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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.
An Investigation of Equine Mesenchymal Stem Cell Characteristics from Different Harvest Sites: More Similar Than Not.
Frontiers in veterinary science    December 7, 2015   Volume 2 67 doi: 10.3389/fvets.2015.00067
Lombana KG, Goodrich LR, Phillips JN, Kisiday JD, Ruple-Czerniak A, McIlwraith CW.Diseases of the musculoskeletal system are a major cause of loss of use and retirement in sport horses. The use of bone marrow-derived mesenchymal stem cells (BMDMSCs) for healing of traumatized tissue has gained substantial favor in clinical settings and can assist healing and tissue regeneration in orthopedic injuries. There are two common sites of harvest of BMDMSCs, the sternum and the ilium. Our objective was to determine if any differences exist in BMDMSCs acquired from the sternum and the ilium. We compared the two harvest sites in their propensity to undergo multilineage differentiatio...
Prospects and Challenges of Induced Pluripotent Stem Cells in Equine Health.
Frontiers in veterinary science    November 19, 2015   Volume 2 59 doi: 10.3389/fvets.2015.00059
Donadeu FX, Esteves CL.Pluripotent stem cells (PSCs) hold, through the capacity to differentiate into virtually all body cell types, unprecedented promise for human and animal medicine. PSCs are naturally found in the early embryo, and in rodents and humans they can be robustly harvested and grown in culture in the form of embryonic stem cells (ESCs); however, the availability of ESCs from horses is limited. ES-like cells named induced pluripotent stem cells (iPSCs) can be derived in vitro by transcription factor-mediated reprogramming of adult cells. As such, iPSCs can be generated in a patient-specific manner prov...
Direct Conversion of Equine Adipose-Derived Stem Cells into Induced Neuronal Cells Is Enhanced in Three-Dimensional Culture.
Cellular reprogramming    November 18, 2015   Volume 17, Issue 6 419-426 doi: 10.1089/cell.2015.0046
Petersen GF, Hilbert BJ, Trope GD, Kalle WH, Strappe PM.The ability to culture neurons from horses may allow further investigation into equine neurological disorders. In this study, we demonstrate the generation of induced neuronal cells from equine adipose-derived stem cells (EADSCs) using a combination of lentiviral vector expression of the neuronal transcription factors Brn2, Ascl1, Myt1l (BAM) and NeuroD1 and a defined chemical induction medium, with βIII-tubulin-positive induced neuronal cells displaying a distinct neuronal morphology of rounded and compact cell bodies, extensive neurite outgrowth, and branching of processes. Furthermore, we ...
Characterization of mesenchymal stem cells derived from the equine synovial fluid and membrane.
BMC veterinary research    November 10, 2015   Volume 11 281 doi: 10.1186/s12917-015-0531-5
Prado AA, Favaron PO, da Silva LC, Baccarin RY, Miglino MA, Maria DA.Isolation of mesenchymal stem cells (MSCs) in equines, has been reported for different tissues including bone marrow, adipose, umbilical cord, peripheral blood, and yolk sac. In regard to the MSCs derived from synovial fluid (SF) or membrane (SM), there is data available for humans, dogs, pigs, goats and horses. Especially in equines, these cells have being considered promising candidates for articular regeneration. Herein, we established and characterized MSCs obtained from equine SF and SM. Samples were obtained during arthroscopy and cultured using MEM (Minimum Essential Medium). MSCs were ...
Generation, Characterization, and Multilineage Potency of Mesenchymal-Like Progenitors Derived from Equine Induced Pluripotent Stem Cells.
Stem cells and development    November 5, 2015   Volume 25, Issue 1 80-89 doi: 10.1089/scd.2014.0409
Lepage SI, Nagy K, Sung HK, Kandel RA, Nagy A, Koch TG.Multipotent mesenchymal stromal cells (MSCs) are more and more frequently used to treat orthopedic injuries in horses. However, these cells are limited in their expandability and differentiation capacity. Recently, the first equine-induced pluripotent stem cell (iPSC) lines were reported by us [ 1 ]. In vitro differentiation of iPSCs into MSC-like cells is an attractive alternative to using MSCs derived from other sources, as a much larger quantity of patient-specific cells with broad differentiation potential could be generated. However, the differentiation capacity of iPSCs to MSCs and the p...
