0000000000387164

AUTHOR

Eija Pöllänen

showing 26 related works from this author

Hormone replacement therapy enhances IGF-1 signaling in skeletal muscle by diminishing miR-182 and miR-223 expressions : a study on postmenopausal mo…

2014

MiRNAs are fine-tuning modifiers of skeletal muscle regulation, but knowledge of their hormonal control is lacking. We used a co-twin case-control study design, that is, monozygotic postmenopausal twin pairs discordant for estrogen-based hormone replacement therapy (HRT) to explore estrogen-dependent skeletal muscle regulation via miRNAs. MiRNA profiles were determined from vastus lateralis muscle of nine healthy 54-62-years-old monozygotic female twin pairs discordant for HRT (median 7 years). MCF-7 cells, human myoblast cultures and mouse muscle experiments were used to confirm estrogen's causal role on the expression of specific miRNAs, their target mRNAs and proteins and finally the act…

MaleMICRORNASMonozygotic twinmenopausePATHWAYMice0302 clinical medicineMyocyteInsulin-Like Growth Factor IIN-VIVO0303 health sciencesphosphorylationAge FactorsBREAST-CANCER CELLSWOMENMiddle Aged3142 Public health care science environmental and occupational healthPostmenopauseESTROGENmedicine.anatomical_structureMCF-7 CellsmTORGROWTHFemaleAUTOPHAGYMESSENGER-RNASignal TransductionIGF-1 receptormedicine.medical_specialtyHormone Replacement Therapymedicine.drug_classmiR-142-3pBiology03 medical and health sciencesInternal medicinemicroRNAmedicineAnimalsHumansMuscle SkeletalProtein kinase BPI3K/AKT/mTOR pathwayAged030304 developmental biologyAKTagingSkeletal muscleOriginal ArticlesTwins MonozygoticCell BiologyAKT; FOXO3A; IGF-1 signaling; IGF-1R; aging; mTOR; menopause; miR-142-3p; miR-182; miR-223; phosphorylationmiR-223EndocrinologyEstrogenCase-Control StudiesmiR-1823121 General medicine internal medicine and other clinical medicineFOXO3AIGF-1 signalingIGF-1R030217 neurology & neurosurgeryHUMAN LONGEVITYHormone
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Catechol-O-Methyltransferase Gene Polymorphism Is Associated with Skeletal Muscle Properties in Older Women Alone and Together with Physical Activity

2008

BackgroundMuscle strength declines on average by one percent annually from midlife on. In postmenopausal women this decrement coincides with a rapid decline in estrogen production. The genetics underlying the effects of estrogen on skeletal muscle remains unclear. In the present study, we examined whether polymorphisms within COMT and ESR1 are associated with muscle properties and assessed their interaction and their combined effects with physical activity.Methodology/principal findingsA cross-sectional data analysis was conducted with 434 63-76-year-old women from the population-based Finnish Twin Study on Aging. Body anthropometry, muscle cross-sectional area (mCSA), isometric hand grip a…

medicine.medical_specialtymedicine.drug_classScienceeducationPhysical activityWomen's Health/Menopause and Post-Reproductive Women's HealthCatechol O-Methyltransferase03 medical and health sciences0302 clinical medicinePolymorphism (computer science)Internal medicineHand strengthGenetics and Genomics/Population GeneticsMedicineHumansMuscle SkeletalExercise030304 developmental biologyAged0303 health sciencesMultidisciplinaryCatechol-O-methyl transferasePolymorphism Geneticbusiness.industryPhysiology/EndocrinologyQRSkeletal muscleESR1 and Skeletal MuscleMiddle Aged314 Health sciencesTwin studyCOMTEndocrinologymedicine.anatomical_structureEstrogenMedicineESR1 ja luurankolihasFemalePublic Health and Epidemiology/EpidemiologybusinessEstrogen receptor alpha030217 neurology & neurosurgeryResearch ArticlePLoS ONE
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Hormone therapy is associated with better body composition and adipokine/glucose profiles

2012

Objective: The aim of this study was to evaluate the possibility of preventing the metabolic health consequences of postmenopausal hypogonadism with the use of long-term hormone therapy (HT). Methods: We used a monozygotic co-twin control design including 10 twin pairs (aged 56-62 y) discordant for HT (duration of HT, 2-10 y). In addition, 14 premenopausal women (aged 29-35 y) who did not use HT were studied to evaluate the differences in metabolic health between the premenopausal and postmenopausal states. Body composition was determined, and waist-to-hip ratio was used as an estimate for fat distribution. Serum sex steroids, sex hormone-binding globulin, and serum lipid and glucose profil…

