Administration of horse amniotic mesenchymal cells (AMCs) and their conditioned medium (AMC-CM) improves the in vivo recovery of spontaneous equine tendon lesions and inhibits in vitro proliferation of peripheral blood mononuclear cells (PBMC). This process may involve microvesicles (MVs) as an integral component of cell-to-cell communication during tissue regeneration. In this study, the presence and type of MVs secreted by AMCs were investigated and the response of equine tendon cells to MVs was studied using a dose-response curve at different concentrations and times. Moreover, the ability of MVs to counteract in vitro inflammation of tendon cells induced by lipopolysaccharide was studied through the expression of some proinflammatory genes such as metallopeptidase (MPP) 1, 9, and 13 and tumor necrosis factor-α (TNFα), and expression of transforming growth factor-β (TGF-β). Lastly, the immunomodulatory potential of MVs was investigated. Results show that AMCs secrete MVs ranging in size from 100 to 200 nm. An inverse relationship between concentration and time was found in their uptake by tendon cells: the maximal uptake occurred after 72 h at a concentration of 40 × 10(6) MVs/mL. MVs induced a downregulation of MMP1, MMP9, MMP13, and TNFα expression without affecting PBMC proliferation, contrary to CM and supernatant. Our data suggest that MVs contribute to in vivo healing of tendon lesions, alongside soluble factors in AMC-CM.
The aim of this study was to isolate, culture, and characterize mesenchymal stem cells (MSCs) from horse bone marrow (BM) using the techniques of flow cytometry, immunocytochemistry, cytogenetics, and electron microscopy. Immunophenotypic analysis revealed the presence of MSCs with high expression of the CD90 marker, lower expression of the CD44 marker, and absent expression of the CD34 marker. In assays of differentiation, the positive response to osteogenic (OST), chondrogenic (CDG), and adipogenic (ADP) differentiation signals was observed and characterized by deposition of calcium-rich extracellular matrix (OST), proteoglycans and collagen II (CDG) and intracellular deposition of fat drops (ADP). In immunocytochemical characterization, MSCs were immunopositive for CD44, vimentin, and PCNA, and they were negative for CD13. In the ultrastructural analysis of MSCs, the most outstanding characteristic was the presence of rough endoplasmic reticulum with very dilated cisterns filled with a low electrodensity material. Additionally, MSCs had normal karyotypes (2n = 64) as evidenced by cytogenetic analysis, and aneuploidy in metaphase was not observed. The protocols for isolating, culturing, and characterizing equine MSCs used in this study were shown to be appropriate for the production of a cell population with a good potential for differentiation and without aneuploidy that can be used to study future cellular therapies.
O interesse nas pesquisas com células-tronco derivadas de anexos fetais de diversas espécies cresceu exponencialmente nas últimas décadas em virtude de serem fontes de células-tronco adultas com potencial de diferenciação em diversas linhagens celulares que apresentam pouca ou nenhuma imunogenicidade, apresentando-se assim como alternativa de grande importância para a formação de bancos celulares. Apesar do crescente interesse, os estudos para espécie equina ainda são escassos. O objetivo deste trabalho foi isolar, caracterizar e diferenciar células-tronco mesenquimais (CTMs) derivadas do líquido amniótico equino obtidas do terço inicial, médio e final da gestação (LA-CTMs), comparando suas características. Foram colhidas 23 amostras de líquido amniótico as quais foram submetidas às análises morfológica, imunocitoquímica, imunofenotípica por citometria de fluxo e às diferenciações osteogênica, adipogênica e condrogênica in vitro. Todas as amostras demonstraram adesão ao plástico e morfologia fibroblastóide. No ensaio imunocitoquímico as células de todos os grupos foram imunomarcadas para CD44, PCNA e vimentina com ausência de marcação para citoqueratina e Oct-4. Na citometria de fluxo observou-se a expressão de CD44 e CD90 e ausência de expressão de CD34, sendo que os marcadores CD44 e CD90 mostraram padrão de expressão decrescente em relação ao desenvolvimento gestacional. As amostras obtidas de todas as fases da gestação foram capazes de diferenciação nas linhagens osteogênica, condrogênica e adipogênica. Portanto, as células obtidas do líquido amniótico apresentaram características morfológicas, imunofenotípicas e potencial de diferenciação típicos das CTMs, demonstrando que a colheita pode ser realizada em qualquer fase gestacional. No entanto, mais pesquisas devem ser realizadas principalmente quanto à expressão de marcadores de pluripotencialidade (como o Oct-4) e ao seu potencial de diferenciação em linhagens extra mesodermais já relatados na literatura.
Stem cells are undifferentiated cells with a high proliferation potential. These cells can be characterized by their in vivo ability to self-renew and to differentiate into specialized cell lines. The most used stem cell types, in both human and veterinary fields, are the mesenchymal stem cells (MSC) derived from bone marrow and adipose tissue. Nowadays, there is a great interest in using stem cells derived from fetal tissues, such as amniotic membrane (AM) and umbilical cord tissue (UCT), which can be obtained non-invasively at delivery time. Due to the scarcity of studies in bovine species, the aim of this study was to isolate, characterize, differentiate and cryopreserve MSC derived from the mesenchymal layer of amniotic membrane (AM), for the first time, and umbilical cord tissue (UCT) of dairy cow neonates after assisted delivery (AD) and from fetus at initial third of pregnancy (IT) obtained in slaughterhouse. Cells were isolated by enzymatic digestion of the tissue fragments with 0.1% collagenase solution. Six samples of AM and UCT at delivery time and six samples of AM and UCT at first trimester of pregnancy were subjected to morphology evaluation, imunophenotype characterization, in vitro osteogenic, adipogenic and chondrogenic differentiation and viability analysis after cryopreservation. All samples showed adherence to plastic and fibroblast-like morphology. Immunocytochemistry revealed expression of CD 44, NANOG and OCT-4 and lack of expression of MHC II in MSC from all samples. Flow cytometry demonstrated that cells from all samples expressed CD 44, did not or low expressed CD 34 (AM: IT-0.3%a, AD-3.4%b; UCT: 0.4%, 1.4%) and MHC II (AM: IT-1.05%a, AD-9.7%b; UCT: IT-0.7%a, AD-5.7%b). They were also capable of trilineage mesenchymal differentiation and showed 80% viability after cryopreservation. According to the results, bovine AM and UCT-derived cells, either obtained at delivery time or from slaughterhouse, are a painless and non-invasive source of MSC and can be used for stem cell banking.
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