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Topic:Regeneration

Regeneration in horses refers to the biological processes by which horses repair or replace damaged tissues and organs. These processes involve a range of cellular activities, including cell proliferation, differentiation, and tissue remodeling. Regeneration can occur in various tissues, such as skin, muscle, and bone, and is influenced by factors like age, health status, and the extent of injury. In equine research, understanding the mechanisms and limitations of regeneration is important for developing therapeutic strategies to enhance recovery from injuries. This page compiles peer-reviewed research studies and scholarly articles that investigate the cellular and molecular mechanisms underlying regenerative processes in horses, as well as their implications for equine health and rehabilitation.
Optimization of the Amplification of Equine Muscle-Derived Mesenchymal Stromal Cells in a Hollow-Fiber Bioreactor.
Methods and protocols    April 2, 2024   Volume 7, Issue 2 32 doi: 10.3390/mps7020032
Duysens J, Graide H, Niesten A, Mouithys-Mickalad A, Ceusters J, Serteyn D.The main causes of mortality in horses are the gastrointestinal pathologies associated with septic shock. Stem cells have shown, through systemic injection, a capacity to decrease inflammation and to regenerate injured tissue faster. Nevertheless, to achieve this rapid and total regeneration, systemic injections of 1 to 2 million cells per kilogram of body weight must be considered. Here, we demonstrate for the first time the feasibility and expansion capacity of equine muscle-derived mesenchymal stromal cells (mdMSCs) in a functionally closed, automated, perfusion-based, hollow-fiber bioreact...
Equine Embryonic Stem Cell-Derived Tenocytes are Insensitive to a Combination of Inflammatory Cytokines and Have Distinct Molecular Responses Compared to Primary Tenocytes.
Stem cell reviews and reports    February 24, 2024   doi: 10.1007/s12015-024-10693-8
Smith EJ, Beaumont RE, Dudhia J, Guest DJ.Tissue fibrosis following tendon injury is a major clinical problem due to the increased risk of re-injury and limited treatment options; however, its mechanism remains unclear. Evidence suggests that insufficient resolution of inflammation contributes to fibrotic healing by disrupting tenocyte activity, with the NF-κB pathway being identified as a potential mediator. Equine embryonic stem cell (ESC) derived tenocytes may offer a potential cell-based therapy to improve tendon regeneration, but how they respond to an inflammatory environment is largely unknown. Our findings reveal for the firs...
Treatment of Equine Tarsus Long Medial Collateral Ligament Desmitis with Allogenic Synovial Membrane Mesenchymal Stem/Stromal Cells Enhanced by Umbilical Cord Mesenchymal Stem/Stromal Cell-Derived Conditioned Medium: Proof of Concept.
Animals : an open access journal from MDPI    January 24, 2024   Volume 14, Issue 3 doi: 10.3390/ani14030370
Leal Reis I, Lopes B, Sousa P, Sousa AC, Branquinho MV, Caseiro AR, Rêma A, Briote I, Mendonça CM, Santos JM, Atayde LM, Alvites RD, Maurício AC.Horses are high-performance athletes prone to sportive injuries such as tendonitis and desmitis. The formation of fibrous tissue in tendon repair remains a challenge to overcome. This impels regenerative medicine to develop innovative therapies that enhance regeneration, retrieving original tissue properties. Multipotent Mesenchymal Stem/Stromal Cells (MSCs) have been successfully used to develop therapeutic products, as they secrete a variety of bioactive molecules that play a pivotal role in tissue regeneration. These factors are released in culture media for producing a conditioned medium (...
Advanced platelet-rich fibrin promotes healing of induced corneal ulcer in donkeys (Equus asinus).
Scientific reports    December 9, 2023   Volume 13, Issue 1 21824 doi: 10.1038/s41598-023-48933-5
Hosny OH, Abd-Elkareem M, Ali MM, Ahmed AF.Ulcerative keratitis is a common disease in horses which may cause blindness. To prevent secondary bacterial and fungal infections and promote quick re-growth of the epithelial layer, different treatment approaches have been employed. This study aimed to examine the effects of advanced platelet-rich fibrin (A-PRF) gel on the healing process of experimentally induced corneal ulcers in donkeys. Nine healthy adult donkeys were used for the study. The donkeys were divided into two groups: the control group, where no medication was applied to the corneal ulcer, and the A-PRF gel group, where A-PRF ...
