Search results for "Skeletal muscle"

showing 10 items of 430 documents

HACD1, a regulator of membrane composition and fluidity, promotes myoblast fusion and skeletal muscle growth

2015

International audience; The reduced diameter of skeletal myofibres is a hallmark of several congenital myopathies, yet the underlying cellular and molecular mechanisms remain elusive. In this study, we investigate the role of HACD1/PTPLA, which is involved in the elongation of the very long chain fatty acids, in muscle fibre formation. In humans and dogs, HACD1 deficiency leads to a congenital myopathy with fibre size disproportion associated with a generalized muscle weakness. Through analysis of HACD1-deficient Labradors, Hacd1-knockout mice, and Hacd1-deficient myoblasts, we provide evidence that HACD1 promotes myoblast fusion during muscle development and regeneration. We further demons…

Male[SPI.GPROC] Engineering Sciences [physics]/Chemical and Process EngineeringCellular differentiationGeneralized muscle weaknessBiologyMuscle Developmentcentronuclear myopathyCell LineMyoblasts03 medical and health scienceschemistry.chemical_compoundMyoblast fusionMice0302 clinical medicineDogsVLCFA[SDV.IDA]Life Sciences [q-bio]/Food engineeringGeneticsmedicineMyocyteAnimalsHumans[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringMUFACentronuclear myopathyMuscle SkeletalMolecular Biology030304 developmental biologyMice Knockout0303 health sciencesPTPLACell MembraneSkeletal muscleCell DifferentiationCell BiologyGeneral MedicineArticles[SDV.IDA] Life Sciences [q-bio]/Food engineeringmedicine.diseaseCongenital myopathyLysophosphatidylcholinemedicine.anatomical_structureLPCchemistryBiochemistryFemaleProtein Tyrosine Phosphatasescentronuclear myopathy;lpc;mufa;ptpla;vlcfa030217 neurology & neurosurgery
researchProduct

Characterization of a Ryanodine Receptor inPeriplaneta Americana

1997

Specific binding sites for the alkaloid ryanodine were characterized in membrane preparations from sarcoplasmatic reticulum of Periplaneta americana skeletal muscle. Binding of [3H]ryanodine was optimal at pH 8 and at CaCl2 concentration of about 300 mumol l-1. The Ca-chelating agents EGTA (100 mumol l-1) and EDTA (100 mumol l-1) abolished 95% and 90% of the [3H]ryanodine binding respectively. Preincubation with Ca2+ (100 mumol l-1) restored the ryanodine binding in presence of up to 300 mumol l-1 EGTA. Radioligand binding experiments showed one class of high affinity binding sites for ryanodine. Determination of rate constants revealed 7.05 x 10(6) l mol-1 min-1 for associating and 3.77 x …

Maleanimal structuresMuscle ProteinsBiochemistrymedicineAnimalsPeriplanetaheterocyclic compoundsBinding siteEgtazic AcidMolecular BiologyEdetic AcidbiologyRyanodineRyanodine receptorChemistryMusclesAlkaloidSodiumfungiSkeletal muscleRyanodine Receptor Calcium Release ChannelCell BiologyHydrogen-Ion Concentrationbiology.organism_classificationmedicine.anatomical_structureBiochemistryPotassiumCalciumCalmodulin-Binding ProteinsFemaleCalcium ChannelsReticulumPeriplanetaJournal of Receptors and Signal Transduction
researchProduct

Striated muscle-specific serine/threonine-protein kinase beta (SPEGβ) segregates with high- versus low-responsiveness to endurance exercise training

2019

Bidirectional selection for either high or low responsiveness to endurance running has created divergent rat phenotypes of high-response trainers (HRT) and low-response trainers (LRT). We conducted proteome profiling of HRT and LRT gastrocnemius of 10 female rats (body weight 279 ± 35 g; n = 5 LRT and n = 5 HRT) from generation 8 of selection. Differential analysis of soluble proteins from gastrocnemius was conducted by label-free quantitation. Genetic association studies were conducted in 384 Russian international-level athletes (age 23.8 ± 3.4 yr; 202 men and 182 women) stratified to endurance or power disciplines. Proteomic analysis encompassed 1,024 proteins, 76 of which exhibited stat…

MaleentsyymitPhysiologykestävyysharjoitteluliquid chromatography mass spectrometryMuscle ProteinslihaksetSerine threonine protein kinaseRC1200Gene Frequencyendurance trainingProtein Interaction MapsliikuntafysiologiaExercise capacityPhenotypeexercise capacitymedicine.anatomical_structureOrgan SpecificityFemalesportsGlycolysisResearch Articlekinaasitmedicine.medical_specialtymassaspektrometriaresponsiveness to exerciseBiologyProtein Serine-Threonine KinasesPolymorphism Single NucleotideYoung Adultartificial selection modelEndurance trainingInternal medicinePhysical Conditioning AnimalGeneticsmedicineAnimalsHumansco‐immunopreciptiationskeletal muscleBeta (finance)Muscle SkeletalQH426Skeletal musclelabel‐free quantitationMuscle StriatedRatsharjoitusvasteEndocrinologyProtein Kinases
researchProduct

