Search results for "regeneration"

showing 10 items of 889 documents

Bone Regeneration and Soft Tissue Enhancement Around Zygomatic Implants: Retrospective Case Series

2020

Purpose: To present a case series of zygomatic implants combined with bone regeneration and soft tissue enhancement techniques to reduce the risk of biological delayed complications such as maxillary sinusitis and soft tissue recession. Materials and methods: Zygomatic implants placed simultaneously with different bone regeneration techniques (buccal, palatal and buccal-palatal bone regeneration) and soft tissue enhancement techniques (pediculate and free connective tissue graft) were followed for at least 12 months. The following information was collected: patient age and sex, number of zygomatic implants, zygomatic implant success rate, zygomatic implant position according to classificati…

Perforation (oil well)Connective tissueDentistry02 engineering and technologyBuccal mucosalcsh:TechnologyArticlezygomatic implant complications03 medical and health sciences0302 clinical medicinebone regenerationmedicineGeneral Materials Sciencesoft tissue regenerationBone regenerationSinusitislcsh:MicroscopySinus (anatomy)lcsh:QC120-168.85lcsh:QH201-278.5business.industrylcsh:TSoft tissue030206 dentistryBuccal administration021001 nanoscience & nanotechnologymedicine.diseasemedicine.anatomical_structurelcsh:TA1-2040zygomatic implantslcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologybusinesslcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials
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Mesenchymal dental stem cells in regenerative dentistry

2012

In the last decade, tissue engineering is a field that has been suffering an enormous expansion in the regenerative medicine and dentistry. The use of cells as mesenchymal dental stem cells of easy access for dentist and oral surgeon, immunosuppressive properties, high proliferation and capacity to differentiate into odontoblasts, cementoblasts, osteoblasts and other cells implicated in the teeth, suppose a good perspective of future in the clinical dentistry. However, is necessary advance in the known of growth factors and signalling molecules implicated in tooth development and regeneration of different structures of teeth. Furthermore, these cells need a fabulous scaffold that facility t…

Periodontal ligament stem cellsDentistryOdontologíaStem cellsRegenerative MedicineRegenerative medicineRegenerative dentistrystomatognathic systemTissue engineeringDental pulp stem cellsBiomaterials and Bioengineering in DentistryHumansMedicineTissue engineeringGeneral DentistryDental folliclebusiness.industryRegeneration (biology)Mesenchymal stem cellReview-Article:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludCell biologystomatognathic diseasesOtorhinolaryngologyDental stem cellsDentistryUNESCO::CIENCIAS MÉDICASMesenchymal stem cellsSurgeryStem cellbusinessToothMedicina Oral Patología Oral y Cirugia Bucal
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Histologic Evaluation of Human Intrabony Defects Following Non-Surgical Periodontal Therapy With and Without Application of an Enamel Matrix Protein …

2003

Background: Surgical periodontal treatment with enamel matrix protein derivative (EMD) has been shown to promote periodontal regeneration. However, it is not known whether nonsurgical periodontal therapy with additional subgingival application of EMD may also enhance periodontal regeneration. The purpose of this study was to clinically and histologically evaluate healing of human intrabony defects following non-surgical periodontal treatment with and without application of EMD. Methods: Sixteen patients, each of whom displayed one advanced intrabony defect around teeth or roots scheduled for extraction, were included in the study. The defects were treated as follows: 1) scaling and root pla…

Periodontal treatmentBone RegenerationRoot surfaceUltrasonic Therapymedicine.medical_treatmentAlveolar Bone LossEpithelial AttachmentJunctional epitheliumDentistryScaling and root planingDental Enamel ProteinsPeriodontal Attachment LossEnamel matrix derivativemedicineHumansTreatment FailureReduction (orthopedic surgery)Enamel paintbusiness.industryRegeneration (biology)visual_artvisual_art.visual_art_mediumDental ScalingPeriodonticsPeriodontal IndexbusinessJournal of Periodontology
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In vitro and in vivo investigations of osteogenic differentiation ability of dental pulp stem cells (DPSCs) and gingival mesenchymal stem cells (GMSC…

2020

Thanks to the use of human mesenchymal stem cells (hMSCs), smart biomaterials and active biomolecules, Regenerative Medicine (RM) and Bone Tissue Engineering (BTE) can restore structure and function of injured tissues. Among the different sources of hMSCs, the oro-facial hMSCs have promising in vitro and in vivo regeneration potential; in particular, dental pulp and gingiva are valuable sources of autologous hMSCs. The aim of this PhD thesis is testing the in vitro and in vivo bone regeneration ability of hMSCs isolated from dental pulp and inflamed gingiva of periodontally-compromised teeth, up to now considered biological waste tissues and discarded during surgical procedures, on two comm…

Periodontitis bone resorption oral MSCs DPSCs GMSCs waste biological tissues periodontally-compromised teeth FISIOGRAFT Bone Granular® Matriderm® autologous bone tissue regenerationSettore MED/28 - Malattie Odontostomatologiche
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Cell therapy of periodontium: from animal to human?

