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Topic:Cell Proliferation

Cell proliferation in horses refers to the process by which cells divide and multiply, contributing to growth, development, and tissue repair. This biological process is fundamental to maintaining normal physiological functions and responding to injuries or diseases. In equine research, cell proliferation is studied to understand its role in various contexts such as wound healing, regenerative medicine, and cancer. Factors influencing cell proliferation in horses include genetic, environmental, and nutritional elements. This page assembles peer-reviewed research studies and scholarly articles that explore the mechanisms, regulation, and implications of cell proliferation in equine health and disease management.
Polymer-mineral scaffold augments in vivo equine multipotent stromal cell osteogenesis.
Stem cell research & therapy    March 9, 2018   Volume 9, Issue 1 60 doi: 10.1186/s13287-018-0790-8
Duan W, Chen C, Haque M, Hayes D, Lopez MJ.Use of bioscaffolds to direct osteogenic differentiation of adult multipotent stromal cells (MSCs) without exogenous proteins is a contemporary approach to bone regeneration. Identification of in vivo osteogenic contributions of exogenous MSCs on bioscaffolds after long-term implantation is vital to understanding cell persistence and effect duration. This study was designed to quantify in vivo equine MSC osteogenesis on synthetic polymer scaffolds with distinct mineral combinations 9 weeks after implantation in a murine model. Cryopreserved, passage (P)1, equine bone marrow-derived MSCs (BMSC)...
The ghrelin paradox in the control of equine chondrocyte function: The good and the bad.
Peptides    March 8, 2018   Volume 103 1-9 doi: 10.1016/j.peptides.2018.03.003
Ceriotti S, Consiglio AL, Casati L, Cremonesi F, Sibilia V, Ferrucci F.Increasing evidence suggests a role for ghrelin in the control of articular inflammatory diseases like osteoarthritis (OA). In the present study we examined the ability of ghrelin to counteract LPS-induced necrosis and apoptosis of chondrocytes and the involvement of GH secretagogue receptor (GHS-R)1a in the protective action of ghrelin. The effects of ghrelin (10-10 mol/L) on equine primary cultured chondrocytes viability and necrosis in basal conditions and under LPS treatment (100 ng/ml) were detected by using both acridine orange/propidium iodide staining and annexin-5/propidium iodide...
Wharton’s Jelly Derived Mesenchymal Stem Cells: Comparing Human and Horse.
Stem cell reviews and reports    March 7, 2018   Volume 14, Issue 4 574-584 doi: 10.1007/s12015-018-9803-3
Merlo B, Teti G, Mazzotti E, Ingrà L, Salvatore V, Buzzi M, Cerqueni G, Dicarlo M, Lanci A, Castagnetti C, Iacono E.Wharton's jelly (WJ) is an important source of mesenchymal stem cells (MSCs) both in human and other animals. The aim of this study was to compare human and equine WJMSCs. Human and equine WJMSCs were isolated and cultured using the same protocols and culture media. Cells were characterized by analysing morphology, growth rate, migration and adhesion capability, immunophenotype, differentiation potential and ultrastructure. Results showed that human and equine WJMSCs have similar ultrastructural details connected with intense synthetic and metabolic activity, but differ in growth, migration, a...
Absence of relationship between type-I interferon suppression and neuropathogenicity of EHV-1.
Veterinary immunology and immunopathology    February 25, 2018   Volume 197 24-30 doi: 10.1016/j.vetimm.2018.01.007
Oladunni FS, Sarkar S, Reedy S, Balasuriya UBR, Horohov DW, Chambers TM.Equine herpesvirus-1 (EHV-1) infection is an important and highly prevalent disease in equine populations worldwide. Previously we have demonstrated that a neuropathogenic strain of EHV-1, T953, suppresses the host cell's antiviral type-I interferon (IFN) response in vitro. Whether or not this is unique to EHV-1 strains possessing the neuropathogenic genotype has been undetermined. Here, we examined whether there is any direct relationship between neuropathogenic genotype and the induced IFN-β response in equine endothelial cells (EECs) infected with 10 different strains of EHV-1. The extent ...
