Search results for "skeletal muscle"

showing 10 items of 430 documents

Measurement of lean body mass using bioelectrical impedance analysis: a consideration of the pros and cons

2017

The assessment of body composition has important applications in the evaluation of nutritional status and estimating potential health risks. Bioelectrical impedance analysis (BIA) is a valid method for the assessment of body composition. BIA is an alternative to more invasive and expensive methods like dual-energy X-ray absorptiometry, computerized tomography, and magnetic resonance imaging. Bioelectrical impedance analysis is an easy-to-use and low-cost method for the estimation of fat-free mass (FFM) in physiological and pathological conditions. The reliability of BIA measurements is influenced by various factors related to the instrument itself, including electrodes, operator, subject, a…

Bioelectrical impedance analysismedicine.medical_specialtyAgingNutritional Status030209 endocrinology & metabolismBody composition03 medical and health sciences0302 clinical medicineElderlyThinnessBioelectrical impedance analysis Body composition Elderly Prediction equationsStatisticsmedicineElectric ImpedanceHumans030212 general & internal medicineMuscle SkeletalMathematicsBioelectrical impedance analysis; Body composition; Elderly; Prediction equationsGeriatrics gerontologyReproducibility of ResultsRegression analysisNutritional statusPrediction equationsSkeletal muscle massSurgeryLean body massRegression AnalysisGeriatrics and GerontologyBioelectrical impedance analysis
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An overview of doping in sports

2019

The history of doping field can be outlined in three major stages: (1) early stage in which drug abuse took place during sports performance and competition and gas chromatography was used for its detection; (2) approximately in the 1970s when androgenic anabolic steroids were introduced; (3) In the recent era when the fields of biochemistry, physiology, toxicology, genomics, genetics, immunology, and molecular biology were integrated and applied routinely. Advanced omics technology and gene doping age may be applied in near future. This review will discuss commonly abused materials, both their adverse and harmful effects, and the alleged benefits in conjunction with the current standards in…

Bioquímicaprotein synthesis[SDV]Life Sciences [q-bio]anabolic androgenic steroidsPharmacologyProtein chemistry01 natural sciencesDopaje03 medical and health sciencesCondensed Matter::Materials SciencePhysics::Popular PhysicsBlood dopingerythropoiesis-stimulating agentsGene dopinghuman urineCondensed Matter::SuperconductivityToxicologíaComputer Science::Multimediaaromatase inhibition030304 developmental biology0303 health sciencesAromatase inhibitionbody compositionChemistryexogenous growth hormone010401 analytical chemistryMedicina deportivaskeletal muscle massAnabolic-Androgenic SteroidsSkeletal muscle massGenética3. Good health0104 chemical sciencesautologous blood transfusionsCondensed Matter::Strongly Correlated Electronshuman activitiesClinical psychology
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Metabolomic analysis of long-term spontaneous exercise in mice suggests increased lipolysis and altered glucose metabolism when animals are at rest

2014

Exercise has been associated with several beneficial effects and is one of the major modulators of metabolism. The working muscle produces and releases substances during exercise that mediate the adaptation of the muscle but also improve the metabolic flexibility of the complete organism, leading to adjustable substrate utilization. Metabolomic studies on physical exercise are scarce and most of them have been focused on the effects of intense exercise in professional sportsmen. The aim of our study was to determine plasma metabolomic adaptations in mice after a long-term spontaneous exercise intervention study (18 mo). The metabolic changes induced by long-term spontaneous exercise were su…

Blood GlucoseMalemedicine.medical_specialtyMagnetic Resonance SpectroscopyTime FactorsPhysiologyLipolysisRestmedicine.medical_treatmentPhysical ExertionPhysical exerciseBiologyCarbohydrate metabolismCreatineRunningchemistry.chemical_compoundPhysiology (medical)Internal medicinemedicineAnimalsInsulinMetabolomicsLipolysisExercise physiologyMuscle SkeletalBehavior AnimalMyocardiumInsulinSkeletal muscleMetabolismAdaptation PhysiologicalLipidsMice Inbred C57BLEndocrinologymedicine.anatomical_structurechemistryPositron-Emission TomographyMultivariate AnalysisSedentary BehaviorEnergy MetabolismBiomarkersMuscle ContractionJournal of Applied Physiology
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Effects of streptozotocin-induced diabetes, physical training and their combination on collagen biosynthesis in rat skeletal muscle.