Regenerative Medicine Applied to Musculoskeletal Diseases in Equines: A Systematic Review.
Veterinary sciences    November 23, 2023   Volume 10, Issue 12 doi: 10.3390/vetsci10120666
Pérez Fraile A, González-Cubero E, Martínez-Flórez S, Olivera ER, Villar-Suárez V.Musculoskeletal injuries in horses have a great economic impact, predominantly affecting tendons, ligaments, and cartilage, which have limited natural regeneration. Cell therapy, which uses mesenchymal stem cells due to their tissue differentiation properties and anti-inflammatory and immunoregulatory effects, aims to restore damaged tissue. In this manuscript, we performed a systematic review using the Parsifal tool, searching the PubMed and Web of Science databases for articles on regenerative medicine for equine musculoskeletal injuries. Our review covers 17 experimental clinical studies ca...
Myosin heavy-chain myopathy in 2 American quarter horses.
Veterinary pathology    October 11, 2023   Volume 61, Issue 3 462-467 doi: 10.1177/03009858231204253
Faccin M, Landsgaard KA, Milliron SM, Jennings AH, Keith Chaffin M, Giaretta PR, Rech RR.A 1.5-year-old American quarter horse gelding (case 1) and an 11-month-old American quarter horse filly (case 2) were presented for acute onset pelvic lameness and lethargy. Case 1 had nasal discharge, while case 2 developed rapid muscle atrophy. Both horses had elevated serum creatine kinase activity. The horses showed similar polyphasic histiocytic and lymphoplasmacytic myositis with necrosis, mineralization, and regeneration. Additionally, case 1 had Streptococcus equi subsp. equi-induced suppurative retropharyngeal lymphadenitis with renal purpura hemorrhagica and myoglobinuric nephropathy...
The bony cap and its distinction from the distal phalanx in humans, cats, and horses.
PeerJ    January 10, 2023   Volume 11 e14352 doi: 10.7717/peerj.14352
Smith S, Yohe LR, Solounias N.It has been recognized as early as the Victorian era that the apex of the distal phalanx has a distinct embryological development from the main shaft of the distal phalanx. Recent studies in regenerative medicine have placed an emphasis on the role of the apex of the distal phalanx in bone regrowth. Despite knowledge about the unique aspects of the distal phalanx, all phalanges are often treated as equivalent. Our morphological study reiterates and highlights the special anatomical and embryological properties of the apex of the distal phalanx, and names the apex "the bony cap" to distinguish ...
Osteochondral regeneration of the femoral medial condyle by using a scaffold-free 3D construct of synovial membrane-derived mesenchymal stem cells in horses.
BMC veterinary research    January 22, 2022   Volume 18, Issue 1 53 doi: 10.1186/s12917-021-03126-y
Murata D, Ishikawa S, Sunaga T, Saito Y, Sogawa T, Nakayama K, Hobo S, Hatazoe T.Medical interventions for subchondral bone cysts in horses have been extensively studied. This study investigated the regeneration of articular cartilage and subchondral bone with scaffold-free three-dimensional (3D) constructs of equine synovial membrane-derived mesenchymal stem cells (SM-MSCs) isolated from three ponies and expanded until over 1.0 × 10 cells at passage 2 (P2). Results: SM-MSCs were strongly positive for CD11a/CD18, CD44, and major histocompatibility complex (MHC) class I; moderately positive for CD90, CD105, and MHC class II; and negative for CD34 and CD45 on flow cytom...
Extracorporeal Shock Wave Therapy Enhances the In Vitro Metabolic Activity and Differentiation of Equine Umbilical Cord Blood Mesenchymal Stromal Cells.
