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Topic:Extracellular matrix

The extracellular matrix (ECM) in horses is a complex network of proteins and polysaccharides that provides structural and biochemical support to surrounding cells. It is a dynamic entity involved in various physiological processes, including tissue repair, development, and homeostasis. In equine biology, the ECM is composed of components such as collagen, elastin, proteoglycans, and glycoproteins, which contribute to the integrity and functionality of tissues like cartilage, tendons, and skin. Alterations in the ECM can influence cellular behavior and are associated with conditions such as osteoarthritis and tendon injuries. This page aggregates peer-reviewed research studies and scholarly articles that explore the composition, function, and implications of the extracellular matrix in equine health and disease.
Cellular and Matrix Dynamics of the Equine Tendon.
The Veterinary clinics of North America. Equine practice    June 14, 2025   S0749-0739(25)00025-2 doi: 10.1016/j.cveq.2025.04.007
Koch DW.Our understanding of tendon homeostasis and repair following injury has made great strides through basic science, clinical veterinary medicine, and preclinical translational research. We have now gleaned a greater understanding of the cellular and matrix dynamics that are being orchestrated within the tendon, which provide therapeutic opportunities. This article will focus on how utilizing the horse and equine tissues have advanced our understanding of tendinopathy and the cellular and matrix dynamics at play while also identifying continued gaps in our knowledge where the horse as a veterinar...
Mechanical Stimulation of Equine Bone Marrow Mesenchymal Stromal Cell-Derived Cartilage-Like In Vitro Model Triggers Osteoarthritis Features.
ACS biomaterials science & engineering    June 13, 2025   doi: 10.1021/acsbiomaterials.5c00500
Contentin R, Jehl C, Commenchail K, Legendre F, Galéra P, Cassé F, Demoor M.Osteoarthritis (OA) affects millions of people globally, causing irreversible cartilage damage, chronic inflammation, and progressive joint dysfunction. Similarly, horses can develop OA spontaneously or due to their athletic careers, influenced by mechanical and biochemical factors. Current treatments primarily focus on symptom relief without promoting cartilage regeneration. In line with the 3Rs principles (refine, reduce, replace), the development of OA models is essential for advancing new therapeutic approaches against OA. In response to this need, the present study aimed to develop an m...
Development of a two-layer 3D equine endometrial tissue model using genipin-crosslinked collagen scaffolds and 3D printing.
Scientific reports    June 5, 2025   Volume 15, Issue 1 19759 doi: 10.1038/s41598-025-04013-4
Santiviparat S, Suthithanakom S, Bhanpattanakul S, Srisuwattanasagul S, Melde K, Stout TAE, Tharasanit T.Advances in endometrial tissue engineering have enabled the combination of modified scaffolding materials with modern cell culture technologies. Genipin and three-dimensional (3D) printing have advanced cell-tissue engineering by enabling the precise layering of cell-containing matrices while ensuring low cytotoxicity. This study aimed to advance equine endometrial tissue engineering by designing customized collagen scaffolds using 3D printing technology, while optimizing the genipin concentration to avoid toxicity. Genipin was tested at concentrations of 4, 2, 1, 0.5, 0.25, 0.125, and 0 mM on...
Tenogenic potential of tendon-derived mesenchymal stem cells isolated post-mortem: Impact of cryopreservation.
Research in veterinary science    May 29, 2025   Volume 193 105722 doi: 10.1016/j.rvsc.2025.105722
Marine L, Wilfried P, Joëlle P, Justine J, Axel D, Vinciane T, Benoît V, Laurent G, Luc G, Jean-François K, Nadine A.In situ injection of mesenchymal stem cells appears as a promising treatment of tendinopathies. Tendon-derived mesenchymal stem cells (TDSCs) are widely studied and show a lot of interesting characteristics for clinical use. The aim of this study is to confirm the tenogenic potential of cryopreserved TDSCs and to confirm their ability to produce type I and/or type III collagens fibers in culture. Tendon-derived mesenchymal stem cells are harvested from the tendon no later than 72 h post-mortem. Their tenogenic potential has been assessed by quantitative reverse transcriptase polymerase chain ...
Substrate stiffness modifies gene expression and transcriptional response of equine endometrial fibroblasts to TGF-β1.