Frequent presence of hepaci and pegiviruses in commercial equine serum pools.
Veterinary microbiology    November 1, 2015   Volume 182 8-14 doi: 10.1016/j.vetmic.2015.10.032
Postel A, Cavalleri JM, Pfaender S, Walter S, Steinmann E, Fischer N, Feige K, Haas L, Becher P.Novel viruses belonging to the genera Hepacivirus and Pegivirus have recently been discovered in horses and other animal species. Viral genomes of non-primate hepaciviruses (NPHV), equine pegivirus 1 (EPgV 1) and Theiler's disease associated virus (TDAV) were detected in a horse serum routinely used for cell culture propagation in our laboratory. Therefore, a study was carried out to further investigate the presence of these human Hepatitis C virus (HCV) related viruses in equine serum based products used in veterinary medicine and for research and to characterize the viral genomes. Without ex...
Cell-based cartilage repair strategies in the horse.
Veterinary journal (London, England : 1997)    October 23, 2015   Volume 208 1-12 doi: 10.1016/j.tvjl.2015.10.027
Ortved KF, Nixon AJ.Damage to the articular cartilage surface is common in the equine athlete and, due to the poor intrinsic healing capabilities of cartilage, can lead to osteoarthritis (OA). Joint disease and OA are the leading cause of retirement in equine athletes and currently there are no effective treatments to stop the progression of OA. Several different cell-based strategies have been investigated to bolster the weak regenerative response of chondrocytes. Such techniques aim to restore the articular surface and prevent further joint degradation. Cell-based cartilage repair strategies include enhancement...
Effect of Different Media and Protein Source on Equine Gametes: Potential Impact During In Vitro Fertilization.
Reproduction in domestic animals = Zuchthygiene    October 20, 2015   Volume 50, Issue 6 1039-1046 doi: 10.1111/rda.12634
González-Fernández L, Macedo S, Lopes JS, Rocha A, Macías-García B.Equine in vitro fertilization (IVF) is still inconsistent. In the present work, we studied how modified Whitten's (MW) medium and Tissue Culture Medium 199 (TCM) added with Foetal Bovine Serum (FBS; 10% v/v) or Bovine Serum Albumin (BSA; 7 mg/ml) affected equine gametes to subsequently run IVF trials. Compact (Cp) and expanded (Ex) cumuli equine oocytes were matured and placed in TCM or MW supplemented with BSA or FBS for 18-20 h (no sperm added). In Ex oocytes, TCM-199 added with FBS or BSA resulted in higher metaphase II (MII) rates (75.7% and 62.7%, respectively) than MW added with BSA (54%...
Population doubling level-dependent change of secreted glycosaminoglycan in equine bone marrow-derived mesenchymal stem cells.
Journal of equine science    September 30, 2015   Volume 26, Issue 3 73-80 doi: 10.1294/jes.26.73
Sasao T, Fukuda Y, Yoshida S, Miyabara S, Kasashima Y, Kuwano A, Arai K.In regenerative medicine using transplantation of mesenchymal stem cells (MSCs), the importance of regulating the quality of MSCs has been well recognized; however, there is little information concerning the relationship between the population doubling level (PDL) and the stemness of MSCs in equine medicine. In this study, we showed that the amount of glycosaminoglycan (GAG) secreted by bone marrow-derived MSCs (BMSCs) decreases with increase of PDL. Enzymatic digestion and two-dimensional electrophoresis revealed that a main component of GAG produced by BMSCs was hyaluronan with a small amoun...
Chondrogenic Priming at Reduced Cell Density Enhances Cartilage Adhesion of Equine Allogeneic MSCs – a Loading Sensitive Phenomenon in an Organ Culture Study with 180 Explants. Spaas JH, Broeckx SY, Chiers K, Ferguson SJ, Casarosa M, Van Bruaene N, Forsyth R, Duchateau L, Franco-Obregón A, Wuertz-Kozak K.Clinical results of regenerative treatments for osteoarthritis are becoming increasingly significant. However, several questions remain UNANSWERED concerning mesenchymal stem cell (MSC) adhesion and incorporation into cartilage. Methods: To this end, peripheral blood (PB) MSCs were chondrogenically induced and/or stimulated with pulsed electromagnetic fields (PEMFs) for a brief period of time just sufficient to prime differentiation. In an organ culture study, PKH26 labelled MSCs were added at two different cell densities (0.5 x106 vs 1.0 x106). In total, 180 explants of six horses (30 per hor...
