0000000000326079

AUTHOR

Anis Larbi

showing 5 related works from this author

Neutrophil‐mediated enhancement of angiogenesis and osteogenesis in a novel triple cell co‐culture model with endothelial cells and osteoblasts

2017

Repair and regeneration of critical‐sized bone defects remain a major challenge in orthopaedic and craniomaxillofacial surgery. Until now, attempts to bioengineer bone tissue have been hindered by the inability to establish proper angiogenesis and osteogenesis in the tissue construct. In the present study, we established a novel triple cell co‐culture model consisting of osteoblasts, endothelial cells, and neutrophils and conducted a systematic investigation of the effects of neutrophils on angiogenesis and osteogenesis. Neutrophils significantly increased angiogenesis in the tissue construct, evidenced by the formation of microvessel‐like structures with an extensive lattice‐like, stable t…

AdultMaleVascular Endothelial Growth Factor A0301 basic medicineTime FactorsNeutrophilsAngiogenesis0206 medical engineeringCellBiomedical EngineeringBone MatrixNeovascularization PhysiologicMedicine (miscellaneous)02 engineering and technologyMatrix metalloproteinaseBone tissueBone morphogenetic protein 2BiomaterialsYoung Adult03 medical and health sciencesCalcification PhysiologicTissue engineeringOsteogenesisHuman Umbilical Vein Endothelial CellsmedicineHumansViability assayCell ShapeBone growthOsteoblastsChemistryTransendothelial and Transepithelial Migration:Chemical engineering [Engineering]Middle Aged020601 biomedical engineeringCoculture TechniquesCell biology030104 developmental biologymedicine.anatomical_structureGene Expression RegulationFemaleAngiogenesisBiomarkersBiomedical engineeringJournal of Tissue Engineering and Regenerative Medicine
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Role of persistent CMV infection in configuring T cell immunity in the elderly

2007

Abstract Ageing is associated with declines in many physiological parameters, including multiple immune system functions. The rate of acceleration of the frequency of death due to cardiovascular disease or cancer seems to increase with age from middle age up to around 80 years, plateauing thereafter. Mortality due to infectious disease, however, does not plateau, but continues to accelerate indefinitely. The elderly commonly possess oligoclonal expansions of T cells, especially of CD8 cells, which, surprisingly, are often associated with cytomegalovirus (CMV) seropositivity. This in turn is associated with many of the same phenotypic and functional alterations to T cell immunity that have b…

lcsh:Immunologic diseases. AllergyAgingbiologybusiness.industryImmunologyMembrane raftReviewDiseaseImmunosenescencelcsh:GeriatricsBioinformaticsVaccinationlcsh:RC952-954.6aged aging antigen expression apoptosis cancer incidence CD4+ T lymphocyte CD8+ T lymphocyte cellular immunityAgeingImmune systemInfectious disease (medical specialty)ImmunityImmunologybiology.proteinMedicineAntibodybusinesslcsh:RC581-607Immunity & Ageing
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Immune profiling of Alzheimer patients

2011

Abstract Alzheimer's disease (AD) is characterized by extracellular senile plaques in the brain, containing amyloid-β peptide (Aβ). We identify immunological differences between AD patients and age-matched controls greater than those related to age itself. The biggest differences were in the CD4 + rather than the CD8 + T cell compartment resulting in lower proportions of naive cells, more late-differentiated cells and higher percentages of activated CD4 + CD25 + T cells without a Treg phenotype in AD patients. Changes to CD4 + cells might be the result of chronic stimulation by Aβ present in the blood. These findings have implications for diagnosis and understanding the aetiology of the dis…