Animal reproduction science    May 26, 2025   Volume 278 107873 doi: 10.1016/j.anireprosci.2025.107873
Elena ZK, Reimer C, Herrmann D, Klein C.Equine endometrial fibrosis is a leading cause of subfertility in aging mares. Fibrosis is a reparative response involving excess deposition of extracellular matrix (ECM) and increasing tissue stiffness. Augmented rigidity itself can drive fibrosis, by stimulating transition from fibroblasts to myofibroblasts. Myofibroblasts release latent transforming growth factor beta 1 (TGF-β1) from the ECM, thereby activating this profibrotic cytokine. Tissue culture polystyrene (TCP) is commonly used for in vitro experiments. The endometrium, however, is considerably softer than TCP. This study critical...
Integrated proteomics highlights functional activation induced by advanced-platelet rich fibrin plus (A-PRF +) in primary equine fibroblasts.
Scientific reports    May 23, 2025   Volume 15, Issue 1 18021 doi: 10.1038/s41598-025-01820-7
Miranda MR, Montano C, Golino V, de Chiara M, Del Prete C, Pepe G, De Biase D, Ciaglia T, Bertamino A, Campiglia P, Sommella E, Vestuto V, Pasolini MP.Wounds are common in equine practice, and often lead to complications such as infections, delayed healing and hypertrophic scarring, which can be costly and difficult to manage. Developing affordable and effective treatments has become an increasingly important focus in veterinary research. Equine advanced-platelet-rich fibrin plus (A-PRF+) demonstrates regenerative properties comparable to its human counterpart, but cellular-level investigations exploring its molecular mechanisms remain limited. This study aimed to investigate the in vitro effects of equine A-PRF + on primary fibroblast ...
Altered expression of collagen gene family members and its epigenetic background in equine Sarcoids.
Research in veterinary science    April 21, 2025   Volume 190 105656 doi: 10.1016/j.rvsc.2025.105656
Pawlina-Tyszko K, Semik-Gurgul E, Podstawski P, Herc W, Witkowski M, Ropka-Molik K.Alterations in the genes involved in the creation of the extracellular matrix (ECM) were observed in our earlier transcriptome studies of sarcoids and their cell culture model. For a complete characterization of the underlying molecular pathways, it is imperative to comprehend the involvement of ECM modifications in the oncogenic transformation of sarcoid fibroblasts. Thus, the aim of this investigation was to describe the expression patterns of a set of genes that are essential for the rearrangements of the extracellular matrix, namely collagen genes, and elucidate possible mechanisms underly...
The effect of amphiregulin on equine endometrial fibroblasts: in vitro responses of fibroblast derived from non-fibrotic and fibrotic endometrium.
Reproductive biology    April 14, 2025   Volume 25, Issue 2 101018 doi: 10.1016/j.repbio.2025.101018
Wójtowicz A, Sadowska A, Piotrowska-Tomala K, Szóstek-Mioduchowska A.The role of AREG in the development of fibrosis in the progression of endometrosis in mare remains unknown. We aimed to determine the effects of AREG on fibroblast functional characteristics as well as the expression of extracellular matrix (ECM)-associated genes in fibroblast derived from non-fibrotic and fibrotic equine endometria. Our findings suggest that the mechanisms associated with ECM remodeling regulated by AREG in non-fibrotic fibroblasts may be dysregulated in the progression of fibrosis in endometrosis.
Determination of the miRNA profile of extracellular vesicles from equine mesenchymal stem cells after different treatments.
Stem cell research & therapy    April 5, 2025   Volume 16, Issue 1 162 doi: 10.1186/s13287-025-04287-5
Klymiuk MC, Speer J, Marco I, Elashry MI, Heimann M, Wenisch S, Arnhold S.Background: Osteoarthritis (OA) is a common and incurable disease in humans and animals. To gain a better understanding of the pathogenesis and identify potential treatments, miRNAs will be extracted and analysed from extracellular vesicles (EVs) of equine adipose derived mesenchymal stem cells (AdMSCs).Methods: For this purpose we cultivated and pretreated AdMSCs under different conditions: interleukin 1β, shock wave, chondrogenic differentiation, chondrogenic differentiation under hypoxia, or after senescence. After treatment, EVs were harvested from the cell culture supernatants. Next-gene...
Extracellular Vesicle-Derived microRNA Crosstalk Between Equine Chondrocytes and Synoviocytes-An In Vitro Approach.