Chondrogenic Differentiation of Defined Equine Mesenchymal Stem Cells Derived from Umbilical Cord Blood for Use in Cartilage Repair Therapy.
International journal of molecular sciences    February 10, 2018   Volume 19, Issue 2 537 doi: 10.3390/ijms19020537
Desancé M, Contentin R, Bertoni L, Gomez-Leduc T, Branly T, Jacquet S, Betsch JM, Batho A, Legendre F, Audigié F, Galéra P, Demoor M.Cartilage engineering is a new strategy for the treatment of cartilage damage due to osteoarthritis or trauma in humans. Racehorses are exposed to the same type of cartilage damage and the anatomical, cellular, and biochemical properties of their cartilage are comparable to those of human cartilage, making the horse an excellent model for the development of cartilage engineering. Human mesenchymal stem cells (MSCs) differentiated into chondrocytes with chondrogenic factors in a biomaterial appears to be a promising therapeutic approach for direct implantation and cartilage repair. Here, we cha...
PRGF in equine corneal cells: A standardised protocol is the key to achieve accurate results.
Equine veterinary journal    February 3, 2018   Volume 50, Issue 2 274-275 doi: 10.1111/evj.12798
Anitua E, Muruzabal F, Prado R, Merayo-Lloves J.No abstract available
The Effect of Methyl-β-cyclodextrin on Apoptosis, Proliferative Activity, and Oxidative Stress in Adipose-Derived Mesenchymal Stromal Cells of Horses Suffering from Metabolic Syndrome (EMS).
Molecules (Basel, Switzerland)    January 30, 2018   Volume 23, Issue 2 287 doi: 10.3390/molecules23020287
Szydlarska J, Weiss C, Marycz K.Methyl-β-cyclodextrin (MβCD) is a cyclic oligosaccharide, commonly used as a pharmacological agent to deplete membrane cholesterol. In this study, we examined the effect of MβCD on adipose-derived mesenchymal stromal cells (ASCs) isolated form healthy horses (ASC) and from horses suffering from metabolic syndrome (ASC). We investigated the changes in the mRNA levels of the glucose transporter 4 (GLUT4) and found that MβCD application may lead to a significant improvement in glucose transport in ASC. We also showed that MβCD treatment affected GLUT4 upregulation in an insulin-independent m...
Molecular Characteristics of the Equine Periodontal Ligament.
Frontiers in veterinary science    January 11, 2018   Volume 4 235 doi: 10.3389/fvets.2017.00235
Pöschke A, Krähling B, Failing K, Staszyk C.The equine periodontal ligament (PDL) is a fibrous connective tissue that covers the intra-alveolar parts of the tooth and anchors it to the alveolar bone-it, therefore, provides a similar function to a tendinous structure. While several studies have considered the formation and structure of tendons, there is insufficient information particularly on the molecular composition of the PDL. Especially for the equine PDL, there is limited knowledge concerning the expression of genes commonly regarded as typical for tendon tissue. In this study, the gene expression of, e.g., (, and fibrocartilage m...
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 ...
Protein biomarker of cell proliferation determines survival to discharge in cases of equine large colon volvulus.
Equine veterinary journal    November 27, 2017   Volume 50, Issue 4 452-456 doi: 10.1111/evj.12767
Kucera CR, Stranahan LW, Hughes F, Blikslager AT, Gonzalez LM.Progenitor cells play critical roles in epithelial repair following ischaemic injury. Protein biomarkers have been used to identify intestinal progenitor cell subpopulations. This study aims to determine if a critical number of intestinal progenitor cells can predict tissue viability and survival to discharge of large colon volvulus (LCV) cases. Objective: The objectives were to 1) identify intestinal progenitor cell subpopulations using biomarkers: proliferating cell nuclear antigen (PCNA), sex determining region Y box 9 (SOX9), phospho-histone H3 (PHH3) and Ki-67, 2) define cut-off values fo...
Osteogenic differentiation of equine adipose tissue derived mesenchymal stem cells using CaCl2.
