Search results for "miR-1"

showing 10 items of 38 documents

miR-133a Enhances the Protective Capacity of Cardiac Progenitors Cells after Myocardial Infarction

2014

Summary miR-133a and miR-1 are known as muscle-specific microRNAs that are involved in cardiac development and pathophysiology. We have shown that both miR-1 and miR-133a are early and progressively upregulated during in vitro cardiac differentiation of adult cardiac progenitor cells (CPCs), but only miR-133a expression was enhanced under in vitro oxidative stress. miR-1 was demonstrated to favor differentiation of CPCs, whereas miR-133a overexpression protected CPCs against cell death, targeting, among others, the proapoptotic genes Bim and Bmf. miR-133a-CPCs clearly improved cardiac function in a rat myocardial infarction model by reducing fibrosis and hypertrophy and increasing vasculari…

Cardiac function curveProgrammed cell deathMyocardial InfarctionGene ExpressionCardiomegalyBiologyBiochemistryArticleMuscle hypertrophyParacrine signallingDownregulation and upregulationmiR-133a; Cardiac Progenitors Cells; Myocardial InfarctionFibrosisREGENERATIONmicroRNAGeneticsmedicineMyocyteAnimalsRNA MessengerOXIDATIVE STRESSlcsh:QH301-705.5ENGINEERED HEART-TISSUElcsh:R5-920Gene Expression ProfilingMICRORNAComputational BiologyCell BiologyMUSCLEmedicine.disease3. Good healthCell biologyRatsAPOPTOSISHYPERTROPHYMicroRNAsDIFFERENTIATIONlcsh:Biology (General)ImmunologyGROWTHRNA Interferencelcsh:Medicine (General)EMBRYONIC STEM-CELLSMyoblasts CardiacDevelopmental BiologyStem Cell Reports
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Key nodes of a microRNA network associated with the integrated mesenchymal subtype of high-grade serous ovarian cancer

2015

Metastasis is the main cause of cancer mortality. One of the initiating events of cancer metastasis of epithelial tumors is epithelial-to-mesenchymal transition (EMT), during which cells dedifferentiate from a relatively rigid cell structure/morphology to a flexible and changeable structure/morphology often associated with mesenchymal cells. The presence of EMT in human epithelial tumors is reflected by the increased expression of genes and levels of proteins that are preferentially present in mesenchymal cells. The combined presence of these genes forms the basis of mesenchymal gene signatures, which are the foundation for classifying a mesenchymal subtype of tumors. Indeed, tumor classifi…

Epithelial-Mesenchymal TransitionReviewBiologyBioinformaticsMetastasis03 medical and health sciences0302 clinical medicinemicroRNAGene expressionmedicineHumanscancerEpithelial–mesenchymal transitionCystadenocarcinomaGene030304 developmental biologyOvarian Neoplasms0303 health sciencesMessenger RNAmiR-506Mesenchymal stem cellmiR-101medicine.diseaseCystadenocarcinoma Serous3. Good healthMicroRNAsOncology030220 oncology & carcinogenesisCancer researchFemaleovaryMicroRNA (miRNA)epithelial-to-mesenchymal transition (EMT)Chinese Journal of Cancer
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Role of miR-126 shuttled by exosomes in the crosstalk between chronic myelogenus leukemia and endothelial cells.

2014

ExosomesmiR-126 exosomes
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MicroRNAs play a central role in molecular dysfunctions linking inflammation with cancer.

2013

It is now largely admitted that a pro-inflammatory environment may curtail anti-tumor immunity and favor cancer initiation and progression. The discovery that small non-coding regulatory RNAs, namely microRNAs (miRNAs), regulate all aspects of cell proliferation, differentiation, and function has shed a new light on regulatory mechanisms linking inflammation and cancer. Thus, miRNAs such as miR-21, miR-125b, miR-155, miR-196, and miR-210 that are critical for the immune response or hypoxia are often overexpressed in cancers and leukemias. Given the high number of their target transcripts, their deregulation may have a number of deleterious consequences, depending on the cellular context. In…

ImmunologyBiologyBioinformaticsmedicine.disease_causemiR-155Transforming Growth Factor betaNeoplasmsmicroRNAmedicineImmunology and AllergyAnimalsHumansTranscription factorCell ProliferationRegulation of gene expressionInflammationImmunityBiological TherapyGene Expression Regulation NeoplasticMicroRNAsCell Transformation NeoplasticTumor EscapeCancer researchTumor EscapeSignal transductionCarcinogenesisTransforming growth factorSignal TransductionTranscription FactorsImmunological reviews
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miR-155: On the Crosstalk Between Inflammation and Cancer

