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Diferenciace lidských embryonálních kmenových buněk v buňky endotelové a hladké svalové jako model cévního vývoje
dc.contributor.advisorTrněný, Marek
dc.creatorObrtlíková, Petra
dc.date.accessioned2018-09-18T10:33:53Z
dc.date.available2018-09-18T10:33:53Z
dc.date.issued2010
dc.identifier.urihttp://hdl.handle.net/20.500.11956/35188
dc.description.abstractAims of the study: We hypothesized that the optimal source of cell for vascular regeneration will be the progenitor cells derived from human embryonic stem cells (ESCs) which can differentiate both into endothelial cells (ECs) as well as vascular smooth muscle cells (SMCs). We propose to test if the population of human ESCs, H9 cell line, can serve this role. Material and methods: Human ESCs were cocultured with stromal cells S17, M2-10B4 or Wnt1 expressing M2-10B4 cell line to generate a CD34+ cell population. After that, CD34+ cells were sorted and cultured in media containing specific cytokines to generate ECs. To induce SMC differentiation from ECs, culture conditions were changed to media containing platelet-derived growth factor-BB (PDGF-BB) and transforming growth factor-beta 1 (TGF-b1). Phenotypic and functional characteristics of these populations were demonstrated by flow cytometry, immunohistochemistry, QRT- PCR, tube formation assay, and response to calcium signaling agonists. Results: CD34+ vascular progenitor cells derived from human ESCs give rise to ECs and SMCs. These two populations express cell specific transcripts and proteins, exhibit intracellular calcium in response to various agonists, and form robust tube-like structures when cocultured in Matrigel. Wnt1 overexpressing stromal cells...en_US
dc.languageEnglishcs_CZ
dc.language.isoen_US
dc.publisherUniverzita Karlova, 1. lékařská fakultacs_CZ
dc.titleDifferentiation of Human Embryonic Stem Cells into Endothelial and Smooth Muscle Cells as a Model for Vascular Developmenten_US
dc.typedizertační prácecs_CZ
dcterms.created2010
dcterms.dateAccepted2010-09-27
dc.description.department1st Department of Medicine - Clinical Department of Haematology First Faculty of Medicineen_US
dc.description.departmentI. interní klinika-klinika hematologie 1. LF UK a VFNcs_CZ
dc.description.facultyFirst Faculty of Medicineen_US
dc.description.faculty1. lékařská fakultacs_CZ
dc.identifier.repId89572
dc.title.translatedDiferenciace lidských embryonálních kmenových buněk v buňky endotelové a hladké svalové jako model cévního vývojecs_CZ
dc.contributor.refereeMokrý, Jaroslav
dc.contributor.refereeHampl, Aleš
dc.identifier.aleph001372600
thesis.degree.namePh.D.
thesis.degree.leveldoktorskécs_CZ
thesis.degree.discipline-cs_CZ
thesis.degree.discipline-en_US
thesis.degree.programHuman Physiology and Pathophysiologyen_US
thesis.degree.programFyziologie a patofyziologie člověkacs_CZ
uk.thesis.typedizertační prácecs_CZ
uk.taxonomy.organization-cs1. lékařská fakulta::I. interní klinika-klinika hematologie 1. LF UK a VFNcs_CZ
uk.taxonomy.organization-enFirst Faculty of Medicine::1st Department of Medicine - Clinical Department of Haematology First Faculty of Medicineen_US
uk.faculty-name.cs1. lékařská fakultacs_CZ
uk.faculty-name.enFirst Faculty of Medicineen_US
uk.faculty-abbr.cs1.LFcs_CZ
uk.degree-discipline.cs-cs_CZ
uk.degree-discipline.en-en_US
uk.degree-program.csFyziologie a patofyziologie člověkacs_CZ
uk.degree-program.enHuman Physiology and Pathophysiologyen_US
thesis.grade.csProspěl/acs_CZ
thesis.grade.enPassen_US
uk.abstract.enAims of the study: We hypothesized that the optimal source of cell for vascular regeneration will be the progenitor cells derived from human embryonic stem cells (ESCs) which can differentiate both into endothelial cells (ECs) as well as vascular smooth muscle cells (SMCs). We propose to test if the population of human ESCs, H9 cell line, can serve this role. Material and methods: Human ESCs were cocultured with stromal cells S17, M2-10B4 or Wnt1 expressing M2-10B4 cell line to generate a CD34+ cell population. After that, CD34+ cells were sorted and cultured in media containing specific cytokines to generate ECs. To induce SMC differentiation from ECs, culture conditions were changed to media containing platelet-derived growth factor-BB (PDGF-BB) and transforming growth factor-beta 1 (TGF-b1). Phenotypic and functional characteristics of these populations were demonstrated by flow cytometry, immunohistochemistry, QRT- PCR, tube formation assay, and response to calcium signaling agonists. Results: CD34+ vascular progenitor cells derived from human ESCs give rise to ECs and SMCs. These two populations express cell specific transcripts and proteins, exhibit intracellular calcium in response to various agonists, and form robust tube-like structures when cocultured in Matrigel. Wnt1 overexpressing stromal cells...en_US
uk.file-availabilityV
uk.publication.placePrahacs_CZ
uk.grantorUniverzita Karlova, 1. lékařská fakulta, I. interní klinika-klinika hematologie 1. LF UK a VFNcs_CZ
thesis.grade.codeP
dc.identifier.lisID990013726000106986


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