Search results for "Muscular Atrophy"

showing 10 items of 73 documents

Charcot-Marie-Tooth disease: Genetic and clinical spectrum in a Spanish clinical series

2013

Objectives: To determine the genetic distribution and the phenotypic correlation of an extensive series of patients with Charcot-Marie-Tooth disease in a geographically well-defined Mediterranean area. Methods: A thorough genetic screening, including most of the known genes involved in this disease, was performed and analyzed in this longitudinal descriptive study. Clinical data were analyzed and compared among the genetic subgroups. Results: Molecular diagnosis was accomplished in 365 of 438 patients (83.3%), with a higher success rate in demyelinating forms of the disease. The CMT1A duplication (PMP22 gene) was the most frequent genetic diagnosis (50.4%), followed by mutations in the GJB1…

Foot DeformitiesMalecongenital hereditary and neonatal diseases and abnormalitiesPathologymedicine.medical_specialtyDNA Mutational AnalysisNerve Tissue ProteinsDiseaseArticleConnexinsCentral nervous system diseaseDegenerative diseasestomatognathic systemCharcot-Marie-Tooth DiseaseGene duplicationHumansMedicineLongitudinal StudiesMuscle StrengthGeneRetrospective StudiesGeneticsSeries (stratigraphy)business.industryRetrospective cohort studymedicine.diseasePhenotypeMuscular Atrophystomatognathic diseasesSpainMutationSensation DisordersFemaleNeurology (clinical)businessMyelin ProteinsNeurology
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Homozygous SMN1 exons 1-6 deletion: pitfalls in genetic counseling and general recommendations for spinal muscular atrophy molecular diagnosis.

2012

We report on a rare homozygous intragenic deletion encompassing exons 1-6 of the SMN1 gene in a patient with spinal muscular atrophy (SMA) born into a consanguineous family. This exceptional configuration induced misinterpretation of the molecular defect involved in this patient, who was first reported as having a classic SMN1 exon 7 deletion. This case points out the possible pitfalls in molecular diagnosis of SMA in affected patients and their relatives: exploration of the SMN1 exon 7 (c.840C/T alleles) may be disturbed by several non-pathological or pathological variants around the SMN1 exon 7. In order to accurately describe the molecular defect in an SMA-affected patient, we propose to…

Genetic counselingGenetic CounselingSMN1BiologyMuscular Atrophy SpinalExonGeneticsmedicineHumansAlleleGeneGenetics (clinical)AllelesGeneticsHomozygoteChromosome MappingInfantSpinal muscular atrophyExonsmedicine.diseaseSMA*Survival of Motor Neuron 1 Proteinnervous system diseasesPedigreeHuman genomeFemaleGene DeletionAmerican journal of medical genetics. Part A
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Consenso Delphi de las recomendaciones para el tratamiento de los pacientes con atrofia muscular espinal en España (consenso RET-AME)

2021

Resumen Introduccion La atrofia muscular espinal (AME) es una enfermedad neurodegenerativa, causada por una mutacion bialelica del gen 5q SMN1, que afecta predominantemente a las neuronas motoras del asta anterior medular causando una progresiva debilidad y atrofia muscular. La aparicion de tratamientos modificadores del curso de la enfermedad esta cambiando considerablemente la historia natural de la AME, pero existe todavia incertidumbre sobre que pacientes se pueden beneficiar de estos tratamientos y como se deberia medir ese beneficio. Metodologia Un grupo de expertos especialistas en neurologia, neuropediatria y rehabilitacion, y de la asociacion de pacientes con AME de Espana, analiza…

GeneticsMuscular atrophyNeurology (clinical)Atròfia muscularGenèticaNeurología
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CARDIOMETABOLIC SYNDROME AND SARCOPENIC OBESITY IN OLDER PERSONS

2007

The aging of the world's population is a major contributor to the growing prevalence of the cardiometabolic syndrome (CMS) because older persons are more affected by the constellation of cardiovascular risk factors that constitute the syndrome. The prevalence of CMS has been related to the increasing prevalence of obesity, which is growing progressively even among older age groups. Indeed, obesity and aging are 2 overlapping mounting public health problems. It is currently accepted that CMS predicts cardiovascular mortality and/or the development of type 2 diabetes mellitus, and this is also true in studies including older persons. CMS is further complicated by modifications in body composi…

Gerontologymedicine.medical_specialtyAgingEndocrinology Diabetes and MetabolismPopulationAdipokineCardiometabolic syndromeInternal MedicinemedicineHumansSarcopenic obesityObesityeducationhealth care economics and organizationsAgedMetabolic Syndromeeducation.field_of_studybusiness.industryPublic healthType 2 Diabetes Mellitusmedicine.diseaseObesityMuscular AtrophyAdipose TissueCardiovascular DiseasesSarcopeniaLean body massPhysical therapyBody CompositionInflammation MediatorsInsulin ResistanceCardiology and Cardiovascular MedicinebusinessHuman
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The loss of muscle mass and sarcopenia: non hormonal intervention.