AdultBlood Glucosenaisetmedicine.medical_specialtymedicine.drug_classmedicine.medical_treatmentkehon koostumusCo twin controlAdipose tissueAdipokineCarbohydrate metabolismAdipokinesSex Hormone-Binding GlobulinInternal medicineLeukocytesmedicineHumansRNA MessengerGonadal Steroid HormonesMuscle SkeletalChemokine CCL2kehonkoostumusMetabolic healthkaksostutkimusWaist-Hip Ratiobusiness.industryEstrogen Replacement TherapyadipokoinesObstetrics and Gynecologyta3141Twin studyTwins MonozygoticMiddle Agedadipokiinitmedicine.diseaseLipidsPostmenopauseMenopauseEndocrinologyAdipose TissuePremenopauseEstrogenCase-Control StudiesBody CompositionFemaleHormone therapyInsulin ResistancebusinessMenopause
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Hormone Replacement Therapy Associated White Blood Cell DNA Methylation and Gene Expression are Associated With Within-Pair Differences of Body Adipo…

2015

The loss of estrogen during menopause causes changes in the female body, with wide-ranging effects on health. Estrogen-containing hormone replacement therapy (HRT) leads to a relief of typical menopausal symptoms, benefits bone and muscle health, and is associated with tissue-specific gene expression profiles. As gene expression is controlled by epigenetic factors (including DNA methylation), many of which are environmentally sensitive, it is plausible that at least part of the HRT-associated gene expression is due to changes in DNA methylation profile. We investigated genome-wide DNA methylation and gene expression patterns of white blood cells (WBCs) and their associations with body compo…

medicine.medical_specialtyvaihdevuodetmedicine.drug_classHormone Replacement TherapyHRTmenopauseGene ExpressionBiologyBody fat percentageepigenetic regulationBody Mass IndexBone DensityInternal medicineGene expressionmedicineLeukocytesHumansgeeniekspressioEpigeneticsGeneGenetics (clinical)kehonkoostumusAdipositybody compositionta1184skeletal muscle compositionObstetrics and Gynecologyta3141DNA MethylationDNA-metylaatio3. Good healthPostmenopausehormone replacement therapyEndocrinologyDifferentially methylated regionsEstrogenPediatrics Perinatology and Child HealthDNA methylationLean body massFemalediscordant monozygotic twin pair designbone mineral contentGenome-Wide Association StudyTwin research and human genetics : the official journal of the International Society for Twin Studies
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OGT and OGA expression in postmenopausal skeletal muscle associates with hormone replacement therapy and muscle cross-sectional area

2013

Protein glycosylation via O-linked N-acetylglucosaminylation (O-GlcNAcylation) is an important post-translational regulatory mechanism mediated by O-GlcNAc transferase (OGT) and responsive to nutrients and stress. OGT attaches an O-GlcNAc moiety to proteins, while O-GlcNAcase (OGA) catalyzes O-GlcNAc removal. In skeletal muscle of experimental animals, prolonged increase in O-GlcNAcylation associates with age and muscle atrophy. Here we examined the effects of hormone replacement therapy (HRT) and power training (PT) on muscle OGT and OGA gene expression in postmenopausal women generally prone to age-related muscle weakness. In addition, the associations of OGT and OGA gene expressions with…

medicine.medical_specialtyAgingGlycosylationTime Factorsmedicine.drug_classPlyometric ExerciseBiologyta3111N-AcetylglucosaminyltransferasesBiochemistryGene Expression Regulation EnzymologicEndocrinologyDownregulation and upregulationInternal medicineGene expressionGeneticsmedicineHumansMuscle StrengthRNA Messengerta315Muscle SkeletalMolecular BiologyFinlandGlyceraldehyde 3-phosphate dehydrogenasePlyometric power trainingEstrogen Replacement Therapyta1182Age FactorsMuscle weaknessSkeletal muscleta3141Cell BiologyMiddle Agedbeta-N-AcetylhexosaminidasesMuscle atrophyPostmenopausePhenotypeTreatment OutcomeEndocrinologymedicine.anatomical_structureEstrogenbiology.proteinFemaleMuscle atrophymedicine.symptomProtein Processing Post-TranslationalMuscle ContractionMuscle contraction
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Muscular transcriptome in postmenopausal women with or without hormone replacement.

