Search results for " Genetics"

showing 10 items of 4169 documents

High efficiency and clinical relevance of exome sequencing in the daily practice of neurogenetics

2021

ObjectiveTo assess the efficiency and relevance of clinical exome sequencing (cES) as a first-tier or second-tier test for the diagnosis of progressive neurological disorders in the daily practice of Neurology and Genetic Departments.MethodsSixty-seven probands with various progressive neurological disorders (cerebellar ataxias, neuromuscular disorders, spastic paraplegias, movement disorders and individuals with complex phenotypes labelled ‘other’) were recruited over a 4-year period regardless of their age, gender, familial history and clinical framework. Individuals could have had prior genetic tests as long as it was not cES. cES was performed in a proband-only (60/67) or trio (7/67) st…

ProbandPediatricsmedicine.medical_specialtyMovement disordersNeurologyNeurodegeneration with brain iron accumulation[SDV]Life Sciences [q-bio]EncephalopathyNeurogenetics03 medical and health sciences0302 clinical medicineExome SequencingGeneticsHumansMedicineExomeClinical significance030212 general & internal medicineGenetic TestingGenetics (clinical)Exome sequencingComputingMilieux_MISCELLANEOUS030304 developmental biology0303 health sciencesbusiness.industrymedicine.diseasePhenotypeNeurology[SDV.GEN.GH]Life Sciences [q-bio]/Genetics/Human genetics[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Neurology (clinical)Nervous System Diseasesmedicine.symptombusiness030217 neurology & neurosurgery
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Neuroprotective Effects of Low Intensity and Low Frequency Electromagnetic �in vitro� Stimulation on Glial Cells

2020

Degenerative neurological diseases (senile dementia, Alzheimer`s disease, glaucoma), post-stroke sequelae are increasing as prevalence nowadays, in context of aging in general population, and there are strong evidences that astrocytes may play a significant role in neuroprotection. The study evaluates the effects of low intensity low frequency electromagnetic field (EMF) �in vitro� stimulation (195 mA, 7-8 Hz) on the glial cells, in different conditions, in order to identify the neuroprotective potential. Three cell lines were used for the study: the Clonetics (Lonza) line of normal human astrocytes, U87 glioblastoma tumor cells (ATCC) and L929 murine fibroblasts. The cell cultures were ex…

Process equipmentChemistryMaterials Science (miscellaneous)Process Chemistry and TechnologyGeneral EngineeringGeneral ChemistryGeneral MedicineLow frequencyNeuroprotectionGeneral Biochemistry Genetics and Molecular BiologyIntensity (physics)In vitro stimulationPetrochemistryMaterials ChemistryBiophysicsGeneral Pharmacology Toxicology and PharmaceuticsRevista de Chimie
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Cell fate regulation upon DNA damage : p53 Serine 46 kinases pave the cell death road

2019

Mild and massive DNA damage are differentially integrated into the cellular signaling networks and, in consequence, provoke different cell fate decisions. After mild damage, the tumor suppressor p53 directs the cellular response to cell cycle arrest, DNA repair, and cell survival, whereas upon severe damage, p53 drives the cell death response. One posttranslational modification of p53, phosphorylation at Serine 46, selectively occurs after severe DNA damage and is envisioned as a marker of the cell death response. However, the molecular mechanism of action of the p53 Ser46 phospho-isomer, the molecular timing of this phosphorylation event, and its activating effects on apoptosis and ferropt…

Programmed cell deathCell signalingCell cycle checkpointDNA RepairDNA repairDNA damage610 MedizinApoptosisCell fate determinationBiologyGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciences0302 clinical medicine610 Medical sciencesAnimalsHumansPhosphorylation030304 developmental biology0303 health sciencesKinaseCell Cycle CheckpointsCell biologyPhosphorylationTumor Suppressor Protein p53030217 neurology & neurosurgeryDNA Damage
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Glutathione in Cancer Biology and Therapy

