Shelver WL, Smith DJ.Zilpaterol is a β-adrenergic agonist feed additive approved in the United States to increase weight gain and improve feed efficiency of cattle. A zilpaterol immunochromatographic assay was developed as an economical and user-friendly rapid detection method for zilpaterol and validated using urine and tissue samples derived from animal studies. The assay sensitivity was 1.7-23.2 ng g or mL across a variety of feed and animal matrices and did not cross-react with clenbuterol or ractopamine. No sample pre-treatment of cattle and sheep urine was needed, but horse urine and feed required dilution;...
Xenogenic Implantation of Equine Synovial Fluid-Derived Mesenchymal Stem Cells Leads to Articular Cartilage Regeneration.
Stem cells international    June 6, 2018   Volume 2018 1073705 doi: 10.1155/2018/1073705
Zayed M, Newby S, Misk N, Donnell R, Dhar M.Horses are widely used as large animal preclinical models for cartilage repair studies, and hence, there is an interest in using equine synovial fluid-derived mesenchymal stem cells (SFMSCs) in research and clinical applications. Since, we have previously reported that similar to bone marrow-derived MSCs (BMMSCs), SFMSCs may also exhibit donor-to-donor variations in their stem cell properties; the current study was carried out as a proof-of-concept study, to compare the in vivo potential of equine BMMSCs and SFMSCs in articular cartilage repair. MSCs from these two sources were isolated from t...
Effects of three-dimensional spheroid culture on equine mesenchymal stem cell plasticity.
Veterinary research communications    May 2, 2018   Volume 42, Issue 3 171-181 doi: 10.1007/s11259-018-9720-6
Park MJ, Lee J, Byeon JS, Jeong DU, Gu NY, Cho IS, Cha SH.Mesenchymal stem cells (MSCs) are useful candidates for tissue engineering and cell therapy fields. We optimize culture conditions of equine adipose tissue-derived MSCs (eAD-MSCs) for treatment of horse fractures. To investigate enhancing properties of three-dimensional (3D) culture system in eAD-MSCs, we performed various sized spheroid formation and determined changes in gene expression levels to obtain different sized spheroid for cell therapy. eAD-MSCs were successfully isolated from horse tailhead. Using hanging drop method, spheroid formation was generated for three days. Quantitative re...
Structural Model for Viscoelastic Properties of Pericardial Bioprosthetic Valves.
Artificial organs    March 30, 2018   Volume 42, Issue 6 630-639 doi: 10.1111/aor.13095
Rassoli A, Fatouraee N, Guidoin R.The benefit of bioprosthetic aortic valve over mechanical valve replacements is the release of thromboembolism and digression of long-term anticoagulation treatment. The function of bioprostheses and their efficiency is known to depend on the mechanical properties of the leaflet tissue. So it is necessary to select a suitable tissue for the bioprosthesis. The purpose of the present study is to clarify the viscoelastic behavior of bovine, equine, and porcine pericardium. In this study, pericardiums were compared mechanically from the viscoelastic aspect. After fixation of the tissues in glutara...
Culture of mesenchymal stem cells derived from equine synovial membrane in alginate hydrogel microcapsules.
BMC veterinary research    March 27, 2018   Volume 14, Issue 1 114 doi: 10.1186/s12917-018-1425-0
Santos VH, Pfeifer JPH, de Souza JB, Milani BHG, de Oliveira RA, Assis MG, Deffune E, Moroz A, Alves ALG.Mesenchymal stem cells derived from the synovial membrane (MSCSM) have a greater potential for joint regeneration, besides the capacity for chondrogenic differentiation, since they are a source closer to the chondrocytes. This study aimed to cultivate and evaluate viability and differentiation of MSC encapsulated in a three-dimensional alginate hydrogel (HA) scaffold. Samples of the synovial membrane of the metatarsophalangeal joint of 4 horses were collected by astroscopic surgery. These were subjected to enzymatic digestion, isolated mesenchymal cells, cultured in monolayers and encapsulated...
Concepts and challenges in the use of mesenchymal stem cells as a treatment for cartilage damage in the horse.
Research in veterinary science    March 20, 2018   Volume 118 317-323 doi: 10.1016/j.rvsc.2018.03.011
Zayed M, Adair S, Ursini T, Schumacher J, Misk N, Dhar M.Osteoarthritis (OA), the most common form of joint disease affecting humans and horses, is characterized by the advance and decline of cartilage and loss of function of the affected joint. The progression of OA is steadily accompanied with biochemical events, which interfere with the cytokines and proteolytic enzymes responsible for progress of the disease. Recently, regenerative therapies have been used with an assumption that mesenchymal stem cells (MSCs) possess the potential to prevent the advancement of cartilage damage and potentially regenerate the injured tissue with an ultimate goal o...
Polymer-mineral scaffold augments in vivo equine multipotent stromal cell osteogenesis.
