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Topic:Cell Culture

Cell culture in horses involves the in vitro cultivation of equine cells under controlled conditions. This technique is employed to study various cellular processes, including growth, differentiation, and response to external stimuli, in an isolated environment. Equine cell cultures can be derived from various tissues, such as skin, muscle, or bone, and are used in a range of research applications, including genetic studies, drug testing, and disease modeling. These cultures provide a valuable platform for understanding cellular mechanisms and developing therapeutic strategies. This page compiles peer-reviewed research studies and scholarly articles that explore the methodologies, applications, and findings related to cell culture in equine research.
Improvement of the Chondrocyte-Specific Phenotype upon Equine Bone Marrow Mesenchymal Stem Cell Differentiation: Influence of Culture Time, Transforming Growth Factors and Type I Collagen siRNAs on the Differentiation Index.
International journal of molecular sciences    February 1, 2018   Volume 19, Issue 2 435 doi: 10.3390/ijms19020435
Branly T, Contentin R, Desancé M, Jacquel T, Bertoni L, Jacquet S, Mallein-Gerin F, Denoix JM, Audigié F, Demoor M, Galéra P.Articular cartilage is a tissue characterized by its poor intrinsic capacity for self-repair. This tissue is frequently altered upon trauma or in osteoarthritis (OA), a degenerative disease that is currently incurable. Similar musculoskeletal disorders also affect horses and OA incurs considerable economic loss for the equine sector. In the view to develop new therapies for humans and horses, significant progress in tissue engineering has led to the emergence of new generations of cartilage therapy. Matrix-associated autologous chondrocyte implantation is an advanced 3D cell-based therapy that...
Evaluation of equine synovial-derived extracellular matrix scaffolds seeded with equine synovial-derived mesenchymal stem cells.
American journal of veterinary research    December 30, 2017   Volume 79, Issue 1 124-133 doi: 10.2460/ajvr.79.1.124
Reisbig NA, Hussein HA, Pinnell E, Bertone AL.OBJECTIVE To create a bioactive synovium scaffold by infusing decellularized synovial-derived extracellular matrix (synECM) with synovial-derived mesenchymal stem cells (synMSCs). SAMPLE Synovium from the femoropatellar and medial femorotibial joints of equine cadavers. PROCEDURES The synMSCs were cultured in monolayer and not treated or cotransduced to enhance expression of green fluorescent protein (GFP) and human bone morphogenetic protein (BMP)-2. The synECM was decellularized with 0.1% peracetic acid and then seeded with synMSCs (0.5 × 10 cells/0.5 mL) by use of a 30% serum gradient. Sam...
Culture of somatic cells isolated from frozen-thawed equine semen using fluorescence-assisted cell sorting.
Animal reproduction science    December 23, 2017   Volume 190 10-17 doi: 10.1016/j.anireprosci.2017.12.017
Brom-de-Luna JG, Canesin HS, Wright G, Hinrichs K.Nuclear transfer using somatic cells from frozen semen (FzSC) would allow cloning of animals for which no other genetic material is available. Horses are one of the few species for which cloning is commercially feasible; despite this, there is no information available on the culture of equine FzSC. After preliminary trials on equine FzSC, recovered by density-gradient centrifugation, resulted in no growth, we hypothesized that sperm in the culture system negatively affected cell proliferation. Therefore, we evaluated culture of FzSC isolated using fluorescence-assisted cell sorting. In Exp. 1,...
Isolation of equine peripheral blood stem cells from a Japanese native horse.
Journal of equine science    December 16, 2017   Volume 28, Issue 4 153-158 doi: 10.1294/jes.28.153
Ishikawa S, Horinouchi C, Mizoguchi R, Senokuchi A, Kamikakimoto R, Murata D, Hatazoe T, Tozaki T, Misumi K, Hobo S.The sizes of Japanese native horses have drastically decreased, and protection of these populations is important for Japanese horse culture. Social trials as well as scientific attempts are necessary for maintaining the breed. Mesenchymal stem cells (MSCs) have potential as a cell source for various cell therapies. However, there have been no reports on MSCs of Japanese native horses. We aimed to isolate and characterize MSCs from a Japanese native horse, the Noma horse. Plastic-adherent and self-replicating cells were isolated from a Noma horse's peripheral blood (PB). The isolated cells had ...
Effects of priming with cytokines on intracellular survival and replication of Rhodococcus equi in equine macrophages.
