@article{SmithBaumannWilsonetal.1987, author = {Smith, Walker O. and Baumann, Marcus and Wilson, David L. and Aletsee, Ludwig}, title = {Phytoplankton biomass and productivity in the marginal ice zone of the Fram Strait during summer 1984}, series = {Journal of geophysical research}, volume = {Vol. 92}, journal = {Journal of geophysical research}, number = {Iss. C7}, issn = {2156-2202 (E-Journal); 2169-9291 (E-Journal); 0148-0227 (Print); 2169-9275 (Print)}, pages = {6777 -- 6786}, year = {1987}, language = {en} } @article{SpiessWilfriedAlvarezetal.2011, author = {Spiess, Elmar and Wilfried, Reichardt and Alvarez, Gerardo and Gottrup, Marcus and {\"O}hlschl{\"a}ger, Peter}, title = {An Artificial PAP Gene Breaks Self-tolerance and Promotes Tumor Regression in the TRAMP Model for Prostate Carcinoma}, series = {Molecular Therapy}, volume = {20}, journal = {Molecular Therapy}, number = {3}, publisher = {Elsevier}, address = {Amsterdam}, isbn = {1525-0016}, pages = {555 -- 564}, year = {2011}, language = {en} } @inproceedings{SrivastavaKnolleSchnugetal.2015, author = {Srivastava, Alok and Knolle, F. and Schnug, E. and Scherer, Ulrich W.}, title = {Study of Trace Elements in Water Bodies of the Harz Mts. Region, Germany using Total Reflection X Ray Fluorescence (TXRF)}, series = {DAE-BRNS 12th National Symposium on Nuclear and Radiochemistry NUCAR 2015, Feb. 9-13, Mumbai, India, Mumbai, India; 02/2015}, booktitle = {DAE-BRNS 12th National Symposium on Nuclear and Radiochemistry NUCAR 2015, Feb. 9-13, Mumbai, India, Mumbai, India; 02/2015}, pages = {355 -- 356}, year = {2015}, language = {de} } @incollection{SrivastavaKnolleHoyleretal.2015, author = {Srivastava, Alok and Knolle, Friedhart and Hoyler, Friedrich and Scherer, Ulrich W. and Schnug, Ewald}, title = {Uranium Toxicity in the State of Punjab in North-Western India}, series = {Management of Natural Resources in a Changing Environment}, booktitle = {Management of Natural Resources in a Changing Environment}, publisher = {Springer}, address = {Cham}, isbn = {978-3-319-12559-6}, doi = {10.1007/978-3-319-12559-6_21}, pages = {271 -- 275}, year = {2015}, abstract = {Lately there has been an increasing concern about uranium toxicity in some districts of Punjab State located in the North Western part of India after the publication of a report (Blaurock-Busch et al. 2010) which showed that the concentration of uranium in hair and urine of children suffering from physical deformities, neurological and mental disorder from Malwa region (Fig. 1) of Punjab State was manifold higher than the reference ranges. A train which connects the affected region with the nearby city of Bikaner which has a Cancer Hospital has been nicknamed as Cancer Express due to the frenzy generated on account of uranium related toxicity.}, language = {en} } @article{SrivastavaSinghAggarwaletal.2010, author = {Srivastava, Alok and Singh, Virendra and Aggarwal, Pranav and Schneeweiss, F. and Scherer, Ulrich W. and Friedrich, W.}, title = {Optical studies of insulating polymers for radiation dose monitoring}, series = {Indian Journal of Pure \& Applied Physics}, volume = {48}, journal = {Indian Journal of Pure \& Applied Physics}, number = {11}, isbn = {0019-5596}, pages = {782 -- 786}, year = {2010}, language = {en} } @misc{StadtmuellerTippkoetterUlber2014, author = {Stadtm{\"u}ller, R. and Tippk{\"o}tter, Nils and Ulber, Roland}, title = {Produktion von einzelstr{\"a}ngigen DNA-Makronukleotiden}, series = {Chemie Ingenieur Technik}, volume = {86}, journal = {Chemie Ingenieur Technik}, number = {9}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201450372}, pages = {1403}, year = {2014}, abstract = {In der Biotechnologie stellt Einzelstrang-DNA (ssDNA) eine Schl{\"u}sselrolle dar und fungiert z. B. als Baustein f{\"u}r die nanoskalige Feinmechanik oder als Affinit{\"a}tsligand, ein sog. Aptamer. Hinsichtlich der industriellen Verwendung bieten Aptamere im Vergleich zu Antik{\"o}rpern viele Vorteile, wie z. B. eine gute Renaturierung bzw. die Selektion f{\"u}r cytotoxische Molek{\"u}le. Aktuell w{\"a}chst die Nachfrage f{\"u}r chim{\"a}re Aptamere von bis zu 200 n, um die simultane Bindung bzw. die Modifikation mehrerer Molek{\"u}le zu realisieren. Bis heute wird ssDNA mittels einer sequentiellen Synthese