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Topic:Stem Cells

Stem cells in horses refer to undifferentiated cells capable of self-renewal and differentiation into specialized cell types. These cells are primarily utilized in regenerative medicine and therapeutic applications to repair or replace damaged tissues in equine patients. Common sources of stem cells in horses include bone marrow, adipose tissue, and umbilical cord blood. Research in equine stem cell therapy focuses on understanding their potential to treat musculoskeletal injuries, such as tendon and ligament damage, and exploring their mechanisms of action. This page compiles peer-reviewed research studies and scholarly articles that examine the isolation, characterization, and therapeutic applications of stem cells in equine medicine.
The comparison of equine articular cartilage progenitor cells and bone marrow-derived stromal cells as potential cell sources for cartilage repair in the horse.
Veterinary journal (London, England : 1997)    October 2, 2011   Volume 192, Issue 3 345-351 doi: 10.1016/j.tvjl.2011.08.036
McCarthy HE, Bara JJ, Brakspear K, Singhrao SK, Archer CW.A chondrocyte progenitor population isolated from the surface zone of articular cartilage presents a promising cell source for cell-based cartilage repair. In this study, equine articular cartilage progenitor cells (ACPCs) and equine bone marrow-derived stromal cells (BMSCs) were compared as potential cell sources for repair. Clonally derived BMSCs and ACPCs demonstrated expression of the cell fate selector gene, Notch-1, and the putative stem cell markers STRO-1, CD90 and CD166. Chondrogenic induction revealed positive labelling for collagen type II and aggrecan. Collagen type X was not detec...
Characterization and potential applications of progenitor-like cells isolated from horse amniotic membrane.
Journal of tissue engineering and regenerative medicine    September 22, 2011   Volume 6, Issue 8 622-635 doi: 10.1002/term.465
Lange-Consiglio A, Corradetti B, Bizzaro D, Magatti M, Ressel L, Tassan S, Parolini O, Cremonesi F.The aim of this work was to isolate, for the first time, progenitor-like cells from the epithelial (AECs) and mesenchymal (AMCs) portions of the horse amniotic membrane, and to define the biological properties of these cells. AECs displayed polygonal epithelial morphology, while AMCs were fibroblast-like. Usually, six to eight passages were reached before proliferation decreased, with 13.08 and 26.5 cell population doublings attained after 31 days for AECs and AMCs, respectively. Immunocytochemical studies performed at passage 3 (P3) showed that both cell populations were positive for the expr...
Comments on Torricelli et al.: regenerative medicine for the treatment of musculoskeletal overuse injuries in competition horses.
International orthopaedics    September 13, 2011   Volume 35, Issue 11 1745-1748 doi: 10.1007/s00264-011-1311-x
Carmona JU, López C.No abstract available
Isolation and characterization of equine amnion mesenchymal stem cells.
Cell biology international reports    September 13, 2011   Volume 18, Issue 1 e00011 doi: 10.1042/CBR20110004
Coli A, Nocchi F, Lamanna R, Iorio M, Lapi S, Urciuoli P, Scatena F, Giannessi E, Stornelli MR, Passeri S.The amnion is a particular tissue whose cells show features of multipotent stem cells proposed for use in cellular therapy and regenerative medicine. From equine amnion collected after the foal birth we have isolated MSCs (mesenchymal stem cells), namely EAMSCs (equine amnion mesenchymal stem cells), from the mesoblastic layer. The cells were grown in α-MEM (α-modified minimum essential medium) and the effect of EGF (epidermal growth factor) supplementation was evaluated. To assess the growth kinetic of EAMSCs we have taken into account some parameters [PD (population doubling), fold increas...
Intradermal injections of equine allogeneic umbilical cord-derived mesenchymal stem cells are well tolerated and do not elicit immediate or delayed hypersensitivity reactions.
Cytotherapy    September 7, 2011   Volume 13, Issue 10 1180-1192 doi: 10.3109/14653249.2011.602338
Carrade DD, Affolter VK, Outerbridge CA, Watson JL, Galuppo LD, Buerchler S, Kumar V, Walker NJ, Borjesson DL.BACKGROUND AIMS. The use of allogeneic mesenchymal stem cells (MSC) to treat acute equine lesions would greatly expand equine cellular therapy options; however, the safety and antigenicity of these cells have not been well-studied. We hypothesized that equine allogeneic umbilical cord tissue (UCT)-derived MSC would not elicit acute graft rejection or a delayed-type hypersensitivity response when injected intradermally. METHODS. Six Quarterhorse yearlings received 12 intradermal injections (autologous MSC, allogeneic MSC, positive control and negative control, in triplicate) followed by the sam...
