dc.contributor
Universitat de Barcelona. Departament de Biologia Cel·lular, Fisiologia i Immunologia
dc.contributor.author
Ramiro-Pareta, Marina
dc.date.accessioned
2022-06-08T09:25:57Z
dc.date.available
2023-03-31T22:45:29Z
dc.date.issued
2022-03-31
dc.identifier.uri
http://hdl.handle.net/10803/674453
dc.description
Programa de Doctorat en Biomedicina
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dc.description.abstract
The pleiotropic WT1 transcription factor (WT1) was first discovered in renal tumours. It contains four zinc-finger motifs at the C-terminus which are important for DNA binding to activate gene expression and is also involved in post-transcriptional processes. The expression of WT1 is essential during development of multiple organs, among them the cardiovascular structures. In the developing heart, WT1 is strongly expressed in the epicardium, and in cardiac endothelial cells. After cardiac injury, WT1 is temporally upregulated in both lineages in the infarcted area and border zone, which points to a potential role for WT1 in cardiac repair and regeneration.
In this thesis, we focused on the role of Wt1 in endothelial cells, particularly in cardiac endothelial cells during coronary vessel formation, and in the adult heart after myocardial infarction. To support some of these findings, the mouse retinal vasculature was used as a model for two-dimensional angiogenic studies. We have demonstrated that Wt1 is present in CECs during coronary development, and that Wt1 deletion abrogates for endothelial proliferation, migration, and maturation during both retinal and coronary vasculature formation in vivo. Also, RNAseq analysis of embryonic Wt1-KOΔEC CECs suggests that Wt1 controls several downstream pathways. However, the importance of Wt1 functions in neovascularization in the adult heart after injury, specifically after 14 days of MI, has proven to be limited. The so-called recapitulation of embryonic programs in the neovascularization processes arising after injury was not sufficient for Wt1 to exert a differential effect on the adult heart after myocardial infarction. We observed no significant functional changes in cardiac output, assessed by ECG imaging, nor in tissue remodelling, visualized by analysis of the fibrotic scar in the infarcted region. However, we did observe changes in Wt1-KOΔEC CECs at the molecular and transcriptomic level, suggesting that WT1 may activate some genetic programmes in these cells, even if its effects are not able to alter evident cardiac functions.
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dc.format.extent
271 p.
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dc.format.mimetype
application/pdf
dc.language.iso
eng
en_US
dc.publisher
Universitat de Barcelona
dc.rights.license
ADVERTIMENT. Tots els drets reservats. L'accés als continguts d'aquesta tesi doctoral i la seva utilització ha de respectar els drets de la persona autora. Pot ser utilitzada per a consulta o estudi personal, així com en activitats o materials d'investigació i docència en els termes establerts a l'art. 32 del Text Refós de la Llei de Propietat Intel·lectual (RDL 1/1996). Per altres utilitzacions es requereix l'autorització prèvia i expressa de la persona autora. En qualsevol cas, en la utilització dels seus continguts caldrà indicar de forma clara el nom i cognoms de la persona autora i el títol de la tesi doctoral. No s'autoritza la seva reproducció o altres formes d'explotació efectuades amb finalitats de lucre ni la seva comunicació pública des d'un lloc aliè al servei TDX. Tampoc s'autoritza la presentació del seu contingut en una finestra o marc aliè a TDX (framing). Aquesta reserva de drets afecta tant als continguts de la tesi com als seus resums i índexs.
dc.source
TDX (Tesis Doctorals en Xarxa)
dc.subject
Ciències de la salut
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dc.subject
Ciencias biomédicas
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dc.subject
Medical sciences
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dc.subject
Sistema cardiovascular
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dc.subject
Cardiovascular system
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dc.subject
Angiogènesi
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dc.subject
Neovascularización
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dc.subject
Neovascularization
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dc.subject
Infart de miocardi
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dc.subject
Infarto de miocardio
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dc.subject
Myocardial infarction
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dc.subject
Proteïnes
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dc.subject
Proteínas
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dc.subject
Proteins
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dc.subject.other
Ciències de la Salut
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dc.title
New insights about the role of WT1 in blood vessel formation during development and repair
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dc.type
info:eu-repo/semantics/doctoralThesis
dc.type
info:eu-repo/semantics/publishedVersion
dc.contributor.director
Martínez Estrada, Ofelia María
dc.contributor.tutor
Reina del Pozo, Manuel
dc.rights.accessLevel
info:eu-repo/semantics/openAccess