Search results for "Skeletal muscle"

showing 10 items of 430 documents

Exercise-based cardiac rehabilitation

2020

Abstract Exercise-based cardiac rehabilitation (CR) is well-documented and justified integral part of disease management in stable coronary heart disease patients. CR programs are defined as multifactorial and comprehensive, with physical activity counseling and exercise training as key components in all rehabilitation and preventive interventions. The physiological and clinical benefits of exercise-based CR are widely established with similar benefits for women and men and advanced aged patients as well. In patients with cardiovascular disease, exercise-based CR elicits favorable effects on the cardiac function, endothelium and skeletal muscle resulting to an improvement of quality of life…

Cardiac function curvemedicine.medical_specialtyRehabilitationEjection fractionbusiness.industrymedicine.medical_treatmentSkeletal muscleCardiorespiratory fitnessDiseasemedicine.anatomical_structureQuality of lifemedicinePhysical therapyDisease management (health)business
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Glycogen phosphorylase in fish muscle: demonstration of three interconvertible forms

1990

White skeletal muscle of crucian carp contains a single isoenzyme of glycogen phosphorylase, which was purified approximately 300-fold to a specific activity of approximately 13 mumol.min-1.mg protein-1 (assayed in the direction of glycogen breakdown at 25 degrees C). Tissue extracts of crucian muscle produced three distinct peaks of phosphorylase activity when separated on DEAE-Sephacel. Peaks 1 and 3 were identified, in terms of kinetic properties and by interconversion experiments, as phosphorylase b and a, respectively. Peak 2 was shown to be a phospho-dephospho hybrid. The three interconvertible forms of phosphorylase were purified and shown to be dimeric molecules at 20 degrees C. At …

CarpsPhosphorylasesPhysiologyPhysical ExertionAnesthesia GeneralIsozymeChromatography AffinityGlycogen phosphorylasemedicineAnimalsPhosphorylase aPhosphorylase bPhosphorylationGel electrophoresischemistry.chemical_classificationbiologyChemistryMusclesSkeletal muscleCell BiologyChromatography Ion Exchangebiology.organism_classificationIsoenzymesKineticsmedicine.anatomical_structureEnzymeBiochemistryCrucian carpPhosphorylationSpecific activityAmerican Journal of Physiology-Cell Physiology
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Protein targeting to the plasma membrane of adult skeletal muscle fiber: an organized mosaic of functional domains.

2001

The plasma membrane of differentiated skeletal muscle fibers comprises the sarcolemma, the transverse (T) tubule network, and the neuromuscular and muscle-tendon junctions. We analyzed the organization of these domains in relation to defined surface markers, beta-dystroglycan, dystrophin, and caveolin-3. These markers were shown to exhibit highly organized arrays along the length of the fiber. Caveolin-3 and beta-dystroglycan/dystrophin showed distinct, but to some extent overlapping, labeling patterns and both markers left transverse tubule openings clear. This labeling pattern revealed microdomains over the entire plasma membrane with the exception of the neuromuscular and muscle-tendon j…

Caveolin 3Muscle Fibers SkeletalNeuromuscular JunctionMuscle ProteinsProtein Sorting Signalsmedicine.disease_causeCaveolinsT-tubuleDystrophinMiceMembrane MicrodomainsViral Envelope ProteinsProtein targetingmedicineMyocyteAnimalsDystroglycansMuscle SkeletalGlycoproteinsSarcolemmaMembrane GlycoproteinsbiologyCell MembraneSkeletal muscleCell BiologyMolecular biologyTransport proteinCell biologyRatsCytoskeletal ProteinsProtein Transportmedicine.anatomical_structureTubulebiology.proteinFemaleDystrophinExperimental cell research
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Exercise and antioxidant supplements in the elderly

2013

Abstract Both exercise and aging increase reactive oxygen species (ROS), which can result in damage to cells. Aging is the result of damage caused by ROS to the mitochondrial genome in post mitotic cells and numerous studies have demonstrated an increase in ROS or their byproducts with exercise. ROS can cause oxidative stress as they overwhelm the antioxidant cellular defenses. Therefore interventions aimed at limiting or inhibiting ROS production, such as supplementation with antioxidant vitamins, should be able to reduce fatigue during muscle contraction and the rate of formation of aging changes with a consequent reduction of the aging rate and disease pathogenesis. However, it has been …

Cell signalingAgingAntioxidantmedicine.medical_treatmentmedia_common.quotation_subjectPopulationPGC-1αSkeletal musclePhysical Therapy Sports Therapy and RehabilitationPharmacologyBiologymedicine.disease_causeNF-κBchemistry.chemical_compoundmedicineOrthopedics and Sports Medicineeducationmedia_commonchemistry.chemical_classificationeducation.field_of_studyReactive oxygen speciesAdaptationsLongevitySkeletal muscleNF-κBmedicine.anatomical_structurechemistryBiochemistryOxidative stressAntioxidant enzymesOxidative stressJournal of Sport and Health Science
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Interplay of oxidants and antioxidants during exercise: Implications for muscle health

2010

Muscle contraction results in generation of reactive oxygen and nitrogen species (RONS) at a rate determined by the intensity, frequency, and duration of the exercise protocols. Strenuous exercise causes oxidation of protein, lipid, and DNA, release of cytosolic enzymes, and other signs of cell damage; however, only exhaustive exercise is detrimental. Indeed, the regulation of vascular tone, the excitation-contraction coupling, growth, and differentiation in skeletal muscle, are governed in part by RONS. This is accomplished by RONS interaction with redox-sensitive transcription factors, leading to increased gene expression of antioxidant enzymes, cytoprotective proteins, and other enzymes …