2007

The loss of muscle mass and strength with aging is well characterized, but our knowledge of the molecular mechanisms underlying the development of sarcopenia remains incomplete. Although menopause is often accompanied with first signs of age-associated changes in muscle structure and function, the effects of hormone replacement therapy (HRT) or menopause-related decline in estrogen production in the muscles of postmenopausal women is not well understood. Furthermore the knowledge of the global transcriptional changes that take place in skeletal muscle in relation to estrogen status has thus far been completely lacking. We used a randomized double-blinded study design together with an explor…

Agingmedicine.medical_specialtyvaihdevuodetmedicine.drug_classmenopaussiBiologysarcopeniaTranscriptomeInternal medicinemedicineHumanssarkopeniaRNA Messengermuscular transcriptomeMuscle SkeletalOligonucleotide Array Sequence AnalysishormonikorvaushoitolihastranskriptomiRegulation of gene expressionPostmenopausal womenGene Expression ProfilingEstrogen Replacement TherapySkeletal muscleMiddle Agedmedicine.diseaseMenopauseGene expression profilingPostmenopausehormone replacement therapyEndocrinologymedicine.anatomical_structureGene Expression RegulationReceptors EstrogenEstrogenSarcopeniaFemalesense organsGeriatrics and GerontologyRejuvenation research
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Hormone replacement therapy improves contractile function and myonuclear organization of single muscle fibres from postmenopausal monozygotic female …

2013

Ageing is associated with a decline in muscle mass and strength leading to increased physical dependency in old age. Postmenopausal women experience a greater decline than men of similar age in parallel with the decrease in female sex steroid hormone production. We recruited six monozygous female twin pairs (55-59 years old) where only one twin pair was on hormone replacement therapy (HRT use = 7.8 ± 4.3 years) to investigate the association of HRT with the cytoplasmic volume supported by individual myonuclei (myonuclear domain (MND) size,) together with specific force at the single fibre level. HRT use was associated with a significantly smaller (∼27%; P < 0.05) mean MND size in muscle fib…

0303 health sciencesmedicine.medical_specialtySpecific forcePhysiologybusiness.industrymedicine.medical_treatmentMuscle mass03 medical and health sciencesSteroid hormone0302 clinical medicineEndocrinologySingle muscleAgeingTransgender hormone therapyInternal medicineMyosinmedicinemedicine.symptom10. No inequalitybusiness030217 neurology & neurosurgery030304 developmental biologyMuscle contractionThe Journal of Physiology
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Aging and systemic hormonal status affects the circulating miR-21, miR-146a and FasL levels

2015

MicroRNAs are small molecules, found in all cell types and body fluids, which most commonly affect negatively to gene expressions by translational repression. Their role in various physiological conditions and diseases has been emphasized during the last twenty years. In our recent studies with postmenopausal monozygotic twin sisters (n=11), we have investigated how different systemic hormonal status affects the levels of specific circulating microRNAs and other molecules related to inflammation and apoptosis, both processes associated with aging. Our results have shown that the systemic levels of miR-21, miR-146a and Fas ligand are lower within the postmenopausal women who are using estrog…

medicine.medical_specialtyCell typemedicine.drug_classMonozygotic twinInflammationBiologyFas ligandInternal medicinemicroRNAmedicinehormonesta1184ta1182ta3141General MedicinemiR-146hormonitFasLCirculating MicroRNAEndocrinologyEstrogenagingsmiR-21medicine.symptomHormoneRNA and Disease
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Effects of combined hormone replacement therapy or its effective agents on the IGF-1 pathway in skeletal muscle.

2010

Objectives To investigate the effects of combined hormone replacement therapy (HRT) and its effective agents on the IGF-1 signaling pathway. Design and methods To examine the effects of HRT on skeletal muscle in vivo, we utilized pre- and post-intervention samples from a randomized double blinded trial with 50–57-year-old women. The intervention included the year-long use of either HRT preparation (2 mg 17β-estradiol, E2; 1 mg norethisterone acetate, NETA, n = 10) or placebo (CO, n = 9). Microarray technology and quantitative PCR (qPCR) were used to study the expression of insulin-like growth factor I (IGF-1) and its splice variants as well as IGF-1 receptor, Akt1, mTOR, FOXO1, FOXO3, atrog…

estradioliTranscription GeneticEndocrinology Diabetes and MetabolismMuscle Fibers SkeletalEstrogen receptorpostmenopausal womenMuscle ProteinsFOXO1Receptor IGF Type 10302 clinical medicineEndocrinologyProtein IsoformsTestosteroneInsulin-Like Growth Factor IReceptorRandomized Controlled Trials as Topic0303 health sciencesEstradiolMyogenesisForkhead Box Protein O1TOR Serine-Threonine KinasesEstrogen Replacement TherapyForkhead Box Protein O3Forkhead Transcription FactorsMiddle Agedmedicine.anatomical_structureReceptors EstrogenReceptors AndrogenFemalemedicine.medical_specialtynorethisterone acetate030209 endocrinology & metabolismBiologypostmenopausaalinen nainen03 medical and health sciencesInternal medicinemedicineHumansnoretisteroniasetaattiluurankolihasskeletal muscleMuscle SkeletalProtein kinase BPI3K/AKT/mTOR pathway030304 developmental biologyhormonikorvaushoitoSKP Cullin F-Box Protein LigasesSkeletal muscleAndrogen receptorNorethindrone AcetateEndocrinologyHormone replacement therapyIGF-1 signalointiNorethindroneIGF-1 signalingProto-Oncogene Proteins c-aktGrowth hormoneIGF research : official journal of the Growth Hormone Research Society and the International IGF Research Society
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Are skeletal muscleFNDC5gene expression and irisin release regulated by exercise and related to health?