Cytokine    December 12, 2017   Volume 102 7-11 doi: 10.1016/j.cyto.2017.12.011
Berghaus LJ, Giguère S, Bordin AI, Cohen ND.Rhodococcus equi is a common cause of pneumonia in foals and an opportunistic pathogen in immunosuppressed people. The ability of R. equi to survive and replicate in macrophages is the basis of its pathogenicity. Limited knowledge about the role of cytokines in host defense against R. equi comes from studies in mice and the role of cytokines in intracellular survival of R. equi in equine macrophages is unknown. The objectives of this study were to determine the effect of priming with interferon (IFN)-γ, interleukin (IL)-1β, IL-4, IL-6, IL-10, or tumor necrosis factor (TNF)-α at various conc...
Comparative Genomic Sequencing and Pathogenic Properties of Equine Herpesvirus 1 KyA and RacL11.
Frontiers in veterinary science    December 11, 2017   Volume 4 211 doi: 10.3389/fvets.2017.00211
Shakya AK, O'Callaghan DJ, Kim SK.Equine herpesvirus 1 (EHV-1) is a major pathogen affecting equines worldwide. The virus causes respiratory disease, abortion, and, in some cases, neurological disease. EHV-1 Kentucky A (KyA) is attenuated in the mouse and equine, whereas wild-type pathogenic strain RacL11 induces severe inflammatory infiltration of the lung, causing infected mice to succumb. The complete DNA sequencing of the KyA genome revealed that genes UL17 (ORF17), US6 (ORF73; gI), US7 (ORF74; gE), and US8 (ORF75; 10 K) are deleted as compared to the RacL11 and Ab4 genomes. In-frame deletions in the US1 (ORF68), US4 (OR...
Equine herpesvirus type 1 ORF51 encoding UL11 as an essential gene for replication in cultured cells.
Archives of virology    November 17, 2017   Volume 163, Issue 3 599-607 doi: 10.1007/s00705-017-3650-4
Badr Y, Okada A, Abo-Sakaya R, Beshir E, Ohya K, Fukushi H.Equine herpesvirus type 1 (EHV-1) UL11 is a 74-amino-acid tegument protein encoded by ORF51 of the EHV-1 genome. EHV-1 UL11 was previously reported by other researchers using the RacL22 and RacH strains to be nonessential for viral replication in cultured cells. Here, we constructed UL11 mutant viruses including a UL11 null mutant and three C-terminal truncated mutants, for further characterization of EHV-1 UL11 using bacterial artificial chromosome (BAC) technology based on the neuropathogenic strain Ab4p. EHV-1 Ab4p UL11 was localized to juxtanuclear and Golgi regions as reported by other re...
Innate immune responses of equine monocytes cultured in equine platelet lysate.
Veterinary immunology and immunopathology    November 16, 2017   Volume 195 65-71 doi: 10.1016/j.vetimm.2017.11.005
Naskou MC, Norton NA, Copland IB, Galipeau J, Peroni JF.Platelet lysate (PL) has been extensively used for the laboratory expansion of human mesenchymal stem cells (MSC) in order to avoid fetal bovine serum (FBS) which has been associated with immune-mediated host reactions and transmission of bovine-origin microbial contaminants. Before suggesting the routine use of PL for MSC culture, we wanted to further investigate whether PL alone might trigger inflammatory responses when exposed to reactive white blood cells such as monocytes. Our objectives were to evaluate the inflammatory profile of equine monocytes cultured with equine PL (ePL) and to det...
Streptococcus equi subsp. zooepidemicus Invades and Survives in Epithelial Cells.
Frontiers in cellular and infection microbiology    November 6, 2017   Volume 7 465 doi: 10.3389/fcimb.2017.00465
Skive B, Rohde M, Molinari G, Braunstein TH, Bojesen AM. subsp. () is an opportunistic pathogen of several species including humans. is found on mucus membranes of healthy horses, but can cause acute and chronic endometritis. Recently was found able to reside in the endometrium for prolonged periods of time. Thus, we hypothesized that an intracellular phase may be part of the pathogenesis and investigated if was able to invade and survive inside epithelial cells. HEp-2 and HeLa cell lines were co-cultured with two strains (1-4a and S31A1) both originating from the uterus of mares suffering from endometritis. Cells were fixed at different time...
Equine Endometrial Explants Undergo Significant Degenerative Changes in Culture.
