0000000000670150

AUTHOR

Reeta Kangas

showing 9 related works from this author

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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Declining Physical Performance Associates with Serum FasL, miR-21, and miR-146a in Aging Sprinters.

2016

Aging is associated with systemic inflammation and cellular apoptosis accelerating physiological dysfunctions. Whether physically active way of life affects these associations is unclear. This study measured the levels of serum inflammatory and apoptotic molecules, their change over 10 years, and their associations with physical performance in sprint-trained male athletes. HsCRP, cell counts, HGB, FasL, miR-21, and miR-146a were measured cross-sectionally (n=67, 18–90 yrs) and serum FasL, miR-21, and miR-146a and their aging-related associations with physical performance were assessed over a 10-year follow-up (n=49, 50–90 yrs). The cross-sectional study showed positive age correlations for …

0301 basic medicineMaleAgingCelllcsh:MedicineSystemic inflammationBench pressFas ligandRunning0302 clinical medicineYoung adultpikajuoksijatAged 80 and overta3141General Medicineinflammatory responseMiddle Agedmedicine.anatomical_structuremedicine.symptomInflammation MediatorsResearch ArticleAdultmedicine.medical_specialtyFas Ligand ProteinArticle SubjectAdolescentGeneral Biochemistry Genetics and Molecular Biologysprinters03 medical and health sciencesYoung AdultInternal medicinemedicineHumansAgedGeneral Immunology and Microbiologybusiness.industryaginglcsh:R030229 sport sciencesphysical performanceCirculating MicroRNAMicroRNAs030104 developmental biologyEndocrinologyCross-Sectional StudiesPhysical performanceApoptosisPhysical FitnessImmunologybusinessBiomarkersFollow-Up StudiesBioMed research international
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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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Aging and serum exomiR content in women-effects of estrogenic hormone replacement therapy.

2017

AbstractExosomes participate in intercellular messaging by transporting bioactive lipid-, protein- and RNA-molecules and -complexes. The contents of the exosomes reflect the physiological status of an individual making exosomes promising targets for biomarker analyses. In the present study we extracted exosome microRNAs (exomiRs) from serum samples of premenopausal women (n = 8) and monozygotic postmenopausal twins (n = 10 female pairs), discordant for the use of estrogenic hormone replacement therapy (HRT), in order to see whether the age or/and the use of HRT associates with exomiR content. A total of 241 exomiRs were detected by next generation sequencing, 10 showing age, 14 HRT and 10 a…

0301 basic medicineMICRORNASTranscriptomeMedicineGene Regulatory NetworksMultidisciplinaryEstradiolmicroRNAEstrogen Replacement TherapyEndocrine system and metabolic diseasesHigh-Throughput Nucleotide Sequencingta3141Middle AgedMenopausePostmenopauseDISCORDANTPOSTMENOPAUSAL WOMENTransgender hormone therapymiRNAsBiomarker (medicine)SKELETAL-MUSCLEFemaleAdultEXPRESSIONmedicine.medical_specialtyMENOPAUSEBODY-COMPOSITIONexosomesta3111ExosomeArticleestrogenic hormone replacement therapy03 medical and health sciencesBreast cancerInternal medicineHumansBREAST-CANCERbusiness.industryta1184Gene Expression ProfilingReproducibility of Resultsbiomarkersmedicine.diseaseGene expression profilingMONOZYGOTIC TWIN PAIRS030104 developmental biologyEndocrinologyPremenopauseCELLSNext-generation sequencing3111 Biomedicinemikro-RNAbusinessTranscriptomeHormone
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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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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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Aging and microRNA messaging : associations with systemic estrogen levels and physical performance

2018

This thesis took an innovative approach, which involved methodological development, to investigate microRNAs as candidate molecules and as genome-wide regulators of age, menopausal status and physical condition in both sexes. The focus was on potential serum microRNAs indicative of age, pre- or postmenopausal status, with or without estrogen- based hormone replacement therapy (HRT), and long-term physical training. MicroRNA associations with adiposity and inflammatory markers were also analyzed. Three different study designs were used: 1) the SAWEs study comprised healthy postmenopausal monozygotic twin sisters (n=11, 54-62 years) with discordance for HRT and premenopausal women (n=30, 20-4…

estrogeenitsuorituskykymicroRNAvaihdevuodetagingmenopausephysical performancehormone replacement therapyikääntyminenseerumiestrogenhormonihoitomikro-RNAgerontologiaserum
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Physical activity responsive miRNAs — Potential mediators of training responses in human skeletal muscle?

2013

mikroRNAphysical activitymikro-RNAfyysinen aktiivisuus
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