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1 The relevance of gene transfer to the safety of food and feed derived from genetically modified (GM) plants
article 2004    
Author: Eede, G. van den · Aarts, H. · Buhk, H.J. · Corthier, G. · Flint, H.J. · Hammes, W. · Jacobsen, B. · Midtvedt, T. · Vossen, J. van der · Wright, A. von · Wackernagel, W. · Wilcks, A.
Keywords: Biology · Biotechnology · Aantibiotic resistance · Agrobacterium tumefaciens · Biosafety · Conjugation · DNA degradation · DNA integration · Gene transfer · GMO · Horizontal gene transfer · Marker gene removal · Marker genes · Marker rescue · risk assessment · safety assessment · Transformation · plasmid vector · conference paper · DNA modification · electroporation · food analysis · food safety · gene delivery system · gene expression · gene function · gene transfer · genetically modified food · human · marker gene · medical information · nonhuman · promoter region · public health · risk assessment · tissue specificity · Animal Feed · Animals · Consumer Product Safety · European Union · Food Analysis · Food Supply · Gene Transfer Techniques · Gene Transfer, Horizontal · Genetic Engineering · Humans · International Cooperation · Plants, Genetically Modified · Risk Assessment · Agrobacterium · Agrobacterium tumefaciens
[Abstract]

2 CD34+ cells home, proliferate, and participate in capillary formation, and in combination with CD34- cells enhance tube formation in a 3-dimensional matrix
article 2005    
Author: Rookmaaker, M.B. · Verhaar, M.C. · Loomans, C.J.M. · Verloop, R. · Peters, E. · Westerweel, P.E. · Murohara, T. · Staal, F.J.T. · Zonneveld, A.J. van · Koolwijk, P. · Rabelink, T.J. · Hinsbergh, V.W.M. van
Keywords: Biology · Biomedical Research · Angiogenesis · Gene therapy · Nitric oxide, endothelium, vascular type · CD34 antigen · Nitric oxide · Bone marrow cell · Capillary endothelium · Capillary proliferation · Cell population · Cell proliferation · Facilitation · Gene therapy · Hhematopoietic stem cell · Human cell · Immunohistochemistry · Marker gene · Neovascularization (pathology) · Nerve sprouting · Neural tube · Peripheral vascular disease · Antigens, CD34 · Biological Markers · Capillaries · Cell Differentiation · Cell Division · Cell Movement · Cell Separation · Cells, Cultured · Coculture Techniques · Endothelium, Vascular · Fetal Blood · Hematopoietic Stem Cells · Humans · Neovascularization, Physiologic
[Abstract]

3 The Aspergillus nidulans amdS gene as a marker for the identification of multicopy T-DNA integration events in Agrobacterium-mediated transformation of Aspergillus awamori
article 2004    
Author: Michielse, C.B. · Ram, A.F.J. · Hondel, C.A.M.J.J. van den
Keywords: Biology · Biotechnology · Agrobacterium tumefaciens · amdS selection marker · Aspergillus awamori · Filamentous fungi · Multicopy T-DNA integration · Transformation · acetamidase · acetamide · agar · DNA · fungal enzyme · hygromycin · nitrogen · unclassified drug · agar medium · analytic method · antibiotic resistance · article · Aspergillus awamori · Aspergillus nidulans · controlled study · culture medium · DNA integration · frequency analysis · fungus identification · gene transfer · genetic selection · genetic transformation · growth rate · intermethod comparison · marker gene · nonhuman · priority journal · Rhizobium · Amidohydrolases · Aspergillus · Cinnamates · Gene Expression Regulation, Fungal · Genes, Fungal · Genetic Markers · Hygromycin B · Plasmids · Rhizobium · Transformation, Genetic · Agrobacterium · Agrobacterium tumefaciens · Aspergillus · Aspergillus awamori · Emericella nidulans · Fungi
[Abstract]

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