Search results for "estrogeenit"

showing 10 items of 22 documents

Estrogenic regulation of skeletal muscle proteome : a study of premenopausal women and postmenopausal MZ cotwins discordant for hormonal therapy

2017

Female middle age is characterized by a decline in skeletal muscle mass and performance, predisposing women to sarcopenia, functional limitations, and metabolic dysfunction as they age. Menopausal loss of ovarian function leading to low circulating level of 17b-estradiol has been suggested as a contributing factor to aging-related muscle deterioration. However, the underlying molecular mechanisms remain largely unknown and thus far androgens have been considered as a major anabolic hormone for skeletal muscle. We utilized muscle samples from 24 pre- and postmenopausal women to establish proteome-wide profiles, associated with the difference in age (30–34 years old vs. 54– 62 years old), men…

0301 basic medicineAgingnaisetlabel‐free protein quantitationProteomeAnabolismvaihdevuodetmedicine.medical_treatmentTwinsmenopausenano‐LC‐HD‐MSElihakset0302 clinical medicineSTRENGTHBRAIN315 Sport and fitness sciencesta315luustoINHIBITORHormone replacement therapy (menopause)ta3142MITOCHONDRIAL BIOGENESISMiddle AgedPostmenopauseMenopauseREPLACEMENThormone replacement therapyEditorialmedicine.anatomical_structurehormonihoitoHormonal therapyOriginal ArticleFemalemuscleswomenAdultestrogeenitnano-LC-HD-MSEEXPRESSIONmedicine.medical_specialtyBiologyestrogenic regulation03 medical and health sciencesmitochondrial functionInternal medicinemedicineHumansMuscle Skeletallabel-free protein quantitationmuscle proteomeAgedSkeletal muscleEstrogenslabel-free proteinquantitationOriginal ArticlesCell Biologyfunctional annotationmedicine.diseaseMiddle ageMONOZYGOTIC TWIN PAIRS030104 developmental biologyEndocrinologyPremenopauselihasmassaSarcopeniaCELLS3111 BiomedicineEnergy Metabolismfemale muscle030217 neurology & neurosurgeryskeletal musclesHormone
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Design and protocol of Estrogenic Regulation of Muscle Apoptosis (ERMA) study with 47 to 55-year-old women's cohort : novel results show menopause-re…

2018

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0301 basic medicineOncologyestradiolivaihdevuodetNeutrophilsBlood count0302 clinical medicineSurveys and QuestionnairesFSHLongitudinal Studiesmenopausal status2. Zero hungerEstradiolvalkosolutApplied MathematicsObstetrics and Gynecologyta3141ta3142Middle AgedMenstruation3. Good health17β-EstradiolMenopauseCohortComputingMethodologies_DOCUMENTANDTEXTPROCESSINGFemaleMenopauselihaskuntoestrogeenitmedicine.medical_specialtyGeneral MathematicsAffect (psychology)Statistics Nonparametric03 medical and health sciencesohjelmoitunut solukuolema17b-Estradiolneutrophil-to-lymphocyte ratioInternal medicinemedicineHumansLymphocyte CountAnalysis of VarianceChi-Square Distributionbusiness.industryOriginal Articlesleucocyte countmedicine.diseaseCross-Sectional Studies030104 developmental biologyApoptosisMultivariate AnalysisLinear Modelsblood viscosityFollicle Stimulating Hormonebusiness030217 neurology & neurosurgeryFollow-Up StudiesHormoneMenopause: The Journal of The North American Menopause Society
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Estrogen Regulates the Satellite Cell Compartment in Females

2019

SUMMARY Skeletal muscle mass, strength, and regenerative capacity decline with age, with many measures showing a greater deterioration in females around the time estrogen levels decrease at menopause. Here, we show that estrogen deficiency severely compromises the maintenance of muscle stem cells (i.e., satellite cells) as well as impairs self-renewal and differentiation into muscle fibers. Mechanistically, by hormone replacement, use of a selective estrogen-receptor modulator (bazedoxifene), and conditional estrogen receptor knockout, we implicate 17β-estradiol and satellite cell expression of estrogen receptor α and show that estrogen signaling through this receptor is necessary to preven…

