{"id":112,"date":"2016-02-25T11:34:02","date_gmt":"2016-02-25T10:34:02","guid":{"rendered":"http:\/\/biomembranes.eu\/?page_id=112"},"modified":"2022-02-25T19:19:05","modified_gmt":"2022-02-25T18:19:05","slug":"publications","status":"publish","type":"page","link":"http:\/\/biomembranes.eu\/?page_id=112","title":{"rendered":"Publications"},"content":{"rendered":"<p>Publications<\/p>\n<hr \/>\n<p><strong>2021-<\/strong><\/p>\n<p>Mette Galsgaard Malle, Philipp M. G. L\u00f6ffler, S\u00f8ren S.-R. Bohr, Magnus Berg Sletfjerding, Nikolaj Alexander Risgaard, Simon Bo Jensen, Min Zhang, Per Hedegaard, Stefan Vogel*, Nikos S. Hatzakis*, Single particle combinatorial multiplexed liposome fusion mediated by DNA, <strong><em>Nature Chemistry<\/em>, 2021, accepted<\/strong><\/p>\n<p><strong>2019-2020<\/strong><\/p>\n<p>Arias-Alpizar, G., Kong, L., Vlieg, R. C., Rabe, A., Papadopoulou, P., Meijer, M. S., Bonnet, <strong>S., Vogel<\/strong>, S. Noort, J. van, Kros A. and Campbell, F.<strong><sup>*<\/sup><\/strong>, Light-triggered switching of liposome surface charge directs delivery of membrane impermeable payloads in vivo, <strong><em>Nat. Comm.<\/em><\/strong> 2020, (11), 3638.<\/p>\n<p>L\u00f6ffler, P. M. G., Rabe, A. and <strong>Vogel, S<\/strong>.*, Lipid-modified peptide nucleic acids \u2013 synthesis and application to programmable liposome fusion., <strong><em>Meth. Mol. Bio.<\/em><\/strong>, <strong>2020<\/strong>, Ed. Nielsen, P. E. Springer, New York, NY, (2105), 75-96.<\/p>\n<p>L\u00f6ffler, P. M. G., Ries, O. and <strong>Vogel, S*, <\/strong>DNA-mediated liposome fusion observed by fluorescence spectrometry., <strong><em>Meth. Mol. Bio.<\/em><\/strong>, <strong>2020<\/strong>, Ed. Ashtakova, I. K., Springer, New York, NY, (2063), 101-118.<\/p>\n<p>Thomsen, R. P., Malle M. G., Okholm, A. H., Krishnan S., Nielsen S. S.-R., S\u00f8rensen R. S., Ries, O., <strong>Vogel, S.<\/strong>, Simmel F., Hatzakis N. S.*, Kjems J*, A large size-selective DNA nanopore with sensing applications, <strong><em>Nat. Comm<\/em><\/strong>. <strong>2019<\/strong>, (10), 5655.<\/p>\n<p>L\u00f6ffler, P. M. G., Hansen, A. H., Ries, O., Jakobsen, U., Rabe, A., S\u00f8rensen, K. T., Glud, K. and <strong>Vogel, S<\/strong>.*, Lipidated Polyaza Crown Ethers as Membrane Anchors for DNA-Controlled Content Mixing Between Liposomes. <strong><em>Scientific Reports<\/em><\/strong> <strong>2019<\/strong>, 13856<\/p>\n<p><strong>2017-2018<\/strong><\/p>\n<p>A. Ferino, G. Miglietta, R. Picco, <strong>S. Vogel<\/strong>, J. Wengel and L. E. Xodo, MicroRNA Therapeutics: Design of single-stranded miR-216b mimics to target KRAS in pancreatic cancer cells. <strong><em>RNA Biology<\/em><\/strong>, <strong>2018<\/strong> 15:10, 1273-1285.<\/p>\n<p>P. M. G. L\u00f6ffler, O. Ries, A. Rabe, A. H. Okholm, R. P. Thomsen, J. Kjems and S. Vogel, A DNA-programmed liposome fusion cascade.