Search results for "Pith"

showing 10 items of 1308 documents

Long-Term in vivo Evaluation of Orthotypical and Heterotypical Bioengineered Human Corneas.

2020

Purpose: Human cornea substitutes generated by tissue engineering currently require limbal stem cells for the generation of orthotypical epithelial cell cultures. We recently reported that bioengineered corneas can be fabricated in vitro from a heterotypical source obtained from Wharton’s jelly in the human umbilical cord (HWJSC). Methods: Here, we generated a partial thickness cornea model based on plastic compression nanostructured fibrin-agarose biomaterials with cornea epithelial cells on top, as an orthotypical model (HOC), or with HWJSC, as a heterotypical model (HHC), and determined their potential in vivo usefulness by implantation in an animal model. Results: No major side effects …

0301 basic medicinePathology02 engineering and technology:Chemicals and Drugs::Carbohydrates::Polysaccharides::Sepharose [Medical Subject Headings]Umbilical cord:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Primates::Haplorhini::Catarrhini::Hominidae::Humans [Medical Subject Headings]heterotypical human corneaTissue engineering:Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Lagomorpha::Rabbits [Medical Subject Headings]Cornea:Analytical Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Optical Imaging::Tomography Optical::Tomography Optical Coherence [Medical Subject Headings]:Organisms::Eukaryota::Animals [Medical Subject Headings]:Technology and Food and Beverages::Technology Industry and Agriculture::Manufactured Materials::Biomedical and Dental Materials::Biocompatible Materials [Medical Subject Headings]Slit lamp021001 nanoscience & nanotechnologymedicine.anatomical_structure:Anatomy::Sense Organs::Eye::Anterior Eye Segment::Cornea [Medical Subject Headings]tissue engineeringStem cell0210 nano-technologyBiotechnology:Chemicals and Drugs::Amino Acids Peptides and Proteins::Proteins::Blood Proteins::Fibrin [Medical Subject Headings]medicine.medical_specialtyHistologyStromal celllcsh:BiotechnologyBiomedical EngineeringCélulas madre mesenquimatosasBioengineering:Anatomy::Embryonic Structures::Fetus::Umbilical Cord [Medical Subject Headings]:Analytical Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Models Animal [Medical Subject Headings]03 medical and health sciencesIn vivolcsh:TP248.13-248.65medicine:Anatomy::Cells::Connective Tissue Cells::Stromal Cells::Mesenchymal Stromal Cells [Medical Subject Headings]:Technology and Food and Beverages::Technology Industry and Agriculture::Engineering::Bioengineering::Cell Engineering::Tissue Engineering [Medical Subject Headings]Wharton’s jelly stem cellsbioengineered corneabusiness.industryTissue engineringeye diseasesEpitheliumCórnea:Anatomy::Cells::Epithelial Cells [Medical Subject Headings]:Anatomy::Tissues::Connective Tissue::Wharton Jelly [Medical Subject Headings]030104 developmental biologyIngeniería de tejidossense organsbusinessartificial cornea
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Mesopolysaccharides: The extracellular surface layer of visceral organs

2020

The mesothelium is a dynamic and specialized tissue layer that covers the somatic cavities (pleural, peritoneal, and pericardial) as well as the surface of the visceral organs such as the lung, heart, liver, bowel and tunica vaginalis testis. The potential therapeutic manipulation of visceral organs has been complicated by the carbohydrate surface layer—here, called the mesopolysaccharide (MPS)—that coats the outer layer of the mesothelium. The traditional understanding of MPS structure has relied upon fixation techniques known to degrade carbohydrates. The recent development of carbohydrate-preserving fixation for high resolution imaging techniques has provided an opportunity to re-examine…

0301 basic medicinePathologyRespiratory Systemlcsh:MedicineBiochemistryEpitheliumMice0302 clinical medicineLectinsMedicine and Health SciencesElectron Microscopylcsh:ScienceLungFixation (histology)MicroscopyMultidisciplinaryMembrane GlycoproteinsMicrovilliOrganic CompoundsChemistryQRThoraxExtracellular MatrixChemistrymedicine.anatomical_structureLiverTransmission electron microscopy030220 oncology & carcinogenesisPhysical SciencesPleuraeMedicineCellular Structures and OrganellesAnatomyResearch ArticleChemical Elementsmedicine.medical_specialtyScienceCarbohydratesResearch and Analysis MethodsRuthenium03 medical and health sciencesMicroscopy Electron TransmissionPolysaccharidesmedicineExtracellularAnimalsSurface layerProcess (anatomy)LungMyocardiumOrganic Chemistrylcsh:RChemical CompoundsBiology and Life SciencesProteinsCell BiologyMesothelium030104 developmental biologyMurine lungTransmission Electron Microscopylcsh:QLungsPLoS ONE
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Pivotal roles of glycogen synthase-3 in hepatocellular carcinoma

