Elisabet Andersson
Overview
Explore the profile of Elisabet Andersson including associated specialties, affiliations and a list of published articles.
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Articles
15
Citations
893
Followers
0
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Recent Articles
1.
Fukusumi Y, Meier F, Gotz S, Matheus F, Irmler M, Beckervordersandforth R, et al.
J Neurosci
. 2015 Oct;
35(39):13385-401.
PMID: 26424886
Wingless-related MMTV integration site 1 (WNT1)/β-catenin signaling plays a crucial role in the generation of mesodiencephalic dopaminergic (mdDA) neurons, including the substantia nigra pars compacta (SNc) subpopulation that preferentially degenerates...
2.
Marklund U, Alekseenko Z, Andersson E, Falci S, Westgren M, Perlmann T, et al.
Stem Cells Dev
. 2013 Sep;
23(1):5-15.
PMID: 24007338
Studies in model organisms constitute the basis of our understanding of the principal molecular mechanisms of cell fate determination in the developing central nervous system. Considering the emergent applications in...
3.
Oosterveen T, Kurdija S, Alekseenko Z, Uhde C, Bergsland M, Sandberg M, et al.
Dev Cell
. 2012 Nov;
23(5):1006-19.
PMID: 23153497
Morphogens orchestrate tissue patterning in a concentration-dependent fashion during vertebrate embryogenesis, yet little is known of how positional information provided by such signals is translated into discrete transcriptional outputs. Here...
4.
Metzakopian E, Lin W, Salmon-Divon M, Dvinge H, Andersson E, Ericson J, et al.
Development
. 2012 Jun;
139(14):2625-34.
PMID: 22696295
The transcription factors Foxa1 and Foxa2 promote the specification of midbrain dopaminergic (mDA) neurons and the floor plate. Whether their role is direct has remained unclear as they also regulate...
5.
Jorgensen J, Fransson A, Fjord-Larsen L, Thompson L, Houchins J, Andrade N, et al.
Exp Neurol
. 2011 Oct;
233(1):172-81.
PMID: 21985865
Neurotrophic factors are secreted proteins responsible for migration, growth and survival of neurons during development, and for maintenance and plasticity of adult neurons. Here we present a novel secreted protein...
6.
Deng Q, Andersson E, Hedlund E, Alekseenko Z, Coppola E, Panman L, et al.
Development
. 2011 Jul;
138(16):3399-408.
PMID: 21752929
The severe disorders associated with a loss or dysfunction of midbrain dopamine neurons (DNs) have intensified research aimed at deciphering developmental programs controlling midbrain development. The homeodomain proteins Lmx1a and...
7.
Panman L, Andersson E, Alekseenko Z, Hedlund E, Kee N, Mong J, et al.
Cell Stem Cell
. 2011 Jun;
8(6):663-75.
PMID: 21624811
The generation of specific types of neurons from stem cells offers important opportunities in regenerative medicine. However, future applications and proper verification of cell identities will require stringent ways to...
8.
Friling S, Andersson E, Thompson L, Jonsson M, Hebsgaard J, Nanou E, et al.
Proc Natl Acad Sci U S A
. 2009 Apr;
106(18):7613-8.
PMID: 19383789
Signaling factors involved in CNS development have been used to control the differentiation of embryonic stem cells (ESCs) into mesencephalic dopamine (mesDA) neurons, but tend to generate a limited yield...
9.
Baudet C, Pozas E, Adameyko I, Andersson E, Ericson J, Ernfors P
J Neurosci
. 2008 Jan;
28(4):963-75.
PMID: 18216204
Establishment of the neuromuscular synapse requires bidirectional signaling between the nerve and muscle. Although much is known on nerve-released signals onto the muscle, less is known of signals important for...
10.
Bailey P, Klos J, Andersson E, Karlen M, Kallstrom M, Ponjavic J, et al.
Exp Cell Res
. 2006 Aug;
312(16):3108-19.
PMID: 16919269
Highly conserved non-coding DNA regions (HCNR) occur frequently in vertebrate genomes, but their functional roles remain unclear. Here, we provide evidence that a large portion of HCNRs are enriched for...