<strong><em> Angew. Chem. Int. Ed. 2017<\/em><\/strong>, 56, 13228-13231.<\/p>\n<p>O. Ries, P. M. G. L\u00f6ffler, A. Rabe, J. J. Malavan and S. Vogel, Efficient liposome fusion mediated by lipid\u2013nucleic acid conjugates. <strong><em>Org. Biomol. Chem<\/em><\/strong>. <strong>2017<\/strong>, 15, 8936\u20138945.<\/p>\n<p>A. Rabe, P. M. G. L\u00f6ffler, O. Ries and S. Vogel, Programmable fusion of liposomes mediated by lipidated PNA. <strong><em>Chem. Commun<\/em><\/strong>. <strong>2017<\/strong>, 53, 11921\u201311924.<\/p>\n<p><strong>2015-2016<\/strong><\/p>\n<p>S. Cogoi, U. Jakobsen, E. B. Pedersen, S. Vogel &amp; L. E. Xodo, Lipid-modified G4-decoy oligonucleotide anchored to nanoparticles: delivery and bioactivity in pancreatic cancer cells <strong><em>Sci. Rep<\/em><\/strong>. <strong>2016<\/strong>, 6, 1-13.<\/p>\n<p>U. Jakobsen and S. Vogel, Mismatch discrimination of lipidated DNA and LNA-probes (LiNAs) in hybridization-controlled liposome assembly, <strong><em>Org. Biomol. Chem.<\/em><\/strong>, <strong>2016<\/strong>, 6985-6995.<\/p>\n<p>O. Ries and S. Vogel, Aptamer\u2013Liposome Conjugates: Current Art and Future Prospects, <strong>Aptamers, <\/strong>Ed. R. N. Veedu, John Pan Stanford Publishing Pte. Ltd.,<strong> 2016<\/strong>, 223-240.<\/p>\n<p>O. Ries, P. M. G. L\u00f6ffler, S. Vogel, Convenient synthesis and application of versatile nucleic acid lipid membrane anchors in the assembly and fusion of liposomes, <strong><em>Org. Biomol. Chem<\/em><\/strong>., <strong>2015<\/strong>, 9673-9680.<\/p>\n<p>S. Vogel, DNA\u2010Controlled Assembly of\u00a0Soft\u00a0Nanoparticles, DNA in Supramolecular Chemistry and Nanotechnology, Ed. E. Stulz &amp; G. H. Clever, John Wiley &amp; Sons, Ltd., Chichester <strong>2015<\/strong>, 397-409.<\/p>\n<p><strong>2013-2014<\/strong><\/p>\n<p>S. Vogel, O. Ries, U. Jakobsen, J. Schytte, <em>Lipid membrane anchors<\/em>, <strong>2014<\/strong>, DK-PA201470516.<\/p>\n<p>U. Jakobsen and S. Vogel, Assembly of Liposomes controlled by Triple Helix formation, <strong><em>Bioconj. Chem<\/em><\/strong>. <strong>2013<\/strong>, 24, 1485-1495.<\/p>\n<p>B. B. Olsen, H. Thisgaard, S. Vogel, M. Thomassen, T. A. Kruse, D. Needham, J. Mollenhauer and P. F. H\u00f8ilund-Carlsen, Novel radioisotope-based nanomedical approaches, <strong><em>Eur. J. Nanomed<\/em><\/strong>., <strong>2013<\/strong>, 5(4), 181-193.<\/p>\n<p>T. E. Rasmussen, L. Jauffred, J. Brewer, S. Vogel, E. R. Torbensen, C. Lagerholm, L. Oddershede and E. C. Arnspang, Single molecule applications of quantum dots. <strong><em>J. Mod. Physics<\/em><\/strong>, <strong>2013<\/strong>, 4, 27-42.<\/p>\n<p><strong>2011-2012<\/strong><\/p>\n<p>J. T. Madsen, S. Vogel, J. Duus; K. E. Andersen, Encapsulating contact allergens in liposomes, ethosomes, and polycaprolactone may affect their sensitizing properties. <strong><em>Cutaneous and Ocular Toxicology<\/em><\/strong>, <strong>2011<\/strong>, 30(2), 116-123.