2017

Hepatocellular carcinoma (HCC) is one of the most common cancers in the world, and represents the second most frequently cancer and third most common cause of death from cancer worldwide. At advanced stage, HCC is a highly aggressive tumor with a poor prognosis and with very limited response to common therapies. Therefore, there is still the need for new effective and well-tolerated therapeutic strategies. Molecular-targeted therapies hold promise for HCC treatment. One promising molecular target is the multifunctional serine/threonine kinase glycogen synthase kinase 3 (GSK-3). The roles of GSK-3β in HCC remain controversial, several studies suggested a possible role of GSK-3β as a tumor …

0301 basic medicinePathologymedicine.medical_specialtyCancer ResearchCarcinoma HepatocellularEpithelial-Mesenchymal TransitionTumor suppressor geneAntineoplastic Agentsmacromolecular substancesBiologyMetastasisGlycogen Synthase Kinase 303 medical and health sciencesWnt0302 clinical medicineGeneticTransforming Growth Factor betaGSK-3GeneticsmedicineHumansHedgehog ProteinsMolecular Targeted TherapyInsulin-Like Growth Factor IHCCIGFβ-cateninGlycogen synthaseHedgehogMolecular Biologybeta CateninGSK-3Glycogen Synthase Kinase 3 betaReceptors NotchLiver NeoplasmsWnt signaling pathwayCancermedicine.diseaseSurvival Analysisdigestive system diseasesGene Expression Regulation Neoplastic030104 developmental biology030220 oncology & carcinogenesisHepatocellular carcinomabiology.proteinCancer researchMolecular MedicineHedgehogSignal Transduction
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Glypican-3 and Hep Par-1 are Useful Biomarkers in the Cytologic Assessment of Ascites.

2018

Till date, the utility of cytologic assessment of ascites for the identification of hepatocellular carcinoma (HCC) cells is still debated and the usefulness of immunocytochemistry for glypican-3 (GPC3) and Hep Par-1 in this setting has not been reported. Liquid-based cytology of ascitic fluid of 28 cirrhotic patients was performed and the spots obtained were stained with hematoxylin and eosin, papanicolau, and with GPC3 and Hep Par-1 antibodies. GPC3 and Hep Par-1 antibodies stained positively the atypical cells in the ascites of 2 patients with HCC showing an exophytic growth pattern. The specimens of the patients with nonexophytic HCC, other non-HCC cancers, or cirrhosis stained negativel…

0301 basic medicinePathologymedicine.medical_specialtyHistologyCirrhosisCarcinoma HepatocellularH&E stainneoplastic asciteGlypican 3EpitheliumPathology and Forensic Medicineperitoneal effusionDiagnosis Differential03 medical and health sciencesimmunocytochemistry0302 clinical medicineGlypicansCytologyAscitesCarcinomaMedicineHumansProspective StudiesHCCneoplasmsReceptors Eph Familybusiness.industryLiver NeoplasmsAsciteshepatocellular carcinomamedicine.diseaseFibrosisImmunohistochemistryglypican-3digestive system diseasesMedical Laboratory Technology030104 developmental biologyLiver030220 oncology & carcinogenesisHepatocellular carcinomaImmunohistochemistrymedicine.symptomHep Par-1businessApplied immunohistochemistrymolecular morphology : AIMM
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Pulmonary Adenocarcinoma With Enteric Differentiation: Immunohistochemistry and Molecular Morphology

2018

Pulmonary adenocarcinoma with enteric differentiation (PAED) is a rare subtype of lung adenocarcinoma recently recognized in the WHO classification. It is defined as an adenocarcinoma in which the enteric component exceeds 50% and have to show the expression of at least 1 immunohistochemical marker of enteric differentiation. Although the definition of this tumor type is very important, above all in the differential diagnosis between a primary lung tumor and a metastasis of colorectal adenocarcinoma, this cancer still lacks a distinctive immunohistochemical and molecular signature. We recruited the largest series in the literature of PAEDs according to the morphology and the positivity for …