Anatomical record (Hoboken, N.J. : 2007)    November 2, 2017   Volume 301, Issue 1 148-153 doi: 10.1002/ar.23701
Schwinghamer R, Massolo A, Knight C, Klein C.This study evaluated equine endometrial explants following 12, 24, and 48 hr in culture. Measurement of an indicator of cell death in explant supernatant, light microscopy, and gene expression of biomarkers of endometrial function and cellular stress were used to compare the effect of six different media on explant viability and morphology. Viability of explants was assessed indirectly through measuring LDH activity in the culture supernatant. Regardless of culture medium composition, a significant increase in LDH activity was observed within 12 hr of culture, indicating occurrence of cell dam...
Equine mesenchymal stem cells derived from endometrial or adipose tissue share significant biological properties, but have distinctive pattern of surface markers and migration.
Theriogenology    October 6, 2017   Volume 106 93-102 doi: 10.1016/j.theriogenology.2017.09.035
Cabezas J, Rojas D, Navarrete F, Ortiz R, Rivera G, Saravia F, Rodriguez-Alvarez L, Castro FO.Adult stromal mesenchymal stem cells (MSCs) have been postulated as responsible for cell renewal in highly and continuously regenerative tissues such as the endometrium. MSCs have been identified in the endometrium of many species including humans, rodents, pets and some farm animals, but not in horses. The objective of this work was to isolate such cells from the endometrium of mares and to compare their main biological attributes with horse adipose-derived MSCs. Here we successfully isolated and characterized endometrial MSCs (eMSCs) from mares. Said cells showed fibroblast-like morphology, ...
Misoprostol Inhibits Equine Neutrophil Adhesion, Migration, and Respiratory Burst in an In Vitro Model of Inflammation.
Frontiers in veterinary science    September 28, 2017   Volume 4 159 doi: 10.3389/fvets.2017.00159
Martin EM, Till RL, Sheats MK, Jones SL.In many equine inflammatory disease states, neutrophil activities, such as adhesion, migration, and reactive oxygen species (ROS) production become dysregulated. Dysregulated neutrophil activation causes tissue damage in horses with asthma, colitis, laminitis, and gastric glandular disease. Non-steroidal anti-inflammatory drugs do not adequately inhibit neutrophil inflammatory functions and can lead to dangerous adverse effects. Therefore, novel therapies that target mechanisms of neutrophil-mediated tissue damage are needed. One potential neutrophil-targeting therapeutic is the PGE1 analog, m...
Effects of autologous stromal cells and cytokines on differentiation of equine bone marrow-derived progenitor cells.
American journal of veterinary research    September 26, 2017   Volume 78, Issue 10 1215-1228 doi: 10.2460/ajvr.78.10.1215
Schwab UE, Tallmadge RL, Matychak MB, Felippe MJB.OBJECTIVE To develop an in vitro system for differentiation of equine B cells from bone marrow hematopoietic progenitor cells on the basis of protocols for other species. SAMPLE Bone marrow aspirates aseptically obtained from 12 research horses. PROCEDURES Equine bone marrow CD34 cells were sorted by use of magnetic beads and cultured in medium supplemented with cytokines (recombinant human interleukin-7, equine interleukin-7, stem cell factor, and Fms-like tyrosine kinase-3), murine OP9 stromal cell preconditioned medium, and equine fetal bone marrow mesenchymal stromal cell preconditioned me...
Comparison of the Effects of Interleukin-1 on Equine Articular Cartilage Explants and Cocultures of Osteochondral and Synovial Explants.
Frontiers in veterinary science    September 20, 2017   Volume 4 152 doi: 10.3389/fvets.2017.00152
Byron CR, Trahan RA.Osteoarthritis (OA) is a ubiquitous disease affecting many horses. The disease causes chronic pain and decreased performance for patients and great cost to owners for diagnosis and treatment. The most common treatments include systemic non-steroidal anti-inflammatory drugs and intra-articular injection of corticosteroids. There is excellent support for the palliative pain relief these treatments provide; however, they do not arrest progression and may in some instances hasten advancement of disease. Orthobiologic treatments have been investigated as potential OA treatments that may not only am...
Pericytes and their potential in regenerative medicine across species.
Cytometry. Part A : the journal of the International Society for Analytical Cytology    September 20, 2017   Volume 93, Issue 1 50-59 doi: 10.1002/cyto.a.23243
Esteves CL, Donadeu FX.The discovery that pericytes are in vivo counterparts of Mesenchymal Stem/Stromal Cells (MSCs) has placed these perivascular cells in the research spotlight, bringing up hope for a well-characterized cell source for clinical applications, alternative to poorly defined, heterogeneous MSCs preparations currently in use. Native pericytes express typical MSC markers and, after isolation by fluorescence-activated cell sorting, display an MSC phenotype in culture. These features have been demonstrated in different species, including humans and horses, the main targets of regenerative treatments. Sig...
