501 resultados para Células-Tronco


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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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O objetivo deste texto é analisar o enfoque adotado pelo jornal Folha de S. Paulo no referente ao emprego das células-tronco nas pesquisas científicas, tomando-se para estudo os editoriais, artigos e cartas dos leitores publicados no transcorrer do ano de 2005. A análise dos textos produzidos pelo jornal deixa claro o posicionamento do órgão de imprensa em favor do amplo uso das células-tronco, mas a análise das cartas dos leitores demonstra que nem todos concordam com o que é proposto pelo jornal. Nesse processo, a mídia contribui para a constituição de um conhecimento público sobre os temas referentes à biologia celular e molecular, sem contudo tornar a opção do jornal como única e irrefutável.

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Pós-graduação em Pesquisa e Desenvolvimento (Biotecnologia Médica) - FMB

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Cancer stem cells belong to a small population of cells within the tumor with properties of self-renewal and differentiation into other cell types. In this study, the behavior of both portions, mesenchymal and epithelial, was evaluated. Six carcinosarcomas (CSs), 11 carcinomas within mixed tumors (CWMTs) grade I, 11 grade II, and 10 grade III were evaluated. In the epithelial portions of the CS and CWMTs was observed immunostaining for antibodies CD44, CD24, Oct-4 and ALDH-1. In the mesenchymal portions of the CS, in the epithelial portions of CMTs grades II and III no immunostaining for ALDH-1 was found. It was concluded that the tumor stem cells are expressed in equal proportions in the epithelial and mesenchymal portions of the CS. No immunostaining in the mesenchymal portions of well-differentiated CWMTs was seen.

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Mesenchymal stem cells (MSCs) are a heterogeneous population of cells that proliferate in vitro as plastic-adherent cells, have fibroblast-like morphology and can differentiate into bone, cartilage and fat cells. Therapeutic potential of MSCs have been studied in experimental models, such as rabbit, in Laboratory of Cell Engineering of Botucatu. However, no specific markers have been reported for expanded rabbit MSCs, which hampers the isolation of pure MSC populations by immunophenotypic characterization. Thus, the objective of this study was to produce monoclonal antibodies (mAbs) to rabbit MSCs. MSCs derived from rabbit bone marrow (BM) were isolated, cultured, expanded ex vivo, and immunized into three BALB/c mices, and spleen cells subsequently harvested were used to generate hibridoma cell lines secreting antibodies against MSCs. Hybridoma cells were screened by flow cytometry and antibody-producing cells were subjected to subsequent rounds of retests. MSC1-160 obtained the best positivity for IgG expression and was cloned by limiting dilutions and micromanipulation. Ascitic fluid from ten best clones was purified by affinity chromatography in Protein A-sepharose CL-4B column and purification control was performed by electrophoresis in agarose gels. The purified IgG were tested against rabbit MSCs, obtaining high positivity by flow Cytometry. In conclusion, we developed 10 mAbs, MSC1-160 A20, A30, A41, A47, A55, A60, A63, A69, A81, and A82, that recognize rabbit MSC cell surface antigens showing potential for immunophenotypic characterization of rabbit MSC cell lines

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Brazil has the fourth largest horse herd in the world, this is due the recognition and appreciation that the different equestrian games are having within the country. Injuries of the tendon, especially in the digital flexor tendon, are the main cause of athletic life reduction among horses. The treatment of tendinitis in horses seeks full recovery of the damage tissue reestablishing the function previously lost, however conventional treatments have proven to be ineffective when considered the quality of the scar tissue and the rate of recurrence. Due to this, the use of adult stem cells to the treatment of musculoskeletal injuries of horses has been studied for some time. This method of treatment consists of aspiration of bone marrow or removal of subcutaneous fat tissue and implantation of these cells in the injured tissue. After obtaining the bone marrow the implantation can be performed with total bone marrow, with the mononuclear fraction of MSC or with cells cultured in vitro. From the fat tissue is used the stromal vascular fraction obtained by collagenase digestion, followed or not by cell culture. According to some studies, cell therapy with material obtained from bone marrow or adipose tissue has shown to be viable, given that these materials are abundant in repair components such as mesenchymal stem cells (MSC), growth factors and other components of the collagen matrix. Several studies using both types of cells have shown great potential and promising clinical results. However, knowledge of the biology and characterization of these cells remain largely unknown, and therefore is needed great care and caution when using stem cells for the treatment of musculoskeletal disorders in horses

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Lymphoma represents the most prevalent hematopoietic malignancy in small animal medicine. It is highly responsible to chemotherapy and therefore several protocols are used as therapeutic tools. For that reason, the bone marrow transplantation, enshrined in human medicine through initial trial in canine patients, has increasingly become the focus of studies in order to make it a reality also in veterinary medicine. First, the treatment with the chosen chemotherapy protocol is made. As complete remission of lymphoma is observed, it must be initiated the bone marrow harvesting. The obtained material is subjected to the processes of erythrocyte depletion, plasma depletion, cryoprotectants addition, total nuclear cells counting, hematopoietic progenitor quantification, analysis of cell viability and freezing. Following that, with radiotherapy or application of cyclophosphamide, the conditioning phase of the patient who is receiving the transplantation is carried out. The bags containing hematopoietic stem cells are then thawed and transplanted into the receptor organism. Support with hematopoietic stem cells allows the use of lethal doses of chemotherapy or radiotherapy and has been shown to considerably raise the disease remission time and survival rate of the canine patients