Cell signalingmedicine.medical_specialtyFree RadicalsHealth StatusGene ExpressionPhysical Therapy Sports Therapy and Rehabilitationmedicine.disease_causeAntioxidantsInternal medicinemedicineHumansOrthopedics and Sports MedicineExercise physiologyMuscle SkeletalExerciseTranscription factorCell damageExercise ToleranceChemistryNF-kappa BSkeletal musclemedicine.diseaseAdaptation PhysiologicalReactive Nitrogen SpeciesOxidative Stressmedicine.anatomical_structureEndocrinologyMitogen-Activated Protein KinasesSignal transductionmedicine.symptomReactive Oxygen SpeciesOxidation-ReductionOxidative stressMuscle ContractionSignal TransductionMuscle contraction
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Storage Diseases: Diagnostic Position

2013

Storage diseases are metabolic multiorgan conditions, which may be divided into lysosomal and nonlysosomal diseases. Disorders of the lysosomal type require electron microscopy for morphological diagnosis. It is the metabolic substrate that determines involvement of the cell type or organ in the individual storage disease, allowing extracerebral biopsies, for instance, in the neuronal ceroid-lipofuscinoses (NCL). A hierarchy of tissues biopsied for diagnosis can be based on easy accessibility: blood lymphocytes, skin, conjunctiva, rectum, skeletal muscle. Lysosomal diseases are divided into vacuolar and nonvacuolar ones. NCL display variegated ultrastructural patterns. Drugs may induce lyso…

Cell typePathologymedicine.medical_specialtyConjunctivaDrug-Related Side Effects and Adverse Reactionsmedicine.diagnostic_testBiopsyRectumSkeletal muscleDiseaseBiologyPathology and Forensic MedicineLysosomal Storage DiseasesMicroscopy Electronmedicine.anatomical_structureLafora DiseasePredictive Value of TestsStructural BiologyVacuolesImmunologyBiopsymedicineUltrastructureHumansLysosomesUltrastructural Pathology
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Diagnostic morphology of human eye-related storage disorders

1989

While retina and other ocular tissues are involved clinically and morphologically in a variety of lysosomal disorders, it is only the conjunctiva that is accessible by biopsy to morphological, i.e., electron microscopic recognition of the patient's individual lysosomal disease. However, this procedure is not utilized by many. Instead, skin and circulating lymphocytes are the most frequently obtained tissues for diagnostic investigation, as skin contains an abundance of diversified cell types for morphological examination and simultaneously fibroblasts to be cultured for biochemical investigation. It is the tissue most suitable for identifying lysosomal disorders and parallels in diagnostic …

Cell typePathologymedicine.medical_specialtyConjunctivaEye DiseasesDiseaseBiologyRetinaBiopsymedicineHumansPeripheral NervesElectron microscopicGenetics (clinical)SkinRetinaBlood Cellsmedicine.diagnostic_testMusclesNeuropathologistBrainSkeletal muscleOphthalmologymedicine.anatomical_structureLiverPediatrics Perinatology and Child HealthKidney DiseasesMetabolism Inborn ErrorsOphthalmic Paediatrics and Genetics
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Murine muscle engineered from dermal precursors: an in vitro model for skeletal muscle generation, degeneration and fatty infiltration.

2013

Skeletal muscle can be engineered by converting dermal precursors into muscle progenitors and differentiated myocytes. However, the efficiency of muscle development remains relatively low and it is currently unclear if this is due to poor characterization of the myogenic precursors, the protocols used for cell differentiation, or a combination of both. In this study, we characterized myogenic precursors present in murine dermospheres, and evaluated mature myotubes grown in a novel three-dimensional culture system. After 5-7 days of differentiation, we observed isolated, twitching myotubes followed by spontaneous contractions of the entire tissue-engineered muscle construct on an extracellul…

Cellular differentiationSarcoplasmMuscle Fibers SkeletalBiomedical EngineeringMedicine (miscellaneous)BioengineeringBiologyMuscle DevelopmentModels BiologicalArticleExtracellular matrixMiceTissue engineeringSpheroids CellularmedicineMyocyteAnimalsCell ProliferationTissue EngineeringMyogenesisCell growthMusclesSkeletal muscleCell DifferentiationDermisLipidsAcetylcholineBiologia experimentalCell biologyExtracellular Matrixmedicine.anatomical_structureBiochemistryGene Expression RegulationFemaleEnginyeria biomèdicaIon Channel GatingBiomarkers
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Procoagulant activities of skeletal muscle and cardiac myosins require both myosin protein and myosin-associated anionic phospholipids

2021

ChemistryMyocardiumImmunologySkeletal muscleCell BiologyHematologyMyosinsLetter to BLOODBiochemistryCell biologyCardiac Myosinsmedicine.anatomical_structureMyosinmedicineAnimalsHumansRabbitsMuscle SkeletalBlood CoagulationCardiac MyosinsPhospholipidsBlood
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Proteins of Muscle and the Cytoskeleton

1994

The contractile elements of striated vertebrate skeletal muscle, the myofibrils, contain thin filaments, which are 6 nm in diameter and consist mainly of actin, and thicker myosin filaments with a diameter of 16 nm (Fig. 10.1). During muscle contraction, the filaments undergo a sliding movement relative to each other (sliding filament mechanism). This is brought about by the reversible formation of bridges between the myosin molecules and the actin filaments, which bind, change their conformation and then dissociate (bridge cycle). The required energy is supplied by the hydrolysis of ATP. The sliding distance (step size) per molecule of ATP hydrolysed is controversial; the most recent measu…

ChemistrySkeletal musclemacromolecular substancesTropomyosinmedicine.anatomical_structureATP hydrolysisMyosinBiophysicsmedicinemedicine.symptomCytoskeletonMyofibrilActinMuscle contraction
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