Frontiers in veterinary science    December 4, 2020   Volume 7 554306 doi: 10.3389/fvets.2020.554306
Salcedo-Jiménez R, Koenig JB, Lee OJ, Gibson TWG, Madan P, Koch TG.Extracorporeal shock wave therapy (ESWT) has been shown to induce different biological effects on a variety of cells, including regulation and stimulation of their function and metabolism. ESWT can promote different biological responses such as proliferation, migration, and regenerations of cells. Recent studies have shown that mesenchymal stromal cells (MSCs) secrete factors that enhance the regeneration of tissues, stimulate proliferation and differentiation of cells, and decrease inflammatory and immune reactions. Clinically, the combination of these two therapies has been used as a treatme...
Publisher Correction: Differences in the intrinsic chondrogenic potential of equine umbilical cord matrix and cord blood mesenchymal stromal/stem cells for cartilage regeneration.
Scientific reports    July 21, 2020   Volume 10, Issue 1 12075 doi: 10.1038/s41598-020-69170-0
Rakic R, Bourdon B, Demoor M, Maddens S, Saulnier N, Galéra P.An amendment to this paper has been published and can be accessed via a link at the top of the paper.
Transforming Growth Factor Beta 3-Loaded Decellularized Equine Tendon Matrix for Orthopedic Tissue Engineering.
International journal of molecular sciences    November 3, 2019   Volume 20, Issue 21 5474 doi: 10.3390/ijms20215474
Roth SP, Brehm W, Groß C, Scheibe P, Schubert S, Burk J.Transforming growth factor beta 3 (TGFβ3) promotes tenogenic differentiation and may enhance tendon regeneration in vivo. This study aimed to apply TGFβ3 absorbed in decellularized equine superficial digital flexor tendon scaffolds, and to investigate the bioactivity of scaffold-associated TGFβ3 in an in vitro model. TGFβ3 could effectively be loaded onto tendon scaffolds so that at least 88% of the applied TGFβ3 were not detected in the rinsing fluid of the TGFβ3-loaded scaffolds. Equine adipose tissue-derived multipotent mesenchymal stromal cells (MSC) were then seeded on scaffolds loa...
How do GTR and GBR Differ? A Periodontitis Case Treated Using an Equine-derived, Enzyme-deantigenic, Collagenpreserving Bone Graft, and Collagen Membranes.
The journal of contemporary dental practice    May 1, 2019   Volume 20, Issue 5 639-644 
Tizzoni R, Tizzoni M.The present case illustrates how a tooth, which had a highly questionable prognosis, was preserved by carrying out a periodontal regeneration surgery. Background: Treatment of periodontitis involves a careful consideration of all the factors that may allow the achievement of a favorable outcome; among those, the skillful use of guided tissue regeneration (GTR) membranes is of paramount importance. Methods: A 39-year-old patient presented with a mobile central upper incisor due to severe periodontitis and was treated according to GTR principles using a collagen membrane. A collagen-preserving b...
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...
A Novel Model for Acute Peripheral Nerve Injury in the Horse and Evaluation of the Effect of Mesenchymal Stromal Cells Applied In Situ on Nerve Regeneration: A Preliminary Study.
Frontiers in veterinary science    September 15, 2016   Volume 3 80 doi: 10.3389/fvets.2016.00080
Cruz Villagrán C, Schumacher J, Donnell R, Dhar MS.Transplantation of mesenchymal stromal cells (MSCs) to sites of experimentally created nerve injury in laboratory animals has shown promising results in restoring nerve function. This approach for nerve regeneration has not been reported in horses. In this study, we first evaluated the ability of equine bone marrow-derived MSCs (EBM-MSCs) to trans-differentiate into Schwann-like cells and subsequently tested the MSCs for their potential to regenerate a transected nerve after implantation. The EBM-MSCs from three equine donors were differentiated into SCLs for 7 days, , in the presence of s...
A concise review of common animal models for the study of limb regeneration.