<\/p>\n<p>J. T. Madsen, S. Vogel, J. D. Johansen, K. E. Andersen, J. A. S\u00f8rensen, J. B. Nielsen, Percutaneous penetration characteristics and release kinetics of contact allergens encapsulated in ethosomes. <strong><em>Cutaneous and Ocular Toxicology<\/em><\/strong>, <strong>2011<\/strong>,\u00a030(1),\u00a038-44.<\/p>\n<p><strong>2006-2010<\/strong><\/p>\n<p>J. T. Madsen, S. Vogel, K. E. Andersen, Formulation of contact allergens in ethosomes may increase their sensitizing capacity, <strong><em>Dermatitis<\/em><\/strong>, <strong>2010<\/strong>, 21, 227-228.<\/p>\n<p>J. T. Madsen, S. Vogel, A.-T. Karlberg, C. Simonsson, J. D. Johansen, K. E. Andersen, Encapsulating contact allergens in liposomes, ethosomes and polycaprolactone may affect their sensitizing properties, <strong><em>Contact Dermatitis<\/em><\/strong>.\u00a0 <strong>2010<\/strong>, 63(4),\u00a0209-14.<\/p>\n<p>U. Jakobsen, S. A. Shelke, S. Vogel, S. Th. Sigurdsson, Site-Directed Spin-Labeling of Nucleic Acids by Click Chemistry: Detection of Abasic Sites in Duplex DNA by EPR Spectroscopy, <strong><em>J. Am. Chem. Soc.<\/em><\/strong><em> <strong>2010<\/strong><\/em>, 132, 10424-10428.<strong><sup>*<\/sup><\/strong><\/p>\n<p>J. T. Madsen, S. Vogel, A.-T. Karlberg, C. Simonsson, J. D. Johansen, K. E. Andersen, Ethosome Formulations of Known Contact Allergens can Increase their Sensitizing Capacity, <strong><em>Acta. Derm. Venereol<\/em><\/strong><em>.<\/em>, <strong>2010<\/strong>, 90, 374-378.<\/p>\n<p>U. Jakobsen and S. Vogel, DNA-Controlled Assembly of Liposomes in Diagnostics, <strong><em>Methods in Enzymology<\/em><\/strong>, Vol. 464, <strong>2009<\/strong>, 233-248.<\/p>\n<p>A. C. Simonsen, Stefan Vogel, DNA mediated assembly of lipid membranes, patent, <strong>2008<\/strong>, WO 2008\/089771 A1.<\/p>\n<p>U. Jakobsen, A. C. Simonsen, Stefan Vogel, DNA-Controlled Assembly of Soft Nanoparticles, <strong><em>J. Am. Chem. Soc<\/em><\/strong>. <strong>2008<\/strong>, 130, 10462-10463<\/p>\n<p>U. Jakobsen, Stefan Vogel, Lipophilic DNA-conjugates: DNA controlled assembly of liposomes, <strong><em>Nucleosides, Nucleotides &amp; Nucleic Acids<\/em><\/strong>, <strong>2008<\/strong>, 52(1), 223-224.<\/p>\n<p>U. Jakobsen, Adam C. Simonsen, Stefan Vogel, DNA-Controlled Assembly of Soft Nanoparticles, <strong><em>Nucleosides, Nucleotides &amp; Nucleic Acids<\/em><\/strong>, <strong>2008<\/strong>,\u00a0 52(1), 225-226.<\/p>\n<p>S. Vogel, DNA controlled assembly of Liposomes, <strong><em>Nucleosides, Nucleotides &amp; Nucleic Acids<\/em><\/strong>, <strong>2008<\/strong>, 52(1), 21-22.<\/p>\n<p>A. C. Simonsen, S. Vogel, DNA mediated assembly of lipid particles and uses therefor, <em>patent<\/em>, <strong>2007<\/strong>, DK200700110.<\/p>\n<p>U. Jacobsen, K. Rohr, S. Vogel, Towards a catalytic site in DNA: Polyaza crown ether as building blocks in DNA-conjugates. <em>Nucleosides, Nucleotides &amp; Nucleic Acids<\/em>, 2007, 26, 1419-1422.