2013

Recently, contradictory findings have been reported concerning the function of irisin and its precursor gene, skeletal muscle FNDC5, in energy homeostasis, and the associated regulatory role of exercise and PGC-1α. We therefore evaluated whether muscle FNDC5 mRNA and serum irisin are exercise responsive and whether PGC-1α expression is associated with FNDC5 expression. The male subjects in the study performed single exercises: (1) 1 h low-intensity aerobic exercise (AE) (middle-aged, n = 17), (2) a heavy-intensity resistance exercise (RE) bout (young n = 10, older n = 11) (27 vs. 62 years), (3) long-term 21 weeks endurance exercise (EE) training alone (twice a week, middle-aged, n = 9), or …

medicine.medical_specialtyPhysiologybusiness.industrySkeletal muscleOverweightFNDC5Energy homeostasisEndocrinologyReal-time polymerase chain reactionmedicine.anatomical_structureEndurance trainingInternal medicineGene expressionmedicineAerobic exercisemedicine.symptombusinessThe Journal of Physiology
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Physical activity responsive miRNAs – Potential mediators of training responses in human skeletal muscle?

2013

1. The basics of miRNA-mediated regulation The plasticity of skeletal muscle is of utmost importance for responding to and coping with environmental demands that emerge from changes in physical activity patterns, nourishment, hormonal status, and health. As is well known, a sedentary lifestyle, aging, immobilization, and chronic diseases are associated with reduced muscle mass and function, while regular exercise improves muscle function and reduces the rate of decrement throughout life. 1 However, we do not have a complete understanding of the molecular factors controlling skeletal muscle adaptation to exercise stimuli. Recently identified microRNA molecules (miRNAs) have rapidly gained at…

medicine.medical_specialtyCell typeta1184ta1182Skeletal muscle adaptationSkeletal musclePhysical Therapy Sports Therapy and RehabilitationPhysical exerciseBiologyCell biologyEndocrinologymedicine.anatomical_structureInternal medicinemicroRNAGene expressionmedicineOrthopedics and Sports Medicineta315Transcription factorHormoneJournal of Sport and Health Science
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Intramuscular sex steroid hormones are associated with skeletal muscle strength and power in women with different hormonal status

2015

International audience; Estrogen (E2)-responsive peripheral tissues, such as skeletal muscle, may suffer from hormone deficiency after menopause potentially contributing to the aging of muscle. However, recently E2 was shown to be synthesized by muscle and its systemic and intramuscular hormone levels are unequal. The objective of the study was to examine the association between intramuscular steroid hormones and muscle characteristics in premenopausal women (n = 8) and in postmenopausal monozygotic twin sister pairs (n = 16 co-twins from eight pairs) discordant for the use of E2-based hormone replacement. Isometric skeletal muscle strength was assessed by measuring knee extension strength.…

Agingsteroidogenesismuscle steroidsMonozygotic twinIsometric exercise0302 clinical medicineMyocyteGonadal Steroid HormonesTestosteronemuscle performance0303 health sciences[SDV.MHEP] Life Sciences [q-bio]/Human health and pathologyEstrogen Replacement TherapyAge FactorsMENta3141Middle AgedPostmenopauseESTROGENmedicine.anatomical_structureDISCORDANTFemaleintracrine organAdultEXPRESSIONmedicine.medical_specialtymedicine.drug_classeducationDehydroepiandrosteroneEXERCISEBiologyMETABOLISMta3111MECHANISMS03 medical and health sciencesREPLACEMENT THERAPYSex FactorsInternal medicinemedicineHumansMuscle Skeletal030304 developmental biologyInfant NewbornSkeletal muscleOriginal ArticlesCell BiologyMONOZYGOTIC TWIN PAIRSCross-Sectional StudiesEndocrinologyPremenopauseEstrogenCase-Control Studies3121 General medicine internal medicine and other clinical medicinelocal hormone synthesis3111 Biomedicine030217 neurology & neurosurgery[SDV.MHEP]Life Sciences [q-bio]/Human health and pathologyHormone
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Combination of hormone replacement therapy and high physical activity is associated with differences in Achilles tendon size in monozygotic female tw…