0301 basic medicinePathologymedicine.medical_specialtyLung NeoplasmsHistologyintestinal-type adenocarcinomaCellular differentiationDNA Mutational AnalysisThyroid Nuclear Factor 1AdenocarcinomaBiologymedicine.disease_causePathology and Forensic MedicineMetastasisDiagnosis DifferentialProto-Oncogene Proteins p21(ras)03 medical and health sciences0302 clinical medicineKRASBiomarkers TumormedicineHumansCDX2 Transcription FactorPathology Molecularenteric lung adenocarcinoma intestinal-type adenocarcinoma CDX-2 CDX2 KRASLungKeratin-7entericCancerCell DifferentiationPulmonary adenocarcinoma with enteric differentiation (PAED)lung adenocarcinomamedicine.diseaseCDX-2ImmunohistochemistryMedical Laboratory Technology030104 developmental biologymedicine.anatomical_structureCDX2Alveolar Epithelial Cells030220 oncology & carcinogenesisMutationAdenocarcinomaImmunohistochemistryKRASDifferential diagnosisColorectal Neoplasms
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The human meibomian gland epithelial cell line as a model to study meibomian gland dysfunction

2016

The meibomian gland dysfunction (MGD) is the leading cause of dry eye disease (DED) throughout the world. The investigation of MGD lacks suitable in vivo and in vitro models. In 2010 a human meibomian gland epithelial cell line (HMGEC) was established, so far the only available meibomian gland cell line. The characterization of HMGEC is of major importance to clarify its suitability for studying the meibomian gland (patho)physiology in vitro. The current culture protocol and new concepts of HMGEC culture will be compared. Hormones are believed to be a key factor in meibomian gland dysfunction thus HMGEC responsiveness to hormone stimulation is crucial to elucidate the hormonal influence on …

0301 basic medicinePathologymedicine.medical_specialtyMeibomian glandBiologyModels BiologicalCell Line03 medical and health sciencesCellular and Molecular NeuroscienceHormone stimulation0302 clinical medicinestomatognathic systemRisk FactorsmedicineHumansGonadal Steroid HormonesCells Culturedintegumentary systemMeibomian gland dysfunctionMeibomian GlandsEpithelial CellsSensory SystemsEpitheliumAnti-Bacterial Agentsbody regionsOphthalmology030104 developmental biologymedicine.anatomical_structure030221 ophthalmology & optometryDry Eye Syndromessense organsOphthalmic SolutionsHormoneExperimental Eye Research
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Drug Distribution to Retinal Pigment Epithelium: Studies on Melanin Binding, Cellular Kinetics, and Single Photon Emission Computed Tomography/Comput…

2016

Melanin binding is known to affect the distribution and elimination of ocular drugs. The purpose of this study was to evaluate if the extent of drug uptake to primary retinal pigment epithelial (RPE) cells could be estimated based on in vitro binding studies with isolated melanin and evaluate the suitability of single photon emission computed tomography/computed tomography (SPECT/CT) in studying pigment binding in vivo with pigmented and albino rats. Binding of five compounds, basic molecules timolol, chloroquine, and nadolol and acidic molecules methotrexate and 5(6)-carboxy-2',7'-dichlorofluorescein (CDCF), was studied using isolated melanin from porcine choroid-RPE at pH 5.0 and 7.4. The…

0301 basic medicinePathologymedicine.medical_specialtySingle Photon Emission Computed Tomography Computed TomographySwinePigment bindingPharmaceutical ScienceTimololRetinal Pigment EpitheliumBiologySingle-photon emission computed tomographyEye030226 pharmacology & pharmacyIodine RadioisotopesMelanin03 medical and health scienceschemistry.chemical_compound0302 clinical medicineIn vivoDrug DiscoverymedicineAnimalsDistribution (pharmacology)Cells CulturedMelaninsRetinal pigment epitheliummedicine.diagnostic_testChloroquineRetinalHydrogen-Ion Concentrationeye diseasesRats3. Good healthKineticsNadololMethotrexate030104 developmental biologymedicine.anatomical_structurechemistryTimololBiophysicsMolecular Medicinesense organsProtein Bindingmedicine.drugMolecular Pharmaceutics
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TTF-1/p63-Positive Poorly Differentiated NSCLC: A Histogenetic Hypothesis from the Basal Reserve Cell of the Terminal Respiratory Unit

2020

TTF-1 is expressed in the alveolar epithelium and in the basal cells of distal terminal bronchioles. It is considered the most sensitive and specific marker to define the adenocarcinoma arising from the terminal respiratory unit (TRU). TTF-1, CK7, CK5/6, p63 and p40 are useful for typifying the majority of non-small-cell lung cancers, with TTF and CK7 being typically expressed in adenocarcinomas and the latter three being expressed in squamous cell carcinoma. As tumors with coexpression of both TTF-1 and p63 in the same cells are rare, we describe different cases that coexpress them, suggesting a histogenetic hypothesis of their origin. We report 10 cases of poorly differentiated non-small-…

