30 research outputs found

    Effect of antibiotics against Mycoplasma sp. on human embryonic stem cells undifferentiated status, pluripotency, cell viability and growth

    Get PDF
    Human embryonic stem cells (hESCs) are self-renewing pluripotent cells that can differentiate into specialized cells and hold great promise as models for human development and disease studies, cell-replacement therapies, drug discovery and in vitro cytotoxicity tests. The culture and differentiation of these cells are both complex and expensive, so it is essential to extreme aseptic conditions. hESCs are susceptible to Mycoplasma sp. infection, which is hard to detect and alters stem cell-associated properties. The purpose of this work was to evaluate the efficacy and cytotoxic effect of PlasmocinTM and ciprofloxacin (specific antibiotics used for Mycoplasma sp. eradication) on hESCs. Mycoplasma sp. infected HUES-5 884 (H5 884, stable hESCs H5-brachyury promoter-GFP line) cells were effectively cured with a 14 days PlasmocinTM 25 碌g/ml treatment (curative treatment) while maintaining stemness characteristic features. Furthermore, cured H5 884 cells exhibit the same karyotype as the parental H5 line and expressed GFP, through up-regulation of brachyury promoter, at day 4 of differentiation onset. Moreover, H5 cells treated with ciprofloxacin 10 碌g/ml for 14 days (mimic of curative treatment) and H5 and WA09 (H9) hESCs treated with PlasmocinTM 5 碌g/ml (prophylactic treatment) for 5 passages retained hESCs features, as judged by the expression of stemness-related genes (TRA1-60, TRA1-81, SSEA-4, Oct-4, Nanog) at mRNA and protein levels. In addition, the presence of specific markers of the three germ layers (brachyury, Nkx2.5 and cTnT: mesoderm; AFP: endoderm; nestin and Pax-6: ectoderm) was verified in in vitro differentiated antibiotic-treated hESCs. In conclusion, we found that PlasmocinTM and ciprofloxacin do not affect hESCs stemness and pluripotency nor cell viability. However, curative treatments slightly diminished cell growth rate. This cytotoxic effect was reversible as cells regained normal growth rate upon antibiotic withdrawal.Fil: Romorini, Leonardo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Riva, Diego Ariel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Bluguermann, Carolina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Videla Guillermo, Richardson. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Sevlever, Gustavo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Miriuka, Santiago Gabriel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Laboratorio de Biolog铆a del Desarrollo Celular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentin

    Protocol for morphometric analysis of neurons derived from human pluripotent stem cells

    Get PDF
    The analysis of morphological features of neurons derived from human pluripotent stem cells (hPSCs) is important to describe neuronal phenotypes and changes observed throughout development. Using free and easily accessible tools, we describe a protocol for the morphometric quantification of hPSCs-derived neurons in two- and three-dimensions in vitro cultures. We detail the analysis of soma area and main and secondary dendrites lengths of GFP-transfected neurons and the measurement of area and perimeter of immunostained neurospheres.Fil: Mucci, Sofia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Rodr铆guez Varela, Maria Soledad. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Isaja, Luciana. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Ferriol Laffouillere, Sofia Lujan. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Sevlever, Gustavo Emilio. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Romorini, Leonardo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentin

    Human embryonic stem cells display a pronounced sensitivity to the cyclin dependent kinase inhibitor Roscovitine