2013

Periodontitis is a chronic inflammatory disease affecting the soft and hard tissues supporting the teeth, which often leads to tooth loss. Its significant impact on the patient's general health and quality of life point to a need for more effective management of this condition. Existing treatments include scaling/root planning and surgical approaches but their overall effects are relatively modest and restricted in application. The goal of regenerative therapy of periodontal defects is to enhance endogenous progenitors and thus promote optimal wound healing. Considering that the host or tissue might be defective in the periodontitis context, it has been proposed that grafting exogenous stem…

Periodontitislcsh:QP1-981clinical trials as topicbusiness.industryPhysiologyRegeneration (biology)DentistryContext (language use)Periodontiummedicine.diseaseBioinformaticsRegenerative medicinelcsh:PhysiologyCell therapyMini Review Articlebone regenerationPhysiology (medical)tissue engineeringmedicineStem cellbusinessBone regenerationmesenchymal stromal cellsperiodontitisFrontiers in Physiology
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Immunohistochemical evaluation of matrix molecules associated with wound healing following treatment with an enamel matrix protein derivative in huma…

2003

Application of enamel matrix protein derivative (EMD) onto a debrided and conditioned root surface has been shown to promote periodontal regeneration in animals and humans. However, until now there is virtually no information from humans describing the expression of different matrix molecules in the newly formed periodontal tissues following treatment with EMD. This study investigated immunohistochemically in humans the expression of matrix molecules associated with periodontal tissues reformed after treatment with EMD. Eight patients with intrabony defects were treated with EMD. Six months after surgery teeth together with some of their surrounding soft and hard tissues were removed, fixed…

PeriodontiumPathologymedicine.medical_specialtyBone RegenerationPeriodontal LigamentSialoglycoproteinsAlveolar Bone LossMedizinMatrix (biology)Collagen Type I03 medical and health sciencesCollagen Type III0302 clinical medicineDental Enamel ProteinsAlveolar ProcessmedicineHumansRegenerationPeriodontal fiberCementumBone regenerationGeneral DentistryDental alveolus030304 developmental biologyDental CementumExtracellular Matrix ProteinsWound Healing0303 health sciencesChemistry030206 dentistryAnatomyPhosphoproteinsImmunohistochemistryCollagen Type IIImedicine.anatomical_structureConnective TissueGuided Tissue Regeneration PeriodontalOsteopontinBone RemodelingDental cementumWound healingClinical Oral Investigations
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THe role of autologous nerve fragments implantation in enhancing peripheral nerve regeneration

2014

ntroduction: The aim of this study was to assess the effect of seeding a nerve suture with autologous nerve fragments. Our hypothesis is that the fragments could improve axonal regeneration. Back to Top | Article Outline Material and Methods: On 20 Sprague-Dawley rats a 15mm sciatic nerve defect was created and grafted. In the study group (n=10) a 1mm nerve segment was minced and seeded around the distal suture. In the control group (n=10) no fragments were seeded. Rats were sacrificed at 4 (n= 10) and 12 weeks (n= 10) and number of regenerated fibers, fiber area and density, Soleus and Gastrocnemius muscles mass indexes, and walking track analysis in the 12 weeks group were evaluated. The …

Peripheral nerve regenerationschwann cellsnerve graft
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Preface to special issue on "Peripheral Nerve Repair and Regeneration"

2015

Editorial

Peripheral nervebusiness.industryRegeneration (biology)Free accessSettore MED/19 - Chirurgia PlasticaMedicinebusinessNeurosciencenerve repair nerve regeneration
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Strategies targeting fibrosis in pulmonary disease

2006

Pulmonary fibrosis is potentially a curable disease, but this potential is dependent on correct identification of disease targets at the research stage. While invaluable work has been done in animal models to identify factors involved in the initiation of fibrogenesis, we must now shift our focus towards identifying factors involved in the chronic progression of fibrosis and how to modulate the progressive nature of the disease towards repair or regeneration of non-functioning pulmonary tissue.

PharmacologyPathologymedicine.medical_specialtybusiness.industryRegeneration (biology)Pulmonary diseaseDiseasemedicine.diseaseBioinformaticsFibrosisDrug DiscoveryPulmonary fibrosismedicineMolecular MedicinebusinessDrug Discovery Today: Therapeutic Strategies
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Polarity and bioelectrical patterning in a linear chain of non-excitable cells

2020

Abstract Polarity in multicellular systems is influenced by bioelectrical signals because electric potentials can act as spatio-temporal patterns for other biochemical processes that eventually emerge as long-lasting biological outcomes. We study the role of the electric potential in establishing head-tail polarity for the case of a chain of non-excitable cells. This biophysical model incorporates both single-cell (membrane ion channels) and multicellular (intercellular gap junctions) characteristics. The results are presented in the form of a bioelectrical phase space that complements traditional biochemical approaches and provides qualitative insights for the case of anterior/posterior po…

PhysicsPolarity (physics)Regeneration (biology)Gap junctionGeneral Physics and Astronomy01 natural sciences010305 fluids & plasmasSynthetic biologyMulticellular organismChain (algebraic topology)0103 physical sciencesBiophysicsElectric potential010306 general physicsIon channelPhysics Letters A
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