Cell-based therapies for equine joint disease.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 335-349 doi: 10.1016/j.cveq.2011.06.005
Frisbie DD, Stewart MC.Joint disease is a major cause of wastage in performance horses. Arthritis can be challenging to treat because articular cartilage has little or no capacity for repair, therapeutic options are limited and are largely targeted at ameliorating clinical signs of joint disease. Cell-based therapies have potential to overcome the intrinsic constraints to articular cartilage repair. This article focuses on cell-based therapies for treatment of equine joint disease. Results from experimental model and human clinical studies are presented along with available data from equine studies.
Cell-based therapies in orthopedics.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 xiii-xiv doi: 10.1016/j.cveq.2011.07.002
Stewart MC, Stewart AA.No abstract available
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...
Cell-based therapies for tendon and ligament injuries.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 315-333 doi: 10.1016/j.cveq.2011.06.001
Alves AG, Stewart AA, Dudhia J, Kasashima Y, Goodship AE, Smith RK.Tendon and ligament injuries have proved difficult to treat effectively. Cell-based therapies offer the potential to harness the complex protein synthetic machinery of the cell to induce a regenerative response rather than fibrous scarring. This article reviews the current state of play with respect to the clinically used cell preparations for the treatment of tendon and ligaments overstrain injuries.
Stem cell-based therapies for bone repair.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 299-314 doi: 10.1016/j.cveq.2011.05.002
Milner PI, Clegg PD, Stewart MC.This article provides an overview of the cellular and molecular events involved in bone repair and the current approaches to using stem cells as an adjunct to this process. The article emphasizes the key role of osteoprogenitor cells in the formation of bone and where the clinical applications of current research may lend themselves to large animal orthopaedics. The processes involved in osteogenic differentiation are presented and strategies for bone formation, including induction by osteogenic factors, bioscaffolds, and gene therapy, are reviewed.
Collection and propagation methods for mesenchymal stromal cells.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 263-274 doi: 10.1016/j.cveq.2011.05.003
Taylor SE, Clegg PD.Mesenchymal stromal cells (MSC) are derived from adult mesenchymal tissues and have the ability to undergo differentiation into bone, cartilage, and fat, and have therefore attracted great interest in regenerative medicine. Many isolation and culture methods have been described, making comparison between laboratories and quality-control protocols difficult. A uniform protocol to characterize equine MSC has recently been proposed, aiming to introduce consistency across the equine stem cell research field. This article reviews the published techniques for collection and propagation of equine MSC...
The regulation of veterinary regenerative medicine and the potential impact of such regulation on clinicians and firms commercializing these treatments.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 383-391 doi: 10.1016/j.cveq.2011.06.002
Nobert KM.This article provides an overview of the US Food and Drug Administration's current and potential regulation of veterinary regenerative medicine and the various products used in the practice. This article also discusses several of the potential enforcement risks associated with the commercialization of such therapies and products and offers the reader strategies for mitigating those risks. Finally, the article concludes with a review of an important and ongoing court battle that focuses on the marketing and promotion of cellular-based therapies for humans that could have a significant impact on...
Cell-based therapies: current issues and future directions.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 393-399 doi: 10.1016/j.cveq.2011.07.001
Stewart MC.This article focuses on current issues facing cell-based therapies in equine practice and future studies validating the use of stem cells and related biologic therapies for the treatment of musculoskeletal conditions in the horse. Issues raised include the characterization and use of tissue- and anatomic location-specific mesenchymal stem cell (MSC) sources, the putative advantages and feasibility of allogeneic embryonic stem cell and MSC products, the technical advantages and performance of cell-based biologic agents that do not require extensive ex vivo manipulation, the regulation of MSC ho...
Anti-inflammatory and immunomodulatory activities of stem cells.
The Veterinary clinics of North America. Equine practice    August 30, 2011   Volume 27, Issue 2 351-362 doi: 10.1016/j.cveq.2011.06.003
Peroni JF, Borjesson DL.The recent interest in equine stem cell biology and the rapid increase in experimental data highlight the growing attention that this topic has been receiving over the past few years. Within the field of stem cell biology, the relevance of immunobiology is of particular intrigue. It appears that optimal and effective stem cell therapy for equine patients will require a thorough analysis of the immune properties of stem cells as well as their response to immune mediators. The main goal of this review is to discuss the biology of adult mesenchymal stem cells in the context of immunology.
Optimization of the isolation, culture, and characterization of equine umbilical cord blood mesenchymal stromal cells.
