Search results for "tissue regeneration"

showing 8 items of 58 documents

Non-cross-linked collagen type I/III materials enhance cell proliferation: in vitro and in vivo evidence

2014

Objective: To analyze Mucograft®(MG), a recently introduced collagen matrix, in vitro and in vivo, and compare it with BioGide®(BG), a well-established collagen membrane, as control. Material and Methods: A detailed analysis of the materials surface and ultra-structure was performed. Cellular growth patterns and proliferation rates of human fibroblasts on MG and BG were analyzed in vitro. In addition, the early tissue reaction of CD-1 mouse to these materials was analyzed by means of histological and histomorphometrical analysis. Results: MG showed a three-fold higher thickness both in dry and wet conditions, when compared to BG. The spongy surface of BG significantly differed from that of …

Time FactorsCell SurvivalSurface PropertiesCellBiocompatible MaterialsMatrix (biology)BiologyPeripheral blood mononuclear cellCollagen Type IIIMiceRandom AllocationCollagen type IIn vivoMaterials TestingmedicineAnimalsHumansddc:610Bone regenerationGeneral DentistryCells CulturedCell ProliferationGuided tissue regenerationCell growthReproducibility of ResultsAnatomyOriginal ArticlesFibroblastsCollagen type IIIMolecular biologyImmunohistochemistryIn vitroBone regenerationlcsh:RK1-715medicine.anatomical_structurelcsh:DentistryFemaleCollagenJournal of Applied Oral Science
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A versatile ultrasound system for in vitro experiments

2015

Objective One of the most difficult tasks to achieve with the available instrumentations used to study the interaction between ultrasound (US) and cellular model systems is to design an experiment, where only the effects of one physical parameter at a time is evaluated, while all the others are kept constant. The set-ups are usually custom-made, often by means of clinical instrument intended for a different therapeutic purpose. Furthermore, the results are not strictly comparable with others obtained with techniques considered standard in molecular and cellular biology at this time, because there is the need to use non-standard devices to contain biological samples. Sterility, as well as te…

Ultrasounddrug deliverymicrobubblein vitro experimentsonoporationtissue regeneration
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Editorial - Connecting the Dots: The Promises of Wharton's Jelly Mesenchymal Stem Cells for Tissue Repair and Regeneration

2011

Mesenchymal stem cells (MSC) constitute a variety of cellular populations which were described first about 35 years ago in the bone marrow (BM) stroma [1]. These years have foreseen an exponential increase of reports pointing out features, stemness, markers, tissue sources and clinical applications of these cells. Cells with MSC features can be isolated from virtually every adult organ in the body, as well from a group of fetus-associated sources (cells derived from the latter tissues are collectively known as perinatal stem cells) [2]. In recent years, the umbilical cord arose as a promising source of mesenchymal stem cells, which can be isolated in relatively high numbers (compared to BM)…

Wharton's jelly mesenchymal stem cells tissue regeneration regenerative medicine tissue engineering differentiation markers immune modulationSettore BIO/16 - Anatomia UmanaRegeneration (biology)Mesenchymal stem cellBiologyUmbilical cordEpitheliumCell biologyExtracellular matrixmedicine.anatomical_structureDevelopmental NeuroscienceWharton's jellymedicineBone marrowStem cellDevelopmental BiologyThe Open Tissue Engineering and Regenerative Medicine Journal
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The Crosstalk of Adipose-Derived Stem Cells (ADSC), Oxidative Stress, and Inflammation in Protective and Adaptive Responses

2020

International audience; The potential use of stem cell-based therapies for the repair and regeneration of various tissues and organs is a major goal in repair medicine. Stem cells are classified by their potential to differentiate into functional cells. Compared with other sources, adipose-derived stem cells (ADSCs) have the advantage of being abundant and easy to obtain. ADSCs are considered to be tools for replacing, repairing, and regenerating dead or damaged cells. The capacity of ADSCs to maintain their properties depends on the balance of complex signals in their microenvironment. Their properties and the associated outcomes are in part regulated by reactive oxygen species, which medi…

[SDV.BIO]Life Sciences [q-bio]/Biotechnologytissue protectionAdaptation BiologicalAdipose tissueInflammationReview[SDV.BC]Life Sciences [q-bio]/Cellular BiologyBiologymedicine.disease_causeAntioxidantsCatalysisInorganic Chemistrylcsh:Chemistry03 medical and health sciences0302 clinical medicineImmunitystem cellsmedicineAnimalsHumansoxidative stressSecretionPhysical and Theoretical ChemistryMolecular Biologylcsh:QH301-705.5Cells CulturedSpectroscopy030304 developmental biologyInflammation0303 health sciencesGuided Tissue RegenerationOrganic ChemistryMesenchymal Stem CellsGeneral MedicineOxidants3. Good healthComputer Science ApplicationsCell biologyadipose derived stem cellsCrosstalk (biology)Adipose Tissuelcsh:Biology (General)lcsh:QD1-999030220 oncology & carcinogenesisSecond messenger systemmedicine.symptomStem cellOxidative stress
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Controlling micro-structure to enhance de novo extracellular matrix deposition in elastomeric scaffolds for cardiac tissue regeneration

