Search results for " Skeletal Muscle"

showing 10 items of 26 documents

Human skeletal muscle type 1 fibre distribution and response of stress-sensing proteins along the titin molecule after submaximal exhaustive exercise.

2017

Early responses of stress-sensing proteins, muscle LIM protein (MLP), ankyrin repeat proteins (Ankrd1/CARP and Ankrd2/Arpp) and muscle-specific RING finger proteins (MuRF1 and MuRF2), along the titin molecule were investigated in the present experiment after submaximal exhaustive exercise. Ten healthy men performed continuous drop jumping unilaterally on a sledge apparatus with a submaximal height until complete exhaustion. Five stress-sensing proteins were analysed by mRNA measurements from biopsies obtained immediately and 3 h after the exercise from exercised vastus lateralis muscle while control biopsies were obtained from non-exercised legs before the exercise. Decreased maximal jump h…

0301 basic medicineANKRD2AdultMalemedicine.medical_specialtyANKRD1HistologyAdolescentVastus lateralis musclePhysical ExertionMuscle Proteinslihaksetmedicine.disease_causetuki- ja liikuntaelimet03 medical and health sciencesYoung Adult0302 clinical medicineJumpingHsp27Internal medicinemedicinestress-sensing proteinsHumanstitinConnectinMolecular BiologyExerciseurheiluvammatbiologySkeletal muscleCell BiologyAnatomyhuman skeletal muscleMedical Laboratory Technology030104 developmental biologymedicine.anatomical_structureEndocrinologyMuscle Fibers Slow-Twitchbiology.proteinexercise induced muscle damageTitinAnkyrin repeat030217 neurology & neurosurgeryHistochemistry and cell biology
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Aging-associated genes and let-7 microRNAs: a contribution to myogenic program dysregulation in oculopharyngeal muscular dystrophy

2019

Oculopharyngeal muscular dystrophy (OPMD) is a late-onset muscle disease caused by an abnormal (GCN) triplet expansion within the polyadenylate-binding protein nuclear 1 gene and consequent mRNA pr...

0301 basic medicineMaleAgingOculopharyngealMuscle DevelopmentBiochemistryMyoblasts0302 clinical medicine80 and overMuscular DystrophyHMGB1 ProteinPAX7 Transcription FactorCell DifferentiationdifferentiationMiddle AgedCell biologymedicine.anatomical_structureFemaleMyogeninMitogen-Activated Protein KinasesBiotechnologyDifferentiation regeneration skeletal muscleAdultBiologyInclusion BodyOculopharyngeal muscular dystrophy03 medical and health sciencesmicroRNAGeneticsmedicineHumansGenetic Predisposition to Diseasedifferentiation; regeneration; skeletal muscle; Adult; Aged; Aged 80 and over; Aging; Antigens Neoplasm; Cell Differentiation; Female; Gene Expression Regulation; HMGB1 Protein; Humans; Male; MicroRNAs; Middle Aged; Mitogen-Activated Protein Kinases; Muscle Development; Muscular Dystrophy Oculopharyngeal; Myoblasts; Myogenin; Myositis Inclusion Body; PAX7 Transcription Factor; Genetic Predisposition to Diseaseskeletal muscleAntigensMolecular BiologyGeneAgedMessenger RNAMyositisRegeneration (biology)Skeletal musclemedicine.diseaseMicroRNAs030104 developmental biologyMuscle diseaseGene Expression RegulationregenerationNeoplasm030217 neurology & neurosurgery
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Skeletal muscle Heat shock protein 60 increases after endurance training and induces peroxisome proliferator-activated receptor gamma coactivator 1 α…

2016

AbstractHeat shock protein 60 (Hsp60) is a chaperone localizing in skeletal muscle mitochondria, whose role is poorly understood. In the present study, the levels of Hsp60 in fibres of the entire posterior group of hindlimb muscles (gastrocnemius, soleus and plantaris) were evaluated in mice after completing a 6-week endurance training program. The correlation between Hsp60 levels and the expression of four isoforms of peroxisome proliferator-activated receptor gamma coactivator 1 alpha (PGC1α) were investigated only in soleus. Short-term overexpression of hsp60, achieved by in vitro plasmid transfection, was then performed to determine whether this chaperone could have a role in the activa…