Tissue engineering. Part C, Methods    August 26, 2011   Volume 17, Issue 11 1061-1070 doi: 10.1089/ten.tec.2011.0052
De Schauwer C, Meyer E, Cornillie P, De Vliegher S, van de Walle GR, Hoogewijs M, Declercq H, Govaere J, Demeyere K, Cornelissen M, Van Soom A.Mesenchymal stromal cells (MSC) represent a promising population for supporting new clinical concepts in cellular therapy. A wide diversity of isolation procedures for MSC from umbilical cord blood (UCB) has been described for humans. In contrast, a few data are available in horses. In the current study, a sedimentation method using hydroxyethyl starch and a method based on the lysis of red blood cells using ammonium chloride (NH(4)Cl) were compared with two density gradient separation methods (Ficoll-Paque and Percoll). Adherent cell colonies could be established using all four isolation meth...
Evaluation of intra-articular mesenchymal stem cells to augment healing of microfractured chondral defects. McIlwraith CW, Frisbie DD, Rodkey WG, Kisiday JD, Werpy NM, Kawcak CE, Steadman JR.This study evaluated intra-articular injection of bone marrow-derived mesenchymal stem cells (BMSCs) to augment healing with microfracture compared with microfracture alone. Methods: Ten horses (aged 2.5 to 5 years) had 1-cm2 defects arthroscopically created on both medial femoral condyles of the stifle joint (analogous to the human knee). Defects were debrided to subchondral bone followed by microfracture. One month later, 1 randomly selected medial femorotibial joint in each horse received an intra-articular injection of either 20 × 10(6) BMSCs with 22 mg of hyaluronan or 22 mg of hyalurona...
Isolation and characterization of multipotent mesenchymal stromal cells from the gingiva and the periodontal ligament of the horse.
BMC veterinary research    August 2, 2011   Volume 7 42 doi: 10.1186/1746-6148-7-42
Mensing N, Gasse H, Hambruch N, Haeger JD, Pfarrer C, Staszyk C.The equine periodontium provides tooth support and lifelong tooth eruption on a remarkable scale. These functions require continuous tissue remodeling. It is assumed that multipotent mesenchymal stromal cells (MSC) reside in the periodontal ligament (PDL) and play a crucial role in regulating physiological periodontal tissue regeneration. The aim of this study was to isolate and characterize equine periodontal MSC. Tissue samples were obtained from four healthy horses. Primary cell populations were harvested and cultured from the gingiva, from three horizontal levels of the PDL (apical, midtoo...
Blood derived stem cells: an ameliorative therapy in veterinary ophthalmology.
Journal of cellular physiology    July 28, 2011   Volume 227, Issue 3 1250-1256 doi: 10.1002/jcp.22953
Marfe G, Massaro-Giordano M, Ranalli M, Cozzoli E, Di Stefano C, Malafoglia V, Polettini M, Gambacurta A.Stem cell technology has evoked considerable excitement among people interested in the welfare of animals, as it has suggested the potential availability of new tools for several pathologies, including eye disease, which in many cases is considered incurable. One such example is ulcerative keratitis, which is very frequent in horses. Because some of these corneal ulcers can be very severe, progress rapidly and, therefore, can be a possible cause of vision loss, it is important to diagnose them at an early stage and administer an appropriate treatment, which can be medical, surgical, or a combi...
Flow cytometric characterization of culture expanded multipotent mesenchymal stromal cells (MSCs) from horse adipose tissue: towards the definition of minimal stemness criteria.
Veterinary immunology and immunopathology    July 26, 2011   Volume 144, Issue 3-4 499-506 doi: 10.1016/j.vetimm.2011.07.017
Pascucci L, Curina G, Mercati F, Marini C, Dall'Aglio C, Paternesi B, Ceccarelli P.In the last decades, multipotent mesenchymal progenitor cells have been isolated from many adult tissues of different species. The International Society for Cellular Therapy (ISCT) has recently established that multipotent mesenchymal stromal cells (MSCs) is the currently recommended designation. In this study, we used flow cytometry to evaluate the expression of several molecules related to stemness (CD90, CD44, CD73 and STRO-1) in undifferentiated, early-passaged MSCs isolated from adipose tissue of four donor horses (AdMSCs). The four populations unanimously expressed high levels of CD90 an...
Osteogenic differentiation of equine cord blood multipotent mesenchymal stromal cells within coralline hydroxyapatite scaffolds in vitro.
