Personlig profil
Primære forskningsområder
We are interested in understanding the fundamental aspects of human embryonic development and birth defects. Our main research focus is genetic and functional aspects of human cardiac development and congenital heart disease. However, many developmental genes and molecular mechanisms are not functionally restricted to a single organ, thus we are also interested in investigating genetic and molecular mechanisms involved in other areas of human embryonic development, including development of the brain.
Congenital heart disease
Congenital heart disease (CHD) is gross structural abnormalities of the heart and intrathoratic vessels. This is the most common group of inborn malformations, with an incidence of almost 1% in the population. The etiology of CHD is complex but with a significant genetic component. Large families with CHD are very rare and CHD is a very heterogeneous disorder, thus it is difficult to identify the causative variants in CHD patients and the genetics and pathophysiology of CHD is generally not well understood.
Identification of genes and pathophysiological mechanisms associated with cardiac development and CHD is likely to have an impact on early diagnosis and prevention of CHD and may also provide a basis for development of new drug therapies e.g. for minor cardiac defects like small atrial- and ventricular defects. Furthermore, identifying and understanding molecular mechanisms in human cardiac development, especially the subset of genes and molecular networks which regulate cardiomyogenesis is likely to have an impact on the development of therapeutic means for regeneration of cardiomyocytes in myocardial infarction and congestive heart failure.
Heart development
Heart development is a complex process, which involves establishment of a primitive heart tube, looping of the heart tube, followed by chamber formation, chamber septation and development of the cardiac valves and outflow tract (figure 1).
Figure 1. Developmental stages of the heart (Koefoed et al., 2014).
Development of the heart is coordinated by a significant number of cellular signaling networks like the Hedgehog, WNT, TGF-beta signaling pathways. Furthermore, most of the known human CHD disease genes are involved in different aspects of cellular signaling (figure 2). Thus, we are also interested in exploring the mechanisms and organelles which regulate signaling transduction during heart development and cardiomyogenesis, for example the primary cilium.
Figure 2. Schematic representation of the different cell signaling components affected by mutations in human CHD disease genes ( Andersen et al., 2014 ).
Aktuel forskning
We explore different genomic strategies for identification of genes, genomic regulatory regions and molecular networks involved in cardiac development and disease. To this end we are currently investigating families where CHD is found in several family members. We investigate the function of the candidate genes or signaling pathways by expression analysis in embryonic tissues and functional assays in cell models and zebrafish.
In collaboration with Prof. Vibeke Hjortdal and Prof. Henning Bundgaard, Copenhagen University Hospital, we investigate genetic and functional aspects of congenital heart disease.
In collaboration with the Cilia Group at Department of Biology, UCPH we are investigating how the primary cilium is coordinating signaling pathways during embryonic development.
In collaboration with Dr. Karen Grønskov, Copenhagen University Hospital, we investigate genetic and functional aspects of human eye development and disease.
Mulige interessekonflikter
2014-2019: Member of Research Council, Danish Heart Association, DK.
Emneord
- Det Sundhedsvidenskabelige Fakultet
- Genetik
- Funktionel genomforskning
- Molecular genetics
- Genomics
- Heart development
- Congenital heart disease
- CHD
- cardiomyogeneses
- stem cells
Samarbejde og topforskningsområder i de sidste fem år
Publikation
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Oculocutaneous albinism variants in 28 consanguineous families and functional classification of a pathogenic deep intron variant in TYR
Farooq, M., Bruun, G. H., Sarusie, M. V. K., Kessel, L., Akhtar, H., Abdullah, U., Ali, Z., Shah, S. A., Ali, N., Anjum, I., Doktor, T. K., Andresen, B. S., Baig, S. M., Larsen, L. A. & Gronskov, K., 2026, (E-pub ahead of print) I: European Journal of Human Genetics. 6 s.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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Primary cilia as architects of the neocortex: Roles in brain development, function, and microcephaly
Thomsen, O. K., Fialova, J. L., Doganli, C., Herrera-Cid, C., Mollgard, K., Benmerah, A., Larsen, L. A. & Christensen, S. T., 2025, I: Developmental Cell. 60, 24, s. 3364-3386Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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The Neurodevelopmental Risk Associated With Congenital Heart Disease and Recurrent Copy Number Variants
Sabtiy, S. H., Lau-Jensen, S. H., Vaez, M., Montalbano, S.-M., Larsen, L. A., Werge, T., Hjortdal, V., Ingason, A. & Helenius, D., 2025, I: Genetic Epidemiology. 49, 7, 53.Publikation: Bidrag til tidsskrift › Konferenceabstrakt i tidsskrift › Forskning › peer review
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A novel GFAP frameshift variant identified in a family with optico-retinal dysplasia and vision impairment
Sarusie, M. V. K., Rönnbäck, C., Jespersgaard, C., Baungaard, S., Ali, Y., Kessel, L., Christensen, S. T., Brøndum-Nielsen, K., Møllgård, K., Rosenberg, T., Larsen, L. A. & Grønskov, K., 2024, I: Human Molecular Genetics. 33, 24, s. 2145–2158 14 s.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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Discovery of a novel mutation F184S (c.551T>C) in GATA4 gene causing congenital heart disease in a consanguineous Saudi family
Rasool, M., Pushparaj, P. N., Haque, A., Shorbaji, A. M., Mira, L. S., Bakhashab, S., Alama, M. N., Farooq, M., Karim, S. & Larsen, L. A., 2024, I: Heliyon. 10, 17, 8 s., e37177.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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Human Genetics of Atrial Septal Defect
Larsen, L. A. & Hitz, M. P., 2024, Congenital Heart Diseases: The Broken Heart. Bind 1441. s. 467-480 14 s. (Advances in Experimental Medicine and Biology).Publikation: Bidrag til bog/antologi/rapport › Bidrag til bog/antologi › Forskning › peer review
1 Citationer (Scopus) -
Pericardial delta like non-canonical NOTCH ligand 1 (Dlk1) augments fibrosis in the heart through epithelial to mesenchymal transition
Jensen, C. H., Johnsen, R. H., Eskildsen, T., Baun, C., Ellman, D. G., Fang, S., Bak, S. T., Hvidsten, S., Larsen, L. A., Rosager, A. M., Riber, L. P., Schneider, M., De Mey, J., Thomassen, M., Burton, M., Uchida, S., Laborda, J. & Andersen, D. C., 2024, I: Clinical and Translational Medicine. 14, 2, 18 s., e1565.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
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Rare homozygous cilia gene variants identified in consanguineous congenital heart disease patients
Baird, D. A., Mubeen, H., Doganli, C., Miltenburg, J. B., Thomsen, O. K., Ali, Z., Naveed, T., Rehman, A. U., Baig, S. M., Christensen, S. T., Farooq, M. & Larsen, L. A., 2024, I: Human Genetics. 143, 11, s. 1323–1339 17 s.Publikation: Bidrag til tidsskrift › Tidsskriftartikel › Forskning › peer review
Åben adgangFil3 Citationer (Scopus)23 Downloads (Pure)