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1.
New Microbiol ; 44(3): 173-176, 2021 07.
Artigo em Inglês | MEDLINE | ID: mdl-34694411

RESUMO

The Covid-19 pandemic has required all laboratories to rapidly and unexpectedly reorganize to cope with the increase in requests for tests in rapid response times and, not least, to provide the shortening of molecular reagents. In order to validate an accurate, faster and cheaper method suitable for large-scale diagnosis of SARS-CoV-2, we evaluated a simplified workflow by Direct RT-PCR on 181 nasopharyngeal swabs on Seegene's automated platform. Direct RT-PCR ensured 99% overall concordance versus standard RNA RT-PCR in samples with Ct values under 35, saving 100% on extraction reagents and providing an approximately three-fold increase in productivity in 24 hours.


Assuntos
COVID-19 , SARS-CoV-2 , Teste para COVID-19 , Humanos , Pandemias , RNA Viral/genética , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Sensibilidade e Especificidade
2.
PLoS One ; 9(2): e89232, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24586617

RESUMO

UNLABELLED: Low-to-moderate levels of reactive oxygen species (ROS) govern different steps of neurogenesis via molecular pathways that have been decrypted only partially. Although it has been postulated that redox-sensitive molecules are involved in neuronal differentiation, the molecular bases for this process have not been elucidated yet. The aim of this work was therefore to study the role played by the redox-sensitive, multifunctional protein APE1/Ref-1 (APE1) in the differentiation process of human adipose tissue-derived multipotent adult stem cells (hAT-MASC) and embryonic carcinoma stem cells (EC) towards a neuronal phenotype. METHODS AND RESULTS: Applying a definite protocol, hAT-MASC can adopt a neural fate. During this maturation process, differentiating cells significantly increase their intracellular Reactive Oxygen Species (ROS) levels and increase the APE1 nuclear fraction bound to chromatin. This latter event is paralleled by the increase of nuclear NF-κB, a transcription factor regulated by APE1 in a redox-dependent fashion. Importantly, the addition of the antioxidant N-acetyl cysteine (NAC) to the differentiation medium partially prevents the nuclear accumulation of APE1, increasing the neuronal differentiation of hAT-MASC. To investigate the involvement of APE1 in the differentiation process, we employed E3330, a specific inhibitor of the APE1 redox function. The addition of E3330, either to the neurogenic embryonic carcinoma cell line NT2-D1or to hAT-MASC, increases the differentiation of stem cells towards a neural phenotype, biasing the differentiation towards specific subtypes, such as dopaminergic cells. In conclusion, during the differentiation process of stem cells towards a neuroectodermic phenotype, APE1 is recruited, in a ROS-dependent manner, to the chromatin. This event is associated with an inhibitory effect of APE1 on neurogenesis that may be reversed by E3330. Therefore, E3330 may be employed both to boost neural differentiation and to bias the differentiation potential of stem cells towards specific neuronal subtypes. These findings provide a molecular basis for the redox-mediated hypothesis of neuronal differentiation program.


Assuntos
Tecido Adiposo/citologia , Células-Tronco Adultas/fisiologia , Diferenciação Celular/fisiologia , DNA Liase (Sítios Apurínicos ou Apirimidínicos)/metabolismo , Células-Tronco Multipotentes/fisiologia , Neurogênese/fisiologia , Adulto , Células-Tronco Adultas/metabolismo , Benzoquinonas , Western Blotting , Cromatina/metabolismo , Citometria de Fluxo , Humanos , Microscopia de Fluorescência , Células-Tronco Multipotentes/metabolismo , NF-kappa B/metabolismo , Oxirredução , Propionatos , Espécies Reativas de Oxigênio/metabolismo , Reação em Cadeia da Polimerase em Tempo Real , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Estatísticas não Paramétricas
3.
Orphanet J Rare Dis ; 8: 34, 2013 Feb 21.
Artigo em Inglês | MEDLINE | ID: mdl-23433359

RESUMO

BACKGROUND: Niemann Pick C (NPC) disease is a neurovisceral lysosomal storage disorder due to mutations in NPC1 or NPC2 genes, characterized by the accumulation of endocytosed unesterified cholesterol, gangliosides and other lipids within the lysosomes/late endosomes. Even if the neurodegeneration is the main feature of the disease, the analysis of the molecular pathways linking the lipid accumulation and cellular damage in the brain has been challenging due to the limited availability of human neuronal models. OBJECTIVE: The aim of this study was to develop a human neuronal model of NPC disease by inducing neuronal differentiation of multipotent adult stem cells (MASC) isolated from NPC patients. METHODS: Stem cells were isolated from 3 NPC patients and 3 controls both from skin biopsies and previously established skin fibroblast cultures. Cells were induced to differentiate along a neuronal fate adapting methods previously described by Beltrami et al, 2007. The surface immunophenotype of stem cells was analyzed by FACS. Stem cell and neuronal markers expression were evaluated by immunofluorescence. Intracellular accumulation of cholesterol and gangliosides were assessed by filipin staining and immunofluorescence, respectively. A morphometric analysis was performed using a Neurite outgrowth image program. RESULTS: After 3 passages in selective medium, MASC isolated either from skin biopsies or previously established skin fibroblast cultures displayed an antigenic pattern characteristic of mesenchymal stem cells and expressed the stem cell markers Oct-4, Nanog, Sox-2 and nestin. A massive lysosomal accumulation of cholesterol was observed only in cells isolated from NPC patients. After the induction of neural differentiation, remarkable morphologic changes were observed and cells became positive to markers of the neuronal lineage NeuN and MAP2. Differentiated cells from NPC patients displayed characteristic features of NPC disease, they showed intracellular accumulation of unesterified cholesterol and GM2 ganglioside and presented morphological differences with respect to cells derived from healthy donors.In conclusion, we generated a human neuronal model of NPC disease through the induction of differentiation of stem cells obtained from patient's easily accessible sources. The strategy described here may be applied to easily generate human neuronal models of other neurodegenerative diseases.