2012

extracellular matrix cardiac tissue regenerationmicro-structure
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Materials and prognostic factors of bone regeneration in periapical surgery: a systematic review

2013

Objectives: Analyse the effectiveness of different materials and techniques used in guided tissue regeneration (GTR) applied in periapical surgery, comparing the success rate obtained in 4-wall defects and in through-and-through bone lesions as well as to establish prognostic factors. Material and Methods: A Cochrane, PubMed-MEDLINE and Scopus database search (October 2012 to March 2013) was conducted with the search terms “periapical surgery”, “surgical endodontic treatment”, “guided tissue regeneration”, “bone regeneration”, “bone grafts”, “barrier membranes” and “periapical lesions” individually and next, using the Boolean operator “AND”. The inclusion criteria were the use of GTR (bone …

medicine.medical_specialtyBone RegenerationMEDLINEDentistryOdontologíaReviewmedicineHumansBone regenerationProspective cohort studyGeneral Dentistrybusiness.industryPeriapical DiseasesRegeneration (biology)Retrospective cohort studyPrognosis:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludSurgerySearch termsOtorhinolaryngologyBone lesionUNESCO::CIENCIAS MÉDICASGuided Tissue Regeneration PeriodontalSurgeryOral SurgerybusinessPeriapical surgery
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Neo-nervegenesis in 3D dynamic responsive implant for inguinal hernia repair. Qualitative study.

2020

Abstract Background Prosthetic repair of inguinal hernias is one of the most performed surgical procedures. Nevertheless, high rates of complications affect the surgical treatment. Implant fixation, poor-quality tissue ingrowth and mesh shrinkage seem to be involved in postoperative complications, discomfort and chronic pain following inguinal hernia repair. To address these issues a multilamellar shaped 3D dynamic responsive prosthesis has been developed. This new implant, positioned fixation-free to obliterate the hernia opening, thanks its inherent dynamic compliance during inguinal movements, has demonstrated to induce an enhanced biological response. The ingrowth of newly formed muscle…

medicine.medical_specialtyNeo-nervegenesimedicine.medical_treatmentConnective tissueArtificial LimbsHernia InguinalGroinProsthesisProsthesis Implantation03 medical and health sciences0302 clinical medicinePostoperative ComplicationsProstheseBiopsymedicineHumansHerniaTissue scaffoldsHerniorrhaphyQualitative ResearchGroinmedicine.diagnostic_testbusiness.industryInguinal herniaNerveGeneral MedicineSurgical Meshmedicine.diseaseHernia repairSurgerySettore MED/18 - Chirurgia GeneraleInguinal herniamedicine.anatomical_structure030220 oncology & carcinogenesisPrinting Three-DimensionalTissue regeneration030211 gastroenterology & hepatologySurgeryImplantbusinessInternational journal of surgery (London, England)
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Fixation free inguinal hernia repair with the 3D dynamic responsive prosthesis ProFlor: Features, procedural steps and long-term results

2019

Abstract Background Static and fixated meshes to repair mobile structures like the groin may seem a procedural incongruence. Inguinal hernia is described as a degenerative disease. Therefore, the objective of disease treatment should be the regeneration of wasted tissue. The fibrotic scar plate, a typical biologic response of conventional static meshes, does not represent tissue regeneration but rather a foreign body reaction. These contrasting aspects seem to be related to high complication rates of inguinal herniorrhaphy. Recent studies concerning the pathophysiology of the groin have led to the development of new concepts for repairing inguinal protrusions. A proprietary designed 3D dyna…

medicine.medical_specialtymedicine.medical_treatmentBiologic responseProsthesis03 medical and health sciences0302 clinical medicineDegenerative diseasemedicineTissue scaffoldsFixation (histology)Groinbusiness.industryDynamic responsive prosthesiInguinal herniaChronic painmedicine.diseaseSurgeryInguinal herniaSettore MED/18 - Chirurgia Generalemedicine.anatomical_structure030220 oncology & carcinogenesisTissue regeneration030211 gastroenterology & hepatologySurgeryImplantForeign bodybusiness
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