Cell Surface Glycan Changes in the Spontaneous Epithelial-Mesenchymal Transition of Equine Amniotic Multipotent Progenitor Cells.
Cells, tissues, organs    August 26, 2015   Volume 200, Issue 3-4 212-226 doi: 10.1159/000433420
Lange-Consiglio A, Accogli G, Cremonesi F, Desantis S.Amniotic epithelial cells (AECs) spontaneously transform into amniotic mesenchymal cells (AMCs) in vitro during cell culture. Glycocalyx was analyzed to identify the glycan pattern in AECs, AMCs and epithelial-mesenchymal transdifferentiated cells (EMTCs). Pure cell cultures were derived using cloned AEC and AMC cell lines obtained by the dilution technique from amniotic membranes. Mesenchymal cells generated by differentiation of clonal epithelial cells were considered transdifferentiated. Immunocytoscreen, in vitro multipotent differentiation and molecular characterization of EMTCs were perf...
Applied Protein and Molecular Techniques for Characterization of B Cell Neoplasms in Horses.
Clinical and vaccine immunology : CVI    August 26, 2015   Volume 22, Issue 11 1133-1145 doi: 10.1128/CVI.00374-15
Badial PR, Tallmadge RL, Miller S, Stokol T, Richards K, Borges AS, Felippe MJ.Mature B cell neoplasms cover a spectrum of diseases involving lymphoid tissues (lymphoma) or blood (leukemia), with an overlap between these two presentations. Previous studies describing equine lymphoid neoplasias have not included analyses of clonality using molecular techniques. The objective of this study was to use molecular techniques to advance the classification of B cell lymphoproliferative diseases in five adult equine patients with a rare condition of monoclonal gammopathy, B cell leukemia, and concurrent lymphadenopathy (lymphoma/leukemia). The B cell neoplasms were phenotypically...
Keratoconjunctivitis in a group of Icelandic horses with suspected γ-herpesvirus involvement.
Equine veterinary journal    August 21, 2015   Volume 48, Issue 4 427-429 doi: 10.1111/evj.12465
Rushton JO, Kolodziejek J, Nell B, Weissenböck H, Nowotny N.The role of equid γ-herpesviruses on ocular surface diseases has been disputed, because the diagnosis is usually based on clinical symptoms and detection of viral DNA from samples obtained from live animals. Objective: To describe the clinical course, results of polymerase chain reaction (PCR) analysis, in situ hybridisation, cell culture and pathohistological findings of select cases in a presumed outbreak of herpesvirus infection in a group of 15 Icelandic horses. Methods: Case series. Methods: Pooled ocular and nasal swabs and peripheral blood mononuclear cells of horses diagnosed clinica...
mRNA expression of genes involved in inflammation and haemostasis in equine fibroblast-like synoviocytes following exposure to lipopolysaccharide, fibrinogen and thrombin.
BMC veterinary research    June 27, 2015   Volume 11 141 doi: 10.1186/s12917-015-0448-z
Andreassen SM, Berg LC, Nielsen SS, Kristensen AT, Jacobsen S.Studies in humans have shown that haemostatic and inflammatory pathways both play important roles in the pathogenesis of joint disease. The aim of this study was to assess mRNA expression of haemostatic and inflammatory factors in cultured equine fibroblast-like synoviocytes exposed to lipopolysaccharide (LPS), fibrinogen and thrombin. Synovial membranes were collected from metacarpo-phalangeal joints of 6 skeletally mature horses euthanized for non-orthopaedic reasons. Passage 4 fibroblast-like synoviocytes were left non-treated or treated with either 0.1 μg/ml LPS, 5 mg/ml fibrinogen or 5 U...
Development of a clonal equine myoblast cell line capable of terminal differentiation into mature myotubes in vitro.
American journal of veterinary research    June 26, 2015   Volume 76, Issue 7 608-614 doi: 10.2460/ajvr.76.7.608
Naylor RJ, Piercy RJ.To produce a clonal equine myoblast cell line that retains the ability to divide for multiple passages and differentiate into multinucleated myotubes during specific conditions. Methods: Cultured primary equine skeletal muscle-derived cells from a healthy Thoroughbred. Methods: Cell cultures were transfected by electroporation with a plasmid (pNIT) that expresses the temperature-sensitive simian vacuolating virus 40 large T antigen (TAg), which can be controlled by a doxycycline-responsive promoter. Cells that stably integrated the TAg were selected and expanded to passage 25. For each passage...