Veterinary and comparative orthopaedics and traumatology : V.C.O.T    July 21, 2011   Volume 24, Issue 5 354-362 doi: 10.3415/VCOT-10-10-0142
Figueroa RJ, Koch TG, Betts DH.To investigate the osteogenic differentiation potential of equine umbilical cord blood-derived multipotent mesenchymal stromal cells (CB-MSC) within coralline hydroxyapatite scaffolds cultured in osteogenic induction culture medium. Methods: Scaffolds seeded with equine CB-MSC were cultured in cell expansion culture medium (control) or osteogenic induction medium (treatment). Cell viability and distribution were confirmed by the MTT cell viability assay and DAPI nuclear fluorescence staining, respectively. Osteogenic differentiation was evaluated after 10 days using reverse transcription polym...
Characterization of adipose-derived equine and canine mesenchymal stem cells after incubation in agarose-hydrogel.
Veterinary research communications    July 15, 2011   Volume 35, Issue 8 487-499 doi: 10.1007/s11259-011-9492-8
Schwarz C, Leicht U, Drosse I, Ulrich V, Luibl V, Schieker M, Röcken M.Adult stem cells are of particular interest for the therapeutic approach in the field of regenerative medicine. Due to their ease of harvest, adipose-derived mesenchymal stem cells (ASCs) are an attractive stem cell source that has become increasingly popular. Critical aspects of applied cell therapies are the circumstances of transport from the laboratory towards the site of operation and cell delivery into the desired area. With regard to these issues, agarose-hydrogel was analyzed as a cell carrier matrix of equine and canine ASCs in vitro, which can be used for minimally invasive applicati...
Chondrogenic effects of exogenous retinoic acid or a retinoic acid receptor antagonist (LE135) on equine chondrocytes and bone marrow-derived mesenchymal stem cells in monolayer culture.
American journal of veterinary research    July 7, 2011   Volume 72, Issue 7 884-892 doi: 10.2460/ajvr.72.7.884
Henderson SE, Santangelo KS, Bertone AL.To determine effects of various concentrations of retinoic acid (RA) or a synthetic RA receptor antagonist (LE135) on equine chondrocytes or bone marrow-derived equine mesenchymal stem cells (BMDMSCs) in monolayer cultures. Methods: Articular cartilage and BMDMSCs from 5 clinically normal horses. Methods: Monolayers of chondrocytes cultured in standard media and of BMDMSCs cultured in chondrogenic media were treated with RA at concentrations of 0, 0.1, 1, or 10 μM or LE135 at concentrations of 0, 0.1, 1, or 10 μM on day 0. On days 7 and 14, samples were analyzed for DNA concentration, chondr...
Immunophenotype and gene expression profiles of cell surface markers of mesenchymal stem cells derived from equine bone marrow and adipose tissue.
Veterinary immunology and immunopathology    July 2, 2011   Volume 144, Issue 1-2 147-154 doi: 10.1016/j.vetimm.2011.06.033
Ranera B, Lyahyai J, Romero A, Vázquez FJ, Remacha AR, Bernal ML, Zaragoza P, Rodellar C, Martín-Burriel I.Bone marrow and adipose tissue are the two main sources of mesenchymal stem cell (MSC). The aim of this work was to analyse the immunophenotype of 7 surface markers and the expression of a panel of 13 genes coding for cell surface markers in equine bone marrow and adipose tissue-derived MSCs obtained from 9 horses at third passage. The tri-lineage differentiation was confirmed by specific staining. Equine MSCs from both sources were positive for the MSC markers CD29 and CD90, while were negative for CD44, CD73, CD105, CD45 and CD34. The gene expression of these molecules was also evaluated by ...
Embryonic stem cells and iPS cells: sources and characteristics.
The Veterinary clinics of North America. Equine practice    June 16, 2011   Volume 27, Issue 2 233-242 doi: 10.1016/j.cveq.2011.04.003
Hackett CH, Fortier LA.The field of regenerative medicine research is rapidly expanding. One area of interest to equine researchers is the possibility of isolating or generating pluripotent cells, capable of producing differentiated cell types derived from all 3 primary germ layers. Reports of equine embryonic stem-like (ES) cell isolation can be found in the literature. Other groups are working to produce equine-induced pluripotent stem (iPS) cells. This article summarizes the essential features needed to characterize a cell type as pluripotent, specific challenges in using the horse as a model organism for pluripo...
Comparative study of equine bone marrow and adipose tissue-derived mesenchymal stromal cells.