2009

Estrogen concentration has been suggested to play a role in tendon abnormalities and injury. In physically active postmenopausal women, hormone replacement therapy (HRT) has been suggested to decrease tendon diameter. We hypothesized that HRT use and physical activity are associated with Achilles tendon size and tissue structure. The study applied cotwin analysis of fourteen 54- to 62-yr-old identical female twin pairs with current discordance for HRT use for an average of 7 yr. Achilles tendon thickness and cross-sectional areas were determined by ultrasonography, and tendon structural organization was analyzed from the images using linear discriminant analysis (LDA). Maximal voluntary and…

medicine.medical_specialtyPhysiologymedicine.drug_classEstroneHormone Replacement TherapyAnterior cruciate ligamentPhysical activityMonozygotic twinPhysical exerciseMotor ActivityAchilles Tendon03 medical and health sciences0302 clinical medicinePhysiology (medical)Internal medicineSex Hormone-Binding GlobulinMedicineHumansTestosteroneMuscle StrengthAgedUltrasonographyAchilles tendonbusiness.industryEstrogens030229 sport sciencesTwins MonozygoticMiddle AgedTendonmedicine.anatomical_structureEndocrinologyCholesterolTransgender hormone therapyEstrogenFemaleMenopausebusiness030217 neurology & neurosurgeryMuscle ContractionJournal of applied physiology (Bethesda, Md. : 1985)
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Global gene expression profiles in skeletal muscle of monozygotic female twins discordant for hormone replacement therapy

2010

Summary Aging is accompanied by inexorable loss of muscle tissue. One of the underlying causes for this is the massive change in the hormonal milieu of the body. The role of a female sex steroid – estrogen – in these processes is frequently neglected, although the rapid decline in its production coincides with a steep deterioration in muscle performance. We recruited 54- to 62-year-old monozygotic female twin pairs discordant for postmenopausal hormone replacement therapy (HRT, n = 11 pairs; HRT use 7.3 ± 3.7 years) from the Finnish Twin Cohort to investigate the association of long-term, estrogen-based HRT with skeletal muscle transcriptome. Pathway analysis of muscle transcript profiles r…

Muscle tissue0303 health sciencesAgingmedicine.medical_specialtymedicine.drug_classSkeletal muscleCell BiologyMetabolismBiologyMitochondrionTranscriptome03 medical and health sciences0302 clinical medicinemedicine.anatomical_structureEndocrinologyTransgender hormone therapyEstrogenInternal medicinemedicine030217 neurology & neurosurgery030304 developmental biologyHormoneAging Cell
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Power training and postmenopausal hormone therapy affect transcriptional control of specific co-regulated gene clusters in skeletal muscle

2010

At the moment, there is no clear molecular explanation for the steeper decline in muscle performance after menopause or the mechanisms of counteractive treatments. The goal of this genome-wide study was to identify the genes and gene clusters through which power training (PT) comprising jumping activities or estrogen containing hormone replacement therapy (HRT) may affect skeletal muscle properties after menopause. We used musculus vastus lateralis samples from early stage postmenopausal (50–57 years old) women participating in a yearlong randomized double-blind placebo-controlled trial with PT and HRT interventions. Using microarray platform with over 24,000 probes, we identified 665 diffe…

AgingCandidate geneTranscription GeneticvaihdevuodetmenopaussiBioinformaticsEstrogen deprivation0302 clinical medicineGene expressionestrogenTranscriptional regulation0303 health sciencesEstrogen Replacement TherapyGeneral MedicineMiddle AgedestrogeeniPostmenopausemedicine.anatomical_structureFemalevoimaharjoitteluMenopausemedicine.symptomTranscriptome-wide studymedicine.medical_specialtyPlyometric trainingmedicine.drug_classBiologyArticletranskriptomin laajuuinen tutkimus03 medical and health sciencesplyometrinen harjoitteluInternal medicinemedicineHumansSkeletal muscle characteristicsKEGGMuscle SkeletalExerciseGene030304 developmental biologyhormonikorvaushoitoSkeletal muscleMuscle weaknessdeprivaatioPower trainingAgeingEndocrinologyluurankolihaksetHormone replacement therapyEstrogenGeriatrics and Gerontology030217 neurology & neurosurgeryAGE
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Circulating miR-21, miR-146a and Fas ligand respond to postmenopausal estrogen-based hormone replacement therapy--a study with monozygotic twin pairs.