What quantitative mechanical loading stimulates in vitro cultivation best?
Journal of experimental orthopaedics    June 19, 2015   Volume 2, Issue 1 15 doi: 10.1186/s40634-015-0029-x
Natenstedt J, Kok AC, Dankelman J, Tuijthof GJ.Articular cartilage has limited regeneration capacities. One of the factors that appear to affect the in vitro cultivation of articular cartilage is mechanical stimulation. So far, no combination of parameters has been identified that offers the best results. The goal is to review the literature in search of the best available set of quantitative mechanical stimuli that lead to optimal in vitro cultivation.The databases Scopus and PubMed were used to survey the literature, and strict in- and exclusion criteria were applied regarding the presence of quantitative data. The review was performed b...
HORSE SPECIES SYMPOSIUM: Advances in equine stem cell biology.
Journal of animal science    May 29, 2015   Volume 93, Issue 3 860-861 doi: 10.2527/jas.2014-8894
Coverdale JA, Hoagland T, Berg EL.The Horse Species Symposium titled “Advances in Equine Stem Cell Biology” was held at the Joint Annual Meeting of the American Dairy Science Association, American Society of Animal Science, and Canadian Society of Animal Science in Kansas City, MO, July 20 to 24, 2014. The purpose of the symposium was to discuss recent research findings related to equine stem cell use in chondrocytes, muscle satellite cells, and bone. The symposium comprised 3 invited presentations. The symposium began with the invited presentation by J. N. MacLeod (University of Kentucky, Lexington), who discussed the ...
HORSE SPECIES SYMPOSIUM: Use of mesenchymal stem cells in fracture repair in horses.
Journal of animal science    May 29, 2015   Volume 93, Issue 3 871-878 doi: 10.2527/jas.2014-8516
Govoni KE.Equine bone fractures are often catastrophic, potentially fatal, and costly to repair. Traditional methods of healing fractures have limited success, long recovery periods, and a high rate of reinjury. Current research in the equine industry has demonstrated that stem cell therapy is a promising novel therapy to improve fracture healing and reduce the incidence of reinjury; however, reports of success in horses have been variable and limited. Stem cells can be derived from embryonic, fetal, and adult tissue. Based on the ease of collection, opportunity for autologous cells, and proven success ...
Differentiation of equine induced pluripotent stem cells into a keratinocyte lineage.
Equine veterinary journal    May 29, 2015   Volume 48, Issue 3 338-345 doi: 10.1111/evj.12438
Aguiar C, Therrien J, Lemire P, Segura M, Smith LC, Theoret CL.Skin trauma in horses often leads to the development of chronic nonhealing wounds that lack a keratinocyte cover, vital for healing. Reports in mouse and man confirm the possibility of generating functional keratinocytes from induced pluripotent stem cells (iPSC), thus presenting myriad potential applications for wound management or treatment of skin disease. Similarly, differentiation of equine iPSC (eiPSC) into a keratinocyte lineage should provide opportunities for the advancement of veterinary regenerative medicine. Objective: The purpose of this study was to develop an efficient method fo...
Evaluation of the ability of a gravitational filtration system to enhance recovery of equine bone marrow elements.
American journal of veterinary research    May 23, 2015   Volume 76, Issue 6 561-569 doi: 10.2460/ajvr.76.6.561
Mundy LN, Ishihara A, Wellman ML, Bertone AL.To assess efficiency of gravity filtration to enhance recovery of equine bone marrow elements including stem and progenitor cells. Methods: 12 healthy adult horses. Methods: Bone marrow aspirates were collected from the fifth sternebral body and filtered by gravitational flow to obtain bone marrow elements. Raw and harvested bone marrow and marrow effluent were evaluated for WBC and platelet counts, automated and cytomorphologic cell differential counts, mesenchymal stem cell CFUs, cell viability, and differentiation capacity. Isolated cells were analyzed for CD90 and major histocompatibility ...
Improvement of development of equine preantral follicles after 6 days of in vitro culture with ascorbic acid supplementation.
