0000000000387167

AUTHOR

Jukka Puolakka

showing 13 related works from this author

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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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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Effects of hormone replacement therapy and high-impact physical exercise on skeletal muscle in post-menopausal women: a randomized placebo-controlled…

2001

An age-related decline in muscle performance is a known risk factor for falling, fracture and disability. In women, a clear deterioration is observed from early menopause. The effect of hormone replacement therapy (HRT) in preserving muscle performance is, however, unclear. This trial examined the effects of a 12-month HRT and high-impact physical exercise regimen on skeletal muscle in women in early menopause. A total of 80 women aged 50–57 years were assigned randomly to one of four groups: exercise (Ex), HRT, exercise+HRT (ExHRT) and control (Co). The exercise groups participated in a high-impact training programme. The administration of HRT (oestradiol/noretisterone acetate) or placebo …

medicine.medical_specialtyPlacebo-controlled studyPhysical exercisePlacebolaw.inventionDouble-Blind MethodRandomized controlled triallawInternal medicineElectric ImpedancemedicineHumansExercise physiologyMuscle SkeletalExerciseAnalysis of VarianceEstradiolbusiness.industryEstrogen Replacement TherapySkeletal muscleGeneral MedicineMiddle Agedmedicine.diseaseCombined Modality TherapyBiomechanical PhenomenaPostmenopauseMenopausemedicine.anatomical_structureEndocrinologyTorqueAnesthesiaBody CompositionFemaleNorethindronemedicine.symptomTomography X-Ray ComputedbusinessMuscle contractionClinical Science
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Change in bone mass distribution induced by hormone replacement therapy and high-impact physical exercise in post-menopausal women.

2002

The purpose of this intervention trial was to determine whether changes in bone mass distribution could be observed in postmenopausal women following hormone replacement therapy (HRT) and/or high-impact physical exercise. Eighty healthy women, aged 50-57 years, at5 years after the onset of menopause and with no previous use of HRT, were randomly assigned to one of four groups: HRT; exercise (Ex); HRT + Ex (ExHRT); and control (Co). HRT administration was conducted in a double-blind manner for 1 year using estradiol plus noretisterone acetate (Kliogest). The exercise groups participated in a 1 year progressive training program consisting of jumping and bounding activities. Subjects participa…

medicine.medical_specialtyHistologyBone diseaseBone densityPhysiologyEndocrinology Diabetes and MetabolismOsteoporosisUrologyPhysical exerciseDouble-Blind MethodBone DensitymedicineHumansTibiaQuantitative computed tomographyExerciseBone mineralAnalysis of Variancemedicine.diagnostic_testEstradiolbusiness.industryEstrogen Replacement TherapyMiddle Agedmedicine.diseaseSurgeryPostmenopauseNorethindrone Acetatemedicine.anatomical_structureCortical boneFemalesense organsNorethindronebusinessBone
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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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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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The effect of hormone replacement therapy and/or exercise on skeletal muscle attenuation in postmenopausal women: a yearlong intervention

2005

Hormone replacement therapy (HRT) has been reported to exert a positive effect on preserving muscle strength following the menopause, however, the mechanism of action remains unclear. We examined whether the mechanism involved preservation of muscle composition as determined by skeletal muscle attenuation. Eighty women aged 50-57 years were randomly assigned to either: HRT, exercise (Ex), HRT + exercise (ExHRT), and control (Co) for 1 year. The study was double-blinded with subjects receiving oestradiol and norethisterone acetate (Kliogest) or placebo. Exercise included progressive high-impact training for the lower limbs. Skeletal muscle attenuation in Hounsfield units (HU) was determined …

medicine.medical_specialtyPhysiologymedia_common.quotation_subjectAdipose tissuePhysical exerciseVertical jumpDouble-Blind MethodPhysiology (medical)Internal medicinemedicineHormone replacement therapy (male-to-female)Body SizeHumansMuscle SkeletalExerciseMenstrual cyclemedia_commonAnalysis of Variancebusiness.industryBody WeightEstrogen Replacement TherapySkeletal muscleGeneral MedicineMiddle Agedmedicine.diseaseNorethisterone acetatePostmenopauseMenopauseEndocrinologymedicine.anatomical_structureAdipose TissueFemaleTomography X-Ray Computedbusinessmedicine.drugClinical Physiology and Functional Imaging
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Influence of long-term postmenopausal hormone-replacement therapy on estimated structural bone strength: A study in discordant monozygotic twins

2010

Although postmenopausal hormone-replacement therapy (HRT) is known to prevent fractures, knowledge on the influence of long-term HRT on bone strength and its determinants other than areal bone mineral density is scarce. This study used a genetically controlled design with 24 monozygotic female twin pairs aged 54 to 72 years in which one cotwin was using HRT (mean duration 8 years) and the other had never used HRT. Estimated bone strength, cross-sectional area, volumetric bone mineral density, bone mineral mass, and cross-sectional density and mass distributions were assessed in the tibial shaft, distal tibia, and distal radius with peripheral computed tomography (pQCT). In the tibial shaft,…

medicine.medical_specialtyTime FactorsEndocrinology Diabetes and Metabolismmedicine.medical_treatmentDentistryMonozygotic twin030209 endocrinology & metabolismBone and Bones03 medical and health sciences0302 clinical medicineBone strengthBone DensitymedicineHumansPostmenopausal Hormone Replacement TherapyOrthopedics and Sports Medicineta315Aged030304 developmental biologyBone mineral0303 health sciencesPostmenopausal womenAnthropometrybusiness.industryEstrogen Replacement Therapyta3141Hormone replacement therapy (menopause)Organ SizeTwins Monozygoticta3142Middle AgedHormonesConfidence intervalSurgerymedicine.anatomical_structureBody CompositionFemaleCortical boneDiaphysesSelf ReportbusinessJournal of Bone and Mineral Research
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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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Global gene expression profiles in skeletal muscle of monozygotic female twins discordant for hormone replacement therapy

2010

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 revealed …

hormonikorvaushoitopostmenopauseluustolihasHormone replacement therapyvaihdevuodetidenttiset kaksosetglobal gene expressiongeeniekspressioskeletal muscleAging Cell
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Influence of long-term postmenopausal hormone replacement therapy on estimated structural bone strength: A study in discordant monozygotic twins.

2011

Although postmenopausal hormone-replacement therapy (HRT) is known to prevent fractures, knowledge on the influence of long-term HRT on bone strength and its determinants other than areal bone mineral density is scarce. This study used a genetically controlled design with 24 monozygotic female twin pairs aged 54 to 72 years in which one cotwin was using HRT (mean duration 8 years) and the other had never used HRT. Estimated bone strength, cross-sectional area, volumetric bone mineral density, bone mineral mass, and cross-sectional density and mass distributions were assessed in the tibial shaft, distal tibia, and distal radius with peripheral computed tomography (pQCT). In the tibial shaft,…

luustoidenttiset kaksosetluuvaihdevuosien jälkeinen hormonikorvaushoitopostmenopausal hormone replacement therapy
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