International journal of molecular sciences    April 3, 2025   Volume 26, Issue 7 doi: 10.3390/ijms26073353
Castanheira CIGD, Anderson JR, Clarke EJ, Hackl M, James V, Clegg PD, Peffers MJ.This study describes a novel technique to analyze the extracellular vesicle (EV)-derived microRNA (miRNA) crosstalk between equine chondrocytes and synoviocytes. Donor cells (chondrocytes, n = 8; synoviocytes, n = 9) were labelled with 5-ethynyl uridine (5-EU); EVs were isolated from culture media and incubated with recipient cells (chondrocytes [n = 5] were incubated with synoviocyte-derived EVs, and synoviocytes [n = 4] were incubated with chondrocyte-derived EVs). Total RNA was extracted from recipient cells; the 5-EU-labelled RNA was recovered and sequenced. Differential expression analysi...
The effect of cyclic fluid perfusion on the proinflammatory tissue environment in osteoarthritis using equine joint-on-a-chip models.
Lab on a chip    March 31, 2025   doi: 10.1039/d4lc01078g
Heidenberger J, Reihs EI, Strauss J, Frauenlob M, Gültekin S, Gerner I, Tögel S, Ertl P, Windhager R, Jenner F, Rothbauer M.Osteoarthritis (OA) is a prevalent degenerative joint disorder characterized by cartilage degradation, chronic inflammation, and progressive joint dysfunction. Despite rising incidences driven by ageing and increasing obesity, potent treatments remain elusive, exacerbating the socioeconomic burden. OA pathogenesis involves an imbalance in extracellular matrix (ECM) turnover, mediated by inflammatory cytokines and matrix-degrading enzymes, leading to oxidative stress, chondrocyte apoptosis, and ECM degradation. Additionally, synovial inflammation (synovitis) plays a critical role in disease pro...
Role of Glycans in Equine Endometrial Cell Uptake of Extracellular Vesicles Derived from Amniotic Mesenchymal Stromal Cells.
International journal of molecular sciences    February 19, 2025   Volume 26, Issue 4 1784 doi: 10.3390/ijms26041784
Gaspari G, Lange-Consiglio A, Cremonesi F, Desantis S.Extracellular vesicles (EVs) are important mediators of cell-cell communication thanks to their ability to transfer their bioactive cargo, thus regulating a variety of physiological contexts. EVs derived from amniotic mesenchymal/stromal cells (eAMC-EVs) are internalized by equine endometrial cells (eECs) with positive effects on regenerative medicine treatments. As the cellular uptake of EVs is influenced by the glycan profile of both EVs and target cells, this study is focused on the role of surface glycans in the uptake of eAMC-EVs by recipient eECs. Equine ECs were obtained by enzymatic di...
The myometrial transcriptome changes in mares with endometrosis.
Scientific reports    January 25, 2025   Volume 15, Issue 1 3173 doi: 10.1038/s41598-025-86742-0
Drzewiecka EM, Molcan T, Sadowska A, Piotrowska-Tomala K, Słyszewska M, Dias GF, Skarżyński DJ, Szóstek-Mioduchowska A.Mares with endometrosis exhibit histological changes not only in the endometrium but also in the myometrium that suggest possible functional impairment. The molecular background of these changes is not well understood. We hypothesize that the transcriptomic profile of the mare myometrium varies depending on the degree of endometrosis in mares. Myometria were collected from mares in the mid-luteal phase of the estrous cycle with endometrium categories I, IIA, IIB, and III (∑n = 23), according to Kenney and Doig´s histopathological classification. Myometrial RNA was isolated and subjected...
Respiratory extracellular vesicle isolation optimization through proteomic profiling of equine samples and identification of candidates for cell-of-origin studies.
PloS one    January 24, 2025   Volume 20, Issue 1 e0315743 doi: 10.1371/journal.pone.0315743
Hickman E, Carberry V, Carberry C, Cooper B, Mordant AL, Mills A, Sokolsky M, Herring LE, Alexis NE, Rebuli ME, Jaspers I, Sheats K, Rager JE.Growing evidence supports the importance of extracellular vesicle (EV) as mediators of communication in pathological processes, including those underlying respiratory disease. However, establishing methods for isolating and characterizing EVs remains challenging, particularly for respiratory samples. This study set out to address this challenge by comparing different EV isolation methods and evaluating their impacts on EV yield, markers of purity, and proteomic signatures, utilizing equine/horse bronchoalveolar lavage samples. Horses can serve as effective translational animal models for respi...
