Search results for "Bone defects"

showing 4 items of 4 documents

Amorphous, Smart, and Bioinspired Polyphosphate Nano/Microparticles: A Biomaterial for Regeneration and Repair of Osteo-Articular Impairments In-Situ

2018

Using femur explants from mice as an in vitro model, we investigated the effect of the physiological polymer, inorganic polyphosphate (polyP), on differentiation of the cells of the bone marrow in their natural microenvironment into the osteogenic and chondrogenic lineages. In the form of amorphous Ca-polyP nano/microparticles, polyP retains its function to act as both an intra- and extracellular metabolic fuel and a stimulus eliciting morphogenetic signals. The method for synthesis of the nano/microparticles with the polyanionic polyP also allowed the fabrication of hybrid particles with the bisphosphonate zoledronic acid, a drug used in therapy of bone metastases in cancer patients. The r…

0301 basic medicineBone Regenerationlong bone defects; bone marrow cells; inorganic polyphosphate; microparticles; bisphosphonates; <i>Runx2</i>; <i>Sox9</i>; cathepsin-K; tumor metastases; human mesenchymal stem cellsmedicine.medical_treatmentBiocompatible MaterialsCore Binding Factor Alpha 1 SubunitZoledronic Acidlcsh:ChemistryMiceRunx2OsteogenesisPolyphosphatesFemurlcsh:QH301-705.5tumor metastasesSpectroscopymicroparticlescathepsin-KDiphosphonatesTissue ScaffoldsChemistryImidazolesBiomaterialSOX9 Transcription FactorGeneral MedicineUp-RegulationComputer Science ApplicationsCell biologyRUNX2medicine.anatomical_structureinorganic polyphosphateChondrogenesisSox9medicine.drugArticleCatalysisChondrocyteInorganic Chemistryhuman mesenchymal stem cells03 medical and health sciencesOsteoclastmedicineAnimalsHumansPhysical and Theoretical Chemistrybone marrow cellsbisphosphonatesMolecular BiologyOrganic ChemistryMesenchymal stem cellMesenchymal Stem CellsBisphosphonateRatslong bone defects030104 developmental biologyZoledronic acidlcsh:Biology (General)lcsh:QD1-999Gene Expression RegulationNanoparticlesBone marrowInternational Journal of Molecular Sciences
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Skull Bone Defects Reconstruction with Custom-Made Titanium Graft shaped with Electron Beam Melting Technology: Preliminary Experience in a Series of…

2017

Background: Cranioplasty represents a challenge in neurosurgery. Its goal is not only plastic reconstruction of the skull but also to restore and preserve cranial function, to improve cerebral hemodynamics, and to provide mechanical protection of the neural structures. The ideal material for the reconstructive procedures and the surgical timing are still controversial. Many alloplastic materials are available for performing cranioplasty and among these, titanium still represents a widely proven and accepted choice. Methods: The aim of our study was to present our preliminary experience with a “custom-made” cranioplasty, using electron beam melting (EBM) technology, in a series of ten patien…

AdultMaleDecompressive Craniectomymedicine.medical_treatmentchemistry.chemical_elementDentistryNeurosurgical ProceduresCranioplasty030218 nuclear medicine & medical imagingProsthesis Implantation03 medical and health sciencesImaging Three-Dimensional0302 clinical medicineFreezingElectron beam melting technologymedicineHumansSkull boneReconstructive Surgical ProceduresCustom-made titanium implantsAgedRetrospective StudiesTitaniumSettore MED/27 - Neurochirurgiabusiness.industrySkullMiddle AgedCranioplastySkullmedicine.anatomical_structurechemistry3D computer-aided design and computer-aided manufacturing (CAD/CAM) technologiesCerebral hemodynamicsComputer-Aided DesignFemaleSkull bone defectsTomography X-Ray Computedbusiness030217 neurology & neurosurgeryTitaniumBiomedical engineering
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The challenges of monoaxial bone transport in orthopedics and traumatology

2017

Background. Bone defects represent the main challenging problem for the orthopedic surgeon and, consequently, they increase the duration of hospitalization, risk of complications and health expenditures. The aim of our observational, descriptive and retrospective study is to evaluate the outcomes of patients treated with a mo­nolateral external fixator for bone defects greater than 3 cm. Material and methods. Between January 2003 and January 2013, 21 patients were treated at our center by bone transfer with a monolateral external fixator. The main etiologies were trauma in 17 cases (80.9%) and tumors in 4 cases (19.1%). Mean follow-up was 5 years for non-union and 3 years for tumors. Our cl…

AdultMalemedicine.medical_specialtyAdolescentExternal Fixatorsmedicine.medical_treatmentMonolateral external fixationTraumatologyIlizarov TechniqueBone NailsBone InfectionBone defects; Bone infection; Bone transport; Monolateral external fixation; Skeletal tumor;03 medical and health sciencesExternal fixationYoung Adult0302 clinical medicinemedicineHumansOrthopedics and Sports MedicineOrthopedic ProceduresRetrospective StudiesSkeletal tumorbusiness.industryRehabilitationBone transportRetrospective cohort studyMiddle AgedSurgeryTibial FracturesOrthopedicsTreatment OutcomeAmputationTraumatology030220 oncology & carcinogenesisOrthopedic surgeryObservational studyFemaleSplint (medicine)businessBone defects030217 neurology & neurosurgeryBone infection
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Pulsed radiofrequency energy device (PEAK plasmablade™) and CustomBone® Cranioplasty: an appealing surgical rendez-vous

2019

Background: CustomBone® prosthesis is a widely recognized effective and successful technique for the reconstruction of cranial bone defects. Prior the cranioplasty implant, meticulous dissection wi...

medicine.medical_specialtybusiness.industryPulsed radiofrequencymedicine.medical_treatmentCranial bone defectsGeneral MedicineDissection (medical)medicine.diseaseCranioplastyProsthesisEnergy deviceSurgery03 medical and health sciences0302 clinical medicine030220 oncology & carcinogenesismedicineSurgeryNeurology (clinical)Implantbusiness030217 neurology & neurosurgeryBritish Journal of Neurosurgery
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