Serum-free human MSC medium supports consistency in human but not in equine adipose-derived multipotent mesenchymal stromal cell culture.
Cytometry. Part A : the journal of the International Society for Analytical Cytology    September 19, 2017   Volume 93, Issue 1 60-72 doi: 10.1002/cyto.a.23240
Schubert S, Brehm W, Hillmann A, Burk J.For clinical applications of multipotent mesenchymal stromal cells (MSCs), serum-free culture is preferable to standardize cell products and prevent contamination with pathogens. In contrast to human MSCs, knowledge on serum-free culture of large animal MSCs is limited, despite its relevance for preclinical studies and development of veterinary cellular therapeutics. This study aimed to evaluate the suitability of a commercially available serum-free human MSC medium for culturing equine adipose-derived MSCs in comparison with human adipose MSCs. Enzyme-free isolation by explant technique and e...
Surface glycan pattern of canine, equine, and ovine bone marrow-derived mesenchymal stem cells.
Cytometry. Part A : the journal of the International Society for Analytical Cytology    September 14, 2017   Volume 93, Issue 1 73-81 doi: 10.1002/cyto.a.23241
Desantis S, Accogli G, Crovace A, Francioso EG, Crovace AM.The use of bone marrow-derived mesenchymal stem cells (MSCs) for clinical and experimental studies is increasing, but full characterization of MSCs in veterinary species is hindered by the variability in species-specific cell surface marker expression and antibody cross reactivity. Recent studies demonstrated that the glycans in the glycocalyx of MSCs are promising candidates as cell biomarkers. In the present study, we analyzed the glycocalyx of canine MSCs (cMSCs), ovine MSCs (oMSCs), and equine MSCs (eMSCs) using a cell microarray procedure in which MSCs were spotted on microarray slides an...
Ex vivo model unravelling cell distribution effect in hydrogels for cartilage repair.
ALTEX    September 8, 2017   Volume 35, Issue 1 65-76 doi: 10.14573/altex.1704171
Mouser VHM, Dautzenberg NMM, Levato R, van Rijen MHP, Dhert WJA, Malda J, Gawlitta D.The implantation of chondrocyte-laden hydrogels is a promising cartilage repair strategy. Chondrocytes can be spatially positioned in hydrogels and thus in defects, while current clinical cell therapies introduce chondrocytes in the defect depth. The main aim of this study was to evaluate the effect of spatial chondrocyte distribution on the reparative process. To reduce animal experiments, an ex vivo osteochondral plug model was used and evaluated. The role of the delivered and endogenous cells in the repair process was investigated. Full thickness cartilage defects were created in equine ost...
Advanced three-dimensional culture of equine intestinal epithelial stem cells.
Equine veterinary journal    September 6, 2017   Volume 50, Issue 2 241-248 doi: 10.1111/evj.12734
Stewart AS, Freund JM, Gonzalez LM.Intestinal epithelial stem cells are critical to epithelial repair following gastrointestinal injury. The culture of intestinal stem cells has quickly become a cornerstone of a vast number of new research endeavours that range from determining tissue viability to testing drug efficacy for humans. This study aims to describe the methods of equine stem cell culture and highlights the future benefits of these techniques for the advancement of equine medicine. Objective: To describe the isolation and culture of small intestinal stem cells into three-dimensional (3D) enteroids in horses without cli...
Horse hair follicles: A novel dermal stem cell source for equine regenerative medicine.
Cytometry. Part A : the journal of the International Society for Analytical Cytology    September 2, 2017   Volume 93, Issue 1 104-114 doi: 10.1002/cyto.a.23198
Michler JK, Hillmann A, Savkovic V, Mülling CKW.The easily accessible niche represented by skin and its appendages may serve as a promising source to complement modern regenerative medicine for horses. In humans and in animal models for human medicine, the hair follicle and its stem cell niches are well characterized. Since literature in this field of equine research is scarce, we sought to analyze cells of the dermal stem cell niche of the equine hair follicle morphologically and for a subset of markers useful for cell characterization via immunolabeling. We cultured equine forelock skin explants to obtain cultures with cells migrating fro...