1995

The effects of streptozotocin-induced diabetes, physical training and their combination on the activities of prolyl 4-hydroxylase (PH) and galactosylhydroxylysyl glucosyl-transferase (GGT), both marker enzymes of collagen biosynthesis, and on the concentration of hydroxyproline (Hyp) were studied in vastus lateralis, rectus femoris and gastrocnemius muscles in rats. The experimental period was 12-16 weeks. Diabetes had an overall decreasing effect on specific PH activity in all muscles studied, whereas specific GGT activity remained at control level. Total PH and GGT activities decreased in all three muscles in the diabetic animals (P < 0.001). Training caused an increase in PH and GGT acti…

Blood GlucoseMalemedicine.medical_specialtyPhysiologyProcollagen-Proline DioxygenasePhysical exerciseProcollagen glucosyltransferaseDiabetes Mellitus ExperimentalRats Sprague-DawleyHydroxyprolinechemistry.chemical_compoundInternal medicineDiabetes mellitusPhysical Conditioning AnimalGlycosyltransferasemedicineAnimalsInsulinMuscle Skeletalchemistry.chemical_classificationbiologyBody WeightSkeletal musclemedicine.diseaseStreptozotocinRatsHydroxyprolineEnzymemedicine.anatomical_structureEndocrinologychemistryGlucosyltransferasesbiology.proteinCollagenmedicine.drugActa physiologica Scandinavica
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Effects of acute exercise, exercise training, and diabetes on the expression of lymphangiogenic growth factors and lymphatic vessels in skeletal musc…

2007

Blood and lymphatic vessels together form the circulatory system, allowing the passage of fluids and molecules within the body. Recently we showed that lymphatic capillaries are also found in the capillary bed of skeletal muscle. Exercise is known to induce angiogenesis in skeletal muscle, but it is not known whether exercise has effects on lymphangiogenesis or lymphangiogenic growth factors. We studied lymphatic vessel density and expression of the main lymphangiogenic growth factors VEGF-C and VEGF-D and their receptor VEGFR-3 in response to acute running exercise and endurance exercise training in the skeletal muscle of healthy and diabetic mice. VEGF-C mRNA expression increased after t…

Blood GlucoseMalemedicine.medical_specialtyTime FactorsPhysiologyPhysical ExertionVascular Endothelial Growth Factor CVascular Endothelial Growth Factor DPhysical exercisePolymerase Chain ReactionDiabetes Mellitus ExperimentalMiceEndurance trainingPhysiology (medical)Internal medicinemedicineLymphatic vesselAnimalsRNA MessengerLymphangiogenesisMuscle SkeletalLymphatic Vesselsbusiness.industryBody WeightSkeletal muscleVascular Endothelial Growth Factor Receptor-3ImmunohistochemistryLymphangiogenesisLymphatic systemEndocrinologymedicine.anatomical_structureVascular endothelial growth factor CGene Expression RegulationCirculatory systemCardiology and Cardiovascular MedicinebusinessAmerican journal of physiology. Heart and circulatory physiology
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Irisinemia: A Novel Concept to Coin in Clinical Medicine?

2013

Skeletal muscle can express and release substances such as cytokines or other peptides capable of modulating metabolic processes. These cytokines, named ‘myokines', function as hormones either locally within the muscle or by targeting distant organs. A novel peptidic myokine named ‘irisin' has been recently identified. It has been noted that circulating irisin levels are lower in type 2 diabetes (T2D) compared with nondiabetic controls as well as in patients with chronic kidney disease. In addition, a negative correlation between the hemoglobin A1c (HbA1c) and circulating levels of irisin has been also observed. Thus, the blood concentration of irisin may reflect the metabolic status of pat…

Blood Glucosemedicine.medical_specialtyendocrine system diseasesMedicine (miscellaneous)Type 2 diabetesMetabolic DiseasesDiabetes mellitusInternal medicineMyokineHumansMedicineObesityRenal Insufficiency ChronicMuscle SkeletalNutrition and Dieteticsbusiness.industrynutritional and metabolic diseasesSkeletal musclemedicine.diseaseObesityFibronectinsMetabolism disorderEndocrinologymedicine.anatomical_structureDiabetes Mellitus Type 2ImmunologyCytokinesbusinessHormoneKidney diseaseAnnals of Nutrition and Metabolism
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The Ketogenic Diet and Sport: A Possible Marriage?

2015

The ketogenic diet (KD) is used widely as a weight loss strategy and, more rarely, as therapy for some diseases. In many sports, weight control is often necessary (boxing, weightlifting, wrestling, etc.), but the KD usually is not considered. Our hypothesis is that KD might be used to achieve fat loss without affecting strength/power performance negatively.