0301 basic medicineestrogeenitmedicine.medical_specialtyestradioliSatellite Cells Skeletal Musclemedicine.drug_classCellEstrogen receptorlihaksetBiologyGeneral Biochemistry Genetics and Molecular BiologyArticleBazedoxifene03 medical and health sciencesMice0302 clinical medicineInternal medicineestradiolmedicineAnimalsHumansquiescenceskeletal muscleReceptorlcsh:QH301-705.5lihassolutsukupuolihormonitSkeletal muscleEstrogensmedicine.diseaseMenopause030104 developmental biologymedicine.anatomical_structureEndocrinologymuscle stem cellsikääntyminenlcsh:Biology (General)EstrogenFemaleStem cellovarian hormones030217 neurology & neurosurgeryhormones hormone substitutes and hormone antagonistsmedicine.drugCell reports
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Menopause and adipose tissue: miR-19a-3p is sensitive to hormonal replacement

2018

Tissue-specific effects of 17 beta-estradiol are delivered via both estrogen receptors and microRNAs (miRs). Menopause is known to affect the whole-body fat distribution in women. This investigation aimed at identifying menopause-and hormone replacement therapy (HRT)-associated miR profiles and miR targets in subcutaneous abdominal adipose tissue and serum from the same women. A discovery phase using array technology was performed in 13 women, including monozygotic twin pairs discordant for HRT and premenopausal young controls. Seven miRs, expressed in both adipose tissue and serum, were selected for validation phase in 34 women from a different cohort. An age/menopause-related increase of …

0301 basic medicinevaihdevuodetmedicine.medical_treatmentmenopauseAdipose tissueEstrogen receptorMonozygotic twinTHERAPYchemistry.chemical_compoundestrogen therapyAdipocyteTUMOR-SUPPRESSORADIPOCYTE DIFFERENTIATIONmicroRNAestrogeenihoitota3141miR-19a-3pHormone replacement therapy (menopause)ta31423142 Public health care science environmental and occupational healthmicroRNAsadipose tissueMenopauseOncologyhormonihoitoSKELETAL-MUSCLEESTROGEN-RECEPTOR-ALPHASTEM-CELLSResearch PaperEXPRESSIONestrogeenitmedicine.medical_specialtyBODY-COMPOSITION3122 Cancersrasvakudokset03 medical and health sciencesInternal medicinemedicineBREAST-CANCERbusiness.industryagingmedicine.diseasehormonitMONOZYGOTIC TWIN PAIRSikääntyminen030104 developmental biologyEndocrinologychemistrybusinessEstrogen receptor alphaHormoneOncotarget
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Akillesjänteen paksuutta määrittävät tekijät ja lihasarkkitehtuuri vaihdevuosi-ikäisillä naisilla

2017

Laitinen, E. 2017. Akillesjänteen paksuutta määrittävät tekijät ja lihasarkkitehtuuri vaihde-vuosi-ikäisillä naisilla. Liikuntabiologian laitos, Jyväskylän yliopisto, biomekaniikan pro gradu -tutkielma, 45 s. Vaihdevuodet ja ikääntyminen saavat aikaan lihasvoiman nopean laskun ja tämä vaikuttaa myös toimintakykyyn. Jopa 15-25 % lihasvoimasta voi laskea vaihdevuosien seurauksena. Lihaksen arkkitehtuurisia muuttujia on tutkittu ikääntymiseen liittyen jonkin verran ja sukupuolihormoneilla uskotaan olevan vahva yhteys lihasvoiman laskuun ikääntymisen myötä. Estrogeenin ja progesteronin vaikutuksia naisten lihasvoimaan ei vielä kattavasti tunneta. Lihaksen toiminnan ja voiman välityksen kannalta…

akillesjänneestrogeenitnaisetvaihdevuodetultraäänikuvantaminenkantajänneestrogeeni
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Advancing the ecotoxicological relevancy of zebrafish : application of early-juvenile 20dpfZF to assess xenoestrogenicity of environmental chemicals …

2014

aromataseekotoksikologiaestrogeenitsukupuolihormonitin vivo early life-stagesukupuolen määräytyminenestrogenicityin vivo -menetelmäseeprakalazebrafishvitellogeninteollisuuskemikaalithormonaaliset vaikutukset
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Estradiol deficiency and skeletal muscle apoptosis: Possible contribution of microRNAs.