2014

Biological aging is associated with physiological deteriorations and its’ remodeling, which are partly due to changes in the hormonal profile. MicroRNAs are known to post-transcriptionally regulate various cellular processes associated with cell senescence; differentiation, replication and apoptosis. Measured from the serum, microRNAs have the potential to serve as noninvasive markers for diagnostics/prognostics and therapeutic targets. We analysed the association of estrogen-based hormone replacement therapy (HRT) with selected microRNAs and inflammation markers from the serum, leukocytes and muscle tissue biopsy samples obtained from 54-62 year-old postmenopausal monozygotic twins (n=11 p…

SenescenceAdultmedicine.medical_specialtyAgingFas Ligand Proteinmedicine.drug_classmedicine.medical_treatmentMonozygotic twinInflammationApoptosisBiologyta3111Fas ligand“Inflamm-aging”Internal medicinemicroRNAmedicineestrogenHumansmicrornasMuscle SkeletalHormone therapyCellular SenescenceInflammationmicroRNAEstrogen Replacement TherapyapoptosisHormone replacement therapy (menopause)ta3141Cell DifferentiationEstrogenstwinsTwins MonozygoticMiddle AgedPostmenopauseAgeinghormone replacement therapyMicroRNAsEndocrinologyEstrogenFemalemedicine.symptomBiomarkersDevelopmental BiologyHormoneMechanisms of ageing and development
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Cannabinoid receptor 1 and acute resistance exercise – In vivo and in vitro studies in human skeletal muscle

2015

Abstract Aim This study aimed to determine whether Cannabinoid receptor 1 (CB1) is involved in mammalian target of rapamycin (mTOR) signaling and skeletal muscle protein synthesis. Methods This study used human vastus lateralis skeletal muscle biopsies obtained before and after a resistance exercise (RE) bout in young men (n = 18). The signaling mechanisms were studied in vitro in human myotubes. Protein expression was determined by Western blot and confocal microscopy, and gene expression by quantitative PCR. Protein synthesis was measured in vitro using puromycin-based SuNSET technique. Results In human skeletal muscle, an anabolic stimulus in the form of RE down-regulated CB1 expression.…

Malemedicine.medical_specialtyPhysiologyMAP Kinase Signaling SystemMuscle Fibers SkeletalGene ExpressionSkeletal muscleP70-S6 Kinase 1Cell Cycle ProteinsBiochemistryCell LineCellular and Molecular NeuroscienceYoung AdultEndocrinologyPiperidinesReceptor Cannabinoid CB1Internal medicinemedicineCannabinoid receptor type 2HumansCannabinoid receptor 1PhosphorylationMuscle Skeletalta315PI3K/AKT/mTOR pathwayAdaptor Proteins Signal TransducingChemistryMyogenesista1184Eukaryotic initiation factor 4E bindingSkeletal muscleRibosomal Protein S6 Kinases 70-kDaResistance TrainingPhosphoproteinsResistance exerciseCell biologymedicine.anatomical_structureEndocrinologyRibosomal protein s6Protein BiosynthesismTOR signalingPhosphorylationPyrazolesProtein synthesisProtein Processing Post-TranslationalPeptides
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Muscle function in monozygotic female twin pairs discordant for hormone replacement therapy

2011

Introduction: Postmenopausal monozygotic twin pairs discordant for hormone replacement therapy (HRT) provide an advantageous study design controlling for genetic background for elucidating the relationships between aging, sex hormone levels, muscle strength, contractile capacity, and fatigability. Methods: Thirteen postmenopausal monozygotic twin pairs discordant for HRT were measured for maximal voluntary torque (MVC) and twitch characteristics using electrical stimulation before and after intermittent dynamic plantarflexor exercise until exhaustion. Results: Peak twitch torque was 32% higher in HRT users than in their non-HRT, genetically identical sisters (P = 0.002), but MVC did not dif…

estradiolimedicine.medical_specialtygenetic structuresPhysiology030310 physiologyMonozygotic twinStimulationplantarflexor03 medical and health sciencesCellular and Molecular NeuroscienceMuscle nerveSex hormone-binding globulinPhysiology (medical)Internal medicinemedicineHumansvoimaMuscle StrengthtwitchMuscle Skeletalväsyminen030304 developmental biology0303 health sciencesPostmenopausal womenbiologyEstradiolbusiness.industryElectromyographyEstrogen Replacement TherapySkeletal muscleTwins MonozygoticMiddle AgedestrogeeniEndocrinologymedicine.anatomical_structureTransgender hormone therapyMuscle Fatiguebiology.proteinTime to peakfatigueFemalesense organsNeurology (clinical)strengthbusinesshuman activitiesMuscle ContractionMuscle & Nerve
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Differential influence of peripheral and systemic sex steroids on skeletal muscle quality in pre- and postmenopausal women

2011

Aging is associated with gradual decline of skeletal muscle strength and mass often leading to diminished muscle quality. This phenomenon is known as sarcopenia and affects about 30% of the over 60-year-old population. Androgens act as anabolic agents regulating muscle mass and improving muscle performance. The role of female sex steroids as well as the ability of skeletal muscle tissue to locally produce sex steroids has been less extensively studied. We show that despite the extensive systemic deficit of sex steroid hormones in postmenopausal compared to premenopausal women, the hormone content of skeletal muscle does not follow the same trend. In contrast to the systemic levels, muscle t…

