969 resultados para Células NG2


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La Medicina Regenerativa con terapia celular es un componente del sector biotecnológico, que representa una innovadora alternativa para la curación de enfermedades para las cuales no se tienen soluciones eficientes con la medicina convencional y que genera enormes beneficios en las personas que requieren de un servicio médico innovador y eficiente -- Asimismo se ha convertido en una opción para las personas que desean cambios estéticos en sus cuerpos, pero que no están dispuestas a someterse a los inconvenientes de las cirugías tradicionales -- Se hace entonces necesaria la implementación de un servicio de procesamiento de Células Madre para regeneración de tejidos, que satisfaga las necesidades de las personas que no encuentran soluciones adecuadas a sus problemas estéticos o médicos en el marco de la medicina tradicional -- La creación e implementación de un servicio de estos requiere su respectivo análisis de factibilidad financiera -- El análisis de rentabilidad arroja un VPN de 155´068.758 COP -- Los indicadores muestran crecimiento en el horizonte de tiempo -- El análisis de riesgo indica que la probabilidad de que se presente ese valor de VPN o mayor es de 5,2%, la probabilidad de que sea menor es de 94,8% -- Igualmente el análisis de riesgos muestra una probabilidad de que el VPN sea positivo de 75,9% y de que sea negativo de 24,1%

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Dissertação (mestrado)—Universidade de Brasília, Faculdade de Medicina, Programa de Pós-Graduação em Patologia Molecular, 2015.

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Introducción: La diminución de la capacidad de expansión del tejido adiposo juega un papel crucial en el origen y desarrollo de los trastornos asociados al síndrome metabólico. Hipótesis y Objetivos: Considerando que la expansión del tejido adiposo depende del estado de sus células mesenquimales multipotenciales (ASCs), es probable que las condiciones tisulares asociadas a los períodos de balance energético positivo generen alteraciones en los patrones heredables de transcripción génica mediante los que las ASCs quedan predispuestas a favor del fenotipo fibrótico e inflamatorio, en detrimento de su función adipogénica y neovascular. Para corroborar ésta hipótesis nos propusimos revelar la implicación de las ASCs en la remodelación tisular adiposa; su contribución a la disminución de la capacidad angiogénica del tejido adiposo; y evaluar su respuesta neovascular, migratoria e inflamatoria ante la hipoxia. Metodología: Aplicamos técnicas de cultivo celular, citometría de flujo, qPCR, western blot y ELISA a las ASCs aisladas del tejido adiposo visceral y subcutáneo de 69 sujetos agrupados en normopesos, y obesos con (SM) y sin síndrome metabólico (NoSM). Resultados: Los adipocitos generados a partir de las ASC visceral y subcutáneo evidenciaronn una disminución en los niveles intrínsecos de expresión del transportador de glucosa GLUT4 conforme aumenta la expresión de proteínas fibróticas, el BMI y el HOMA-IR de los pacientes. El empeoramiento del perfil metabólico de los sujetos estuvo acompañado por la disminución de la tasa proliferativa, el potencial clonogénico y la exportación del FGF2 hacia la superficie celular de las ASC derivadas de ambos tejidos. Las ASC visceral y subcutáneo de los sujetos SM también mostraron una disminución en la capacidad de formación de túbulos respecto a las ASCs de los sujetos obesos NoSM así como alteraciones en los niveles de expresión de proteínas implicadas en el balance redox celular y vinculadas al fenotipo secretor asociado a senescencia. El deterioro de las propiedades neovasculares de las ASC subcutáneo de los sujetos SM se evidenció además en los niveles de secreción del VEGF durante la adipogénesis y en los efectos del medio condicionado adipogénico sobre la formación de túbulos por células endoteliales. Aunque las ASC visceral de los sujetos SM cultivadas bajo hipoxia mostraron mayor porcentaje de células CD140b+/CD44+ y CD140b+/CD184+ así como mayor capacidad migratoria que las ASC visceral de los sujetos NoSM, también evidenciaron menor capacidad de formación de túbulos, transcribieron más RNAm NOX5 y su medio condicionado disminuyó la supervivencia de las células endoteliales. Conclusiones: El funcionamiento del tejido adiposo parece condicionar el deterioro de sus propias células precursoras y ante el cual las ASCs de los sujetos que desarrollan síndrome metabólico son más vulnerables.