Blood Glucosemedicine.medical_treatmentPhysiologyPhysical Therapy Sports Therapy and RehabilitationBody Mass Indexskeletal muscle hypertrophyDiet Carbohydrate-RestrictedWeight lossWeight LossmedicineHumansBody Fat DistributionOrthopedics and Sports MedicineMuscle StrengthMuscle SkeletalBody fat distributionSportendurancebusiness.industryMedicine (all)Power performanceWeight controlWeight Loendurance; ketogenic diet; skeletal muscle hypertrophy; strength; weight loss; Blood Glucose; Body Fat Distribution; Body Mass Index; Diet Carbohydrate-Restricted; Humans; Muscle Strength; Muscle Skeletal; Physical Endurance; Sports; Ketogenic Diet; Weight Loss; Orthopedics and Sports Medicine; Physical Therapy Sports Therapy and Rehabilitation; Medicine (all)ketogenic dietPhysical Endurancemedicine.symptombusinessDiet KetogenicstrengthBody mass indexFat lossKetogenic dietSportsHuman
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Meox2/Tcf15 Heterodimers Program the Heart Capillary Endothelium for Cardiac Fatty Acid Uptake

2015

Background— Microvascular endothelium in different organs is specialized to fulfill the particular needs of parenchymal cells. However, specific information about heart capillary endothelial cells (ECs) is lacking. Methods and Results— Using microarray profiling on freshly isolated ECs from heart, brain, and liver, we revealed a genetic signature for microvascular heart ECs and identified Meox2/Tcf15 heterodimers as novel transcriptional determinants. This signature was largely shared with skeletal muscle and adipose tissue endothelium and was enriched in genes encoding fatty acid (FA) transport–related proteins. Using gain- and loss-of-function approaches, we showed that Meox2/Tcf15 media…

CD36 AntigensHeterozygoteEndotheliumCD36Cardiac Output LowAdipose tissueLipoproteins VLDLBiologyFatty Acid-Binding ProteinsMicePhysiology (medical)Protein Interaction MappingBasic Helix-Loop-Helix Transcription FactorsmedicineAnimalsHumansRNA Small InterferingTranscription factorCells CulturedHomeodomain Proteinschemistry.chemical_classificationLipoprotein lipaseMyocardiumFatty AcidsEndothelial CellsFatty acidSkeletal muscleMetabolismCoronary VesselsCell biologyMice Inbred C57BLLipoprotein LipaseGlucosemedicine.anatomical_structureAdipose TissuechemistryBiochemistryTissue Array Analysisbiology.proteinTranscriptomeCardiology and Cardiovascular MedicineCirculation
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Cancer-Related Cachexia: The Vicious Circle between Inflammatory Cytokines, Skeletal Muscle, Lipid Metabolism and the Possible Role of Physical Train…

2022

Cachexia is a multifactorial and multi-organ syndrome that is a major cause of morbidity and mortality in late-stage chronic diseases. The main clinical features of cancer-related cachexia are chronic inflammation, wasting of skeletal muscle and adipose tissue, insulin resistance, anorexia, and impaired myogenesis. A multimodal treatment has been suggested to approach the multifactorial genesis of cachexia. In this context, physical exercise has been found to have a general effect on maintaining homeostasis in a healthy life, involving multiple organs and their metabolism. The purpose of this review is to present the evidence for the relationship between inflammatory cytokines, skeletal mus…

CachexiaInflammatory cytokineOrganic ChemistrySkeletal muscleGeneral MedicineCancer‐related cachexiaLipid MetabolismCatalysisComputer Science ApplicationsInorganic Chemistrycancer-related cachexiaPhysical trainingNeoplasmsQuality of LifeCytokinesHumansPhysical and Theoretical ChemistryMuscle SkeletalMolecular BiologyExerciseSpectroscopyInternational journal of molecular sciences
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Muscle repair after physiological damage relies on nuclear migration for cellular reconstruction

2021

Muscle repair without stem cells Skeletal muscle is a mechanical organ that endures cellular damage after contraction. Lesions caused by external injury can be repaired by muscle stem cells, which fuse with injured cells or create entirely new myofibers. Roman et al . describe a cell-autonomous repair process that is independent of muscle stem cells (see the Perspective by McNally and Demonbreun). After localized damage, myonuclei migrate to injury sites and locally deliver messenger RNA for cellular reconstruction. This myofiber self-repair represents a model for understanding the restoration of muscle architecture in health and disease. —BAP

Calcium metabolismMultidisciplinaryChemistryRegeneration (biology)Skeletal muscleCell biologymedicine.anatomical_structuremedicineStem cellmedicine.symptomNuclear migrationSignal transductionProcess (anatomy)Muscle contractionscience
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