Muscle tissue0303 health sciencesAgingmedicine.medical_specialtyeducation.field_of_studyPopulationDehydroepiandrosteroneSkeletal muscle030209 endocrinology & metabolismCell BiologyBiologymedicine.disease03 medical and health sciences0302 clinical medicineEndocrinologymedicine.anatomical_structureSarcopeniaInternal medicinemedicineAndrostenedioneeducationTestosterone030304 developmental biologyHormoneAging Cell
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Postmenopausal hormone replacement therapy modifies skeletal muscle composition and function: a study with monozygotic twin pairs

2009

We investigated whether long-term hormone replacement therapy (HRT) is associated with mobility and lower limb muscle performance and composition in postmenopausal women. Fifteen 54- to 62-yr-old monozygotic female twin pairs discordant for HRT were recruited from the Finnish Twin Cohort. Habitual (HWS) and maximal (MWS) walking speeds over 10 m, thigh muscle composition, lower body muscle power assessed as vertical jumping height, and maximal isometric hand grip and knee extension strengths were measured. Intrapair differences (IPD%) with 95% confidence intervals (CI) were calculated. The mean duration of HRT use was 6.9 ± 4.1 yr. MWS was on average 7% (0.9 to 13.1%, P = 0.019) and muscle…

SenescenceAgingmedicine.medical_specialtyvaihdevuodetPhysiologyMonozygotic twinWalkingIsometric ContractionPhysiology (medical)Internal medicineIkääntymienmedicineHumansMuscle Skeletalmuscle powersukupuolihormonitHand Strengthbusiness.industryEstrogen Replacement TherapySkeletal muscleEstrogenslihaksen voimantuottotehoTwins MonozygoticMiddle Agedmedicine.diseaseTwin studyTwin Studies as TopicMenopauseEndocrinologymedicine.anatomical_structureTransgender hormone therapyAgeingTwin Studies as TopicFemaleMenopauseTomography X-Ray ComputedbusinessMuscle ContractionlihasvoimaJournal of Applied Physiology
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Toll-like receptor 5 in obesity: The role of gut microbiota and adipose tissue inflammation

2015

Objective This study aimed at establishing bacterial flagellin-recognizing toll-like receptor 5 (TLR5) as a novel link between gut microbiota composition, adipose tissue inflammation, and obesity. Methods An adipose tissue microarray database was used to compare women having the highest (n = 4, H-TLR) and lowest (n = 4, L-TLR) expression levels of TLR5-signaling pathway genes. Gut microbiota composition was profiled using flow cytometry and FISH. Standard laboratory techniques were used to determine anthropometric and clinical variables. In vivo results were verified using cultured human adipocytes. Results The H-TLR group had higher flagellated Clostridium cluster XIV abundance and Firmicu…

medicine.medical_specialtyNutrition and DieteticsbiologyAdiponectinEndocrinology Diabetes and MetabolismAdipose tissue macrophagesLeptinMedicine (miscellaneous)Adipose tissueInflammationGut florabiology.organism_classification3. Good healthInsulin receptorEndocrinologyEndocrinologyTLR5Internal medicinemedicinebiology.proteinmedicine.symptomObesity
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Postexercise myostatin and activin IIb mRNA levels: effects of strength training.

2007

ABSTRACTHULMI, J. J., J. P. AHTIAINEN, T. KAASALAINEN, E. PO¨LLA¨NEN, K. HA¨KKINEN, M. ALEN, H. SELA¨NNE, V. KOVANEN,and A. A. MERO. Postexercise Myostatin and Activin IIb mRNA Levels: Effects of Strength Training. Med. Sci. Sports Exerc., Vol.39, No. 2, pp. 289–297, 2007. Purpose: Muscle hypertrophy is likely to result from the cumulative effects of repeated bouts ofresistance exercise (RE) on postexercise molecular responses. Therefore, we determined muscle growth- and regeneration-relatedmRNA expression in response to a single RE bout both before and after a strength-training (ST) period. By means of this novellongitudinal setting, we examined whether postexercise gene expression at the …