Theriogenology    May 19, 2015   Volume 84, Issue 5 750-755 doi: 10.1016/j.theriogenology.2015.05.006
Gomes RG, Lisboa LA, Silva CB, Max MC, Marino PC, Oliveira RL, González SM, Barreiros TR, Marinho LS, Seneda MM.The aim of this study was to evaluate the effects of different concentrations of ascorbic acid (25, 50, and 100 μg/mL) in supplemented minimum essential medium (MEM+) on the development of equine preantral follicles that were cultured in vitro for 2 or 6 days. The contralateral ovaries (n = 5) from five mares in seasonal anestrus were collected from a local abattoir. Nine ovarian tissue fragments of approximately 5 × 5 × 1 mm were obtained from each animal. One fragment was immediately fixed and subjected to histologic analysis (control group; Day 0), and the other eight were placed in PBS ...
Resveratrol and N-acetylcysteine influence redox balance in equine articular chondrocytes under acidic and very low oxygen conditions.
Free radical biology & medicine    May 19, 2015   Volume 86 57-64 doi: 10.1016/j.freeradbiomed.2015.05.008
Collins JA, Moots RJ, Clegg PD, Milner PI.Mature articular cartilage is an avascular tissue characterized by a low oxygen environment. In joint disease, acidosis and further reductions in oxygen levels occur, compromising cartilage integrity.This study investigated how acidosis and very low oxygen levels affect components of the cellular redox system in equine articular chondrocytesand whether the antioxidants resveratrol and N-acetylcysteine could modulate this system. We used articular chondrocytes isolated from nondiseased equine joints and cultured them in a 3-D alginate bead system for 48h in <1, 2, 5, and 21% O2 at pH 7.2 or ...
GAPDH, β-actin and β2-microglobulin, as three common reference genes, are not reliable for gene expression studies in equine adipose- and marrow-derived mesenchymal stem cells.
Journal of animal science and technology    May 7, 2015   Volume 57 18 doi: 10.1186/s40781-015-0050-8
Nazari F, Parham A, Maleki AF.Quantitative real time reverse transcription PCR (qRT-PCR) is one of the most important techniques for gene-expression analysis in molecular based studies. Selecting a proper internal control gene for normalizing data is a crucial step in gene expression analysis via this method. The expression levels of reference genes should be remained constant among cells in different tissues. However, it seems that the location of cells in different tissues might influence their expression. The purpose of this study was to determine whether the source of mesenchymal stem cells (MSCs) has any effect on exp...
Equine platelet lysate as an alternative to fetal bovine serum in equine mesenchymal stromal cell culture – too much of a good thing?
Equine veterinary journal    May 4, 2015   Volume 48, Issue 2 261-264 doi: 10.1111/evj.12440
Russell KA, Koch TG.Multipotent mesenchymal stromal cells (MSC) are often culture-expanded in vitro. Presently, expansion medium (EM) for MSC is supplemented with fetal bovine serum (FBS). However, increasing cost, variable composition and potential risks associated with bovine antigens call for alternatives. Platelet lysate (PL) has shown promise as an alternative supplement. Objective: To determine how equine umbilical cord blood (CB) MSC proliferate in EM enriched with PL or FBS at various concentrations. Methods: Randomised dose escalation study. Methods: Platelet concentrate was generated from 5 equine whol...
Characterising Non-Structural Protein NS4 of African Horse Sickness Virus.
PloS one    April 27, 2015   Volume 10, Issue 4 e0124281 doi: 10.1371/journal.pone.0124281
Zwart L, Potgieter CA, Clift SJ, van Staden V.African horse sickness is a serious equid disease caused by the orbivirus African horse sickness virus (AHSV). The virus has ten double-stranded RNA genome segments encoding seven structural and three non-structural proteins. Recently, an additional protein was predicted to be encoded by genome segment 9 (Seg-9), which also encodes VP6, of most orbiviruses. This has since been confirmed in bluetongue virus and Great Island virus, and the non-structural protein was named NS4. In this study, in silico analysis of AHSV Seg-9 sequences revealed the existence of two main types of AHSV NS4, designat...
Phenotypic and immunomodulatory properties of equine cord blood-derived mesenchymal stromal cells.