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Riboflavin is a vitamin very important in aerobic organisms, as a precursor of many coenzymes involved in the electron transporter chain. However, after photosensitization of riboflavin with UV or visible light, it generates reactive oxygen species (ROS), which can oxidize the DNA. The repair of oxidative lesions on DNA occurs through the base excision repair pathway (BER), where APE1 endonuclease plays a central role. On the other hand, the nucleotide excision repair pathway (NER) repairs helix-distorting lesions. Recently, it was described the participation of NERproteins in the repair of oxidative damage and in stimulation of repair function fromAPE1. The aim of this research was to evaluate the cytotoxic effects of photosensitized riboflavin (RF*) in cells proficient and deficient in NER, correlating with APE1 expression. For this propose, the cells were treated with RF* and it was performed the cell viability assay, extraction of whole proteins, cells fractionation, immunoblotting, indirect immunofluorescence and analysis of polymorphisms of BER gens. The results evidenced that cells deficient in XPA and CSB proteins were more sensitive to RF*. However, XPC-deficient cells presented similar resistance to MRC5- SV cells, which is proficient in NER. These results indicate that XPA and CSB proteins have an important role on repair of oxidative lesions induced by RF*. Additionally, it was evidenced that single nucleotide polymorphisms (SNPs) in BER enzymes may influence in sensitivity of NER-deficient cell lines. Concerning the APE1 expression, the results showed that expression of this protein after treatment with RF* only changed in XPC-deficient cells. Though, it was observed that APE1 is recruited and is bound to chromatin in MRC5-SV and XPA cells after treatment with RF*. The results also showed the induction of DNA damage after treatment with RF*, through the analysis of-H2AX, since the treatment promoted an increase of endogenous levels of this phosphorylated protein, which acts signaling double strand-break on DNA. On the other hand, in XPC-deficient cells, regardless of resistance of RF*, the endogenous levels of APE1 are extremely reduced when compared with other cell lines and APE1 is not bound to chromatin after treatment with RF*. These results conclude that RF* was able to induce cell death in NERdeficient cells, where XPA and CSB cells were more sensitive when compared with MRC5-SV and XPC-deficient cells. This last result is potentially very interesting, since XPC-deficient cell line presents low levels of APE1. Additionally, the results evidenced that APE1 protein can be involved in the repair of oxidative damage induced by RF*, because APE1 is recruited and bound strongly to chromatin after treatment.

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In this study, a BCR-ABL expressing human chronic myelogenous leukaemia cell line (K562) was used to investigate the antitumoral potential of a novel lectin (CvL) purified from the marine sponge Cliona varians. CvL inhibited the growth of K562 cells with an IC50 value of 70 g/ml, but was ineffective to normal human peripheral blood lymphocytes in the same range of concentrations tested (180 g/ml). Cell death occurred after 72 h of exposure to the lectin and with sign of apoptosis as analysed by DAPI staining. Investigation of the possible effectors of this process showed that cell death occurred in the presence of Bcl-2 and Bax expression, and involved a caspase-independent pathway. Confocal fluorescence microscopy indicated a major role for the lysosomal protease cathepsin B in mediating cell death. Accordingly, pre-incubation of K562 cells with the cathepsin inhibitor L-trans-epoxysuccinyl-L-leucylamido-(4-guanidino)butane (E-64) abolished the cytotoxic effect of CvL. Furthermore, we found upregulation of tumor necrosis factor receptor 1 (TNFR1) and down-modulation of p65 subunit of nuclear factor kappa B (NFB) expression in CvL-treated cells. These effects were accompanied by increased levels of p21 and downmodulation of pRb, suggesting that CvL is capable of cell cycle arrest. Collectively, these findings suggest that cathepsin B acts as death mediator in CvL-induced cytotoxicity possibly in a still uncharacterized connection with the membrane death receptor pathway

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As biguanidas são um grupo de compostos com diversas atividades biológicas. Recentemente, esta família de compostos tem sido estudada não só pela sua atividade hipoglicemiante, mas também pela sua atividade anti-proliferativa. Um dos objetivos deste estudo foi a síntese de biguanidas, com cadeias laterais com diferentes estruturas e grupos funcionais. O trabalho desenvolvido permitiu a síntese de diversas biguanidas, tendo sido isolados quatro compostos. Outro dos objetivos deste estudo foi avaliar a atividade anti-proliferativa de biguanidas, na linha celular MDST8. Para esse efeito, foi desenvolvido inicialmente um método de quantificação celular com base na atividade ATPásica, testado nas linhas celulares MDST8, MCF7 e BRIN-BD11, tendo sido utilizado como referência a quantificação pelo método das desidrogenases. Os compostos estudados com melhor atividade anti-proliferativa apresentaram IC50 da ordem de 2,5 – 2,9 x10-3 M. Estes valores foram observados em biguanidas cujos grupos substituintes possuíam cadeias hidrocarbonadas cíclicas, alifáticas ou aromáticas p-substituídas, na sua estrutura; Abstract: Synthesis of biguanides and evaluation of their biologic activity in tumor cell lines Biguanides are a group of compounds which have diverse biological activities. Recently, this family of compounds has been studied not only for its hypoglycemic activity, but also for its anti-proliferative activity. One purpose of this study was the synthesis of biguanides, with side chains with different structures and functional groups. The work led to the synthesis of several biguanides, with the isolation of four compounds. Another objective of this study was the evaluation of the anti-proliferative activity of biguanides, in the cell line MDST8. To this aim, it was initially developed a cell quantification method based on the ATPase activity, tested in MDST8, MCF7 and BRIN-BD11 cell lines, with the dehydrogenases method used as reference. The studied compounds with better anti-proliferative activity had IC50 in the range from 2.5 to 2.9 x10-3 M for biguanides whose substituent groups had cyclic hydrocarbon, aliphatic or p-substituted aromatic chains in their structure.