2006

The glutathione (GSH) content of cancer cells is particularly relevant in regulating mutagenic mechanisms, DNA synthesis, growth, and multidrug and radiation resistance. In malignant tumors, as compared with normal tissues, that resistance associates in most cases with higher GSH levels within these cancer cells. Thus, approaches to cancer treatment based on modulation of GSH should control possible growth-associated changes in GSH content and synthesis in these cells. Despite the potential benefits for cancer therapy of a selective GSH-depleting strategy, such a methodology has remained elusive up to now. Metastatic spread, not primary tumor burden, is the leading cause of cancer death. Fo…

Programmed cell deathClinical BiochemistryApoptosisBiologyGeneral Biochemistry Genetics and Molecular BiologyProinflammatory cytokinechemistry.chemical_compoundCancer stem cellNeoplasmsmedicineAnimalsHumansNeoplasm MetastasisButhionine SulfoximineBiochemistry (medical)CancerGlutathionemedicine.diseaseGlutathionePrimary tumorExtravasationGenes bcl-2chemistryCancer cellImmunologyCancer researchCritical Reviews in Clinical Laboratory Sciences
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SAT0378 Autophagy is Up-Regulated in the Salivary Glands of Primary Sjogren's Syndrome Patients and Correlates with the Focus Score and Disease Activ…

2015

Background Autophagy is now considered as a major regulator in trafficking events that activates innate and adaptive immunity and consistent evidence supports its role in autoimmunity (1). Primary Sjogren9s syndrome (pSS) is a systemic autoimmune disease characterized by infiltration of exocrine glands by T and B cells that, producing chemokines and cytokines, coordinate the chronic inflammatory process. No data on the role of autophagy in pSS are available in humans, although studies in mice demonstrated its involvement in the salivary and lacrimal gland homeostasis (2,3). Objectives We investigated the autophagy process in salivary gland tissue and in peripheral T lymphocytes from pSS pat…

Programmed cell deathExocrine glandPathologymedicine.medical_specialtySalivary glandbusiness.industryImmunologyAutophagyATG5medicine.disease_causeAcquired immune systemGeneral Biochemistry Genetics and Molecular BiologyAutoimmunitymedicine.anatomical_structureRheumatologySicca syndromeImmunologymedicineImmunology and AllergybusinessAnnals of the Rheumatic Diseases
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Importance of lipid microdomains, rafts, in absorption, delivery, and biological effects of resveratrol

2013

The preventive effects of the phytoalexin trans-resveratrol toward cancer have been largely described at the cellular and molecular levels in both in vivo and in vitro models; however, its primary targets are still poorly identified. In this review, we show the crucial role of cell membrane microdomains, that is, lipid rafts, not solely in the initiation of the early biochemical events triggered by resveratrol leading to cancer cell death, but also in resveratrol absorption and distribution. Resveratrol accumulates in lipid rafts and is then taken up by cells through raft-dependent endocytosis. These events allow early activation of kinase pathways and redistribution of cell death receptors…

Programmed cell deathGeneral NeuroscienceLipid microdomainfood and beveragesBiologyResveratrolEndocytosisGeneral Biochemistry Genetics and Molecular BiologyCell biologyCell membranechemistry.chemical_compoundmedicine.anatomical_structureHistory and Philosophy of SciencechemistryApoptosisCancer cellmedicinelipids (amino acids peptides and proteins)Lipid raftAnnals of the New York Academy of Sciences
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Multiple cell death modalities and their key features (Review)

2020

Programmed cell deathModalitiesGeneral Immunology and MicrobiologyOncogenebusiness.industryCellCancerCell cyclemedicine.diseaseMolecular medicineGeneral Biochemistry Genetics and Molecular Biologymedicine.anatomical_structureApoptosisCancer researchMedicinebusinessWorld Academy of Sciences Journal
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Initial Biological Assessment of Upconversion Nanohybrids