2009

MicroRNAs are short non-coding RNAs that posttranscriptionally modulate the expression of multiple target genes and are thus implicated in a wide array of cellular and developmental processes. miR-155 is processed from BIC, a non-coding transcript highly expressed in both activated B and T cells and in monocytes/macrophages. miR-155 levels change dynamically during both hematopoietic lineage differentiation and the course of the immune response. Different mouse models developed recently indicate that miR-155 plays a critical role during hematopoiesis and regulates lymphocyte homeostasis and tolerance. A moderate increase of miR-155 levels is observed in many types of malignancies of B cell …

InflammationRegulation of gene expressionInnate immune systemMyeloidImmunologyGene ExpressionBiologyAcquired immune systemCell biologymiR-155MiceMicroRNAsmedicine.anatomical_structureImmune systemGene Expression RegulationNeoplasmsLymphocyte homeostasisImmunologymedicineAnimalsHumansImmunology and AllergyB cellInternational Reviews of Immunology
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Resveratrol decreases the levels of miR-155 by upregulating miR-663, a microRNA targeting JunB and JunD.

2010

An inflammatory component is present in the microenvironment of most neoplastic tissues, including those not causally related to an obvious inflammatory process. Several microRNAs, and especially miR-155, play an essential role in both the innate and adaptative immune response. Resveratrol (trans-3,4#,5-trihydroxystilbene) is a natural antioxidant with anti-inflammatory properties that is currently at the stage of preclinical studies for human cancer prevention. Here, we establish that, in human THP-1 monocytic cells as well as in human blood monocytes, resveratrol upregulates miR- 663, a microRNA potentially targeting multiple genes implicated in the immune response. In THP-1 cells, miR-66…

LipopolysaccharidesCancer ResearchJUNBProto-Oncogene Proteins c-junBlotting WesternResveratrolBiologyMonocytesmiR-15503 medical and health scienceschemistry.chemical_compound0302 clinical medicineImmune systemDownregulation and upregulationRNA interferencemicroRNAStilbenesBiomarkers TumorHumans[SDV.BBM]Life Sciences [q-bio]/Biochemistry Molecular BiologyRNA MessengerLuciferases[ SDV.BBM ] Life Sciences [q-bio]/Biochemistry Molecular BiologyCells Cultured030304 developmental biologyOligonucleotide Array Sequence AnalysisCancer Biology0303 health sciencesInnate immune systemmicroRNAReverse Transcriptase Polymerase Chain ReactionGene Expression ProfilingmicroRNA; ResveratrolGeneral MedicineAntineoplastic Agents Phytogenic3. Good healthUp-RegulationTranscription Factor AP-1MicroRNAschemistryGene Expression RegulationResveratrol030220 oncology & carcinogenesisCancer research
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Quaking and miR-155 interactions in inflammation and leukemogenesis.

2015

Quaking (QKI) is a tumor-suppressor gene encoding a conserved RNA-binding protein, whose expression is downregulated in several solid tumors. Here we report that QKI plays an important role in the immune response and suppression of leukemogenesis. We show that the expression of Qki is reduced in lipopolysaccharide (LPS)-challenged macrophages, suggesting that Qki is a key regulator of LPS signaling pathway. Furthermore, LPS-induced downregulation of Qki expression is miR-155-dependent. Qki overexpression impairs LPS-induced phosphorylation of JNK and particularly p38 MAPKs, in addition to increasing the production of anti-inflammatory cytokine IL-10. In contrast, Qki ablation decreases Fas …

LipopolysaccharidesTime Factorsmedicine.medical_treatmentmedicine.disease_causeTransgenicMiceInnatePhosphorylationChronicB-LymphocytesLeukemiaRNA-Binding ProteinsU937 CellsLymphocyticCell biologyCytokineOncologyPhosphorylationCytokinesCLL; Glioblastoma; Inflammation; MiR-155; QKI; Animals; Apoptosis Regulatory Proteins; B-Lymphocytes; Case-Control Studies; Cytokines; Humans; Immunity Innate; Inflammation; Leukemia Lymphocytic Chronic B-Cell; Lipopolysaccharides; Macrophages; Mice; Mice Transgenic; MicroRNAs; Mitogen-Activated Protein Kinases; Phosphorylation; RAW 264.7 Cells; RNA-Binding Proteins; Signal Transduction; Time Factors; Transfection; U937 Cells; OncologySignal transductionMitogen-Activated Protein KinasesSignal Transductionp38 mitogen-activated protein kinasesOncology and CarcinogenesisMice TransgenicTransfectionNOmiR-155miR-155Downregulation and upregulationmicroRNAmedicineAnimalsHumansInflammationQKIbusiness.industryMacrophagesB-CellImmunityglioblastomaLeukemia Lymphocytic Chronic B-CellImmunity InnateMicroRNAsRAW 264.7 CellsCase-Control StudiesImmunologyCarcinogenesisbusinessApoptosis Regulatory ProteinsCLLPriority Research Paper
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GENETIC AND FUNCTIONAL DISSECTION OF THE MIR-17-92 CLUSTER OF MIRNAS