Malemedicine.medical_specialtyTime FactorsWeight LiftingVastus lateralis muscleGene ExpressionPhysical Therapy Sports Therapy and RehabilitationPhysical exerciseMyostatinMyoDMuscle hypertrophyQuadriceps MuscleTransforming Growth Factor betaInternal medicinemedicineHumansOrthopedics and Sports MedicineRNA MessengerLeg pressMuscle SkeletalExerciseMyogeninAgedbiologybusiness.industryAge FactorsMiddle AgedMyostatinmusculoskeletal systemActivinsEndocrinologyCase-Control Studiesbiology.proteinmedicine.symptombusinessMuscle contractionMuscle ContractionMedicine and science in sports and exercise
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Differences in muscle and adipose tissue gene expression and cardio-metabolic risk factors in the members of physical activity discordant twin pairs

2010

High physical activity/aerobic fitness predicts low morbidity and mortality. Our aim was to identify the most up-regulated gene sets related to long-term physical activity vs. inactivity in skeletal muscle and adipose tissues and to obtain further information about their link with cardio-metabolic risk factors. We studied ten same-sex twin pairs (age range 50-74 years) who had been discordant for leisure-time physical activity for 30 years. The examinations included biopsies from m. vastus lateralis and abdominal subcutaneous adipose tissue. RNA was analyzed with the genome-wide Illumina Human WG-6 v3.0 Expression BeadChip. For pathway analysis we used Gene Set Enrichment Analysis utilizing…

MaleSELECTIONFITNESSTwinsAdipose tissuephysical activityliikuntaPhysiology/Muscle and Connective TissueDiabetes and Endocrinology/ObesityCohort Studieschemistry.chemical_compound0302 clinical medicineRisk FactorsAdipocyte311 Basic medicinegeeniekspressioFinlandRegulation of gene expression0303 health sciencesINSULIN-RESISTANCEMultidisciplinaryQRGenetics and Genomics/Gene ExpressionMiddle Agedgeenien ilmentyminen3. Good healthmedicine.anatomical_structureTRIACYLGLYCEROLAdipose Tissue/dk/atira/pure/sustainabledevelopmentgoals/good_health_and_well_beingMedicineSKELETAL-MUSCLEFemalePublic Health and Epidemiology/Exercise and SportsResearch ArticleMuscle tissuemedicine.medical_specialtyHeart DiseasesCardiovascular DisordersScience030209 endocrinology & metabolismEXERCISEMotor ActivityBiologyCAPACITY03 medical and health sciencesInsulin resistanceSDG 3 - Good Health and Well-beingInternal medicinemetaboliamedicineHumansAerobic exerciseMuscle SkeletalCell Biology/Gene ExpressionAged030304 developmental biologymatebolismMORTALITYCholesterol HDLSkeletal muscleLipid metabolismLipid Metabolismmedicine.diseasekaksosetEndocrinologyGene Expression RegulationchemistryADAPTATIONSCHRONIC DISEASEEnergy MetabolismPLoS ONE
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DIFFERENTIAL INFLUENCE OF PERIPHERAL AND SYSTEMIC SEX STEROIDS ON SKELETAL MUSCLE QUALITY IN PRE- AND POSTMENOPAUSAL WOMEN.

2011

Aging is associated with gradual decline of skeletal muscle strength and mass often leading to diminished muscle quality. This phenomenon is known as sarcopenia and affects about 30% of the over 60-year-old population. Androgens act as anabolic agents regulating muscle mass and improving muscle performance. The role of female sex steroids as well as the ability of skeletal muscle tissue to locally produce sex steroids has been less extensively studied. We show that despite the extensive systemic deficit of sex steroid hormones in postmenopausal compared to premenopausal women, the hormone content of skeletal muscle does not follow the same trend. In contrast to the systemic levels, muscle t…

naisetpaikallinen ja systeeminen steroidogeneesiluustolihasvaihdevuodetskeletal musclelocal and systemic steroidogenesisikä
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Hormone replacement therapy improves contractile function and myonuclear organization of single fibres from postmenopausal monozygotic female twin pa…

2013

Ageing is associated with a decline in muscle mass and strength leading to increased physical dependency in old age. Postmenopausal women experience a greater decline than men of similar age in parallel with the decrease in female sex steroid hormone production. We recruited six monozygous female twin pairs (55–59 years old) where only one twin pair was on hormone replacement therapy (HRT use = 7.8 ± 4.3 years) to investigate the association of HRT with the cytoplasmic volume supported by individual myonuclei (myonuclear domain (MND) size,) together with specific force at the single fibre level. HRT use was associated with a significantly smaller (∼27%; P < 0.05) mean MND size in muscle fib…

skinned fibersmyonuclear domain sizecontractility
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Regulation of gene expression and steroidogenesis in skeletal muscle of postmenopausal women : with emphasis on the effects of hormone replacement an…

2011

naisetgeenitvaihdevuodetagingmenopauselihaksethormone replacement therapyikääntyminenpower traininggene expressionhormonihoitoharjoittelusteroiditskeletal musclesex steroid hormonelihassolutfyysinen aktiivisuus
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