Search results for "Bone resorption"

showing 10 items of 92 documents

miR-29b negatively regulates human osteoclastic cell differentiation and function: Implications for the treatment of multiple myeloma-related bone di…

2013

Skeletal homeostasis relies upon a fine tuning of osteoclast (OCLs)-mediated bone resorption and osteoblast (OBLs)-dependent bone formation. This balance is unsettled by multiple myeloma (MM) cells, which impair OBL function and stimulate OCLs to generate lytic lesions. Emerging experimental evidence is disclosing a key regulatory role of microRNAs (miRNAs) in the regulation of bone homeostasis suggesting the miRNA network as potential novel target for the treatment of MM-related bone disease. Here, we report that miR-29b expression decreases progressively during human OCL differentiation in vitro. We found that lentiviral transduction of miR-29b into OCLs, even in the presence of MM cells,…

Bone diseasePhysiologyCellular differentiationCathepsin KClinical BiochemistryGene ExpressionOsteoclastsOsteolysisMMP9Cathepsin KCells CulturedTartrate-resistant acid phosphataseTumorCulturedReceptor Activator of Nuclear Factor-kappa BGenes fosCell DifferentiationOsteoblastCell biologyIsoenzymesmultiple myelomamedicine.anatomical_structureMatrix Metalloproteinase 9osteoclastMatrix Metalloproteinase 2medicine.medical_specialtyfosCellsAcid PhosphataseBiologyCollagen Type IBone resorptionCell LineOsteoclastCell Line TumorInternal medicinemedicineHumansBone ResorptionOsteoblastsmicroRNA.NFATC Transcription FactorsTartrate-Resistant Acid PhosphatasemiR-29bCell Biologymedicine.diseaseActinsMicroRNAsEndocrinologyGenesAcid Phosphatase; Actins; Bone Resorption; Cathepsin K; Cell Differentiation; Cell Line Tumor; Cells Cultured; Collagen Type I; Gene Expression; Genes fos; Humans; Isoenzymes; Matrix Metalloproteinase 2; Matrix Metalloproteinase 9; MicroRNAs; Multiple Myeloma; NFATC Transcription Factors; Osteoblasts; Osteoclasts; Osteolysis; Receptor Activator of Nuclear Factor-kappa BJournal of Cellular Physiology
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Randomized, Double-Blind, Clinically Controlled Trial of Intranasal Calcitonin Treatment in Patients with Hip Fracture

2002

The objective of this study was to evaluate the short-term outcome of intranasal calcitonin treatment of elderly hip fracture patients on pain, bone loss, functional recovery, and length of hospital stay. In addition, we wanted to compare the effect of calcitonin with placebo on fusion of hip fractures treated with internal fixation using a screw or a nail. In a randomized, double-blind, clinically controlled trial, 260 independently living patients (aged 65 years or older) with acute hip fracture were randomly assigned to intranasal calcitonin 200 IU daily for 3 months or matching placebo nasal spray. Analyses were completed on an intention-to-treat basis. Three months after the operation,…

CalcitoninMalemedicine.medical_specialtyVisual analogue scaleEndocrinology Diabetes and Metabolismmedicine.medical_treatmentOsteoporosisPainPlacebolaw.inventionFracture Fixation InternalEndocrinologyDouble-Blind MethodRandomized controlled trialBone DensitylawActivities of Daily LivingFracture fixationmedicineHumansInternal fixationOrthopedics and Sports MedicineBone ResorptionAdministration IntranasalOsteoporosis PostmenopausalAgedPain MeasurementAged 80 and overFracture HealingHip fractureHip Fracturesbusiness.industryLength of Staymedicine.diseaseSurgeryCalcitoninFemalebusinessCalcified Tissue International
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Induction of carbonic anhydrase in SaOS-2 cells, exposed to bicarbonate and consequences for calcium phosphate crystal formation.

2013

Ca-phosphate/hydroxyapatite crystals constitute the mineralic matrix of vertebrate bones, while Ca-carbonate dominates the inorganic matrix of otoliths. In addition, Ca-carbonate has been identified in lower percentage in apatite crystals. By using the human osteogenic SaOS-2 cells it could be shown that after exposure of the cells to Ca-bicarbonate in vitro, at concentrations between 1 and 10 mm, a significant increase of Ca-deposit formation results. The crystallite nodules formed on the surfaces of SaOS-2 cells become denser and larger in the presence of bicarbonate if simultaneously added together with the mineralization activation cocktail (β-glycerophosphate/ascorbic acid/dexamethason…