0301 basic medicineMaleTime FactorsPPARgammaPeroxisome proliferator-activated receptorExosomesMiceendurance trainingMyocytechemistry.chemical_classificationMultidisciplinarytrainingbiologyHsp60Mitochondriamedicine.anatomical_structureMuscle Fibers Slow-TwitchMuscle Fibers Fast-TwitchHsp60; skeletal muscle; training; PPARgamma; PGC1αHSP60[SDV.NEU]Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]Oxidation-Reductionmedicine.medical_specialtyanimal structureschemical and pharmacologic phenomenacomplex mixturescachexiaArticleCell Line03 medical and health sciencesEndurance trainingHeat shock proteinInternal medicinePhysical Conditioning AnimalPGC1αCoactivatormedicineAnimals[SDV.NEU] Life Sciences [q-bio]/Neurons and Cognition [q-bio.NC]skeletal muscleMuscle SkeletalSettore BIO/16 - Anatomia UmanafungiSkeletal muscleChaperonin 60030104 developmental biologyEndocrinologychemistryGene Expression RegulationChaperone (protein)biology.proteinPhysical EnduranceBiomarkersTranscription FactorsScientific Reports
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Morphological Evidence of Telocytes in Skeletal Muscle Interstitium of Exercised and Sedentary Rodents

2021

Skeletal muscle atrophy, resulting from states of hypokinesis or immobilization, leads to morphological, metabolic, and functional changes within the muscle tissue, a large variety of which are supported by the stromal cells populating the interstitium. Telocytes represent a recently discovered population of stromal cells, which has been increasingly identified in several human organs and appears to participate in sustaining cross-talk, promoting regenerative mechanisms and supporting differentiation of local stem cell niche. The aim of this morphologic study was to investigate the presence of Telocytes in the tibialis anterior muscle of healthy rats undergoing an endurance training protoco…

0301 basic medicineMuscle tissuePathologymedicine.medical_specialtyStromal cellQH301-705.5PopulationMedicine (miscellaneous)telocytesGeneral Biochemistry Genetics and Molecular BiologyArticleCD117CD117; CD34; Exercise; Sedentary behavior; Skeletal muscle; Stem cell niche; Telocytes; Vimentin03 medical and health sciences0302 clinical medicinevimentinTibialis anterior muscleEndurance trainingsedentary behaviorMedicinestem cell nicheBiology (General)skeletal muscleeducationeducation.field_of_studyexercisebusiness.industrySkeletal musclemedicine.diseaseMuscle atrophy030104 developmental biologymedicine.anatomical_structure030220 oncology & carcinogenesisSarcopeniaCD34medicine.symptombusinessBiomedicines
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Arsenic promotes NF-Κb-mediated fibroblast dysfunction and matrix remodeling to impair muscle stem cell function

2016

Abstract Arsenic is a global health hazard that impacts over 140 million individuals worldwide. Epidemiological studies reveal prominent muscle dysfunction and mobility declines following arsenic exposure; yet, mechanisms underlying such declines are unknown. The objective of this study was to test the novel hypothesis that arsenic drives a maladaptive fibroblast phenotype to promote pathogenic myomatrix remodeling and compromise the muscle stem (satellite) cell (MuSC) niche. Mice were exposed to environmentally relevant levels of arsenic in drinking water before receiving a local muscle injury. Arsenic-exposed muscles displayed pathogenic matrix remodeling, defective myofiber regeneration …

0301 basic medicineMyoblastSatellite Cells Skeletal MuscleCellSkeletal muscleBiologyMuscle DevelopmentArticleMyoblasts03 medical and health sciencesMiceStem CellmedicineAnimalsHumansMyocyteRegenerationFibroblastMuscle stem cellMyofibroblastMyogenesisAnimalStem CellsRegeneration (biology)arsenicNF-kappa BTranscription Factor RelASkeletal muscleGene Expression Regulation DevelopmentalCell BiologyFibroblastsCell biology030104 developmental biologymedicine.anatomical_structureMyogenesiImmunologyFibroblastMolecular MedicineStem cellMyofibroblastHumanSignal TransductionDevelopmental Biology
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Interaction between ROR1 and MuSK activation complex in myogenic cells