Muscle fiber-type distribution predicts weight gain and unfavorable left ventricular geometry: a 19 year follow-up study

2006

Abstract Background Skeletal muscle consists of type-I (slow-twitch) and type-II (fast-twitch) fibers, with proportions highly variable between individuals and mostly determined by genetic factors. Cross-sectional studies have associated low percentage of type-I fibers (type-I%) with many cardiovascular risk factors. Methods We investigated whether baseline type-I% predicts left ventricular (LV) structure and function at 19-year follow-up, and if so, which are the strongest mediating factors. At baseline in 1984 muscle fiber-type distribution (by actomyosin ATPase staining) was studied in 63 healthy men (aged 32–58 years). The follow-up in 2003 included echocardiography, measurement of obes…

Malelcsh:Diseases of the circulatory (Cardiovascular) systemTime Factors030204 cardiovascular system & hematologyDoppler echocardiographyWeight GainBody fat percentageCohort StudiesVentricular Dysfunction Left0302 clinical medicineReference Valuesmedicine.diagnostic_testIncidenceBiopsy NeedleMiddle AgedEchocardiography Dopplermedicine.anatomical_structureMuscle Fibers Slow-TwitchCardiovascular DiseasesMuscle Fibers Fast-TwitchCardiologyRegression Analysismedicine.symptomCardiology and Cardiovascular MedicineResearch ArticleAdultmedicine.medical_specialtyWaistRisk AssessmentSensitivity and Specificity03 medical and health sciencesAge DistributionPredictive Value of TestsInternal medicineHeart ratemedicineHumansObesityMuscle SkeletalAngiologyAgedProbabilityRetrospective Studiesbusiness.industrySkeletal muscle030229 sport sciencesMyocardial ContractionBlood pressurelcsh:RC666-701businessWeight gainFollow-Up StudiesBMC Cardiovascular Disorders
researchProduct

Increased insulin-stimulated glucose uptake in both leg and arm muscles after sprint interval and moderate-intensity training in subjects with type 2…

2017

We investigated the effects of sprint interval training (SIT) and moderate-intensity continuous training (MICT) on glucose uptake (GU) during hyperinsulinemic euglycemic clamp and fatty acid uptake (FAU) at fasting state in thigh and arm muscles in subjects with type 2 diabetes (T2D) or prediabetes. Twenty-six patients (age 49, SD 4; 10 women) were randomly assigned into two groups: SIT (n=13) and MICT (n=13). The exercise in the SIT group consisted of 4–6×30 s of all-out cycling with 4- minute recovery and in the MICT group 40- to 60- minute cycling at 60% of VO2peak. Both groups completed six training sessions within two weeks. GU and FAU were measured before and after the intervention wi…

Malemedicine.medical_specialty030209 endocrinology & metabolismPhysical Therapy Sports Therapy and RehabilitationType 2 diabetesThighBicepsInterval trainingPrediabetic State03 medical and health sciences0302 clinical medicineInsulin resistanceOxygen ConsumptionInternal medicinemedicineHumansInsulinOrthopedics and Sports MedicinePrediabetesta315Muscle SkeletalExerciseLegbusiness.industrySkeletal muscle030229 sport sciencesta3121Middle Agedmedicine.diseasemedicine.anatomical_structureGlucoseSprintDiabetes Mellitus Type 2CardiologyPhysical therapyArmBody CompositionGlucose Clamp TechniqueCarbohydrate MetabolismFemalebusinessPhysical Conditioning HumanScandinavian journal of medicinescience in sports
researchProduct

Effects of aging and life-long physical training on collagen in slow and fast skeletal muscle in rats. A morphometric and immuno-histochemical study.

1987

Intramuscular collagen in a slow (m. soleus) and a fast (m. rectus femoris) skeletal muscle was studied by biochemical, morphometric, and immunohistochemical methods. Wistar white rats of 1, 4, 10, and 24 months were used as experimental animals. Our aim was to evaluate the effects of life-long physical training (treadmill running, 5 days a week for 1, 3, 9, and 23 months depending on the age attained). The biochemical concentration of collagen was higher in m. soleus than in m. rectus femoris and it increased in youth and in old age in m. soleus. The trained rats had higher concentrations of collagen than the untrained rats at 10 and 24 months. The morphometrically measured area-fractions …

Malemedicine.medical_specialtyAgingHistologyPhysical ExertionConnective tissueFluorescent Antibody TechniqueMuscle DevelopmentPathology and Forensic Medicine03 medical and health sciencesHydroxyprolinechemistry.chemical_compound0302 clinical medicineEndurance trainingInternal medicineMedicineAnimals030304 developmental biologyBasement membrane0303 health sciencesPerimysiumbusiness.industryMusclesSkeletal muscleRats Inbred StrainsCell Biologymusculoskeletal systemEndomysiumRatsHydroxyprolinemedicine.anatomical_structureEndocrinologychemistryImmunohistochemistryCollagenbusiness030217 neurology & neurosurgeryCell and tissue research
researchProduct

Effects of age and prolonged running on proteolytic capacity in mouse cardiac and skeletal muscles.