hergestellt, die eine Effizienz von ca. 99,5 \% je Zyklus und bereits bei einer Produktl{\"a}nge von 100 n nur noc hAusbeuten von max. 60 \% zeigt. Um dem Bedarf an ssDNA im Bereich > 100 n zu entsprechen, wurden zwei enzymatische Verfahren zur Produktion dieser Makronukleotide entworfen. Die erste Technik basiert auf einerFestphasen-PCR und erm{\"o}glicht sowohlein Primer- als auch ein Templatrecycling. Das zweite Verfahren beruht auf einer Plasmidbasierten In-vivo-Amplifikation, der sog. AptaGENE®-Technologie. In einer einzigen Klonierung werden bis zu 100 Kopien des Monomers in einen Vektor kloniert. Nach einer Transformation folgt der regul{\"a}re Produktionsprozess in Form einer Kultivierung, Plasmidpr{\"a}paration und sequenziellen Aufarbeitung von bis zu 6 · 10¹⁵ Makronukleotiden pro Milliliter Fermentationsvolumen.}, language = {de} } @misc{StadtmuellerWollnyTippkoetteretal.2012, author = {Stadtm{\"u}ller, R. and Wollny, S. and Tippk{\"o}tter, Nils and Ulber, Roland}, title = {Amplifikation und Einsatz von ssDNA-Aptameren}, series = {Chemie Ingenieur Technik}, volume = {84}, journal = {Chemie Ingenieur Technik}, number = {8}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201250112}, pages = {1294}, year = {2012}, abstract = {Die wachsende Produktpalette von z. B. Pharmazeutika geht mit einer steigenden Nachfrage f{\"u}r hochsensitive/schonende Aufreinigungstechniken einher. Bisherige Verfahren f{\"u}hren oft zu geringer Reinheit und verminderter Bioaktivit{\"a}t, zeigen eine Limitation der Analytengr{\"o}ße oder bedingen dessen Modifikation. Durch die Kombination von mikroskaligen Magnetpartikeln und spezifisch wechselwirkenden Einzelstrang-DNA-Oligonukleotiden, den sog. ssDNA-Aptameren, sind eine h{\"o}here Selektivit{\"a}t/Reinheit und eine Automatisierung m{\"o}glich. In diesem Kontext werden zum einen ssDNA-Amplifikationstechniken und zum anderen der praktische Einsatz von Aptameren in einer Magnetseparation vorgestellt. Die ssDNA-Synthese basiert auf einem In-vivo-dsDNA-Produktionsschritt mittels eines rekombinanten Escherichia coli. Die als High-copy-Plasmid organisierte Sequenz wird in vitro durch Kombination verschiedener enzymatischer Reaktionen in die funktionelle ssDNA {\"u}berf{\"u}hrt. Diese Technik bedingt nur minimale Instrumentierung bzw. Prozessregelung. Die zweite Synthesetechnik wird in Form eines In-vitro-Amplifikationsverfahrens realisiert und beruht auf dem Prinzip einer PCR (Potenzial zu einer Automatisierung bzw. Miniaturisierung). Die gewonnenen Aptamere werden im Anschluss in einem auf Magnetpartikeln basierten Trennverfahren zur Isolationvon 6xHis-tag-Proteinen bez{\"u}glich ihrer Eigenschaften untersucht.}, language = {de} } @misc{StadtmuellerTippkoetterUlber2013, author = {Stadtm{\"u}ller, Ralf and Tippk{\"o}tter, Nils and Ulber, Roland}, title = {A method for production of single-stranded nucleic acids [Europ{\"a}ische Patentanmeldung]}, publisher = {Europ{\"a}isches Patentamt}, address = {Den Hague}, pages = {14 Seiten}, year = {2013}, language = {en} } @misc{StadtmuellerTippkoetterUlber2015, author = {Stadtm{\"u}ller, Ralf and Tippk{\"o}tter, Nils and Ulber, Roland}, title = {Method for production of single-stranded macronucleotides}, year = {2015}, abstract = {The invention relates to a method for production of single-stranded macronucleotides by amplifying and ligating an extended monomeric single-stranded target nucleic acid sequence (targetss) into a repetitive cluster of double-stranded target nucleic acid sequences (targetds), and subsequently cloning the construct into a vector (aptagene vector). The aptagene vector is transformed into host cells for replication of the aptagene and isolated in order to optain single-stranded target sequences (targetss). The invention also relates to single-stranded nucleic acids, produced by a method of the invention.