2017

The ROR family of receptor tyrosine kinases, ROR1 and ROR2, is known to play an important role during skeletal muscle regeneration. ROR1 has a critical role in regulating satellite cell (SC) proliferation during muscle regeneration, and proinflammatory cytokines such as TNF-α and IL-1β can induce expression of ROR1 in myogenic cells via NF-κB activation. While searching for ROR1-interacting proteins in myogenic cells, we identified MuSK as a ROR1-binding protein. MuSK interacts with and phosphorylates ROR1 at the cytoplasmic proline-rich domain. ROR1 also interacts with the MuSK activator Dok-7 independently of MuSK interaction. Collectively, our results identified ROR1 as a new interacting…

0301 basic medicineSatellite Cells Skeletal MuscleBiophysicsMuscle ProteinsReceptor Tyrosine Kinase-like Orphan ReceptorsBiochemistryReceptor tyrosine kinaseCell LineProinflammatory cytokineMice03 medical and health sciencesProtein DomainsStructural BiologyChlorocebus aethiopsGeneticsAnimalsHumansReceptors CholinergicProtein phosphorylationPhosphorylationMolecular BiologyCell ProliferationBinding SitesbiologyKinaseChemistryActivator (genetics)Receptor Protein-Tyrosine KinasesCell DifferentiationROR2Cell BiologyCell biologyHEK293 Cells030104 developmental biologyCOS CellsROR1biology.proteinPhosphorylationProtein BindingFEBS Letters
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Identification and Characterization of the Dermal Panniculus Carnosus Muscle Stem Cells

2016

Summary The dermal Panniculus carnosus (PC) muscle is important for wound contraction in lower mammals and represents an interesting model of muscle regeneration due to its high cell turnover. The resident satellite cells (the bona fide muscle stem cells) remain poorly characterized. Here we analyzed PC satellite cells with regard to developmental origin and purported function. Lineage tracing shows that they originate in Myf5+, Pax3/Pax7+ cell populations. Skin and muscle wounding increased PC myofiber turnover, with the satellite cell progeny being involved in muscle regeneration but with no detectable contribution to the wound-bed myofibroblasts. Since hematopoietic stem cells fuse to PC…

0301 basic medicineWOUNDSCellular differentiation[SDV]Life Sciences [q-bio]CellCell Culture TechniquesMuscle DevelopmentMOUSEBiochemistryMicelcsh:QH301-705.5ComputingMilieux_MISCELLANEOUSlcsh:R5-920Gene Expression Regulation DevelopmentalPAX7 Transcription FactorCell Differentiation3. Good healthPanniculus carnosusCell biologyHaematopoiesisPhenotypemedicine.anatomical_structureMOUSE;TISSUE;REPAIR;WOUNDS;MYOGENESIS;EXPRESSION;SKIN;MODEL;SATELLITE CELLS;SKELETAL-MUSCLESKELETAL-MUSCLEMYF5Stem celllcsh:Medicine (General)EXPRESSIONSatellite Cells Skeletal MuscleBone Marrow CellsMice TransgenicBiologyArticleMYOGENESIS03 medical and health sciencesSATELLITE CELLSGeneticsmedicineAnimalsRegenerationCell LineageMuscle SkeletalPAX3 Transcription FactorCell ProliferationREPAIR[ SDV ] Life Sciences [q-bio]Cell growthCell BiologyMODEL030104 developmental biologylcsh:Biology (General)Cell cultureTISSUEImmunologyBiomarkersSKINDevelopmental BiologyStem Cell Reports
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Estrogen Regulates the Satellite Cell Compartment in Females

2019

SUMMARY Skeletal muscle mass, strength, and regenerative capacity decline with age, with many measures showing a greater deterioration in females around the time estrogen levels decrease at menopause. Here, we show that estrogen deficiency severely compromises the maintenance of muscle stem cells (i.e., satellite cells) as well as impairs self-renewal and differentiation into muscle fibers. Mechanistically, by hormone replacement, use of a selective estrogen-receptor modulator (bazedoxifene), and conditional estrogen receptor knockout, we implicate 17β-estradiol and satellite cell expression of estrogen receptor α and show that estrogen signaling through this receptor is necessary to preven…