Calcium Phosphatesmedicine.drug_classBicarbonateBiophysicschemistry.chemical_elementBioengineering02 engineering and technologyAscorbic AcidCalciumDexamethasoneCell LineBiomaterials03 medical and health scienceschemistry.chemical_compoundCarbonic anhydrasemedicineEscherichia coliHumansCarbonic anhydrase inhibitorBone ResorptionCarbonic Anhydrase InhibitorsSaos-2 cells030304 developmental biologyCarbonic Anhydrases0303 health sciencesbiologyX-RaysGene Expression Regulation Developmental021001 nanoscience & nanotechnologyPhosphateAscorbic acidUp-RegulationAcetazolamideBicarbonatesMicroscopy ElectronchemistryBiochemistryMechanics of MaterialsGlycerophosphatesCeramics and Compositesbiology.protein0210 nano-technologyAcetazolamidemedicine.drugBiomaterials
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PO-146 Multiple myeloma-derived exosomes carry amphiregulin and are responsible for the uncoupled bone remodelling

2018

Introduction Multiple myeloma (MM) is a hematologic malignancy associated with osteolytic bone disease caused by the perturbation of the functional balance between bone resorption and bone formation. Exosomes, nanosize lipoproteic structures, have been recently recognised as a new mechanism of cell to cell communication during tumour growth and progression. We have previously shown that MM-exosomes are involved in osteolytic lesions but the underlying mechanism is still understood. We hypothesise that the epidermal growth factor receptor ligand Amphiregulin (AREG) can be delivered by multiple myeloma-derived exosomes and participate in modulating the response of the bone microenvironment to…

Cancer ResearchChemistryMesenchymal stem cellExosomeBone resorptionMicrovesiclesBone remodelingmedicine.anatomical_structureOncologyAmphiregulinCell cultureOsteoclastmedicineCancer researchESMO Open
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Isopropanolic Cimicifuga racemosa is favorable on bone markers but neutral on an osteoblastic cell line

2009

Postmenopausal women treated with an isopropanolic extract of Cimicifuga racemosa underwent a decrease in the urinary concentration of N-telopeptides, a marker of bone resorption, and an increase in alkaline phosphatase, a marker of bone formation, at the third month of therapy. Serum from treated women did not modify the activity of alkaline phosphatase or the expression of three genes, runt-related transcription factor-2 (Runx-2), alkaline phosphatase, and osteocalcin, when added to the MC3T3-E1 osteoblastic cell line.

Cimicifugamedicine.medical_specialtyOsteocalcinCore Binding Factor Alpha 1 SubunitOsteoblastic cellBone and BonesCollagen Type IBone resorptionCell Line2-PropanolMiceOsteogenesisInternal medicinemedicineAnimalsHumansProspective StudiesBone ResorptionOsteoblastsbiologyPlant Extractsbusiness.industryCimicifuga racemosaBone markersObstetrics and GynecologyOsteoblastAlkaline PhosphatasePostmenopauseEndocrinologymedicine.anatomical_structureReproductive MedicineCell cultureOsteocalcinbiology.proteinAlkaline phosphataseFemalePeptidesbusinessBiomarkersPhytotherapyFertility and Sterility
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Terpenoid treatment in osteoporosis: this is where we have come in research.

2021

Lower bone resistance to load is due to the imbalance of bone homeostasis, where excessive bone resorption, compared with bone formation, determines a progressive osteopenia, leading to a high risk of fractures and consequent pain and functional limitations. Terpenoids, with their activities against bone resorption, have recently received increased attention from researchers. They are potentially more suitable for long-term use compared with traditional therapeutics. In this review of the literature of the past 5 years, we provide comprehensive information on terpenoids, with their anti-osteoporotic effects, highlighting molecular mechanisms that are often in epigenetic key and a possible p…

Endocrinology Diabetes and MetabolismOsteoporosisBioinformaticsBone resorptionBone and BonesFractures BoneEndocrinologyOsteoclastterpenoidsSettore BIO/13 - Biologia ApplicataSettore BIO/10 - Biochimicamedicinebone erosive diseasesHumansBone formationBone ResorptionProgressive osteopeniaepigeneticsbusiness.industryTerpenesOsteoporosis preventionOsteoblastmedicine.diseaseSettore BIO/18 - Geneticamedicine.anatomical_structureosteoclastosteoblastOsteoporosisbusinessTrends in endocrinology and metabolism: TEM
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Non-flavonoid polyphenols in osteoporosis: preclinical evidence

2021

The development of progressive osteopenia and osteoporosis (OP) is due to the imbalance between bone resorption and bone formation, determining a lower bone resistance, major risks of fractures, with consequent pain and functional limitations. Flavonoids, a class of polyphenols, have been extensively studied for their therapeutic activities against bone resorption, but less attention has been given to a whole series of molecules belonging to the polyphenolic compounds. However, these classes have begun to be studied for the treatment of OP. In this systematic review, comprehensive information is provided on non-flavonoid polyphenolic compounds, and we highlight pathways implicated in the ac…