2011

Muscle aging is a key component of the increase in frailty in human populations. The generation of critical levels of power is a prerequisite to perform simple tasks of daily living, such as rising from a chair or climbing stairs. There is great scientific and social interest to determine which behaviors can lead to the maintenance of the muscle mass in young immobilized subjects and in the elderly. Several hormonal treatments have been proposed for the treatment of sarcopenia. However, the side effects associated to these treatments emphasize the need of finding non-toxic and non-hormonal treatments that help increase muscle strength, improve muscle function, and decrease the degree of dep…

Gerontologymedicine.medical_specialtyAgingSarcopeniaNon hormonalFrail ElderlyPopulationLongevityMuscle massBiochemistryBenzoatesLosartanAngiotensin Receptor AntagonistsEndocrinologyPhysical medicine and rehabilitationIntervention (counseling)GeneticsmedicineAnimalsHumansMuscle StrengthPPAR deltaTelmisartaneducationMolecular BiologyExerciseHeat-Shock ProteinsAgedAged 80 and overeducation.field_of_studybusiness.industryPublic healthTOR Serine-Threonine KinasesCell Biologymedicine.diseasePeroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alphaMuscle atrophyMuscular AtrophySarcopeniaMuscle strengthBenzimidazolesmedicine.symptombusinesshuman activitiesTranscription FactorsExperimental gerontology
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Carrier screening for spinal muscular atrophy in Italian population

2014

Spinal muscular atrophy (SMA) is an autosomal-recessive neuromuscular disorder characterized by motor neuron degeneration in the anterior horn of the spinal cord and brain stem, resulting in progressive muscle weakness and atrophy. The responsible survival motor neuron gene (SMN1; HGNC: 11117) is localized in 5q11.2-13.3. Screening for carriers of SMA is necessary for effective clinical/prenatal diagnosis and genetic counselling. In this study, the copy number of SMN1 gene was determined from a southern Italian population to estimate carrier frequency. This is the first report addressing the estimation of SMA carrier frequency in an Italian population. Our results show that the SMA carrier …

HeterozygoteGenetic counselingGene DosagePhysiologycarrier screeningPrenatal diagnosisSMN1BiologyCarrier testingMuscular Atrophy SpinalAtrophyGene FrequencySettore BIO/13 - Biologia ApplicataPrevalenceGeneticsmedicineHumansGenetic Testingspinal muscular atrophysurvival motor neuron gene (SMN1); spinal muscular atrophy; carrier screening; MLPAExonsSpinal muscular atrophyMotor neuronSMA*medicine.diseaseSurvival of Motor Neuron 1 ProteinMLPAmedicine.anatomical_structureItalysurvival motor neuron gene (SMN1)Journal of Genetics
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Post-translational modifications in the survival motor neuron protein

2004

Spinal muscular atrophy (SMA) is an autosomal recessive disease characterized by a progressive loss of the spinal motoneurons. The SMA-determining gene has been termed survival motor neuron (SMN) and is deleted or mutated in over 98% of patients. The encoded gene product is a protein expressed as different isoforms. In particular, we showed that the rat SMN cDNA produces two isoforms with Mr of 32 and 35 kDa, both localized in nuclear coiled bodies, but the 32 kDa form is also cytoplasmic, whereas the 35 kDa form is also microsomal. To determine the molecular relationship between these two isoforms and potential post-translational modifications, we performed transfection experiments with a …

INVOLVEMENTFORMSPRODUCTBiochemistryMiceChlorocebus aethiopsProtein IsoformsPhosphorylationCyclic AMP Response Element-Binding ProteinSMN PROTEINCells CulturedMotor NeuronsSPINAL MUSCULAR-ATROPHYRNA-Binding ProteinsSMN Complex Proteins3T3 CellsTransfectionmedicine.anatomical_structureSpinal CordCOS CellsSUBCELLULAR-LOCALIZATIONEXPRESSIONGene isoformRecombinant Fusion ProteinsBiophysicsNerve Tissue ProteinsBiologyMuscular Atrophy SpinalGene productSMN Complex ProteinsComplementary DNAmedicineAnimalsHumansMolecular BiologyCell BiologySpinal muscular atrophyMotor neuronmedicine.diseaseSurvival of Motor Neuron 1 ProteinMolecular biologyRatsnervous system diseasesMolecular WeightSEVERITYnervous systemBODIESProtein Processing Post-TranslationalDETERMINING GENEImmunostainingBiochemical and Biophysical Research Communications
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Systemic blockade of ACVR2B ligands attenuates muscle wasting in ischemic heart failure without compromising cardiac function

