Visa enkel post

dc.contributor.authorShawn, Liang
dc.date.accessioned2018-05-07T07:54:14Z
dc.date.available2018-05-07T07:54:14Z
dc.date.issued2018-05-07
dc.identifier.isbn978-91-629-0507-1 (PDF)
dc.identifier.isbnISBN 978-91-629-0508-8 (PRINT)
dc.identifier.urihttp://hdl.handle.net/2077/56262
dc.description.abstractThe fundamental aspects of developmental mechanisms that regulate embryonic and postnatal thyroid growth gaining the final size of the gland are still largely undetermined. In embryonic development, various organs and glands are composed of branched structures, designed to maximize efficiency and function. Branching morphogenesis is the developmental process that gives rise to these multicellular tubular networks. This growth process, which involves a range of paracrine and cell-autonomous factors including Fgf10 and Sox9, are utilized by the lung and numerous exocrine glands. In thyroid, an endocrine gland, postnatal growth involving thyroid stimulating hormone (TSH) from the pituitary differs to embryonic growth, which is TSH independent and thus rely on local factors of yet unknown identity. This thesis investigates thyroid growth regulation by Fgf10, Sox9, Shh and mutant Braf in normal (wildtype) and genetically modified mice engineered to constitutively or conditionally delete or express the targeted genes of interest. In paper I, we show that branching morphogenesis is a key process in glandular development of the embryonic thyroid. Sox9, Fgfr2b and Ki-67 are co-expressed at distal tips of branching epithelial buds. Mesenchymal Fgf10 is crucial for embryonic thyroid growth. The Fgf10-/- mutant thyroid has a normal anatomical shape and uninterrupted functional differentiation but is severely hypoplastic due to defective branching. These findings uncover a novel mechanism of thyroid development in which branching growth generated by reciprocal mesenchymal-epithelial interactions determines final organ size. Paper II investigates postnatal thyroid growth regulation. This identified growth retardation comprising reduced numbers of Ki-67+ proliferating cells in the thyroid of Fgf10+/- mutant mice. Thyroid growth is rescued postnatally in Fgf10+/-;Shh+/- double mutant animals, suggesting Shh regulation over Fgf10 signalling. This demonstrates for the first time gene dosage dependent regulation of postnatal thyroid growth accomplished through reciprocal interactions between Fgf10 and Shh signalling pathways. In Paper III, we examine effects of conditionally expressed Brafv600e oncoprotein in Nkx2-1+ progenitors on growth and differentiation of the embryonic thyroid. Constitutive activation of MAPK pathway by mutant Braf in thyroid progenitors lead to a global growth response and a 4-fold increase in thyroid size at birth, however without disturbing the natural morphogenesis to a bilobed gland or the differentiation into functional follicular cells. Thyroid specific gene analysis confirmed expression of Tg, Nis, Tpo, Tshr and Pax8, suggesting capability of iodination and thyroid hormone production in mutant embryonic cells. These results indicate that mechanisms of de novo thyroid differentiation in mouse embryos resist dedifferentiation as regularly observed in MAPK-activated adult thyroid cells. A potential clinical importance of this novel finding relies on the fact that thyroid tumour cells carrying BRAFV600E mutation are insensitive to radioiodine treatment due to repressed thyroid gene expression.sv
dc.language.isoengsv
dc.relation.haspartI. A branching morphogenesis program governs embryonic growth of the thyroid gland Shawn Liang, Ellen Johansson, Guillermo Barila, Daniel L. Altschuler, Henrik Fagman, Mikael Nilsson Development 2017 : dev.146829 ::doi::10.1242/dev.146829sv
dc.relation.haspartII. Thyroid developmental growth depends on Fgf10 gene dosage. Liang S, Fagman H, Nilsson M. Manuscriptsv
dc.relation.haspartIII. Mutant Braf (Brafv600e) accelerates embryonic thyroid growth without interfering with glandular morphogenesis and de novo thyroid differentiation. Liang S, Moccia C, Fagman H, Nilsson M. Manuscriptsv
dc.subjectThyroidsv
dc.subjectgrowth regulationsv
dc.subjectbranching morphogenesissv
dc.subjectFgf10sv
dc.subjectSox9sv
dc.subjectShhsv
dc.subjectBrafv600esv
dc.titleGrowth regulation in thyroid developmentsv
dc.typetexteng
dc.type.svepDoctoral thesiseng
dc.gup.mailshawn.liang@medkem.gu.sesv
dc.type.degreeDoctor of Philosophy (Medicine)sv
dc.gup.originUniversity of Gothenburg. Sahlgrenska Academysv
dc.gup.departmentInstitute of Biomedicine. Department of Medical Biochemistry and Cell Biologysv
dc.gup.defenceplaceTorsdagen den 24 maj 2018, kl. 9.00, Ragnar Sandberg, Medicinaregatan 7Asv
dc.gup.defencedate2018-05-24
dc.gup.dissdb-fakultetSA


Filer under denna titel

Thumbnail
Thumbnail
Thumbnail

Dokumentet tillhör följande samling(ar)

Visa enkel post