Research in veterinary science    November 21, 2017   Volume 117 45-53 doi: 10.1016/j.rvsc.2017.11.010
Elashry MI, Baulig N, Heimann M, Bernhardt C, Wenisch S, Arnhold S.Adipose tissue derived mesenchymal stem cells (ASCs) may be used to cure bone defects after osteogenic differentiation. In this study we tried to optimize osteogenic differentiation for equine ASCs using various concentrations of CaCl in comparison to the standard osteogenic protocol. ASCs were isolated from subcutaneous adipose tissue from mixed breed horses. The osteogenic induction protocols were (1) the standard osteogenic medium (OM) composed of dexamethasone, ascorbic acid and β-glycerol phosphate; (2) CaCl based protocol composed of 3, 5 and 7.5mM CaCl. Differentiation and proliferatio...
In Vitro Effects of High-Intensity Laser Photobiomodulation on Equine Bone Marrow-Derived Mesenchymal Stem Cell Viability and Cytokine Expression.
Photomedicine and laser surgery    November 13, 2017   Volume 36, Issue 2 83-91 doi: 10.1089/pho.2017.4344
Peat FJ, Colbath AC, Bentsen LM, Goodrich LR, King MR.This study aimed to examine the influence of neodymium-doped yttrium aluminum garnet (Nd:YAG) laser irradiation on equine bone marrow-derived mesenchymal stem cell (MSC) viability, proliferation, and cytokine expression in vitro. Background: Photobiomodulation of cells using monochromatic light is a technique designed to influence cellular processes. Previous studies have shown dose-dependent effects of low-level laser irradiation on cell proliferation and cytokine expression in a range of cell types and species. Evidence for the influence of 1064 nm wavelength near-infrared irradiation on M...
Effects of three blood derived products on equine corneal cells, an in vitro study.
Equine veterinary journal    November 3, 2017   Volume 50, Issue 3 356-362 doi: 10.1111/evj.12770
Rushton JO, Kammergruber E, Tichy A, Egerbacher M, Nell B, Gabner S.Despite advances in therapy of corneal ulcerative diseases in horses, a vast number of cases require surgical intervention, due to poor response to treatment. Topical application of serum has been used for many years, based on its anticollagenolytic properties and the presence of growth factors promoting corneal wound healing. However, although other blood derived products i.e. platelet rich plasma (PRP), plasma rich in growth factors (PRGF) have been widely used in equine orthopaedics and in human ophthalmology, no reports of the effects of these blood derived products exist in equine ophthal...
Influence of dental materials on cells of the equine periodontium.
Equine veterinary journal    November 3, 2017   Volume 50, Issue 3 363-369 doi: 10.1111/evj.12768
Ringeisen H, Pöschke A, Krähling B, Schröck C, Stoll M, Vogelsberg J, Failing K, Staszyk C.Therapy for equine periodontal disease can include filling of the periodontal pockets and widened interproximal spaces. Recommended dental materials are generally adopted from human dentistry. Objective: To evaluate the biocompatibility of dental materials for equine periodontal fillings in vitro. Methods: In vitro experiments. Methods: Four different dental materials (PeriCare , Provicol , Calxyl and Honigum) were tested on equine periodontal fibroblasts. Possible cytotoxic effects were assessed microscopically and by MTT assay, and the expression of inflammatory marker genes was measured by...
Encapsulation of Equine Endothelial Colony Forming Cells in Highly Uniform, Injectable Hydrogel Microspheres for Local Cell Delivery.
Tissue engineering. Part C, Methods    October 12, 2017   Volume 23, Issue 11 815-825 doi: 10.1089/ten.TEC.2017.0233
Seeto WJ, Tian Y, Winter RL, Caldwell FJ, Wooldridge AA, Lipke EA.A common challenge in cell therapy is the inability to routinely maintain survival and localization of injected therapeutic cells. Delivering cells by direct injection increases the flexibility of clinical applications, but may cause low cell viability and retention rates due to the high shear forces in the needle and mechanical wash out. In this study, we encapsulated endothelial colony forming cells (ECFCs) in poly(ethylene glycol)-fibrinogen (PF) hydrogel microspheres using a custom-built microfluidic device; this system supports rapid encapsulation of high cell concentrations (10 million c...
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, ...