2011

Background: The miR-17∼92 cluster was among the first cluster of miRNAs to be linked to cancer. It is directly activated by the members of the MYC family of transcription factors and acts as a bona fide oncogene in several types of cancer, including lymphomas. miR-17∼92 is essential for mammalian development. Knockout mice die in utero or at birth with cardiovascular defects and impaired B-cell maturation. Aims: Although miR-17∼92 is important for tumorigenesis and development both the molecular mechanisms and the prominent miRNAs acting in different contexts are still unknown. The main aim of our study was to identify the role played by different members of the miR-17∼92 cluster in B-cell …

MIR-17-92 CLUSTERMIRNASSettore MED/06 - Oncologia MedicaGENETICFUNCTIONAL DISSECTION
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A role for miR-142-3p in colony-stimulating factor 1-induced monocyte differentiation into macrophages

2013

AbstractThe differentiation of human peripheral blood monocytes into macrophages can be reproduced ex vivo by culturing the cells in the presence of colony-stimulating factor 1 (CSF1). Using microarray profiling to explore the role of microRNAs (miRNAs), we identified a dramatic decrease in the expression of the hematopoietic specific miR-142-3p. Up- and down-regulation of this miRNA in primary human monocytes altered CSF1-induced differentiation of monocytes, as demonstrated by changes in the expression of the cell surface markers CD16 and CD163. One of the genes whose expression is repressed by miR-142-3p encodes the transcription factor Early Growth Response 2 (Egr2). In turn, Egr2 assoc…

Macrophage colony-stimulating factorAntigens Differentiation MyelomonocyticDown-RegulationChronic myelomonocytic leukemiaReceptors Cell SurfaceCD16BiologyGPI-Linked ProteinsMonocyte–macrophage differentiationMonocytesChronic myelomonocytic leukemiaAntigens CDCell Line TumorMiR-142-3pmedicineHumansTranscription factorMolecular BiologyEarly Growth Response Protein 2Early Growth Response Protein 1Cluster of differentiationMolecular circuitryMacrophage Colony-Stimulating FactorMacrophagesReceptors IgGCell DifferentiationLeukemia Myelomonocytic ChronicCell Biologymedicine.diseaseUp-RegulationRepressor ProteinsMicroRNAsHaematopoiesisMonocyte differentiationCancer researchEgr2K562 CellsK562 cellsBiochimica et Biophysica Acta (BBA) - Molecular Cell Research
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Telmisartan cardioprotects from the ischaemic/hypoxic damage through a miR‐1‐dependent pathway

2019

The aim of this study was to investigate whether telmisartan protects the heart from the ischaemia/reperfusion damage through a local microRNA-1 modulation. Studies on the myocardial ischaemia/reperfusion injury in vivo and on the cardiomyocyte hypoxia/reoxygenation damage in vitro were done. In vivo, male Sprague-Dawley rats administered for 3 weeks with telmisartan 12 mg/kg/d by gastric gavage underwent ischaemia/reperfusion of the left descending coronary artery. In these rats, infarct size measurement, ELISA, immunohistochemistry (IHC) and reverse transcriptase real-time polymerase chain reaction showed that expressions of connexin 43, potassium voltage-gated channel subfamily Q member …

Male0301 basic medicineCell SurvivalMyocardial InfarctionIschemiaConnexinMyocardial Reperfusion InjuryPharmacologymiR‐1telmisartanCell Lineconnexin 43Rats Sprague-Dawleyhypoxic H9c2 cells03 medical and health sciences0302 clinical medicineIn vivomedicineAnimalsBcl-2Myocytes CardiacKCNQ1ChemistryBcl‐2Original ArticlesCell BiologyTransfectionHypoxia (medical)medicine.diseasemiR-1Cell HypoxiaIn vitroRatsMicroRNAsmyocardial ischaemia/reperfusion030104 developmental biologyProto-Oncogene Proteins c-bcl-2030220 oncology & carcinogenesisKCNQ1 Potassium ChannelMolecular Medicinehypoxic H9c2 cellOriginal Articlemedicine.symptomTelmisartanReperfusion injurymedicine.drugJournal of Cellular and Molecular Medicine
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