Endocrinology Diabetes and MetabolismOsteoporosisFlavonoid030209 endocrinology & metabolismBioinformaticsBone resorption03 medical and health sciences0302 clinical medicineEndocrinologypolyphenolic compoundsSettore BIO/13 - Biologia ApplicataOsteogenesisSettore BIO/10 - Biochimicabone erosive diseasesHumansMedicineBone formationBone ResorptionProgressive osteopeniaFlavonoidschemistry.chemical_classificationepigeneticsbusiness.industryPolyphenolsfood and beveragesmedicine.diseaseSettore BIO/18 - GeneticachemistryPolyphenolosteoclastosteoblastOsteoporosisbusinessTrends in Endocrinology & Metabolism
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Flavonoids in Bone Erosive Diseases: Perspectives in Osteoporosis Treatment

2020

Imbalance of bone homeostasis, with excessive bone resorption compared with bone formation, leads to the development of progressive osteopenia leading to lower bone resistance to load, with consequent pain and functional limitations. Phytochemicals with therapeutic and preventive effects against bone resorption have recently received increasing attention since they are potentially more suitable for long-term use than traditional therapeutic chemical compounds. In this systematic review of the literature of the past 5 years, comprehensive information is provided on flavonoids with potential antiresorption and pro-osteogenic effects. It aims to highlight the molecular mechanisms of these mole…

Endocrinology Diabetes and MetabolismOsteoporosisOsteoclasts030209 endocrinology & metabolismBioinformaticsBone resorption03 medical and health sciences0302 clinical medicineEndocrinologyOsteoclastSettore BIO/13 - Biologia ApplicataSettore BIO/10 - BiochimicaOsteoporosis treatmentbone erosive diseasesMedicineAnimalsHumansEpigeneticsProgressive osteopeniaOsteoblastsbusiness.industrySettore BIO/16 - Anatomia UmanaOsteoblastmedicine.diseaseosteoporosisSettore BIO/18 - Geneticamedicine.anatomical_structureflavonoidsosteoclastosteoblastbusinessHomeostasisepigenetic
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Preventive effect of risedronate on bone loss and frailty fractures in elderly women treated with anastrozole for early breast cancer.

2011

The aim of this study was to assess the effect of adjuvant anastrozole, alone or associated with risedronate, on BMD and bone fracture risk in women more than 70 years old with hormone receptor-positive early breast cancer (EBC). In a group of 51 elderly women (aged 76.4 ± 5.0 years) considered for adjuvant aromatase inhibitors for EBC, 24 patients with T-scores ≥ -2 and no prevalent fractures received anastrozole 1 mg/day (group A), and 27 patients with T-scores < -2, or with T-scores ≥ -2 and prevalent fractures (group B), received anastrozole (1 mg/day) plus risedronate (35 mg/week). Both groups received supplementation with 1 g calcium carbonate and 800 IU vitamin D per day. Differen…

Endocrinology Diabetes and MetabolismOsteoporosisSeverity of Illness IndexCohort StudiesEndocrinologyBone DensityOrthopedics and Sports MedicineVitamin DAromataseOsteoporosis PostmenopausalAged 80 and overBone Density Conservation AgentsbiologyAromatase InhibitorsEtidronic AcidGeneral MedicineCombined Modality Therapymedicine.anatomical_structureFemaleRisedronic Acidmedicine.drugmusculoskeletal diseasesmedicine.medical_specialtyAntineoplastic Agents HormonalUrologyAnastrozoleBreast NeoplasmsAnastrozoleCalcium CarbonateNitrilesmedicineVitamin D and neurologyHumansBone ResorptionAgedNeoplasm StagingFemoral neckTrochanterbusiness.industryBone fractureTriazolesmedicine.diseaseSurgeryEarly breast cancer Anastrozole Osteoporosis Vertebral fractures ElderlyDietary SupplementsOrthopedic surgerybiology.proteinbusinessOsteoporotic FracturesFollow-Up Studies
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Effects of a Resistance Training Protocol on Physical Performance, Body Composition, Bone Metabolism, and Systemic Homeostasis in Patients Diagnosed …

2022

Parkinson’s disease (PD) is a neurodegenerative disorder characterized by motor impairments and it is correlated with loss of bone mineral density. This study aimed to analyze the effects of resistance training on bone metabolism, systemic homeostasis, body composition, and physical performance in people with PD. Thirteen subjects (age 64.83 ± 5.70) with PD diagnosis were recruited. Participants performed neuromuscular tests, body composition assessment, and blood sample analysis at baseline, and after an 11 weeks-training period. Each training session lasted 90 min, three times a week. The participants had significant improvements in the timed up and go (p < 0.01), sit to stand (p < …

Health Toxicology and MutagenesisOsteocalcinPublic Health Environmental and Occupational Healthphysical activityResistance TrainingParkinson DiseasePilot ProjectsMiddle AgedPhysical Functional Performanceosteogenesiphysical activity; neurodegenerative disease; resistance training; bone resorption; osteogenesis; osteoporosis; Parkinson’s diseaseneurodegenerative diseaseParkinson’s diseaseBody CompositionHumansHomeostasisosteoporosiCalciumVitamin Dbone resorptionAgedInternational Journal of Environmental Research and Public Health; Volume 19; Issue 20; Pages: 13022
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