Alpha lipoic acid (ALA) effects on developmental competence of equine preantral follicles in short-term culture.
Theriogenology    September 27, 2017   Volume 105 169-173 doi: 10.1016/j.theriogenology.2017.09.023
Gomes RG, Silva CB, González SM, Oliveira RL, Max MC, Lisboa LA, Barreiros TRR, Santos MM, Sarapião FD, Gastal EL, Seneda MM.The effect of different concentrations of alpha lipoic acid (ALA) on the development and morphology of preantral follicles, as well as the proliferative activity of granulosa cells, was assessed after short-term culture. Ovaries (n = 5) of five seasonal anestrous mares were harvested in a local abattoir. At the laboratory, nine ovarian fragments (5 × 5 × 1 mm) from each animal were used. One fragment was immediately fixed in Bouin and subjected to histological and immunohistochemistry (proliferating cell nuclear antigen, PCNA) analyses (noncultured group; D0 = day 0). The other eigh...
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...
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...
Zinc silicate mineral-coated scaffold improved in vitro osteogenic differentiation of equine adipose-derived mesenchymal stem cells.
Research in veterinary science    September 18, 2017   Volume 124 444-451 doi: 10.1016/j.rvsc.2017.09.015
Bageshlooyafshar B, Vakilian S, Kehtari M, Eslami-Arshaghi T, Rafeie F, Ramezanifard R, Rahchamani R, Mohammadi-Sangcheshmeh A, Mostafaloo Y....In current study we aimed to coat the PLLA scaffold with zinc (Zn) silicate mineral nanoparticles. Then, using equine adipose-derived stem cells (ASCs) we intended to compare the osteogenic induction potency of Zn silicate mineral-coated PLLA scaffold with uncoated PLLA scaffold and tissue culture plastic (TCPS). Adipose tissues were collected from 3 horses, and isolation of ASCs was achieved by enzymatic digestion. PLLA scaffold was successfully prepared using a phase separation method and coated with Zn silicate mineral nanoparticles. The coating efficiency was then characterized by scanning...
Bone marrow-derived multipotent mesenchymal stromal cells from horses after euthanasia.
Veterinary medicine and science    September 12, 2017   Volume 3, Issue 4 239-251 doi: 10.1002/vms3.74
Schröck C, Eydt C, Geburek F, Kaiser L, Päbst F, Burk J, Pfarrer C, Staszyk C.Allogeneic equine multipotent mesenchymal stromal cells (eMSCs) have been proposed for use in regenerative therapies in veterinary medicine. A source of allogeneic eMSCs might be the bone marrow from euthanized horses. The purpose of this study was to compare characteristics of equine bone marrow derived eMSC (eBM-MSCs) from euthanized horses (eut-MSCs) and from narcotized horses (nar-MSCs). Eut-MSCs and nar-MSCs showed typical eMSC marker profiles (positive: CD44, CD90; negative: CD11a/CD18 and MHCII) and possessed tri-lineage differentiation characteristics. Although CD105 and MHCI expressi...
Molecular cloning and functional expression of the K+ channel KV7.1 and the regulatory subunit KCNE1 from equine myocardium.
Research in veterinary science    September 11, 2017   Volume 113 79-86 doi: 10.1016/j.rvsc.2017.09.010
Pedersen PJ, Thomsen KB, Flak JB, Tejada MA, Hauser F, Trachsel D, Buhl R, Kalbfleisch T, DePriest MS, MacLeod JN, Calloe K, Klaerke DA.The voltage-gated K-channel K7.1 and the subunit KCNE1, encoded by the KCNQ1 and KCNE1 genes, respectively, are responsible for termination of the cardiac action potential. In humans, mutations in these genes can predispose patients to arrhythmias and sudden cardiac death (SCD). Objective: To characterize equine K7.1/KCNE1 currents and compare them to human K7.1/KCNE1 currents to determine whether K7.1/KCNE1 plays a similar role in equine and human hearts. Methods: mRNA encoding K7.1 and KCNE1 was isolated from equine hearts, sequenced, and cloned into expression vectors. The channel subunits ...
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...
Milk-fat globule epidermal growth factor 8 (MFGE8) is expressed at the embryo- and fetal-maternal interface in equine pregnancy.