0301 basic medicineestrogeenitmedicine.medical_specialtyestradioliSatellite Cells Skeletal Musclemedicine.drug_classCellEstrogen receptorlihaksetBiologyGeneral Biochemistry Genetics and Molecular BiologyArticleBazedoxifene03 medical and health sciencesMice0302 clinical medicineInternal medicineestradiolmedicineAnimalsHumansquiescenceskeletal muscleReceptorlcsh:QH301-705.5lihassolutsukupuolihormonitSkeletal muscleEstrogensmedicine.diseaseMenopause030104 developmental biologymedicine.anatomical_structureEndocrinologymuscle stem cellsikääntyminenlcsh:Biology (General)EstrogenFemaleStem cellovarian hormones030217 neurology & neurosurgeryhormones hormone substitutes and hormone antagonistsmedicine.drugCell reports
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Expression Pattern of Angiogenic Factors in Healthy Heart in Response to Physical Exercise Intensity

2019

Recently, many studies showing the regeneration potential of both cardiac and hematopoietic stem cells in adult heart following injury were definitively retracted by the literature. Therefore, stimulating myocardial angiogenesis becomes to be important for preventing cardiovascular diseases. Regular endurance exercise has been reported to induce capillary growth in healthy and diseased myocardium resulting in cardioprotective phenotype. Previously, we demonstrated a significantly increased capillary proliferation in mouse hearts following 30 and 45 days of endurance training. In the present study, we examined the localization and expression pattern of vascular endothelial growth factor rece…

0301 basic medicinemedicine.medical_specialtyAngiogenesisPhysiologyPhysical exercisecapillary growthheart030204 cardiovascular system & hematologylcsh:Physiology03 medical and health sciencesParacrine signallingchemistry.chemical_compoundangiogenesis0302 clinical medicineexercise intensityendurance trainingEndurance trainingphysical exercisePhysiology (medical)Internal medicineMedicineskeletal muscleOriginal ResearchSettore M-EDF/02 - Metodi E Didattiche Delle Attivita' Sportivebiologylcsh:QP1-981business.industryhypoxiaHypoxia (medical)Vascular endothelial growth factorNitric oxide synthase030104 developmental biologyEndocrinologychemistryExercise intensitybiology.proteincardiovascular systemmedicine.symptomheart skeletal muscle endurance training angiogenesis physical exercise capillary growth hypoxia exercise intensitybusinessSettore M-EDF/01 - Metodi E Didattiche Delle Attivita' Motorie
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Type 1 Muscle Fiber Hypertrophy after Blood Flow–restricted Training in Powerlifters

2018

PURPOSE: To investigate the effects of blood flow restricted resistance exercise (BFRRE) on myofiber areas (MFA), number of myonuclei and satellite cells (SC), muscle size and strength in powerlifters. METHODS Seventeen national level powerlifters (25+/-6 yrs [mean+/-SD], 15 men) were randomly assigned to either a BFRRE group (n=9) performing two blocks (week 1 and 3) of five BFRRE front squat sessions within a 6.5-week training period, or a conventional training group (Con; n=8) performing front squats at ~70% of one-repetition maximum (1RM). The BFRRE consisted of four sets (first and last set to voluntary failure) at ~30% of 1RM. Muscle biopsies were obtained from m. vastus lateralis (VL…

AdultMalemedicine.medical_specialtyMuscle sizeSatellite Cells Skeletal Musclemyonuclear domainkaatsuCell CountPhysical Therapy Sports Therapy and RehabilitationMicrocirculationYoung Adult03 medical and health sciences0302 clinical medicineInternal medicineHumansMedicineMyocyteOrthopedics and Sports MedicineNational levelMuscle StrengthMuscle SkeletalUltrasonographyCell NucleusKaatsubusiness.industryMicrocirculationResistance trainingResistance Training030229 sport sciencesBlood flowMuscle Fibers Slow-TwitchathletesEndocrinologyRegional Blood FlowRNAishemic trainingFemaleMuscle fiber hypertrophymyonuclear additionbusinessmyogenic stem cellsMedicine & Science in Sports & Exercise
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