Organogenesis    July 8, 2016   Volume 12, Issue 3 109-118 doi: 10.1080/15476278.2016.1205775
Farah Z, Fan H, Liu Z, He JQ.Correct selection of an appropriate animal mode to closely mimic human extremity diseases or to exhibit desirable phenotypes of limb regeneration is the first critical step for all scientists in biomedical and regenerative researches. The commonly-used animals in limb regeneration and repairing studies, such as axolotl, mice, and rats, are discussed in the review and other models including cockroaches, dogs, and horses are also mentioned. The review weighs the general advantages, disadvantages, and precedent uses of each model in the context of limb and peripheral injury and subsequent regener...
Assessment of regeneration in meniscal lesions by use of mesenchymal stem cells derived from equine bone marrow and adipose tissue.
American journal of veterinary research    June 28, 2016   Volume 77, Issue 7 779-788 doi: 10.2460/ajvr.77.7.779
González-Fernández ML, Pérez-Castrillo S, Sánchez-Lázaro JA, Prieto-Fernández JG, López-González ME, Lobato-Pérez S, Colaço BJ, Olivera ER....OBJECTIVE To assess the ability to regenerate an equine meniscus by use of a collagen repair patch (scaffold) seeded with mesenchymal stem cells (MSCs) derived from bone marrow (BM) or adipose tissue (AT). SAMPLE 6 female Hispano-Breton horses between 4 and 7 years of age; MSCs from BM and AT were obtained for the in vitro experiment, and the horses were subsequently used for the in vivo experiment. PROCEDURES Similarities and differences between MSCs derived from BM or AT were investigated in vitro by use of cell culture. In vivo assessment involved use of a meniscus defect and implantation o...
Generation of Equine-Induced Pluripotent Stem Cells and Analysis of Their Therapeutic Potential for Muscle Injuries.
Cell transplantation    May 27, 2016   Volume 25, Issue 11 2003-2016 doi: 10.3727/096368916X691691
Lee EM, Kim AY, Lee EJ, Park JK, Park SI, Cho SG, Kim HK, Kim SY, Jeong KS.Horse health has become a major concern with the expansion of horse-related industries and sports; the importance of healthy muscles for horse performance and daily activities is undisputed. Here we generated equine-induced pluripotent stem cells (E-iPSCs) by reprogramming equine adipose-derived stem cells (E-ADSCs) into iPSCs using a polycistronic lentiviral vector encoding four transcription factors (i.e., Oct4, Sox2, Klf4, and c-Myc) and then examined their pluripotent characteristics. Subsequently, established E-iPSCs were transplanted into muscle-injured Rag/ mdx mice. The histopathology ...
Efficient transduction of equine adipose-derived mesenchymal stem cells by VSV-G pseudotyped lentiviral vectors.
Research in veterinary science    October 6, 2014   Volume 97, Issue 3 616-622 doi: 10.1016/j.rvsc.2014.09.004
Petersen GF, Hilbert B, Trope G, Kalle W, Strappe P.Equine adipose-derived mesenchymal stem cells (EADMSC) provide a unique cell-based approach for treatment of a variety of equine musculoskeletal injuries, via regeneration of diseased or damaged tissue, or the secretion of immunomodulatory molecules. These capabilities can be further enhanced by genetic modification using lentiviral vectors, which provide a safe and efficient method of gene delivery. We investigated the suitability of lentiviral vector technology for gene delivery into EADMSC, using GFP expressing lentiviral vectors pseudotyped with the G glycoprotein from the vesicular stomat...
Equine autologous platelet concentrates: A comparative study between different available systems.
Equine veterinary journal    June 11, 2014   Volume 47, Issue 3 319-325 doi: 10.1111/evj.12288
Hessel LN, Bosch G, van Weeren PR, Ionita JC.Autologous platelet concentrates (APCs) are being used increasingly in horses to enhance regeneration in tissues that have poor natural healing capabilities. Numerous APC systems, which are based on different preparation techniques and were originally developed for human patients, are now routinely used in equine cases. However, preliminary process validation and adequate in vitro biochemical characterisation of most of these systems do not exist for horses. Objective: To compare haematological findings and growth factor concentrations of equine APCs obtained with 4 commercially available syst...
Bone morphogenetic protein-12 induces tenogenic differentiation of mesenchymal stem cells derived from equine amniotic fluid.