    Get PDF
    Background: The essentially unlimited expansion potential and the pluripotency of human embryonic stem cells (hESCs) make them attractive for cell-based therapeutic purposes. Although hESCs can indefinitely proliferate in culture, unlike transformed cancer cells, they are endowed with a cell-intrinsic property termed mitochondrial priming that renders them highly sensitive to apoptotic stimuli. Thus, all attempts to broaden the insights into hESCs apoptosis may be helpful for establishing pro-survival strategies valuable for its in vitro culture and further use in clinical applications. Cyclin-dependent kinases (CDKs), a family of serine/threonine protein kinases originally identified as regulators of the eukaryotic cell cycle, can also regulate transcription and differentiation. Moreover, there are compelling data suggesting that its activities are involved in certain apoptotic programs in different cell types. Currently, it is not completely determined whether CDKs regulate apoptotic processes in rapidly proliferating and apoptosisprone hESCs. In this study, to elucidate the effect of CDKs inhibition in hESCs we used Roscovitine (ROSC), a purine analogue that selectively inhibits the activities of these kinases. Results: Inhibition of CDKs by ROSC triggers programmed cell death in hESCs but not in proliferating somatic cells (human fibroblasts). The apoptotic process encompasses caspase-9 and -3 activation followed by PARP cleavage. ROSC treatment also leads to p53 stabilization, which coincides with site-specific phosphorylation at serine 46 and decreased levels of Mdm2. Additionally, we observed a transcriptional induction of p53AIP1, a repression of pro-survival factor Mcl1 and an up-regulation of pro-apoptotic BH3-only proteins NOXA and PUMA. Importantly, we found that the role of CDK2 inhibition appears to be at best accessory as an active CDK2 is not required to ensure hESCs survival. Conclusion: Our experimental data reveal that hESCs, contrary to fibroblasts, exhibit a pronounced sensitivity to ROSCFil: Videla Richardson, Guillermo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Furmento, Ver贸nica Alejandra. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; ArgentinaFil: Garcia, Carolina Paola. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Morris Hanon, Olivia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Sevlever, Gustavo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Romorini, Leonardo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Laboratorio de Investigaciones en Neurociencias Aplicadas; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentin

    Specific Preferences in Lineage Choice and Phenotypic Plasticity of Glioma Stem Cells Under BMP4 and Noggin Influence

    Get PDF
    Although BMP4-induced differentiation of glioma stem cells (GSCs) is well recognized, details of the cellular responses triggered by this morphogen are still poorly defined. In this study, we established several GSC-enriched cell lines (GSC-ECLs) from high-grade gliomas. The expansion of these cells as adherent monolayers, and not as floating neurospheres, enabled a thorough study of the phenotypic changes that occurred during their differentiation. Herein, we evaluated GSC-ECLs' behavior toward differentiating conditions by depriving them of growth factors and/or by adding BMP4 at different concentrations. After analyzing cellular morphology, proliferation and lineage marker expression, we determined that GSC-ECLs have distinct preferences in lineage choice, where some of them showed an astrocyte fate commitment and others a neuronal one. We found that this election seems to be dictated by the expression pattern of BMP signaling components present in each GSC-ECL. Additionally, treatment of GSC-ECLs with the BMP antagonist, Noggin, also led to evident phenotypic changes. Interestingly, under certain conditions, some GSC-ECLs adopted an unexpected smooth muscle-like phenotype. As a whole, our findings illustrate the wide differentiation potential of GSCs, highlighting their molecular complexity and paving a way to facilitate personalized differentiating therapies.Fil: Videla Richardson, Guillermo Agust铆n. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Garcia, Carolina Paola. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaciones Bioqu铆micas de Buenos Aires. Fundaci贸n Instituto Leloir. Instituto de Investigaciones Bioqu铆micas de Buenos Aires; ArgentinaFil: Roisman, Alejandro. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Medicina Experimental. Academia Nacional de Medicina de Buenos Aires. Instituto de Medicina Experimental; ArgentinaFil: Slavutsky, Irma Rosa. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Medicina Experimental. Academia Nacional de Medicina de Buenos Aires. Instituto de Medicina Experimental; ArgentinaFil: Fernandez Espinosa, Damian Dario. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Romorini, Leonardo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Medicina Experimental. Academia Nacional de Medicina de Buenos Aires. Instituto de Medicina Experimental; ArgentinaFil: Miriuka, Santiago Gabriel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Medicina Experimental. Academia Nacional de Medicina de Buenos Aires. Instituto de Medicina Experimental; ArgentinaFil: Arakaki, Naomi. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Martinetto, Horacio Enrique. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Investigaciones en Ingenier铆a Gen茅tica y Biolog铆a Molecular "Dr. H茅ctor N. Torres"; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Sevlever, Gustavo Emilio. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentin

    Regulation of cyclin E1 expression in human pluripotent stem cells and derived neural progeny

