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    Philipp Spahn

    TitlePostdoctoral Scholar
    SchoolUniversity of California, San Diego
    DepartmentPediatrics
    Address9500 Gilman Drive #0760
    CA La Jolla 92093
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      Publications listed below are automatically derived from MEDLINE/PubMed and other sources, which might result in incorrect or missing publications. Researchers can login to make corrections and additions, or contact us for help.
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      1. Hefzi H, Ang KS, Hanscho M, Bordbar A, Ruckerbauer D, Lakshmanan M, Orellana CA, Baycin-Hizal D, Huang Y, Ley D, Martinez VS, Kyriakopoulos S, Jiménez NE, Zielinski DC, Quek LE, Wulff T, Arnsdorf J, Li S, Lee JS, Paglia G, Loira N, Spahn P, Pedersen LE, Gutierrez JM, King ZA, Lund AM, Nagarajan H, Thomas A, Abdel-Haleem AM, Zanghellini J, Kildegaard HF, Voldborg BG, Gerdtzen ZP, Betenbaugh MJ, Palsson BO, Andersen MR, Nielsen LK, Borth N, Lee DY, Lewis NE. A Consensus Genome-scale Reconstruction of Chinese Hamster Ovary Cell Metabolism. Cell Syst. 2016 Nov 23; 3(5):434-443.e8. PMID: 27883890.
        View in: PubMed
      2. Spahn P, Hansen AH, Kol S, Voldborg BG, Lewis NE. Predictive glycoengineering of biosimilars using a Markov chain glycosylation model. Biotechnol J. 2016 Nov 17. PMID: 27860290.
        View in: PubMed
      3. Chiang AW, Li S, Spahn P, Richelle A, Kuo CC, Samoudi M, Lewis NE. Modulating carbohydrate-protein interactions through glycoengineering of monoclonal antibodies to impact cancer physiology. Curr Opin Struct Biol. 2016 Sep 14; 40:104-111. PMID: 27639240.
        View in: PubMed
      4. Spahn P, Hansen AH, Hansen HG, Arnsdorf J, Kildegaard HF, Lewis NE. A Markov chain model for N-linked protein glycosylation - towards a low-parameter tool for model-driven glycoengineering. Metab Eng. 2016 Jan; 33:52-66. PMID: 26537759.
        View in: PubMed
      5. Spahn P, Lewis NE. Systems glycobiology for glycoengineering. Curr Opin Biotechnol. 2014 Sep 6; 30C:218-224. PMID: 25202878.
        View in: PubMed
      6. Spahn P, Huelsmann S, Rehorn KP, Mischke S, Mayer M, Casali A, Reuter R. Multiple regulatory safeguards confine the expression of the GATA factor Serpent to the hemocyte primordium within the Drosophila mesoderm. Dev Biol. 2014 Feb 1; 386(1):272-9. PMID: 24360907.
        View in: PubMed
      7. Boehme P, Spahn P, Amendt J, Zehner R. The analysis of temporal gene expression to estimate the age of forensically important blow fly pupae: results from three blind studies. Int J Legal Med. 2014 May; 128(3):565-73. PMID: 24178670.
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      8. Spahn P, Reuter R. A vertex model of Drosophila ventral furrow formation. PLoS One. 2013; 8(9):e75051. PMID: 24066163.
        View in: PubMed
      9. Boehme P, Spahn P, Amendt J, Zehner R. Differential gene expression during metamorphosis: a promising approach for age estimation of forensically important Calliphora vicina pupae (Diptera: Calliphoridae). Int J Legal Med. 2013 Jan; 127(1):243-9. PMID: 22555870.
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      10. Spahn P, Ott A, Reuter R. The PDZ-GEF protein Dizzy regulates the establishment of adherens junctions required for ventral furrow formation in Drosophila. J Cell Sci. 2012 Aug 15; 125(Pt 16):3801-12. PMID: 22553205.
        View in: PubMed
      11. Garnica S, Spahn P, Oertel B, Ammirati J, Oberwinkler F. Tracking the evolutionary history of Cortinarius species in section Calochroi, with transoceanic disjunct distributions. BMC Evol Biol. 2011; 11:213. PMID: 21771336.
        View in: PubMed
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