2020

Background Menopause leads to estradiol (E2) deficiency that is associated with decreases in muscle mass and strength. Here we studied the effect of E2 deficiency on miR-signaling that targets apoptotic pathways. Methods C57BL6 mice were divided into control (normal estrous cycle, n = 8), OVX (E2 deficiency, n = 7) and OVX + E2 groups (E2-pellet, n = 4). Six weeks following the OVX surgery, mice were sacrificed and RNA isolated from gastrocnemius muscles. miR-profiles were studied with Next-generation sequencing (NGS) and candidate miRs verified using qPCR. The target proteins of the miRs were found using in silico analysis and measured at mRNA (qPCR) and protein levels (Western blot). Resu…

estrogeenit0301 basic medicineestradioliAgingmedicine.medical_specialtyvaihdevuodetcaspasemenopauseApoptosisBiochemistryArticlehormonaaliset tekijät03 medical and health sciencesMicecytochrome C0302 clinical medicineEndocrinologyWestern blotInternal medicinemicroRNAGeneticsmedicineAnimalsMuscle SkeletalMolecular BiologyCaspaseEstrous cycleMessenger RNAmedicine.diagnostic_testbiologyEstradiolsytokromitRNASkeletal muscleCell BiologyMice Inbred C57BLMicroRNAsovariectomy030104 developmental biologyEndocrinologymedicine.anatomical_structuremuscle masslihasmassaApoptosisbiology.proteinFemalemikro-RNAhormones hormone substitutes and hormone antagonists030217 neurology & neurosurgeryExperimental gerontology
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Aging of the musculoskeletal system: How the loss of estrogen impacts muscle strength.

2019

Skeletal muscle weakness occurs with aging and in females this is compounded by the loss of estrogen with ovarian failure. Estrogen deficiency mediates decrements in muscle strength from both inadequate preservation of skeletal muscle mass and decrements in the quality of the remaining skeletal muscle. Processes and components of skeletal muscle that are affected by estrogens are beginning to be identified. This review focuses on mechanisms that contribute to the loss of muscle force generation when estrogen is low in females, and conversely the maintenance of strength by estrogen. Evidence is accumulating that estrogen deficiency induces apoptosis in skeletal muscle contributing to loss of…

estrogeenit0301 basic medicinemedicine.medical_specialtyAgingProteasome Endopeptidase ComplexHistologyPhysiologymedicine.drug_classEndocrinology Diabetes and Metabolism030209 endocrinology & metabolismApoptosisArticle03 medical and health sciences0302 clinical medicineInternal medicineestrogenmedicineHumansMuscle Strengthskeletal muscleta315Muscle SkeletalMuscle forcebusiness.industryagingOvarian failureUbiquitinationSkeletal muscleta3141Estrogensmedicine.diseaseGenerating capacityikääntyminen030104 developmental biologymedicine.anatomical_structureEndocrinologyEstrogenSarcopeniaMuscle strengthEstrogenic EffectsFemalestrengthbusinesshormones hormone substitutes and hormone antagonistslihasvoimaBone
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Design and protocol of Estrogenic Regulation of Muscle Apoptosis (ERMA) study with 47 to 55-year-old women's cohort : novel results show menopause-re…

2018

Objective: The multidisciplinary Estrogenic Regulation of Muscle Apoptosis (ERMA) study was designed to reveal how hormonal differences over the menopausal stages affect the physiological and psychological functioning of middle-aged women. This paper describes the protocol and nonrespondent analysis of ERMA and novel findings on menopausal differences in blood count variables and their association with female sex hormones. Methods: Women aged 47 to 55 years were assigned to pre, early peri, late peri, and postmenopausal groups based on follicle-stimulating hormone (FSH) and bleeding diary. Multivariate linear regression models were constructed to estimate the association of 17b-estradiol (E…

estrogeenit17b-Estradiolestradioliohjelmoitunut solukuolemavalkosolutvaihdevuodetneutrophil-to-lymphocyte ratioFSHblood viscosityleucocyte countlihaskuntomenopausal status
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Estrogen regulates muscle bioenergetic signaling

2018

estrogeenitAgingvaihdevuodetBioenergeticsmedicine.drug_classmenopauseBiologyta3111estrogenic regulation03 medical and health sciences0302 clinical medicinemitochondrial functionmedicinelihassolutbioenergetiikkamuscle proteome030304 developmental biology0303 health sciencesta3141Cell Biologymedicine.diseaseCell biologyMuscle proteomeMenopauseikääntyminenEstrogen030220 oncology & carcinogenesisAging
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