    Get PDF
    Human pluripotent stem cells (hPSCs), including embryonic and induced pluripotent stem cells (hESCs and hiPSCs) show unique cell cycle characteristics, such as a short doubling time due to an abbreviated G1 phase. Whether or not the core cell cycle machinery directly regulates the stemness and/or the differentiation potential of hPSCs remains to be determined. To date, several scenarios describing the atypical cell cycle of hPSCs have been suggested, and therefore there is still controversy over how cyclins, master regulators of the cell cycle, are expressed and regulated. Furthermore, the cell cycle profile and the expression pattern of major cyclins in hESCs-derived neuroprogenitors (NP) have not been studied yet. Therefore, herein we characterized the expression pattern of major cyclins in hPSCs and NP. We determined that all studied cyclins mRNA expression levels fluctuate along cell cycle. Particularly, after a thorough analysis of synchronized cell populations, we observed that cyclin E1 mRNA levels increased sharply in G1/S concomitantly with cyclin E1 protein accumulation in hPSCs and NP. Additionally, we demonstrated that cyclin E1 mRNA expression levels involves the activation of MEK/ERK pathway and the transcription factors c-Myc and E2Fs in hPSCs. Lastly, our results reveal that proteasome mediates the marked down-regulation (degradation) of cyclin E1 protein observed in G2/M by a mechanism that requires a functional CDK2 but not GSK3尾 activity. Abbreviations: hPSCs: human pluripotent stem cells; hESCs: human embryonic stem cells; hiPSCs: human induced pluripotent stem cells; NP: neuroprogenitors; HF: human foreskin fibroblasts; MEFs: mouse embryonic fibroblasts; iMEFs: irradiated mouse embryonic fibroblasts; CDKs: cyclindependent kinases; CKIs: CDK inhibitors; CNS: central nervous system; Oct-4: Octamer-4; EB: embryoid body; AFP: Alpha-fetoprotein; cTnT: Cardiac Troponin T; MAP-2: microtubule-associated protein; TUJ-1: neuron-specific class III 尾-tubulin; bFGF: basic fibroblastic growth factor; PI3K: Phosphoinositide 3-kinase; KSR: knock out serum replacement; CM: iMEF conditioned medium; E8: Essential E8 medium.Fil: Rodr铆guez Varela, Maria Soledad. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Mucci, Sofia. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Videla Richardson, Guillermo Agust铆n. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Morris Hanon, Olivia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Furmento, Ver贸nica Alejandra. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Miriuka, Santiago Gabriel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Sevlever, Gustavo Emilio. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Romorini, Leonardo. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentin

    伪Synuclein control of mitochondrial homeostasis in human-derived neurons is disrupted by mutations associated with Parkinson鈥檚 disease

    Get PDF
    The etiology of Parkinson鈥檚 disease (PD) converges on a common pathogenic pathway of mitochondrial defects in which 伪-Synuclein (伪Syn) is thought to play a role. However, the mechanisms by which 伪Syn and its disease-associated allelic variants cause mitochondrial dysfunction remain unknown. Here, we analyzed mitochondrial axonal transport and morphology in human-derived neurons overexpressing wild-type (WT) 伪Syn or the mutated variants A30P or A53T, which are known to have differential lipid affinities. A53T 伪Syn was enriched in mitochondrial fractions, inducing significant mitochondrial transport defects and fragmentation, while milder defects were elicited by WT and A30P. We found that 伪Syn-mediated mitochondrial fragmentation was linked to expression levels in WT and A53T variants. Targeted delivery of WT and A53T 伪Syn to the outer mitochondrial membrane further increased fragmentation, whereas A30P did not. Genomic editing to disrupt the N-terminal domain of 伪Syn, which is important for membrane association, resulted in mitochondrial elongation without changes in fusion-fission protein levels, suggesting that 伪Syn plays a direct physiological role in mitochondrial size maintenance. Thus, we demonstrate that the association of 伪Syn with the mitochondria, which is modulated by protein mutation and dosage, influences mitochondrial transport and morphology, highlighting its relevance in a common pathway impaired in PD.Fil: Pozo Devoto, Victorio Martin. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Houssay. Instituto de Biolog铆a Celular y Neurociencia ; ArgentinaFil: Dimopoulos, Nicol谩s. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Alloatti, Mat铆as. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Houssay. Instituto de Biolog铆a Celular y Neurociencia ; ArgentinaFil: Pardi, Mar铆a Bel茅n. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaci贸n en Biomedicina de Buenos Aires - Instituto Partner de la Sociedad Max Planck; ArgentinaFil: Saez, Trinidad Mar铆a de Los Milagros. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Houssay. Instituto de Biolog铆a Celular y Neurociencia ; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Biolog铆a y Medicina Experimental. Fundaci贸n de Instituto de Biolog铆a y Medicina Experimental. Instituto de Biolog铆a y Medicina Experimental; ArgentinaFil: Otero, Maria Gabriela. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Houssay. Instituto de Biolog铆a Celular y Neurociencia ; ArgentinaFil: Cromberg, Lucas Eneas. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Houssay. Instituto de Biolog铆a Celular y Neurociencia ; ArgentinaFil: Marin Burgin, Antonia. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaci贸n en Biomedicina de Buenos Aires - Instituto Partner de la Sociedad Max Planck; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Stokin, Gorazd B.. Anne鈥檚 University Hospital; Rep煤blica ChecaFil: Schinder, Alejandro Fabi谩n. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaciones Bioqu铆micas de Buenos Aires. Fundaci贸n Instituto Leloir. Instituto de Investigaciones Bioqu铆micas de Buenos Aires; ArgentinaFil: Sevlever, Gustavo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Falzone, Tomas Luis. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Houssay. Instituto de Biolog铆a Celular y Neurociencia ; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Instituto de Biolog铆a y Medicina Experimental. Fundaci贸n de Instituto de Biolog铆a y Medicina Experimental. Instituto de Biolog铆a y Medicina Experimental; Argentin