Stem cell research & therapy    March 9, 2018   Volume 9, Issue 1 60 doi: 10.1186/s13287-018-0790-8
Duan W, Chen C, Haque M, Hayes D, Lopez MJ.Use of bioscaffolds to direct osteogenic differentiation of adult multipotent stromal cells (MSCs) without exogenous proteins is a contemporary approach to bone regeneration. Identification of in vivo osteogenic contributions of exogenous MSCs on bioscaffolds after long-term implantation is vital to understanding cell persistence and effect duration. This study was designed to quantify in vivo equine MSC osteogenesis on synthetic polymer scaffolds with distinct mineral combinations 9 weeks after implantation in a murine model. Cryopreserved, passage (P)1, equine bone marrow-derived MSCs (BMSC)...
Evaluation of the mucosal inflammatory responses to equine cyathostomins in response to anthelmintic treatment.
Veterinary immunology and immunopathology    March 6, 2018   Volume 199 1-7 doi: 10.1016/j.vetimm.2018.02.011
Steuer AE, Loynachan AT, Nielsen MK.Members of Cyathostominae are pervasive parasites of equids that can cause larval cyathostominosis, a potentially life-threatening disease that occurs when a multitude of encysted larvae synchronously excyst from the wall of the large intestine. Moxidectin and fenbendazole are the two current labeled drugs that target the encysted larval stages; however, there is limited knowledge of the local inflammatory response to the larvae and to the two treatments in clinically healthy horses. This study is the first to evaluate the local inflammatory response to cyathostomin larvae and to larvicidal tr...
Progenitor cells in auricular cartilage demonstrate cartilage-forming capacity in 3D hydrogel culture.
European cells & materials    February 27, 2018   Volume 35 132-150 doi: 10.22203/eCM.v035a10
Otto IA, Levato R, Webb WR, Khan IM, Breugem CC, Malda J.Paramount for the generation of auricular structures of clinically-relevant size is the acquisition of a large number of cells maintaining an elastic cartilage phenotype, which is the key in producing a tissue capable of withstanding forces subjected to the auricle. Current regenerative medicine strategies utilize chondrocytes from various locations or mesenchymal stromal cells (MSCs). However, the quality of neo-tissues resulting from these cell types is inadequate due to inefficient chondrogenic differentiation and endochondral ossification, respectively. Recently, a subpopulation of stem/pr...
Bone marrow mesenchymal stem cells as nuclear donors improve viability and health of cloned horses.
Stem cells and cloning : advances and applications    February 14, 2018   Volume 11 13-22 doi: 10.2147/SCCAA.S151763
Olivera R, Moro LN, Jordan R, Pallarols N, Guglielminetti A, Luzzani C, Miriuka SG, Vichera G.Cell plasticity is crucial in cloning to allow an efficient nuclear reprogramming and healthy offspring. Hence, cells with high plasticity, such as multipotent mesenchymal stem cells (MSCs), may be a promising alternative for horse cloning. In this study, we evaluated the use of bone marrow-MSCs (BM-MSCs) as nuclear donors in horse cloning, and we compared the in vitro and in vivo embryo development with respect to fibroblasts. Methods: Zona-free nuclear transfer was performed using BM-MSCs (MSC group, n=3432) or adult fibroblasts (AF group, n=4527). Embryos produced by artificial insemination...
Chondrogenic Differentiation of Defined Equine Mesenchymal Stem Cells Derived from Umbilical Cord Blood for Use in Cartilage Repair Therapy.
International journal of molecular sciences    February 10, 2018   Volume 19, Issue 2 537 doi: 10.3390/ijms19020537
Desancé M, Contentin R, Bertoni L, Gomez-Leduc T, Branly T, Jacquet S, Betsch JM, Batho A, Legendre F, Audigié F, Galéra P, Demoor M.Cartilage engineering is a new strategy for the treatment of cartilage damage due to osteoarthritis or trauma in humans. Racehorses are exposed to the same type of cartilage damage and the anatomical, cellular, and biochemical properties of their cartilage are comparable to those of human cartilage, making the horse an excellent model for the development of cartilage engineering. Human mesenchymal stem cells (MSCs) differentiated into chondrocytes with chondrogenic factors in a biomaterial appears to be a promising therapeutic approach for direct implantation and cartilage repair. Here, we cha...
Equine glucagon-like peptide-1 receptor physiology.
PeerJ    January 29, 2018   Volume 6 e4316 doi: 10.7717/peerj.4316
Kheder MH, Bailey SR, Dudley KJ, Sillence MN, de Laat MA.Equine metabolic syndrome (EMS) is associated with insulin dysregulation, which often manifests as post-prandial hyperinsulinemia. Circulating concentrations of the incretin hormone, glucagon-like peptide-1 (GLP-1) correlate with an increased insulin response to carbohydrate intake in animals with EMS. However, little is known about the equine GLP-1 receptor (eGLP-1R), or whether GLP-1 concentrations can be manipulated. The objectives were to determine (1) the tissue localisation of the eGLP-1R, (2) the GLP-1 secretory capacity of equine intestine in response to glucose and (3) whether GLP-1 s...
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