Protein profile of extracellular vesicles derived from adult Parascaris spp.
Parasites & vectors    October 10, 2024   Volume 17, Issue 1 426 doi: 10.1186/s13071-024-06502-3
Manikantan V, Ripley NE, Nielsen MK, Dangoudoubiyam S.Parascaris spp. represent a significant threat to equine health worldwide, particularly in foals. The long-term survival of parasites in the host necessitates persistent modulation of the host immune response. Intercellular communication achieved through the exchange of molecules via extracellular vesicles (EVs) released from the parasite could be a crucial factor in this regard. This study aimed to isolate and characterize EVs released by adult male and female Parascaris worms and conduct a proteomic analysis to identify sex-specific proteins and potential immunomodulatory factors. Methods: L...
Seasonal influence on miRNA expression dynamics of extracellular vesicles in equine follicular fluid.
Journal of animal science and biotechnology    October 9, 2024   Volume 15, Issue 1 137 doi: 10.1186/s40104-024-01097-2
Feugang JM, Gad A, Menjivar NG, Ishak GM, Gebremedhn S, Gastal MO, Dlamini NH, Prochazka R, Gastal EL, Tesfaye D.Ovarian follicular fluid (FF) is a dynamic environment that changes with the seasons, affecting follicle development, ovulation, and oocyte quality. Cells in the follicles release tiny particles called extracellular vesicles (EVs) containing vital regulatory molecules, such as microRNAs (miRNAs). These miRNAs are pivotal in facilitating communication within the follicles through diverse signaling and information transfer forms. EV-coupled miRNA signaling is implicated to be associated with ovarian function, follicle and oocyte growth and response to various environmental insults. Herein, we in...
Overexpression of the key metabolic protein Carnitine Palmitoyl Transferase 1A (CPT1A) in equine sarcoid.
Journal of equine veterinary science    October 2, 2024   Volume 143 105205 doi: 10.1016/j.jevs.2024.105205
Martano M, Power K, Cuccaro B, Razzuoli E, Maiolino P, Restucci B.The equine sarcoid is the most common skin neoplasia of fibroblastic origin in horses, characterized by an excessive accumulation of extracellular matrix produced by sarcoid fibroblasts under hypoxic condition. Neoplastic cells can adapt to hypoxia by using alternative energy sources, particularly those that arise from fatty acid oxidation (FAO). The Carnitine Palmitoyl Transferase 1A (CPT1A) belongs to Carnitine System (CS) and promotes the entrance of fatty acids into the mitochondria for β-oxidation. In this study, CPT1A expression was comparatively addressed in 25 equine sarcoids and 5 no...
Maturational competence of equine oocytes is associated with alterations in their ‘cumulome’.
Molecular human reproduction    September 17, 2024   Volume 30, Issue 9 doi: 10.1093/molehr/gaae033
No abstract available
Maturational competence of equine oocytes is associated with alterations in their ‘cumulome’.
Molecular human reproduction    September 17, 2024   Volume 30, Issue 9 gaae033 doi: 10.1093/molehr/gaae033
Walter J, Colleoni S, Lazzari G, Fortes C, Grossmann J, Roschitzki B, Laczko E, Naegeli H, Bleul U, Galli C.Assisted reproductive technologies are an emerging field in equine reproduction, with species-dependent peculiarities, such as the low success rate of conventional IVF. Here, the 'cumulome' was related to the developmental capacity of its corresponding oocyte. Cumulus-oocyte complexes collected from slaughterhouse ovaries were individually matured, fertilized by ICSI, and cultured. After maturation, the cumulus was collected for proteomics analysis using label-free mass spectrometry (MS)-based protein profiling by nano-HPLC MS/MS and metabolomics analysis by UPLC-nanoESI MS. Overall, a total o...
Placental homogeneity: Characterizing transcriptional variation among equine chorioallantoic locations.