1981

Male NMRI-mice, aged 3, 6, 9, and 12 months, were made to run for a period of 4 4 at a speed of 13.5 m/min on a motor-driven treadmill, 5 days after exertion, selected enzymatic estimates of acid and alkaline proteolytic as well as energy metabolic capacities were analyzed from the cardiac muscle and from the red and white parts of m. quadriceps femoris (MQF). The activities of alkaline and myofibrillar proteases increased most considerably in skeletal muscles with age. Cathepsin D and beta-glucuronidase activities were less affected in both muscles. Prolonged running increased the activities of cathepsin D, dipeptidyl aminopeptidase I and beta-glucuronidase in the white and, especially in …

Malemedicine.medical_specialtyAgingNecrosisPhysiologyPhysical ExertionCathepsin DStimulationBiologyExcretionMiceInternal medicinemedicineAnimalsExertionMusclesMyocardiumCardiac muscleSkeletal muscleProteinsEndocrinologymedicine.anatomical_structureBiochemistrymedicine.symptomMyofibrilPeptide HydrolasesActa physiologica Scandinavica
researchProduct

Lysosomal changes related to ageing and physical exercise in mouse cardiac and skeletal muscles.

1982

Physical exercise increased the activities of arylsulphatase, cathepsin D and β-glucuronidase in mouse skeletal muscle but not in cardiac muscle. Exercise-induced lysosomal response was more prominent in young adult than in senescent mice. The lipofuscin content of cardiac and skeletal muscles increased markedly during ageing and was also found to increase slightly after exertion in young mice, but not in senescent ones.

Malemedicine.medical_specialtyAgingPhysical ExertionCathepsin DPhysical exerciseCathepsin DLipofuscinLipofuscinCellular and Molecular NeuroscienceMiceInternal medicinemedicineAnimalsExertionYoung adultMolecular BiologyArylsulfatasesGlucuronidasePharmacologybusiness.industryMusclesMyocardiumCardiac muscleSkeletal muscleCell BiologyAnatomyCathepsinsmedicine.anatomical_structureEndocrinologyAgeingMolecular MedicinebusinessLysosomesExperientia
researchProduct

Effects of age and life-time physical training on fibre composition of slow and fast skeletal muscle in rats.

1987

The effects of age and endurance training on muscle fibre characteristics were studied in a slow (m. soleus, MS) and in a fast (m. rectus femoris, MRF) skeletal muscle. Wistar rats at ages of 1, 2, 4, 10, and 24 months were used as experimental animals. The trained rats were put to run on a motor-driven treadmill 5 d/wk beginning from the age of 1 month. The body weights of the animals increased continuously throughout their lives. The muscle weights increased up to the age of 10 months, after which they tended to decrease. The trained adult rats had lower body weights as well as lower muscle weights than the untrained adult rats. The amount of the intramuscular lipid decreased with age, es…

Malemedicine.medical_specialtyAgingPhysiologyClinical BiochemistryPhysical exerciseEndurance trainingPhysiology (medical)Internal medicinePhysical Conditioning AnimalMyocyteMedicineAnimalsTreadmillFibre compositionbusiness.industryHistocytochemistryMusclesBody WeightLife timeSkeletal muscleRats Inbred StrainsAnatomyOrgan SizeRatsEndocrinologymedicine.anatomical_structurebusinessPhosphofructokinasePflugers Archiv : European journal of physiology
researchProduct

Growth hormone replacement therapy prevents sarcopenia by a dual mechanism: improvement of protein balance and of antioxidant defenses.

2013

The aim of our study was to elucidate the role of growth hormone (GH) replacement therapy in three of the main mechanisms involved in sarcopenia: alterations in mitochondrial biogenesis, increase in oxidative stress, and alterations in protein balance. We used young and old Wistar rats that received either placebo or low doses of GH to reach normal insulin-like growth factor-1 values observed in the young group. We found an increase in lean body mass and plasma and hepatic insulin-like growth factor-1 levels in the old animals treated with GH. We also found a lowering of age-associated oxidative damage and an induction of antioxidant enzymes in the skeletal muscle of the treated animals. GH…

Malemedicine.medical_specialtyAgingSarcopeniaIGF-1. Mitochondrial biogenesis Myostatin p70S6KHormone Replacement TherapyMyostatinProtein degradationmedicine.disease_causeAntioxidantsInternal medicineMedicineAnimalsRats WistarMuscle Skeletalbiologybusiness.industryProtein turnoverSkeletal muscleProteinsmedicine.diseaseMitochondria MuscleRatsSomatropinEndocrinologymedicine.anatomical_structureMitochondrial biogenesisSarcopeniaGrowth Hormonebiology.proteinBody CompositionGeriatrics and GerontologybusinessOxidative stressThe journals of gerontology. Series A, Biological sciences and medical sciences
researchProduct