Equine veterinary journal    June 13, 2011   Volume 44, Issue 1 33-42 doi: 10.1111/j.2042-3306.2010.00353.x
Ranera B, Ordovás L, Lyahyai J, Bernal ML, Fernandes F, Remacha AR, Romero A, Vázquez FJ, Osta R, Cons C, Varona L, Zaragoza P, Martín-Burriel I....Mesenchymal stromal cells (MSCs) represent an attractive source for regenerative medicine. However, prior to their application, fundamental questions regarding molecular characterisation, growth and differentiation of MSCs must be resolved. Objective: To compare and better understand the behaviour of equine MSCs obtained from bone marrow (BM) and adipose tissue (AT) in culture. Methods: Five horses were included in this study. Proliferation rate was measured using MTT assay and cell viability; apoptosis, necrosis and late apoptosis and necrosis were evaluated by flow cytometry. The mRNA expres...
Commercial cell-based therapies for musculoskeletal injuries in horses.
The Veterinary clinics of North America. Equine practice    June 12, 2011   Volume 27, Issue 2 363-371 doi: 10.1016/j.cveq.2011.04.001
Gutierrez-Nibeyro SD.Several cell-based therapeutic options to treat musculoskeletal injuries in horses are commercially available. The current literature supports the use of cell-based therapies to treat equine musculoskeletal injuries. Researchers continue to search for more effective cell-based therapies to provide practitioners with optimal treatment tools for musculoskeletal injuries in horses. Cell-based therapies require specialized facilities and technical competencies that might not be available or economically justifiable in many private practices. This review provides a summary of current commercially a...
Evidence-based medicine and stem cell therapy: how do we know such technologies are safe and efficacious?
The Veterinary clinics of North America. Equine practice    June 12, 2011   Volume 27, Issue 2 373-382 doi: 10.1016/j.cveq.2011.04.002
Clegg PD, Pinchbeck GL.Evidence-based medicine (EBM) refers to the conscientious, explicit, and judicious use of current best evidence from research for the care of an individual patient. Central to the adoption of EBM is both producing and identifying the best possible evidence for a particular intervention or therapy. This article identifies and reviews the approaches to producing and identifying the best possible evidence that is necessary for the full acceptance of stem cell therapies in the horse and reviews the approaches that will allow future clinical studies in stem cell therapies to provide the best eviden...
Size-sieved subpopulations of mesenchymal stem cells from intervascular and perivascular equine umbilical cord matrix.
Cell proliferation    June 6, 2011   Volume 44, Issue 4 330-342 doi: 10.1111/j.1365-2184.2011.00759.x
Corradetti B, Lange-Consiglio A, Barucca M, Cremonesi F, Bizzaro D.Umbilical cord matrix (UCM) has been recently proposed as an alternative source of mesenchymal stem cells (MSCs). The aim of this study was to isolate and characterize presumptive stem cells from intervascular and perivascular equine UCM and to obtain homogeneous subpopulations from both sites. Methods: Umbilical cords were processed for retrieval of MSCs. Unsieved cells from intervascular and perivascular portions were evaluated for cell cycle analysis and for immunophenotyping by flow cytometry. Cells from each site were separated into larger and smaller sieved populations using multi-dishes...
Implantation of bone marrow-derived mesenchymal stem cells demonstrates improved outcome in horses with overstrain injury of the superficial digital flexor tendon.
Equine veterinary journal    May 26, 2011   Volume 44, Issue 1 25-32 doi: 10.1111/j.2042-3306.2011.00363.x
Godwin EE, Young NJ, Dudhia J, Beamish IC, Smith RK.Mesenchymal stem (progenitor; stromal) cell (MSC) therapy has gained popularity for the treatment of equine tendon injuries but without reports of long-term follow-up. Objective: To evaluate the safety and reinjury rate of racehorses after intralesional MSC injection in a large study of naturally occurring superficial digital flexor tendinopathy and to compare these data with those published for other treatments. Methods: Safety was assessed clinically, ultrasonographically, scintigraphically and histologically in a cohort of treated cases: 141 client-owned treated racehorses followed-up for a...
Further insights into the characterization of equine adipose tissue-derived mesenchymal stem cells.
Veterinary research communications    May 26, 2011   Volume 35, Issue 6 355-365 doi: 10.1007/s11259-011-9480-z
Raabe O, Shell K, Würtz A, Reich CM, Wenisch S, Arnhold S.Adipose tissue-derived stem cells (ADSCs) represent a promising subpopulation of adult stem cells for tissue engineering applications in veterinary medicine. In this study we focused on the morphological and molecular biological properties of the ADSCs. The expression of stem cell markers Oct4, Nanog and the surface markers CD90 and CD105 were detected using RT-PCR. ADSCs showed a proliferative potential and were capable of adipogenic and osteogenic differentiation. Expression of Alkaline phosphatase (AP), phosphoprotein (SPP1), Runx2 and osteocalcin (OC) mRNA were positive in osteogenic linea...
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