<\/p>\n<p>U. Jakobsen, R. K. Madsen, S. Vogel, Polyaza crown ether as non-nucleosidic building blocks in DNA-conjugates: Synthesis and remarkable stabilization of dsDNA. <strong><em>Nucleosides, Nucleotides &amp; Nucleic Acids<\/em><\/strong>, <strong>2007<\/strong>, 26, 1221-1224.<\/p>\n<p>C. Verhagen, T. Bryld, M. Raunkj\u00e6r, S. Vogel, J. Wengel, Synthesis of conformationally locked methylamino-C-nucleosides for use as a conjugation point and the evaluation of N-(pyren-1-ylcarbonyl)-methylamino-C-nucleosides, <strong><em>Eur.<\/em> <em>J. Org. Chem<\/em><\/strong>., <strong>2006<\/strong>, 2538-2548.<\/p>\n<p>K. Rohr, S. Vogel, Polyaza crown ether as non-nucleosidic building blocks in DNA-conjugates: Synthesis and remarkable stabilization of dsDNA, <strong><em>Chembiochem<\/em><\/strong>, <strong>2006<\/strong>, 7, 463-467.<\/p>\n<p>G. Gaubert, R. B. Babu, S. Vogel, T. Bryld, B. Vester, J. Wengel, L-<em>Ribo<\/em> and \uf062-D-<em>lyxo<\/em>-configured oligonucleotides: Synthesis and RNA-selective hybridization <strong><em>Tetrahedron<\/em><\/strong>, <strong>2006<\/strong>, 62, 2278-2294.<\/p>\n<p>G. Gaubert, R. B. Babu, S. Vogel, T. Bryld, B. Vester, J. Wengel, L-<em>Ribo<\/em> and \uf062-D-<em>lyxo<\/em>-configured oligonucleotides: <strong><em>Tetrahedron<\/em><\/strong>, <strong>2006<\/strong>, 62, 2278-2294.<\/p>\n<p><strong>2000-2005<\/strong><\/p>\n<p>S. Vogel, K. Rohr, O. Dahl, J. Wengel, A substituted triaza crown ether as a binding site in DNA conjugates <strong><em>Chem. <\/em><\/strong><strong><em>Commun<\/em><\/strong>., <strong>2003<\/strong>, (8), 1006-1007.<\/p>\n<p>H. Betat, S. Vogel, M. Struhalla, H.-H. Foerster, M. Famulok, P. Welzel, U. Hahn, Aptamers that recognize the lipid moiety of the antibiotic Moenomycin A. <strong><em>J. Biol. Chem<\/em><\/strong><em>.<\/em>, <strong>2003<\/strong>, 384(10\/11), 1497-1500.<\/p>\n<p>S. Vogel, K. Rohr., O. Dahl, J. Wengel, Synthesis of an asymmetric substituted aza crown ether as metal- and amino acid binding site in DNA-conjugates. <strong><em>Nucleosides, Nucleotides &amp; Nucleic Acids<\/em><\/strong>, <strong>2003<\/strong>, 22(5-8), 1039-1040.<\/p>\n<p>K. Stembera, S. Vogel, A. Buchynskyy, J. A. Ayala, P. Welzel, A surface plasmon resonance analysis of the interaction between the antibiotic moenomycin A and penicillin-binding protein 1b. <strong><em>ChemBioChem<\/em><\/strong>, <strong>2002<\/strong>, 3, 559-565.<\/p>\n<p>A. Buchynskyy, U. Kempin, S. Vogel, L. Hennig, M. Findeisen, D. M\u00fcller, S. Giesa, H. Knoll, P. Welzel, Synthesis of fluorescent derivatives of the antibiotic moenomycin A. <strong><em>Eur. J. Org. Chem<\/em><\/strong>., <strong>2002<\/strong>, 7, 1149-1162.