Cecilia Lundberg

Affiliations: 
Wallenberg Neuroscience Center, Lund University, Lund, Skåne län, Sweden 
Area:
Parkinson, gene therapy, viral vectors
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"Cecilia Lundberg"
Mean distance: 17.38 (cluster 32)
 

Children

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Marie Jönsson grad student 2004-2004
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Publications

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Quintino L, Namislo A, Davidsson M, et al. (2018) Destabilizing Domains Enable Long-Term and Inert Regulation of GDNF Expression in the Brain. Molecular Therapy. Methods & Clinical Development. 11: 29-39
Breger L, Wettergren EE, Quintino L, et al. (2016) Regulated Gene Therapy. Methods in Molecular Biology (Clifton, N.J.). 1382: 57-66
Quintino L, Manfré G, Wettergren EE, et al. (2013) Functional neuroprotection and efficient regulation of GDNF using destabilizing domains in a rodent model of Parkinson's disease. Molecular Therapy : the Journal of the American Society of Gene Therapy. 21: 2169-80
Ã…kerblom M, Sachdeva R, Quintino L, et al. (2013) Visualization and genetic modification of resident brain microglia using lentiviral vectors regulated by microRNA-9. Nature Communications. 4: 1770
Tai K, Quintino L, Isaksson C, et al. (2012) Destabilizing domains mediate reversible transgene expression in the brain. Plos One. 7: e46269
Nielsen TT, Marion Iv, Hasholt L, et al. (2009) Neuron-specific RNA interference using lentiviral vectors. The Journal of Gene Medicine. 11: 559-69
Deierborg T, Staflin K, Pesic J, et al. (2009) Absence of striatal newborn neurons with mature phenotype following defined striatal and cortical excitotoxic brain injuries. Experimental Neurology. 219: 363-7
Nielsen TT, Jakobsson J, Rosenqvist N, et al. (2009) Incorporating double copies of a chromatin insulator into lentiviral vectors results in less viral integrants. Bmc Biotechnology. 9: 13
Lundberg C, Björklund T, Carlsson T, et al. (2008) Applications of lentiviral vectors for biology and gene therapy of neurological disorders. Current Gene Therapy. 8: 461-73
Rogelius N, Hebsgaard JB, Lundberg C, et al. (2008) Reprogramming of neonatal SVZ progenitors by islet-1 and neurogenin-2. Molecular and Cellular Neurosciences. 38: 453-9
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