PloS one    April 22, 2015   Volume 10, Issue 4 e0122954 doi: 10.1371/journal.pone.0122954
Tessier L, Bienzle D, Williams LB, Koch TG.Multipotent mesenchymal stromal cells (MSC) have attracted interest for their cytotherapeutic potential, partly due to their immunomodulatory abilities. The aim of this study was to test the robustness of our equine cord blood (CB) MSC isolation protocol, to characterize the CB-MSC before and after cryopreservation, and to evaluate their immunosuppressive phenotype. We hypothesized that MSC can be consistently isolated from equine CB, have unique and reproducible marker expression and in vitro suppress lymphoproliferation. Preliminary investigation of constitutive cytoplasmic Toll-like recepto...
Equine and Canine Influenza H3N8 Viruses Show Minimal Biological Differences Despite Phylogenetic Divergence.
Journal of virology    April 22, 2015   Volume 89, Issue 13 6860-6873 doi: 10.1128/JVI.00521-15
Feng KH, Gonzalez G, Deng L, Yu H, Tse VL, Huang L, Huang K, Wasik BR, Zhou B, Wentworth DE, Holmes EC, Chen X, Varki A, Murcia PR, Parrish CR.The A/H3N8 canine influenza virus (CIV) emerged from A/H3N8 equine influenza virus (EIV) around the year 2000 through the transfer of a single virus from horses to dogs. We defined and compared the biological properties of EIV and CIV by examining their genetic variation, infection, and growth in different cell cultures, receptor specificity, hemagglutinin (HA) cleavage, and infection and growth in horse and dog tracheal explant cultures. Comparison of sequences of viruses from horses and dogs revealed mutations that may be linked to host adaptation and tropism. We prepared infectious clones o...
Expression of genes involved in immune response and in vitro immunosuppressive effect of equine MSCs.
Veterinary immunology and immunopathology    April 21, 2015   Volume 165, Issue 3-4 107-118 doi: 10.1016/j.vetimm.2015.04.004
Remacha AR, Barrachina L, Álvarez-Arguedas S, Ranera B, Romero A, Vázquez FJ, Zaragoza P, Yañez R, Martín-Burriel I, Rodellar C.The immunomodulatory capacities of mesenchymal stem cells (MSCs) have made them the subject of increased clinical interest for tissue regeneration and repair. We have studied the immunomodulatory capacity of equine MSCs derived from bone marrow (BM-MSCs) and adipose tissue (AT-MSCs) in cocultures with allogeneic peripheral blood mononuclear cells (PBMCs). Different isoforms and concentrations of phytohaemaglutinin (PHA) were tested to determine the best stimulation conditions for PBMC proliferation and a proliferation assay was performed for 7 days to determine the optimal day of stimulation o...
Restricted differentiation potential of progenitor cell populations obtained from the equine superficial digital flexor tendon (SDFT).
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    April 17, 2015   Volume 33, Issue 6 849-858 doi: 10.1002/jor.22891
Williamson KA, Lee KJ, Humphreys WJ, Comerford EJ, Clegg PD, Canty-Laird EG.The aim of this study was to characterize stem and progenitor cell populations from the equine superficial digital flexor tendon, an energy-storing tendon with similarities to the human Achilles tendon, which is frequently injured. Using published methods for the isolation of tendon-derived stem/progenitor cells by low-density plating we found that isolated cells possessed clonogenicity but were unable to fully differentiate towards mesenchymal lineages using trilineage differentiation assays. In particular, adipogenic differentiation appeared to be restricted, as assessed by Oil Red O stainin...
Microencapsulated equine mesenchymal stromal cells promote cutaneous wound healing in vitro.
Stem cell research & therapy    April 11, 2015   Volume 6, Issue 1 66 doi: 10.1186/s13287-015-0037-x
Bussche L, Harman RM, Syracuse BA, Plante EL, Lu YC, Curtis TM, Ma M, Van de Walle GR.The prevalence of impaired cutaneous wound healing is high and treatment is difficult and often ineffective, leading to negative social and economic impacts for our society. Innovative treatments to improve cutaneous wound healing by promoting complete tissue regeneration are therefore urgently needed. Mesenchymal stromal cells (MSCs) have been reported to provide paracrine signals that promote wound healing, but (i) how they exert their effects on target cells is unclear and (ii) a suitable delivery system to supply these MSC-derived secreted factors in a controlled and safe way is unavailabl...
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