AdultCD4-Positive T-LymphocytesMaleImmunosenescenceT cellImmunologyStimulationDiseaseCD8-Positive T-LymphocytesBiologyYoung AdultAlzheimer DiseaseExtracellularmedicineHumansImmunology and AllergySenile plaquesAgedAged 80 and overSettore MED/04 - Patologia GeneraleGene Expression ProfilingAβ42Age FactorsT cellCell DifferentiationImmunosenescenceMiddle AgedAlzheimer's diseasePhenotypeCD4 Lymphocyte Countmedicine.anatomical_structureNeurologyImmunologyEtiologyFemaleNeurology (clinical)BiomarkersJournal of Neuroimmunology
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Immunosenescence and Cytomegalovirus

2010

Since Looney at al. published their seminal paper a decade ago [1] it has become clear that many of the differences in T cell immunological parameters observed between young and old people are related to the age-associated increasing prevalence of infection with the persistent β-herpesvirus HHV-5 (Cytomegalovirus). Ten years later, studies suggest that hallmark age-associated changes in peripheral blood T cell subset distribution may not occur at all in people who are not infected with this virus [[2]; Derhovanessian et al., in press]. Whether the observed changes are actually caused by CMV is an open question, but very similar, rapid changes observed in uninfected patients receiving CMV-in…

lcsh:Immunologic diseases. AllergyAgingCMV ImmunosenescenceageingT cellImmunologyCongenital cytomegalovirus infectionYellow fever vaccine32 Biomedical and Clinical Scienceslcsh:GeriatricsVirusImmune systemMedicine3202 Clinical Sciencesbiologybusiness.industryvirus diseasesImmunosenescenceBiological Sciencesmedicine.disease3204 Immunologylcsh:RC952-954.6Ageingmedicine.anatomical_structureImmunologyT cell subsetQR180biology.proteinCommentaryAntibodylcsh:RC581-607businessmedicine.drugImmunity & ageing
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Guidelines for the use of flow cytometry and cell sorting in immunological studies

2017

The marriage between immunology and cytometry is one of the most stable and productive in the recent history of science. A rapid search in PubMed shows that, as of July 2017, using “flow cytometry immunology” as a search term yields more than 68 000 articles, the first of which, interestingly, is not about lymphocytes. It might be stated that, after a short engagement, the exchange of the wedding rings between immunology and cytometry officially occurred when the idea to link fluorochromes to monoclonal antibodies came about. After this, recognizing different types of cells became relatively easy and feasible not only by using a simple fluorescence microscope, but also by a complex and some…

0301 basic medicineT-LymphocytesCell SeparationT cell precursors0302 clinical medicineImmunophenotypingHuman lymphopoiesis[ SDV.IMM ] Life Sciences [q-bio]/ImmunologyImmunology and AllergyNon-U.S. Gov'tImmunologic Techniquemedicine.diagnostic_testResearch Support Non-U.S. Gov'tvirus diseaseshemic and immune systemsFalse Positive ReactionCell sortingFlow Cytometrynatural killer and innate lymphoid cells differentiation3. Good healthResearch Design[SDV.IMM]Life Sciences [q-bio]/ImmunologyHumanQuality Controlmedicine.drug_classImmunologyAnimals; Cell Proliferation; Cell Separation; DNA; False Positive Reactions; Flow Cytometry; Humans; Immunophenotyping; Quality Control; RNA; Research Design; Software; T-Lymphocytes; Guidelines as Topic; Immunologic Techniques; Immunology and Allergy; Immunologychemical and pharmacologic phenomenaGuidelines as TopicComputational biologyBiologyMonoclonal antibodyResearch SupportArticleFlow cytometryImmunophenotypingN.I.H.03 medical and health sciencesImmune systemImmunologic TechniqueResearch Support N.I.H. Extramuralmedicineearly lymphoid progenitorsJournal ArticleAnimalsHumansMass cytometryFalse Positive ReactionsImmunology and Allergy; Immunology; Flow cytometryIMUNOLOGIACell ProliferationAnimalExtramuralB cell ontogenyDNA030104 developmental biologyT-LymphocyteImmunologic TechniquesRNACytometrySoftware030215 immunologyEuropean Journal of Immunology
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