2020

Signaling through activin receptors regulates skeletal muscle mass and activin receptor 2B (ACVR2B) ligands are also suggested to participate in myocardial infarction (MI) pathology in the heart. In this study, we determined the effect of systemic blockade of ACVR2B ligands on cardiac function in experimental MI, and defined its efficacy to revert muscle wasting in ischemic heart failure (HF). Mice were treated with soluble ACVR2B decoy receptor (ACVR2B-Fc) to study its effect on post-MI cardiac remodeling and on later HF. Cardiac function was determined with echocardiography, and myocardium analyzed with histological and biochemical methods for hypertrophy and fibrosis. Pharmacological blo…

Male0301 basic medicineCardiac function curvemedicine.medical_specialtyActivin Receptors Type IIMyocardial IschemiaMyostatinBiochemistryMuscle hypertrophyMice03 medical and health sciences0302 clinical medicineInternal medicineGeneticsmedicineAnimalsMyocyteMyocardial infarctionMolecular BiologyVentricular Remodelingbiologybusiness.industrySkeletal muscleHeartmedicine.disease3. Good healthBlockadeMice Inbred C57BLDisease Models AnimalMuscular Atrophy030104 developmental biologymedicine.anatomical_structureCardiologybiology.proteinbusiness030217 neurology & neurosurgeryACVR2BSignal TransductionTranscription FactorsBiotechnologyThe FASEB Journal
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Active acetylcholine receptors prevent the atrophy of skeletal muscles and favor reinnervation

2020

Denervation of skeletal muscles induces severe muscle atrophy, which is preceded by cellular alterations such as increased plasma membrane permeability, reduced resting membrane potential and accelerated protein catabolism. The factors that induce these changes remain unknown. Conversely, functional recovery following denervation depends on successful reinnervation. Here, we show that activation of nicotinic acetylcholine receptors (nAChRs) by quantal release of acetylcholine (ACh) from motoneurons is sufficient to prevent changes induced by denervation. Using in vitro assays, ACh and non-hydrolysable ACh analogs repressed the expression of connexin43 and connexin45 hemichannels, which prom…

Male0301 basic medicineCell Membrane PermeabilityNeuromuscular transmissionSkeletal muscleGeneral Physics and AstronomylihaksetasetyylikoliiniReceptors NicotinicConnexinsMembrane PotentialsMice0302 clinical medicineGanglia SpinalMyocytevälittäjäaineetlcsh:ScienceCells CulturedDenervationMultidisciplinaryChemistryQMuscle atrophy3. Good healthCell biologyMuscular AtrophyNicotinic agonistmedicine.anatomical_structuremedicine.symptomAcetylcholinemedicine.drugReinnervationScienceMice TransgenicArticleGeneral Biochemistry Genetics and Molecular Biology03 medical and health sciencesmedicineAnimalsskeletal muscleMuscle SkeletalAcetylcholine receptorsoluviestintäsomatic systemGeneral ChemistryAcetylcholineMice Inbred C57BLhermosolut030104 developmental biologynervous systemConnexin 43lcsh:Qsense organsSomatic systemlihassurkastumasairaudet030217 neurology & neurosurgeryNature Communications
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Muscle follistatin gene delivery increases muscle protein synthesis independent of periodical physical inactivity and fasting

2020

Blocking of myostatin and activins effectively counteracts muscle atrophy. However, the potential interaction with physical inactivity and fasting in the regulation of muscle protein synthesis is poorly understood. We used blockade of myostatin and activins by recombinant adeno-associated virus (rAAV)-mediated follistatin (FS288) overexpression in mouse tibialis anterior muscle. To investigate the effects on muscle protein synthesis, muscles were collected 7 days after rAAV-injection in the nighttime or in the daytime representing high and low levels of activity and feeding, respectively, or after overnight fasting, refeeding, or ad libitum feeding. Muscle protein synthesis was increased by…

Male0301 basic medicineFollistatinMuscle Proteinsphysical activitylihaksetMyostatinBiochemistryMice0302 clinical medicineTibialis anterior musclemedia_common2. Zero hungerbiologyChemistryactivinsFastingDependovirusMuscle atrophyCircadian RhythmMuscular Atrophymyostatinmedicine.symptomfyysinen aktiivisuusBiotechnologymedicine.medical_specialtyfastingmedia_common.quotation_subjectMechanistic Target of Rapamycin Complex 1Gene delivery03 medical and health sciencesPhysical Conditioning AnimalInternal medicineGeneticsmedicineAnimalsMolecular BiologypaastoPI3K/AKT/mTOR pathwaysolufysiologiaSarcolemmaJNK Mitogen-Activated Protein Kinasesmechanistic target of rapamycin proteinAppetiteGenetic TherapyMice Inbred C57BL030104 developmental biologyEndocrinologybiology.protein1182 Biochemistry cell and molecular biology3111 BiomedicineproteiinitEnergy Metabolismlihassurkastumasairaudet030217 neurology & neurosurgeryFollistatin
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