Assuntos
Diferenciação Celular , Engenharia Celular/métodos , Fibroblastos/citologia , Neurônios/citologia , Neurônios/patologia , Doença de Niemann-Pick Tipo C/patologia , Pele/citologia , Células-Tronco/citologia , Animais , Biópsia , Células Cultivadas , Colesterol/metabolismo , Técnicas de Cocultura , Gangliosídeos/metabolismo , Humanos , Neurônios/metabolismo
4.
Circ Res ; 104(10): 1225-34, 2009 May 22.
Artigo em Inglês | MEDLINE | ID: mdl-19390058

RESUMO

To determine whether the peripheral blood in humans contains a population of multipotent progenitor cells (MPCs), products of leukapheresis were obtained from healthy donor volunteers following the administration of granulocyte colony-stimulating factor. Small clusters of adherent proliferating cells were collected, and these cells continued to divide up to 40 population doublings without reaching replicative senescence and growth arrest. MPCs were positive for the transcription factors Nanog, Oct3/4, Sox2, c-Myc, and Klf4 and expressed several antigens characteristic of mesenchymal stem cells. However, they were negative for markers of hematopoietic stem/progenitor cells and bone marrow cell lineages. MPCs had a cloning efficiency of approximately 3%, and following their expansion, retained a highly immature phenotype. Under permissive culture conditions, MPCs differentiated into neurons, glial cells, hepatocytes, cardiomyocytes, endothelial cells, and osteoblasts. Moreover, the gene expression profile of MPCs partially overlapped with that of neural and embryonic stem cells, further demonstrating their primitive, uncommitted phenotype. Following subcutaneous transplantation in nonimmunosuppressed mice, MPCs migrated to distant organs and integrated structurally and functionally within the new tissue, acquiring the identity of resident parenchymal cells. In conclusion, undifferentiated cells with properties of embryonic stem cells can be isolated and expanded from human peripheral blood after granulocyte colony-stimulating factor administration. This cell pool may constitute a unique source of autologous cells with critical clinical import.


Assuntos
Células Sanguíneas/citologia , Células-Tronco Multipotentes/citologia , Células Sanguíneas/efeitos dos fármacos , Células Sanguíneas/metabolismo , Diferenciação Celular/efeitos dos fármacos , Células Cultivadas , Perfilação da Expressão Gênica , Fator Estimulador de Colônias de Granulócitos/farmacologia , Humanos , Fator 4 Semelhante a Kruppel , Leucaférese , Células-Tronco Multipotentes/efeitos dos fármacos , Células-Tronco Multipotentes/metabolismo
5.
Blood ; 110(9): 3438-46, 2007 Nov 01.
Artigo em Inglês | MEDLINE | ID: mdl-17525288

RESUMO

The aims of our study were to verify whether it was possible to generate in vitro, from different adult human tissues, a population of cells that behaved, in culture, as multipotent stem cells and if these latter shared common properties. To this purpose, we grew and cloned finite cell lines obtained from adult human liver, heart, and bone marrow and named them human multipotent adult stem cells (hMASCs). Cloned hMASCs, obtained from the 3 different tissues, expressed the pluripotent state-specific transcription factors Oct-4, NANOG, and REX1, displayed telomerase activity, and exhibited a wide range of differentiation potential, as shown both at a morphologic and functional level. hMASCs maintained a human diploid DNA content, and shared a common gene expression signature, compared with several somatic cell lines and irrespectively of the tissue of isolation. In particular, the pathways regulating stem cell self-renewal/maintenance, such as Wnt, Hedgehog, and Notch, were transcriptionally active. Our findings demonstrate that we have optimized an in vitro protocol to generate and expand cells from multiple organs that could be induced to acquire morphologic and functional features of mature cells even embryologically not related to the tissue of origin.


Assuntos
Células da Medula Óssea/citologia , Fígado/citologia , Células-Tronco Multipotentes/citologia , Miocárdio/citologia , Adulto , Idoso , Idoso de 80 Anos ou mais , Proliferação de Células , Separação Celular , Células Cultivadas , Células Clonais , Feminino , Perfilação da Expressão Gênica , Humanos , Imunofenotipagem , Masculino , Pessoa de Meia-Idade , Células-Tronco Multipotentes/metabolismo , Análise de Sequência com Séries de Oligonucleotídeos
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