<\/p>\n<p>A. Buchynskyy, K. Stembera, D. Knoll, S. Vogel, U. Kempin, A. Biallass, L. Hennig, M. Findeisen, D. M\u00fcller, P. Welzel, Synthesis of tools for raising antibodies against moenomycin epitopes and initial immunological studies. <strong><em>Tetrahedron<\/em><\/strong>, <strong>2002<\/strong>, 58, 7741-7760.<\/p>\n<p>K. Stembera, A. Buchynskyy, S. Vogel, D. Knoll, A. A. Osman, J. A. Ayala, P. Welzel, Moenomycin-mediated affinity purification of penicillin-binding protein 1b. <strong><em>ChemBioChem<\/em><\/strong>, <strong>2002<\/strong>, 3, 332-340.<\/p>\n<p>S. Vogel, K. Stembera, L. Hennig, M. Findeisen, S. Giesa, P. Welzel, M. Lampilas, Moenomycin analogues with modified lipid side chains from indium-mediated Barbier-type reactions. <strong><em>Tetrahedron<\/em><\/strong>, <strong>2001<\/strong>, 57, 4139-4146.<\/p>\n<p>S. Vogel, K. Stembera, L. Hennig, M. Findeisen, S. Giesa, P. Welzel, C. Tillier, C. Bonhomme, M. Lampilas, Moenomycin analogs with long-chain amine lipid parts from reductive amination. <strong><em>Tetrahedron<\/em><\/strong>, <strong>2001<\/strong>, 57, 4147-4160.<\/p>\n<p>S. Vogel, M. Lampilas Moenomycin A derivatives, their preparation, and use as antibacterial products. (Aventis AG, France.). Eur. Pat. Appl., <strong>2001<\/strong>, 19 pp. EP 1 069 130 A1.<\/p>\n<p>S. Vogel, A. Buchynskyy, K. Stembera, K. Richter, L. Hennig, D. M\u00fcller, P. Welzel, F. Maquin, C. Bonhomme, M. Lampilas, Some Selective Reactions of Moenomycin A. <strong><em>Bioorg. Med. Chem. Lett<\/em><\/strong>., <strong>2000<\/strong>, 10, 1963-1965.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Publications 2021- Mette Galsgaard Malle, Philipp M. G. L\u00f6ffler, S\u00f8ren S.-R. Bohr, Magnus Berg Sletfjerding, Nikolaj Alexander Risgaard, Simon Bo Jensen, Min Zhang, Per Hedegaard, Stefan Vogel*, Nikos S. Hatzakis*, Single particle combinatorial multiplexed liposome fusion mediated by DNA, Nature Chemistry, 2021, accepted 2019-2020 Arias-Alpizar, G., Kong, L., Vlieg, R. C., Rabe, A., Papadopoulou, P., [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":[],"_links":{"self":[{"href":"http:\/\/biomembranes.eu\/index.php?rest_route=\/wp\/v2\/pages\/112"}],"collection":[{"href":"http:\/\/biomembranes.eu\/index.php?rest_route=\/wp\/v2\/pages"}],"about":[{"href":"http:\/\/biomembranes.eu\/index.php?rest_route=\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"http:\/\/biomembranes.eu\/index.php?rest_route=\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"http:\/\/biomembranes.eu\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=112"}],"version-history":[{"count":9,"href":"http:\/\/biomembranes.eu\/index.php?rest_route=\/wp\/v2\/pages\/112\/revisions"}],"predecessor-version":[{"id":352,"href":"http:\/\/biomembranes.eu\/index.php?rest_route=\/wp\/v2\/pages\/112\/revisions\/352"}],"wp:attachment":[{"href":"http:\/\/biomembranes.eu\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=112"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}