Reproduction, fertility, and development    August 30, 2017   Volume 30, Issue 4 585-590 doi: 10.1071/RD17094
Barua S, Macedo A, Kolb DS, Wynne-Edwards KE, Klein C.Milk-fat globule epidermal growth factor (EGF) 8 protein (MFGE8), also known as lactadherin, promotes cell adhesion in an Arg-Gly-Asp (RGD)-dependent modus via integrins. In the present study, the expression of MFGE8 was examined in equine endometrium during oestrus and at Days 12 and 16 after ovulation in pregnant and non-pregnant mares and in mares during the 5th month of gestation. Results demonstrated that MFGE8 is expressed at the embryo- and fetal-maternal interface in equine pregnancy. In non-pregnant endometrium its expression was upregulated by oestrogen, a finding that was confirmed ...
Horse spermatogonial stem cell cryopreservation: feasible protocols and potential biotechnological applications.
Cell and tissue research    August 22, 2017   Volume 370, Issue 3 489-500 doi: 10.1007/s00441-017-2673-1
Costa GMJ, Avelar GF, Lacerda SMSN, Figueiredo AFA, Tavares AO, Rezende-Neto JV, Martins FGP, França LR.The establishment of proper conditions for spermatogonial stem cells (SSCs) cryopreservation and storage represents an important biotechnological approach for the preservation of the genetic stock of valuable animals. This study demonstrates the effects of different cryopreservation protocols on the survival rates and phenotypic expression of SSCs in horses. The cells were enzymatically isolated from testes of eight adult horses. After enrichment and characterization of germ cells in the suspension, the feasibility of several cryopreservation protocols were evaluated. Three different cryomedia...
The vacuolar H+ ATPase V0 subunit d2 is associated with chondrocyte hypertrophy and supports chondrocyte differentiation.
Bone reports    August 18, 2017   Volume 7 98-107 doi: 10.1016/j.bonr.2017.08.002
Ayodele BA, Mirams M, Pagel CN, Mackie EJ.Chondrocyte hypertrophy makes important contributions to bone development and growth. We have investigated a number of novel cartilage genes identified in a recent transcriptomic study to determine whether they are differentially expressed between different zones of equine foetal growth cartilage. Twelve genes (, , , , , , , , , , and ) were found to be more highly expressed in the zone of hypertrophic chondrocytes than in the reserve or proliferative zones, whereas and were expressed at lower levels in the hypertrophic zone than in the reserve zone. , which encodes vacuolar H ATPase (V-ATP...
Spirulina platensis Improves Mitochondrial Function Impaired by Elevated Oxidative Stress in Adipose-Derived Mesenchymal Stromal Cells (ASCs) and Intestinal Epithelial Cells (IECs), and Enhances Insulin Sensitivity in Equine Metabolic Syndrome (EMS) Horses.
Marine drugs    August 3, 2017   Volume 15, Issue 8 237 doi: 10.3390/md15080237
Nawrocka D, Kornicka K, Śmieszek A, Marycz K.Equine Metabolic Syndrome (EMS) is a steadily growing life-threatening endocrine disorder linked to insulin resistance, oxidative stress, and systemic inflammation. Inflammatory microenvironment of adipose tissue constitutes the direct tissue milieu for various cell populations, including adipose-derived mesenchymal stromal cells (ASCs), widely considered as a potential therapeutic cell source in the course of the treatment of metabolic disorders. Moreover, elevated oxidative stress induces inflammation in intestinal epithelial cells (IECs)-the first-line cells exposed to dietary compounds. In...
Corrigendum to “Macroautophagy and Selective Mitophagy Ameliorate Chondrogenic Differentiation Potential in Adipose Stem Cells of Equine Metabolic Syndrome: New Findings in the Field of Progenitor Cells Differentiation”.
Oxidative medicine and cellular longevity    July 27, 2017   Volume 2017 3861790 doi: 10.1155/2017/3861790
Marycz K, Kornicka K, Grzesiak J, Śmieszek A, Szłapka J.[This corrects the article DOI: 10.1155/2016/3718468.].
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