Theriogenology    August 14, 2024   Volume 229 75-82 doi: 10.1016/j.theriogenology.2024.08.019
Verstraete MH, Dini P, Orellana D, Uribe-Salazar JM, Veras MM, Carneiro F, Daels P, Fernandes CB.The proper function of the placenta is essential for the health and growth of the fetus and the mother. The placenta relies on dynamic gene expression for its correct and timely development and function. Although numerous studies have identified genes vital for placental functions, equine placental molecular research has primarily focused on single placental locations, in sharp contrast with the broader approach in human studies. Here, we hypothesized that the molecular differences across different regions of the equine placenta are negligible because of its diffuse placental type with a macro...
Clinical insights: Regenerative therapies in equine practice: Top 10 EVJ papers 2019-2024.
Equine veterinary journal    August 8, 2024   Volume 56, Issue 5 824-831 doi: 10.1111/evj.14136
Pezzanite L.No abstract available
Extracellular vesicles secreted by equine adipose mesenchymal stem cells preconditioned with transforming growth factor β-1 are enriched in anti-fibrotic miRNAs and inhibit the expression of fibrotic genes in an in vitro system of endometrial stromal cells fibrosis.
The veterinary quarterly    July 31, 2024   Volume 44, Issue 1 1-11 doi: 10.1080/01652176.2024.2384906
Wong YS, Mançanares AC, Navarrete F, Poblete P, Mendez-Pérez L, Cabezas J, Riadi G, Rodríguez-Alvarez L, Castro FO.Mare endometrosis is a major reproductive problem associated with low fertility and is characterized by persistent inflammation, TGFβ-1 signaling, and consequently, extracellular matrix deposition, which compromises endometrial glands. Mesenchymal stem cell-based products (MSCs), such as extracellular vesicles (EVs), have gained attention due to the regulatory effects exerted by their miRNA cargo. Here, we evaluated the impact of preconditioning equine adipose mesenchymal stem cells with TGFβ-1 for short or long periods on the anti-fibrotic properties of secreted extracellular vesicles. MSCs...
Determinants of joint effusion in tarsocrural osteochondrosis of yearling Standardbred horses.
Frontiers in veterinary science    July 24, 2024   Volume 11 1389798 doi: 10.3389/fvets.2024.1389798
Bertuglia A, Pallante M, Pagliara E, Valle D, Bergamini L, Bollo E, Bullone M, Riccio B.Tarsocrural osteochondrosis (OCD) is a developmental orthopedic disease commonly affecting young Standardbreds, with different fragment localization and size. Clinically, it is characterized by variable synovial effusion in the absence of lameness, whose determinants are ill-defined. We hypothesized that localization and physical characteristics of the osteochondral fragments like dimensions, multifragmentation, and instability influence joint effusion and correlate with synovial markers of cartilage degradation and inflammation. Clinical data, synovial fluid and intact osteochondral fragments...
Therapeutic Application of Extracellular Vesicles Derived from Mesenchymal Stem Cells in Domestic Animals.
Animals : an open access journal from MDPI    July 24, 2024   Volume 14, Issue 15 2147 doi: 10.3390/ani14152147
Lanci A, Iacono E, Merlo B.Recently, the therapeutic potential of extracellular vesicles (EVs) derived from mesenchymal stem cells (MSCs) has been extensively studied in both human and veterinary medicine. EVs are nano-sized particles containing biological components commonly found in other biological materials. For that reason, EV isolation and characterization are critical to draw precise conclusions during their investigation. Research on EVs within veterinary medicine is still considered in its early phases, yet numerous papers were published in recent years. The conventional adult tissues for deriving MSCs include ...
The amount of hyaluronic acid and airway remodelling increase with the severity of inflammation in neutrophilic equine asthma.
BMC veterinary research    June 25, 2024   Volume 20, Issue 1 273 doi: 10.1186/s12917-024-04136-2
Höglund N, Rossi H, Javela HM, Oikari S, Nieminen P, Mustonen AM, Airas N, Kärjä V, Mykkänen A.Equine asthma (EA) is a chronic lower airway inflammation that leads to structural and functional changes. Hyaluronic acid (HA) has crucial functions in the extracellular matrix homeostasis and inflammatory mediator activity. HA concentration in the lungs increases in several human airway diseases. However, its associations with naturally occurring EA and airway remodelling have not been previously studied. Our aim was to investigate the association of equine neutrophilic airway inflammation (NAI) severity, airway remodelling, and HA concentration in horses with naturally occurring EA. We hypo...
Degradation of Proteoglycans and Collagen in Equine Meniscal Tissues.