0301 basic medicinePathologymedicine.medical_specialtyendocrine systemAlveolar EpitheliumClinical Biochemistryhistogenetic hypothesisBiologyNSCLCArticle03 medical and health sciencesBasal (phylogenetics)0302 clinical medicineterminal respiratory unitmedicineCarcinomabasal reserve cellslcsh:R5-920p63LungBasal reserve cellCancerrespiratory systemmedicine.disease030104 developmental biologymedicine.anatomical_structurenon-small-cell lung cancerTTF-1030220 oncology & carcinogenesisAdenocarcinomaImmunohistochemistrylcsh:Medicine (General)ImmunostainingHistogenetic hypothesiDiagnostics
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MiR-675-5p supports hypoxia induced epithelial to mesenchymal transition in colon cancer cells

2017

// Viviana Costa 1, * , Alessia Lo Dico 2, * , Aroldo Rizzo 3 , Francesca Rajata 3 , Marco Tripodi 4, 5 , Riccardo Alessandro 6, 7, * , Alice Conigliaro 4, * 1 Innovative Technological Platforms for Tissue Engineering, Theranostic and Oncology, Rizzoli Orthopedic Institute, Palermo, Italy 2 Department of Pathophysiology and Transplantation, Universita degli Studi di Milano, Milano, Italy 3 Unita Operativa di Anatomia Patologica, Azienda Ospedaliera Ospedali Riuniti “Villa Sofia-Cervello”, Palermo, Italy 4 Dipartimento di Biotecnologie Cellulari ed Ematologia, Sapienza University of Rome, Rome, Italy 5 National Institute for Infectious Diseases L. Spallanzani, IRCCS, Rome, Italy 6 Dipartimen…

0301 basic medicinePathologymedicine.medical_specialtymiRNA675Epithelial-Mesenchymal TransitionTranscription GeneticColorectal cancerDown-RegulationMetastasiMetastasis03 medical and health sciences0302 clinical medicineGliomaCell Line TumormedicinemetastasisHumansEpithelial–mesenchymal transitionNeoplasm MetastasisLymph nodeMetastatic colon cancerCRC; EMT; Hypoxia; Metastasis; MiRNA675; Oncologybusiness.industryhypoxiaEMTHypoxia (medical)medicine.diseaseHypoxia-Inducible Factor 1 alpha SubunitCell HypoxiaCRCTransplantationDNA-Binding ProteinsMicroRNAs030104 developmental biologymedicine.anatomical_structureOncology030220 oncology & carcinogenesisColonic NeoplasmsCancer researchmedicine.symptombusinessResearch Paper
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Chemoresistance and chemosensitization in cholangiocarcinoma

2017

One of the main difficulties in the management of patients with advanced cholangiocarcinoma (CCA) is their poor response to available chemotherapy. This is the result of powerful mechanisms of chemoresistance (MOC) of quite diverse nature that usually act synergistically. The problem is often worsened by altered MOC gene expression in response to pharmacological treatment. Since CCA includes a heterogeneous group of cancers their genetic signature coding for MOC genes is also diverse; however, several shared traits have been defined. Some of these characteristics are shared with other types of liver cancer, namely hepatocellular carcinoma and hepatoblastoma. An important goal in modern onco…

0301 basic medicinePharmacologybile ductschemotherapydrug delivery systems0302 clinical medicineChemosensitizationantineoplastic agentsmolecular biologyReceptorhumansreceptor protein-tyrosine kinasesmedia_commonapoptosisgene expression regulationbile duct neoplasmsDrug Resistance Multipletargeted therapiesGene Expression Regulation Neoplasticmultiplebiliary cancer; chemotherapy; liver cancer; multidrug resistance; targeted therapies; antineoplastic agents; apoptosis; bile duct neoplasms; bile ducts; cell survival; cholangiocarcinoma; drug delivery systems; drug resistance multiple; drug resistance; neoplasm; epithelial cells; gene expression regulation neoplastic; genetic therapy; humans; protein kinase inhibitors; receptor protein-tyrosine kinases; signal transduction; treatment outcome; molecular medicine; molecular biology030220 oncology & carcinogenesisHepatocellular carcinomabiliary cancerLiver cancercholangiocarcinomaTyrosine kinasesignal transductionDrugHepatoblastomamedia_common.quotation_subjectcell survivalPharmacological treatmentliver cancer03 medical and health sciencesmultidrug resistancemedicinemolecular medicinedrug resistancebusiness.industrymedicine.diseaseepithelial cellsneoplasticprotein kinase inhibitors030104 developmental biologyDrug Resistance NeoplasmCancer researchtreatment outcomebusinessneoplasmgenetic therapy
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