RNA Interference and BMP-2 Stimulation Allows Equine Chondrocytes Redifferentiation in 3D-Hypoxia Cell Culture Model: Application for Matrix-Induced Autologous Chondrocyte Implantation.
International journal of molecular sciences    August 24, 2017   Volume 18, Issue 9 1842 doi: 10.3390/ijms18091842
Rakic R, Bourdon B, Hervieu M, Branly T, Legendre F, Saulnier N, Audigié F, Maddens S, Demoor M, Galera P.As in humans, osteoarthritis (OA) causes considerable economic loss to the equine industry. New hopes for cartilage repair have emerged with the matrix-associated autologous chondrocyte implantation (MACI). Nevertheless, its limitation is due to the dedifferentiation occurring during the chondrocyte amplification phase, leading to the loss of its capacity to produce a hyaline extracellular matrix (ECM). To enhance the MACI therapy efficiency, we have developed a strategy for chondrocyte redifferentiation, and demonstrated its feasibility in the equine model. Thus, to mimic the cartilage microe...
Ultrastructural characteristics and immune profile of equine MSCs from fetal adnexa.
Reproduction (Cambridge, England)    July 21, 2017   Volume 154, Issue 4 509-519 doi: 10.1530/REP-17-0032
Iacono E, Pascucci L, Rossi B, Bazzucchi C, Lanci A, Ceccoli M, Merlo B.Both in human and equine species, mesenchymal stem cells (MSCs) from amniotic membrane (AM) and Wharton's jelly (WJ), may be particularly useful for immediate use or in later stages of life, after cryopreservation in cell bank. The aim of this study was to compare equine AM- and WJ-MSCs features that may be relevant for their clinical employment. MSCs were more easily isolated from WJ, even if MSCs derived from AM exhibited more rapid proliferation ( < 0.05). Osteogenic and chondrogenic differentiation were more prominent in MSCs derived from WJ. This is also suggested by the lower adh...
Characterization of Fitzroy River Virus and Serologic Evidence of Human and Animal Infection.
Emerging infectious diseases    July 21, 2017   Volume 23, Issue 8 1289-1299 doi: 10.3201/eid2308.161440
Johansen CA, Williams SH, Melville LF, Nicholson J, Hall RA, Bielefeldt-Ohmann H, Prow NA, Chidlow GR, Wong S, Sinha R, Williams DT, Lipkin WI....In northern Western Australia in 2011 and 2012, surveillance detected a novel arbovirus in mosquitoes. Genetic and phenotypic analyses confirmed that the new flavivirus, named Fitzroy River virus, is related to Sepik virus and Wesselsbron virus, in the yellow fever virus group. Most (81%) isolates came from Aedes normanensis mosquitoes, providing circumstantial evidence of the probable vector. In cell culture, Fitzroy River virus replicated in mosquito (C6/36), mammalian (Vero, PSEK, and BSR), and avian (DF-1) cells. It also infected intraperitoneally inoculated weanling mice and caused mild c...
Decellularization of Large Tendon Specimens: Combination of Manually Performed Freeze-Thaw Cycles and Detergent Treatment.
Methods in molecular biology (Clifton, N.J.)    July 14, 2017   Volume 1577 227-237 doi: 10.1007/7651_2017_49
Roth SP, Erbe I, Burk J.Reliable decellularization techniques applicable to tendon tissue play a critical role in the field of current tissue engineering. Particularly, an application as three-dimensional culture model for in vitro research and translational approaches to establish graft-based tendon repair as a routine clinical tool represent two main application fields for decellularized tendon scaffolds. Considering methodological issues of tendon decellularization, one of the major challenges lies in the preservation of the tendon-specific extracellular matrix (ECM) architecture to reflect natural tissue characte...
Isolation and characterization of equine endometrial mesenchymal stromal cells.
Stem cell research & therapy    July 12, 2017   Volume 8, Issue 1 166 doi: 10.1186/s13287-017-0616-0
Rink BE, Amilon KR, Esteves CL, French HM, Watson E, Aurich C, Donadeu FX.Equine mesenchymal stromal/stem cells (MSCs) are most commonly harvested from bone marrow (BM) or adipose tissue, requiring the use of surgical procedures. By contrast, the uterus can be accessed nonsurgically, and may provide a more readily available cell source. While human endometrium is known to harbor mesenchymal precursor cells, MSCs have not been identified in equine endometrium. This study reports the isolation, culture, and characterization of MSCs from equine endometrium. The presence of MSC and pericyte markers in endometrial sections was determined using immunohistochemistry. Strom...