Cells, tissues, organs    March 21, 2014   Volume 198, Issue 5 377-389 doi: 10.1159/000358231
Gulati BR, Kumar R, Mohanty N, Kumar P, Somasundaram RK, Yadav PS.Tendon injuries are common in race horses, and mesenchymal stem cells (MSCs) isolated from adult and foetal tissue have been used for tendon regeneration. In the present study, we evaluated equine amniotic fluid (AF) as a source of MSCs and standardised methodology and markers for their in vitro tenogenic differentiation. Plastic-adherent colonies were isolated from 12 of 20 AF samples by day 6 after seeding and 70-80% cell confluency was reached by day 17. These cells expressed mesenchymal surface markers [cluster of differentiation (CD)73, CD90 and CD105] by reverse transcription (RT)-polyme...
Transferrin receptor expression in serum exosomes as a marker of regenerative anaemia in the horse.
Equine veterinary journal    March 13, 2014   Volume 47, Issue 1 101-106 doi: 10.1111/evj.12235
Rout ED, Webb TL, Laurence HM, Long L, Olver CS.Evaluation of erythrocyte regeneration in horses is challenging, as they do not release reticulocytes into the peripheral blood. This study investigated transferrin receptor 1 (TfR1) expression in exosomes as a noninvasive method of characterising the regenerative response in anaemic horses. Objective: To quantify TfR1 in ultraprecipitate of serum in horses before and after phlebotomy-induced anaemia, and to identify exosomes as the source of TfR1. The hypothesis was that serum exosomal TfR1 expression would increase during a regenerative response. Methods: Experimental model of anaemia. Metho...
Successful implantation of a decellularized equine pericardial patch into the systemic circulation.
Medical science monitor basic research    January 10, 2014   Volume 20 1-8 doi: 10.12659/MSMBR.889915
Dohmen PM, da Costa F, Lopes SV, Vilani R, Bloch O, Konertz W.In the past, successful use of decellularized xenogenic tissue was shown in the pulmonary circulation. This study, however, evaluates a newly developed decellularized equine pericardial patch under high pressure circumstances. Methods: Seven decellularized equine pericardial scaffolds were implanted into the descending aorta of the juvenile sheep. The implanted patches were oversized to evaluate the durability of the decellularized tissue under high surface tension (Law of Laplace). After 4 months of implantation, all decellularized patches were inspected by gross examination, light microscopy...
In vivo osteoinductivity of gelatin β-tri-calcium phosphate sponge and bone morphogenetic protein-2 on an equine third metacarpal bone defect.
Research in veterinary science    January 24, 2012   Volume 93, Issue 2 1021-1025 doi: 10.1016/j.rvsc.2011.12.002
Tsuzuki N, Otsuka K, Seo J, Yamada K, Haneda S, Furuoka H, Tabata Y, Sasaki N.This study evaluated the therapeutic effects of a gelatin-β-TCP sponge (sponge) incorporating BMP-2 (BMP-2/sponge) on bone regeneration in equines. Six bone defects were created in third metacarpals of five thoroughbred horses, and a total of six treatments were applied in a randomized manner. The treatments were BMP-2/sponge, BMP-2/gelatin hydrogel sheet (sheet), free BMP-2, bFGF/sheet, plain sponge, and plain sheet. The defects were monitored for 16 weeks by radiography and then examined by histological analysis. Radiographic evaluation scores of bone regeneration revealed significantly gre...
Mesenchymal stem cells: characteristics, sources, and mechanisms of action.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 243-261 doi: 10.1016/j.cveq.2011.06.004
Stewart MC, Stewart AA.This article provides an overview of mesenchymal stem cell (MSC) biology. In the first section, the characteristics that are routinely used to define MSCs-adherence, proliferation, multi-lineage potential, and "cluster of differentiation" marker profiles-are discussed. In the second section, the major tissues and body fluids that are used as sources for equine MSCs are presented, along with the comparative biologic activities of MSCs from specific locations. Finally, the current understanding of the mechanisms by which MSCs influence repair and regeneration are discussed, with an emphasis on t...
