Search results for "mesenchymal stem cell"

showing 10 items of 399 documents

Mesenchymal and Induced Pluripotent Stem Cells-Derived Extracellular Vesicles: The New Frontier for Regenerative Medicine?

2020

Regenerative medicine aims to repair damaged, tissues or organs for the treatment of various diseases, which have been poorly managed with conventional drugs and medical procedures. To date, multimodal regenerative methods include transplant of healthy organs, tissues, or cells, body stimulation to activate a self-healing response in damaged tissues, as well as the combined use of cells and bio-degradable scaffold to obtain functional tissues. Certainly, stem cells are promising tools in regenerative medicine due to their ability to induce de novo tissue formation and/or promote organ repair and regeneration. Currently, several studies have shown that the beneficial stem cell effects, espec…

ScaffoldInduced Pluripotent Stem Cellsregenerative medicineStimulationReviewBiologyRegenerative medicineExtracellular VesiclesParacrine signallingstem cellsAnimalsHumansInduced pluripotent stem celllcsh:QH301-705.5mesenchymal stem cells (MSCs)Regeneration (biology)Mesenchymal stem cellBiological TransportMesenchymal Stem CellsGeneral MedicineCell biologylcsh:Biology (General)induced pluripotent stem cells (iPSCs)extracellular vesicleStem cellStem Cell TransplantationCells
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Characterization of the complete fiber network topology of planar fibrous tissues and scaffolds

2010

Understanding how engineered tissue scaffold architecture affects cell morphology, metabolism, phenotypic expression, as well as predicting material mechanical behavior has recently received increased attention. In the present study, an image-based analysis approach that provides an automated tool to characterize engineered tissue fiber network topology is presented. Micro-architectural features that fully defined fiber network topology were detected and quantified, which include fiber orientation, connectivity, intersection spatial density, and diameter. Algorithm performance was tested using scanning electron microscopy (SEM) images of electrospun poly(ester urethane)urea (ES-PEUU) scaffo…

ScaffoldMaterials sciencePolyestersPolyurethanesBiophysicsBioengineeringTopology (electrical circuits)TopologyCell morphologyArticleBiomaterialsTissue engineeringMicroscopyAnimalsHumansFiberDecellularizationTissue EngineeringTissue ScaffoldsPhantoms ImagingMesenchymal Stem CellsElectrospinningRatsMechanics of MaterialsMicroscopy Electron ScanningCeramics and CompositesCollagenRabbitsGelsAlgorithmsBiomedical engineeringImage analysisScaffold morphologyMicrostructureElectrospinningCollagen gelDecellularized tissue
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The importance of culturing primary cells under physiological conditions: proliferation, senescence, pluripotency

2017

Mesenchymal stem cells (MSCs), such as human dental pulp stem cells (hDPSCs), are currently a source for cell therapy. However, cell therapy protocols require 10–400 million cells per treatment, and consequently, they need to be expanded in vitro before implantation, with the inconvenience that MSCs undergo senescence following a certain number of cell expansion passages, loosing their stem cell qualities. Ambient oxygen tension (21% pO2) is normally used for in vitro culture, but physiological levels in vivo range between 3% and 6% pO2. We previously demonstrated that hDPSC proliferation rate is significantly lowered at 21% pO2 due to enhanced oxidative stress, which led to the activation …

SenescenceMesenchymal stem cellBiologymedicine.disease_causeBiochemistryCell biologyCell therapySOX2KLF4Physiology (medical)Dental pulp stem cellsmedicineStem cellOxidative stressFree Radical Biology and Medicine
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Small extracellular vesicles from young mice prevent frailty, improve healthspan and decrease epigenetic age in old mice

2021

SummaryAging is associated with an increased risk of frailty, disability, comorbidities, institutionalization, falls, fractures, hospitalization, and mortality. Searching for strategies to delay the degenerative changes associated with aging and frailty is interesting. We treated old animals intravenously with small extracellular vesicles (sEVs) derived from adipose mesenchymal stem cells (ADSCs) of young animals, and we found an improvement of several functional parameters usually altered with aging, such as motor coordination, grip strength, fatigue resistance, fur regeneration, and renal function. Frailty index analysis showed that 40% of old control mice were frail, whereas none of the …

Senescencemedicine.medical_specialtyKidneybusiness.industryMesenchymal stem cellAdipose tissueInflammationmedicine.disease_causeGrip strengthEndocrinologymedicine.anatomical_structureInternal medicineMetabolomeMedicinemedicine.symptombusinessOxidative stress
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Influence of retinol on human chondrocytes in agarose culture