Altering equine corneal fibroblast differentiation through Smad gene transfer.
Veterinary ophthalmology    July 6, 2017   Volume 21, Issue 2 132-139 doi: 10.1111/vop.12485
Marlo TL, Giuliano EA, Tripathi R, Sharma A, Mohan RR.To explore the impact of equine corneal fibroblast (ECF) to myofibroblast (ECM) differentiation by altering the expression of the Smad genes either individually or in combination. Specifically, we sought to examine the ECF differentiation after (a) silencing of Smad2, 3, and 4 profibrotic genes individually and (b) overexpression of antifibrotic Smad7 gene and in a combination with pro- and antifibrotic Smad genes. Methods: Equine corneal fibroblast primary cultures were generated as previously described. ECFs were transfected with individual plasmids which silenced gene expression of either S...
Modulating the oxidative environment during mesenchymal stem cells chondrogenesis with serum increases collagen accumulation in agarose culture.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    June 26, 2017   Volume 36, Issue 1 506-514 doi: 10.1002/jor.23618
Tangtrongsup S, Kisiday JD.Chondrogenesis of mesenchymal stem cells (MSCs) is induced in culture conditions that have been associated with oxidative stress, although the extent to which the oxidative environment affects differentiation and extracellular matrix (ECM) accumulation is not known. The objectives of this study were to evaluate the oxidative environment during MSCs chondrogenesis in conventional serum-free medium, and the effect of serum-supplementation on intracellular reactive oxygen species (ROS) and chondrogenesis. Young adult equine MSCs were seeded into agarose and cultured in chondrogenic medium, with o...
Collection, processing and freezing of equine bone marrow cells.
Cryobiology    June 20, 2017   Volume 78 95-100 doi: 10.1016/j.cryobiol.2017.06.006
Bastos FZ, Barussi FCM, Santi TF, Vieira BP, Senegaglia AC, Cruz FF, Michelotto PV.There is no consensus on aspects of equine bone marrow collection and processing. The study aimed to describe the collection of large volumes of bone marrow from horses of advanced age, with emphasis on bone marrow mononuclear cells (BMMCs) recovery and viability after cryopreservation. Fourteen horses, aged 3-24 years, were divided into three experiments. E1 studied the feasibility of collecting 200 mL from the sternums of horses of advanced age; E2 examined the number of cells obtained from the first and last syringe of each puncture; and E3 investigated the influence of heparin concentrati...
The in vitro biocompatibility of d-(+) raffinose modified chitosan: Two-dimensional and three-dimensional systems for culturing of horse articular chondrocytes.
Research in veterinary science    June 15, 2017   Volume 115 310-317 doi: 10.1016/j.rvsc.2017.06.005
De Angelis E, Ravanetti F, Martelli P, Cacchioli A, Ivanovska A, Corradi A, Nasi S, Bianchera A, Passeri B, Canelli E, Bettini R, Borghetti P.The present study investigated the biocompatibility of chitosan films and scaffolds modified with d-(+)raffinose and their capability to support the growth and maintenance of the differentiation of articular chondrocytes in vitro. Primary equine articular chondrocytes were cultured on films and scaffolds of modified d-(+) raffinose chitosan. Their behavior was compared to that of chondrocytes grown in conventional bi- and three-dimensional culture systems, such as micromasses and alginate beads. Chitosan films maintained the phenotype of differentiated chondrocytes (typical round morphology) a...
Transforming Growth Factor-β2 Downregulates Major Histocompatibility Complex (MHC) I and MHC II Surface Expression on Equine Bone Marrow-Derived Mesenchymal Stem Cells Without Altering Other Phenotypic Cell Surface Markers.
Frontiers in veterinary science    June 12, 2017   Volume 4 84 doi: 10.3389/fvets.2017.00084
Berglund AK, Fisher MB, Cameron KA, Poole EJ, Schnabel LV.Allogeneic mesenchymal stem cells (MSCs) are a promising cell source for treating musculoskeletal injuries in horses. Effective and safe allogeneic therapy may be hindered, however, by recipient immune recognition and rejection of major histocompatibility complex (MHC)-mismatched MSCs. Development of strategies to prevent immune rejection of MHC-mismatched MSCs in vivo is necessary to enhance cell survival and potentially increase the efficacy and safety of allogeneic MSC therapy. The purposes of this study were to evaluate if transforming growth factor-β2 (TGF-β2) downregulated MHC expressi...
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