Fetal derived embryonic-like stem cells improve healing in a large animal flexor tendonitis model.
Stem cell research & therapy    January 27, 2011   Volume 2, Issue 1 4 doi: 10.1186/scrt45
Watts AE, Yeager AE, Kopyov OV, Nixon AJ.Tendon injury is a common problem in athletes, with poor tissue regeneration and a high rate of re-injury. Stem cell therapy is an attractive treatment modality as it may induce tissue regeneration rather than tissue repair. Currently, there are no reports on the use of pluripotent cells in a large animal tendon model in vivo. We report the use of intra-lesional injection of male, fetal derived embryonic-like stem cells (fdESC) that express Oct-4, Nanog, SSEA4, Tra 1-60, Tra 1-81 and telomerase. Methods: Tendon injury was induced using a collagenase gel-physical defect model in the mid-metacar...
Tissue engineering in wound repair: the three “R”s–repair, replace, regenerate.
Veterinary surgery : VS    December 19, 2009   Volume 38, Issue 8 905-913 doi: 10.1111/j.1532-950X.2009.00585.x
Theoret C.Horses are predisposed to traumatic wounds that can be labor intensive and expensive to manage. Skin has a considerable potential for efficient and functional repair however, while cutaneous repair is a regenerative process in the fetus, this capability declines in late gestation as inflammation and scarring alter the outcome of healing. The historical gold standard for replacement of lost skin is the autologous skin graft. However, the horse's lack of redundant donor skin limits the practicality of full-thickness grafting to smaller wounds; moreover, graft failure is relatively common in equi...
Mesenchymal stem cell therapy in equine musculoskeletal disease: scientific fact or clinical fiction?
Equine veterinary journal    March 24, 2007   Volume 39, Issue 2 172-180 doi: 10.2746/042516407x180868
Taylor SE, Smith RK, Clegg PD.The goal in the therapeutic use of mesenchymal stem cells (MSCs) in musculoskeletal disease is to harness the regenerative nature of these cells focussing on their potential to grow new tissues and organs to replace damaged or diseased tissue. Laboratory isolation of MSCs is now well established and has recently been demonstrated for equine MSCs. Stem cell science has attracted considerable interest in both the scientific and clinical communities because of its potential to regenerate tissues. Research into the use of MSCs in tissue regeneration in general reflects human medical needs, however...
In vitro model of equine muscle regeneration.
Equine veterinary journal    October 19, 2000   Volume 32, Issue 5 401-405 doi: 10.2746/042516400777591020
Byrne KM, Vierck J, Dodson MV.Equine satellite cells are responsible for muscle healing and regeneration in the mature horse. We describe the in vitro cell culture conditions required for clonal populations of equine satellite cells to undergo both proliferation and differentiation. Our hypothesis is that these in vitro conditions model regeneration of muscle and can be used to evaluate potential therapeutics. In this study, 2 areas of satellite cell response were tested: proliferation of clones induced by growth factors, and fusion induced by culture conditions. Equine satellite cell clones showed differences in their res...
Bone marrow response to large volume blood collection in the horse.
Research in veterinary science    December 23, 1999   Volume 67, Issue 3 285-293 doi: 10.1053/rvsc.1999.0323
Malikides N, Kessell A, Hodgson JL, Rose RJ, Hodgson DR.Evaluation of erythropoietic regeneration in horses is difficult unless serial bone marrow aspirates are performed. To investigate the acute and chronic erythropoietic regenerative response of equine bone marrow following acute removal or loss of blood, sequential bone marrow aspirates over 4 weeks were taken from the sternum of five horses from which 20 ml kg(-1)of blood had been removed. We found that the total number of erythroid cells counted (expressed as a percentage of the total number of erythroid and myeloid cells counted) expanded initially by 13.7 per cent within 3 days after blood ...
[Histological observations on regenerative processes in the horse liver following damage by infection].
Doklady Akademii nauk SSSR    November 21, 1951   Volume 81, Issue 3 465-468 
KATSNEL'SON ZS, CHERNIAK VZ, ROZHNOV DI.No abstract available