International journal of molecular sciences    June 11, 2024   Volume 25, Issue 12 6439 doi: 10.3390/ijms25126439
Dubuc J, Schneider MJ, Dubuc V, Richard H, Pinsard M, Bancelin S, Legare F, Girard C, Laverty S.Investigate meniscal extracellular matrix degradation. Equine menisci ( = 34 from 17 horses) were studied. Site-matched sections were cut and scored from three regions (ROIs; = 102) and stained for histology, proteoglycan (safranin O and fast green), aggrecan, and collagen cleavage (NITEGE, DIPEN, and C1,2C antibodies, respectively). Picrosirius red and second harmonic generation microscopy were performed to investigate collagen ultrastructure. A total of 42 ROIs met the inclusion criteria and were included in the final analysis. The median (range) ROI histological score was 3 (0-9), providin...
Deregulation of Metalloproteinase Expression in Gray Horse Melanoma Ex Vivo and In Vitro.
Cells    May 31, 2024   Volume 13, Issue 11 doi: 10.3390/cells13110956
Brodesser DM, Kummer S, Eichberger JA, Schlangen K, Corteggio A, Borzacchiello G, Bertram CA, Brandt S, Pratscher B.The ability of human melanoma cells to switch from an epithelial to a mesenchymal phenotype contributes to the metastatic potential of disease. Metalloproteinases (MPs) are crucially involved in this process by promoting the detachment of tumor cells from the primary lesion and their migration to the vasculature. In gray horse melanoma, epithelial-mesenchymal transition (EMT) is poorly understood, prompting us to address MP expression in lesions versus intact skin by transcriptome analyses and the immunofluorescence staining (IF) of gray horse tumor tissue and primary melanoma cells. RNAseq re...
Equine Endothelial Cells Show Pro-Angiogenic Behaviours in Response to Fibroblast Growth Factor 2 but Not Vascular Endothelial Growth Factor A.
International journal of molecular sciences    May 30, 2024   Volume 25, Issue 11 6017 doi: 10.3390/ijms25116017
Finding EJT, Faulkner A, Nash L, Wheeler-Jones CPD.Understanding the factors which control endothelial cell (EC) function and angiogenesis is crucial for developing the horse as a disease model, but equine ECs remain poorly studied. In this study, we have optimised methods for the isolation and culture of equine aortic endothelial cells (EAoECs) and characterised their angiogenic functions in vitro. Mechanical dissociation, followed by magnetic purification using an anti-VE-cadherin antibody, resulted in EC-enriched cultures suitable for further study. Fibroblast growth factor 2 (FGF2) increased the EAoEC proliferation rate and stimulated scra...
Mechanical properties, collagen and glycosaminoglycan content of equine superficial digital flexor tendons are not affected by training.
Journal of anatomy    May 7, 2024   doi: 10.1111/joa.14051
Yeung CC, Svensson RB, Mogensen NMB, Merkel MFR, Schjerling P, Jokipii-Utzon A, Zhang C, Carstensen H, Buhl R, Kjaer M.Physical activity can activate extracellular matrix (ECM) protein synthesis and influence the size and mechanical properties of tendon. In this study, we aimed to investigate whether different training histories of horses would influence the synthesis of collagen and other matrix proteins and alter the mechanical properties of tendon. Samples from superficial digital flexor tendon (SDFT) from horses that were either (a) currently race trained (n = 5), (b) previously race trained (n = 5) or (c) untrained (n = 4) were analysed for matrix protein abundance (mass spectrometry), collage...
Equine bone marrow MSC-derived extracellular vesicles mitigate the inflammatory effects of interleukin-1β on navicular tissues in vitro.
Equine veterinary journal    April 8, 2024   doi: 10.1111/evj.14090
Quam VG, Belacic ZA, Long S, Rice HC, Dhar MS, Durgam S.Safe, efficacious therapy for treating degenerate deep digital flexor tendon (DDFT) and navicular bone fibrocartilage (NBF) in navicular horses is critically necessary. While archetypal orthobiologic therapies for navicular disease are used empirically, their safety and efficacy are unknown. Mesenchymal stem cell-derived extracellular vesicles (EV) may overcome several limitations of current orthobiologic therapies. Objective: To (1) characterise cytokine and growth factor profiles of equine bone marrow mesenchymal stem cell (BM-MSC)-derived extracellular vesicles (BM-EV) and (2) evaluate the ...