2021

Nanoparticles for medical use should be non-cytotoxic and free of bacterial contamination. Upconversion nanoparticles (UCNPs) coated with cucurbit[7]uril (CB[7]) made by combining UCNPs free of oleic acid, here termed bare UCNPs (UCn), and CB[7], i.e., UC@CB[7] nanohybrids, could be used as photoactive inorganic-organic hybrid scaffolds for biological applications. UCNPs, in general, are not considered to be highly toxic materials, but the release of fluorides and lanthanides upon their dissolution may cause cytotoxicity. To identify potential adverse effects of the nanoparticles, dehydrogenase activity of endothelial cells, exposed to various concentrations of the UCNPs, was determined. Da…

Programmed cell deathQH301-705.5Medicine (miscellaneous)Nanoparticle02 engineering and technology010402 general chemistry01 natural sciencesArticleGeneral Biochemistry Genetics and Molecular BiologyHeLachemistry.chemical_compoundLysosomeLactate dehydrogenasemedicineBiology (General)Cytotoxicitybiology021001 nanoscience & nanotechnologybiology.organism_classificationPhoton upconversion0104 chemical sciencescucurbiturilupconversion nanoparticlesmedicine.anatomical_structurechemistryApoptosisBiophysicscytotoxicity0210 nano-technologyBiomedicines
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Kel1 is a phosphorylation-regulated noise suppressor of the pheromone signaling pathway.

2021

Abstract Mechanisms have evolved that allow cells to detect signals and generate an appropriate response. The accuracy of these responses relies on the ability of cells to discriminate between signal and noise. How cells filter noise in signaling pathways is not well understood. We have analyzed noise suppression in the yeast pheromone signaling pathway. By combining synthetic genetic array screening, mass spectrometry and single-cell time-resolved microscopy, we discovered that the poorly characterized protein Kel1 serves as a major noise suppressor of the pathway. At the molecular level, Kel1 suppresses spontaneous activation of the pheromone response by inhibiting membrane recruitment of…

Programmed cell deathSaccharomyces cerevisiae ProteinsChemistryCellbiologiCell BiologySaccharomyces cerevisiaeSynthetic genetic arrayGeneral Biochemistry Genetics and Molecular BiologyPheromonesCell biologylaw.inventionlawFus3SuppressorPhosphorylationPheromoneSignal transductionMitogen-Activated Protein KinasesPhosphorylationNoiseSte5Adaptor Proteins Signal TransducingCyclin-Dependent Kinase Inhibitor ProteinsSignal TransductionCell reports
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NF-κB Inhibition Restores Sensitivity to Fas-Mediated Apoptosis in Lymphoma Cell Lines

2003

Failure to perform the Fas-related apoptosis pathway can account for tumor resistance both to chemotherapeutic agents and to immunological effectors. We studied the role of NK-kappaB in Fas-resistance, employing the Fas-sensitive human T-lymphoma HuT78 cell line and its Fas-resistant variants HuT78B1 and HuT78G9. All these cell lines expressed high levels of constitutively activated NF-kappaB. Pretreatment of cells with NF-kappaB inhibitors (PDTC, MG132, or SN50) strongly enhanced CH11-induced apoptosis in HuT78 and Hut78G9 cells, while only MG132 showed a similar potentiating effect in HuT78B1. The described synergism was significantly inhibited by pretreatment with the anti-Fas-blocking a…

ProlineLeupeptinsT cellAntineoplastic AgentsApoptosisBiologyLymphoma T-CellGeneral Biochemistry Genetics and Molecular Biologychemistry.chemical_compoundHistory and Philosophy of ScienceThiocarbamatesCell Line TumorMG132medicineHumansfas Receptorapoptosis NF-KappaB MG132 Fas/FasL systemEffectorGeneral NeuroscienceNF-kappa BNF-κBmedicine.diseaseMolecular biologyLymphomamedicine.anatomical_structurechemistryApoptosisCell culturebiology.proteinAntibodyPeptidesAnnals of the New York Academy of Sciences
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