    Chemical hypoxia induces apoptosis of human pluripotent stem cells by a NOXA-mediated HIF-1伪 and HIF-2伪 independent mechanism

    Get PDF
    Human embryonic and induced pluripotent stem cells (hESCs and hiPSCs) are self-renewing human pluripotent stem cells (hPSCs) that can differentiate to a wide range of specialized cells. Notably, hPSCs enhance their undifferentiated state and self-renewal properties in hypoxia (5% O2). Although thoroughly analyzed, hypoxia implication in hPSCs death is not fully determined. In order to evaluate the effect of chemically mimicked hypoxia on hPSCs cell survival, we analyzed changes in cell viability and several aspects of apoptosis triggered by CoCl2 and dimethyloxalylglycine (DMOG). Mitochondrial function assays revealed a decrease in cell viability at 24聽h post-treatments. Moreover, we detected chromatin condensation, DNA fragmentation and CASPASE-9 and 3 cleavages. In this context, we observed that P53, BNIP-3, and NOXA protein expression levels were significantly up-regulated at different time points upon chemical hypoxia induction. However, only siRNA-mediated downregulation of NOXA but not HIF-1伪, HIF-2伪, BNIP-3, and P53 did significantly affect the extent of cell death triggered by CoCl2 and DMOG in hPSCs. In conclusion, chemically mimicked hypoxia induces hPSCs cell death by a NOXA-mediated HIF-1伪 and HIF-2伪 independent mechanism.Fil: Isaja, Luciana. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Mucci, Sof铆a. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Vera, Jonathan. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Rodr铆guez Varela, Maria Soledad. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Marazita, Mariela Claudia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Morris Hanon, Olivia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Videla Richardson, Guillermo Agust铆n. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Sevlever, Gustavo Emilio. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Romorini, Leonardo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentin

    Identification of the miRNAome of early mesoderm progenitor cells and cardiomyocytes derived from human pluripotent stem cells

    Get PDF
    MicroRNAs are small non-coding RNAs involved in post-transcriptional regulation of gene expression related to many cellular functions. We performed a small-RNAseq analysis of cardiac differentiation from pluripotent stem cells. Our analyses identified some new aspects about microRNA expression in this differentiation process. First, we described a dynamic expression profile of microRNAs where some of them are clustered according to their expression level. Second, we described the extensive network of isomiRs and ADAR modifications. Third, we identified the microRNAs families and clusters involved in the establishment of cardiac lineage and define the mirRNAome based on these groups. Finally, we were able to determine a more accurate miRNAome associated with cardiomyocytes by comparing the expressed microRNAs with other mature cells. MicroRNAs exert their effect in a complex and interconnected way, making necessary a global analysis to better understand their role. Our data expands the knowledge of microRNAs and their implications in cardiomyogenesis.Fil: Garate, Ximena. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: la Greca, Alejandro Dami谩n. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Neiman, Gabriel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Bluguermann, Carolina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Sant铆n Velazque, Natalia Luc铆a. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Moro, Luc铆a Natalia. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Luzzani, Carlos Daniel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Sevlever, Gustavo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Romorini, Leonardo. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Miriuka, Santiago Gabriel. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentin

