Search results for "connexin 43"

showing 5 items of 15 documents

Connexin 43, Bcl-2, Bax, Ki67, and E-cadherin patterns in oral squamous cell carcinoma and its relationship with GJA1 rs12197797 C/G

2022

To our knowledge, there is no useful and accurate prognostic biomarker or biomarkers for patients with oral squamous cell carcinoma (OSCC), a tumor with uncertain biological behavior, and unpredicTable clinical progress. The purposes of this study were: a) to determine the expresión profile of Connexin 43, Bcl-2, Bax, E-cadherin, and Ki67 in patients with OSCC; b) identify the GJCA1 rs12197797 genotypic composition. A cross-sectional study using genomic DNA and biopsy samples extracted from the oral mucosa with/without OSCC, older than 18 years, both genders, attended at Facultad de Odontología, Universidad Nacional Córdoba. Immunostaining for Cx43, Bcl-2, Bax, E-cadherin, and Ki67 and geno…

MaleSquamous Cell Carcinoma of Head and Neckgapsendoscopeopaque dentinCadherinsperiapical surgeryCross-Sectional StudiesKi-67 AntigenProto-Oncogene Proteins c-bcl-2OtorhinolaryngologyHead and Neck NeoplasmsConnexin 43Biomarkers TumorCarcinoma Squamous CellHumansFemaleMouth NeoplasmscracksSurgeryGeneral DentistryUNESCO:CIENCIAS MÉDICASbcl-2-Associated X ProteinMedicina Oral Patología Oral y Cirugia Bucal
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Increased Cx43 and Angiogenesis in Exercised Mouse Hearts

2007

Several studies focused on the macroscopic architecture of increased cardiac wall induced by exercise training. Our goal was to evaluate myocardiocyte, interstitial and vascular component, and connexin-43 expression in endurance-trained mouse hearts. Sixty-three 10-week-old male Swiss mice were divided into four sedentary groups (C0, C15, C30 and C45) and three groups exercised respectively for 15 (T15-D; running intensity [RI]: 3.18 m/min; running duration [RD]: 75 min/first week and 150 min/second week), 30 (T30-D; RI: 3.96 m/min; RD: 150 min/third week and 225 min/fourth week) and 45 days (T45-D; RI: 3.96 m/min and 4.8 m/min, respectively for the fifth and sixth week; RD: 300 min) on a t…

Malemedicine.medical_specialtyconnexin-43Neovascularization PhysiologicConnective tissueCardiomegalyPhysical Therapy Sports Therapy and RehabilitationheartMuscle hypertrophyNeovascularizationMiceangiogenesisendurance trainingEndurance trainingInternal medicinemedicineAnimalsOrthopedics and Sports MedicineInterventricular septumTreadmillSettore M-EDF/02 - Metodi E Didattiche Delle Attivita' Sportivebusiness.industryGap Junctionsmedicine.anatomical_structureEndocrinologyConnective TissueVentricleConnexin 43Circulatory systemPhysical Endurancemedicine.symptomhypertrophybusinessInternational Journal of Sports Medicine
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OPLA scaffold, collagen I, and horse serum induce a higher degree of myogenic differentiation of adult rat cardiac stem cells

2009

In the last few years, a major goal of cardiac research has been to drive stem cell differentiation to replace damaged myocardium. Several research groups have attempted to differentiate potential cardiac stem cells (CSCs) using bi- or three-dimensional systems supplemented with growth factors or molecules acting as differentiating substances. We hypothesize that these systems failed to induce a complete differentiation because they lacked an architectural space. In the present study, we isolated a pool of small proliferating and fibroblast-like cells from adult rat myocardium. The phenotype of these cells was assessed and the characterized cells were cultured in a collagen I/OPLA scaffold …

SerumScaffoldPhysiologyCellular differentiationLIM-Homeodomain ProteinsClinical BiochemistryNerve Tissue ProteinsCell SeparationBiologyMuscle DevelopmentCollagen Type INestinRats Sprague-DawleyIntermediate Filament ProteinsMicroscopy Electron TransmissionTroponin TAnimalsMyocyteMyocytes CardiacHorsesTranscription factorHomeodomain ProteinsMyosin Heavy ChainsTissue ScaffoldsSettore BIO/16 - Anatomia UmanaMyocardiumCell DifferentiationCell BiologyAnatomyNestinPhenotypestem cell OPLA scaffoldActinsIn vitroClone CellsGATA4 Transcription FactorRatsCell biologyAdult Stem CellsProto-Oncogene Proteins c-kitConnexin 43FemaleStem cellTranscription FactorsJournal of Cellular Physiology
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Exercise training intensity and connexin 43 expression in hypertrophic cardiomyopathy.

2017

• Moderate-intensity exercise improved peak oxygen consumption in hypertrophic cardiomyopathy.

medicine.medical_specialtybusiness.industryCardiomyopathyHypertrophic cardiomyopathyConnexin030229 sport sciences030204 cardiovascular system & hematologyCardiomyopathy Hypertrophicmedicine.disease03 medical and health sciences0302 clinical medicineText miningTraining intensityInternal medicineConnexin 43CardiologyMedicineHumansExercise physiologyCardiology and Cardiovascular MedicinebusinessMolecular BiologyExerciseJournal of molecular and cellular cardiology
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Increased Connexin 43 Expression as a Potential Mediator of the Neuroprotective Activity of the Corticotropin-Releasing Hormone

2009

CRH is a major central stress mediator, but also a potent neuroprotective effector. The mechanisms by which CRH mediates its neuroprotective actions are largely unknown. Here, we describe that the gap junction molecule connexin43 (Cx43) mediates neuroprotective effects of CRH toward experimentally induced oxidative stress. An enhanced gap junction communication has been reported to contribute to neuroprotection after neurotoxic insults. We show that CRH treatment up-regulates Cx43 expression and gap junctional communication in a CRH receptor-dependent manner in IMR32 neuroblastoma cells, primary astrocytes, and organotypic hippocampal slice cultures. MAPKs and protein kinase A-cAMP response…

medicine.medical_specialtyendocrine systemCorticotropin-Releasing HormoneMAP Kinase Signaling SystemCarbenoxoloneConnexinBiologyNeuroprotectionModels BiologicalArticleRats Sprague-DawleyCorticotropin-releasing hormoneMiceEndocrinologyMediatorInternal medicineCell Line Tumormedicinepolycyclic compoundsAnimalsHumansProtein kinase AMolecular BiologyGap junctionBrainGap JunctionsGeneral MedicineCell biologyRatsEndocrinologyNeuroprotective Agentsnervous systemGene Expression RegulationConnexin 43cardiovascular systemSignal transductionhormones hormone substitutes and hormone antagonistsmedicine.drugSignal Transduction
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