1992

Vitamin A and its congeners, collectively called retinoids, are known to have teratogenic potential and have induced craniofacial and limb malformations in numerous animal species. More importantly, retinoids are recognized as teratogenic to fetuses of pregnant women who have taken such preparations for dermatologic disorders. Information gathered from the study of animal models suggests that retinoids interfere with cartilage differentiation. If chondrogenesis in limb development is disturbed it may contribute to limb reductions and malformations. In vitro studies using various animal systems have shown that cartilage matrix macromolecules are altered to resemble those secreted by mesenchy…

SepharoseCartilageMesenchymal stem cellType II collagenBiologyChondrogenesisAgricultural and Biological Sciences (miscellaneous)ChondrocyteCartilageTeratogensmedicine.anatomical_structureBiochemistryProteoglycanCell culturemedicinebiology.proteinHumansProteoglycansCollagenAnatomyVitamin ACells CulturedType I collagenThe Anatomical Record
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Perinatal and Wharton's jelly-derived mesenchymal stem cells in cartilage regenerative medicine and tissue engineering strategies

2011

Stem cells can be found in embryonic and extraembryonic tissues as well as in adult organs. In particular, research in the last few years has delineated the key features of perinatal stem cells derived from fetus-associated tissues. These cells show multiple differentiation potential, can be easily expanded ex vivo, and raise no ethical concerns as regards their use. Several reports indicate that cells isolated from Wharton's jelly (WJ), the main component of umbilical cord extracellular matrix, are multipotent stem cells that express markers shared by other mesenchymal stem cells (MSC) and give rise to different mature cell types belonging to all three germ layers. Moreover, WJ-MSC display…

Settore BIO/16 - Anatomia UmanaMesenchymal stem cellClinical uses of mesenchymal stem cellsBiologyRegenerative medicineCell biologyDevelopmental NeuroscienceMultipotent Stem CellWharton's jellyImmunologyArticular cartilage Chondrocytes Differentiation markers Extracellular matrix Mesenchymal stem cells scaffolds Tissue engineering Umbilical cord Wharton’s jellyStem cellDevelopmental BiologyStem cell transplantation for articular cartilage repairAdult stem cell
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Wharton's Jelly Mesenchymal Stem Cells and Immune Modulation: Regenerative Medicine Meets Tissue Repair

2013

Settore BIO/16 - Anatomia UmanaMesenchymal stem cellImmunologyWharton's jellyBiologyTissue repairImmune modulationRegenerative medicineWharton's jelly umbilical cord mesenchymal stem cells regenerative medicine immune modulation tissue repair differentiationCell biology
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Umbilical cord revisited: From Wharton's jelly myofibroblasts to mesenchymal stem cells

2013

The umbilical cord (UC) is an essential part of the placenta, contributing to foetal development by ensuring the blood flow between mother and foetus. The UC is formed within the first weeks of gestation by the enclosure of the vessels (one vein and two arteries) into a bulk of mucous connective tissue, named Wharton's jelly (WJ) and lined by the umbilical epithelium. Since their first identification, cells populating WJ were described as unusual fibroblasts (or myofibroblasts). Recent literature data further highlighted the functional interconnection between UC and the resident cells. The UC represents a reservoir of progenitor populations which are collectively grouped into MSCs (mesenchy…

Settore BIO/16 - Anatomia UmanaPlacentaStem CellsBone Marrow CellsCell DifferentiationMesenchymal Stem CellsRegenerative MedicineExtracellular MatrixUmbilical CordPhenotypeUmbilical cord Wharton's jelly mesenchymal stem cells extracellular matrix immunomodulatory markers stromal myofibroblastsPregnancyAnimalsHumansFemaleWharton JellyMyofibroblasts
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Isolation and phenotypical characterization of mesenchymal stem cells from the Wharton's jelly of pre-term human umbilical cord

2014

Settore BIO/16 - Anatomia UmanaUmbilical cord perinatal stem cells mesenchymal stem cells immune modulation isolation protocol cell culture markers
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Wharton's jelly mesenchymal stem cells immunomodulatory molecules: their journey from umbilical cord to differentieted cells.

2014

Settore BIO/16 - Anatomia UmanaWJ-MSC IHC ICC HLA-ABC B7-H3 mesenchymal stem cells.
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