    Repression of 5-aminolevulinate synthase gene by the potent tumor promoter, TPA, involves multiple signal transduction pathways

    No full text
    The potent tumor promoter, 12-O-tetradecanoylphorbol-13-acetate (TPA) induces activator protein-1 (AP-1) transcription factors, early response genes involved in a diverse set of transcriptional regulatory processes, and protein kinase C (PKC) activity. This work was designed to explore the signal transduction pathways involved in TPA regulation of 5-aminolevulinate synthase (ALAS) gene expression, the mitochondrial matrix enzyme that catalyzes the first and rate-limiting step of heme biosynthesis. We have previously reported that TPA causes repression of ALAS gene, but the signaling pathways mediating this effect remain elusive. The present study investigates the role of different cascades often implicated in the propagation of phorbol ester signaling. To explore this, we combined the transient overexpression of regulatory proteins involved in these pathways and the use of small cell permeant inhibitors in human hepatoma HepG2 cells. In these experimental conditions, we analyzed TPA action upon endogenous ALAS mRNA levels, as well as the promoter activity of a fusion reporter construct, harboring the TPA-responsive region of ALAS gene driving chloramphenicol acetyl transferase gene expression. We demonstrated that the participation of 伪 isoform of PKC, phosphatidylinositol 3-kinase (PI3K), extracellular-signal regulated kinase (ERK1/2), and c-Jun N-terminal kinase (JNK) is crucial for the end point response. Remarkably, in this case, ERK activation is achieved in a Ras/Raf/MEK-independent manner. We also propose that p90RSK would be a convergent point between PI3K and ERK pathways. Furthermore, we elucidated the crosstalk among the components of the cascades taking part in TPA-mediated ALAS repression. Finally, by overexpression of a constitutively active p90RSK and the coactivator, cAMP-response element protein (CREB)-binding protein (CBP), we reinforced our previous model, that implies competition between AP-1 and CREB for CBP.Fil: Guberman, Alejandra Sonia. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Departamento de Qu铆mica Biol贸gica. Laboratorio de Biolog铆a Molecular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; ArgentinaFil: Scassa, Maria Elida. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentina. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Departamento de Qu铆mica Biol贸gica. Laboratorio de Biolog铆a Molecular; ArgentinaFil: Canepa, Eduardo Tomas. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Departamento de Qu铆mica Biol贸gica. Laboratorio de Biolog铆a Molecular; Argentina. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas; Argentin

    Acute severe hypoxia induces apoptosis of human pluripotent stem cells by a HIF-1伪 and P53 independent mechanism

    Get PDF
    Human embryonic and induced pluripotent stem cells are self-renewing pluripotent stem cells (hPSCs) that can differentiate into a wide range of specialized cells. Although moderate hypoxia (5% O2) improves hPSC self-renewal, pluripotency, and cell survival, the effect of acute severe hypoxia (1% O2) on hPSC viability is still not fully elucidated. In this sense, we explore the consequences of acute hypoxia on hPSC survival by culturing them under acute (maximum of 24聽h) physical severe hypoxia (1% O2). After 24聽h of hypoxia, we observed HIF-1伪 stabilization concomitant with a decrease in cell viability. We also observed an increase in the apoptotic rate (western blot analysis revealed activation of CASPASE-9, CASPASE-3, and PARP cleavage after hypoxia induction). Besides, siRNA-mediated downregulation of HIF-1伪 and P53 did not significantly alter hPSC apoptosis induced by hypoxia. Finally, the analysis of BCL-2 family protein expression levels disclosed a shift in the balance between pro- and anti-apoptotic proteins (evidenced by an increase in BAX/MCL-1 ratio) caused by hypoxia. We demonstrated that acute physical hypoxia reduced hPSC survival and triggered apoptosis by a HIF-1伪 and P53 independent mechanism.Fil: Mucci, Sofia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Isaja, Luciana. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Rodr铆guez Varela, Maria Soledad. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Ferriol Laffouillere, Sofia Lujan. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Marazita, Mariela Claudia. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Videla Richardson, Guillermo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; ArgentinaFil: Sevlever, Gustavo Emilio. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Scassa, Maria Elida. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia; ArgentinaFil: Romorini, Leonardo. Fundaci贸n para la Lucha contra las Enfermedades Neurol贸gicas de la Infancia. Instituto de Neurociencias - Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Ciudad Universitaria. Instituto de Neurociencias; Argentin
    corecore