}, language = {en} } @article{StanleyHorsburghRossetal.2009, author = {Stanley, Lesley A. and Horsburgh, Brian C. and Ross, Jillian and Scheer, Nico and Wolf, C. Roland}, title = {Drug transporters: Gatekeepers controlling access of xenobiotics to the cellular interior}, series = {Drug Metabolism Reviews}, volume = {41}, journal = {Drug Metabolism Reviews}, number = {1}, publisher = {Taylor \& Francis}, address = {London}, issn = {1097-9883}, doi = {10.1080/03602530802605040}, pages = {27 -- 65}, year = {2009}, language = {en} } @article{StanleyHorsburghRossetal.2006, author = {Stanley, Lesley A. and Horsburgh, Brian C. and Ross, Jillian and Scheer, Nico and Wolf, C. Roland}, title = {Nuclear Receptors which play a pivotal role in drug disposition and chemical toxicity}, series = {Drug Metabolism Reviews}, volume = {38}, journal = {Drug Metabolism Reviews}, number = {3}, issn = {1097-9883}, doi = {10.1080/03602530600786232}, pages = {515 -- 597}, year = {2006}, language = {en} } @misc{StaubTippkoetterSucketal.2009, author = {Staub, C. and Tippk{\"o}tter, Nils and Suck, K. and Ruf, F. and Sohling, U. and Ulber, Roland}, title = {Aufreinigung von Molkeproteinen mittels nat{\"u}rlicher Adsorbermaterialien}, series = {Chemie Ingenieur Technik}, volume = {81}, journal = {Chemie Ingenieur Technik}, number = {8}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.200950310}, pages = {1299}, year = {2009}, abstract = {Molke als Nebenprodukt der K{\"a}seherstellung wurde lange Zeit als Abfall betrachtet. Bedingt durch ihren hohen BOD (biological oxygen demand) war die direkte Einleitung in Gew{\"a}sser, aber auch der mikrobielle Abbau in Kl{\"a}ranlagen bedenklich. Falls eine Weiterverarbeitung der Molke stattfand, so geschah dies meist zu Molkepulver oder Proteinkonzentrat. Als Untersuchungen der Molkeproteine jedoch unter pharmazeutischen Gesichtspunkten interessante Eigenschaften nahelegten, stieg das Interesse am Bioprodukt Molke und ihren Proteinen an. So stehen beispielsweise f{\"u}r die Molkeproteine a-Lactalbumin (ala) und b-Lactoglobulin (blg) antibakterielle, anticancerogene und diverse andere physiologische Effekte in der Diskussion. Gegenw{\"a}rtig finden meist Membranverfahren zur Aufreinigung von Molkeproteinen Anwendung. Als alternatives Verfahren wurde am Institut f{\"u}r Bioverfahrenstechnik in Kaiserslautern ein chromatographisches Verfahren entwickelt, bei dem nat{\"u}rliche Tonminerale zum Einsatz kamen. Nach chemischer und physikalischer Modifikation des Ausgangsmaterials durch den Hersteller S{\"u}d-Chemie wurden drei der Adsorber f{\"u}r n{\"a}here Untersuchungen zur Auftrennung von Molkeproteinen aus Molkekonzentrat herangezogen. Nach einer Cross-Flow-Filtration des Molkekonzentrats erfolgte die Aufreinigung der Molkeproteine in einem FPLC-System.}, language = {de} } @misc{StaubTippkoetterSucketal.2010, author = {Staub, C. and Tippk{\"o}tter, Nils and Suck, K. and Sohling, U. and Ulber, Roland}, title = {Chromatographische Aufarbeitung von Molkekonzentrat mittels mineralischer Granulate}, series = {Chemie Ingenieur Technik}, volume = {82}, journal = {Chemie Ingenieur Technik}, number = {9}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {0009-286X}, doi = {10.1002/cite.201050322}, pages = {1588 -- 1589}, year = {2010}, abstract = {Molke f{\"a}llt im Rahmen der K{\"a}seherstellung allein in Deutschland in Mengen von {\"u}ber 11 Mio. Tonnen j{\"a}hrlich an. Dieses Nebenprodukt wurde trotz seines Reichtums an Milchzucker und Proteinen lange Zeit kaum industriell weiterverarbeitet und stellte ein bedeutendes Problem bei der Abwasserreinigung dar. Derzeit kommen meist kosten- und reinigungsintensive Membranfiltrationsverfahren bei der Auftrennung von Molke in ihre Hauptkomponenten Lactose und Molkenprotein zum Einsatz. Die Produkte finden vorwiegend in der Nahrungsmittelindustrie Anwendung als S{\"u}ßungsmittel, Proteinzusatz oder Texturbildner. Die Mehrheit des Proteins wird dabei als Konzentrat bzw. Proteinpulver verarbeitet. Wegen der antibakteriellen, antiviralen und weiteren wertvollen physiologischen Eigenschaften der Molkeproteine stellt eine weitere Aufreinigung der einzelnen Molkeproteine f{\"u}r die pharmazeutische Industrie einen naheliegenden zus{\"a}tzlichen Wertsch{\"o}pfungsschritt dar. In Kooperation mit der S{\"u}d Chemie AG wurde damit begonnen, ein Verfahren zu entwickeln, das kosteng{\"u}nstige mineralische Adsorbentien verwendet. Bisher konnte die Abtrennung von Lactose von den Molkenproteinen aus verd{\"u}nntem Molkekonzentrat in einem Verfahrensschritt ohne Vorbehandlung des Rohstoffs erfolgreich realisiert werden. Aktuelle Arbeiten besch{\"a}ftigen sich mit der Verbesserung der Proteinbindekapazit{\"a}tund chromatographischen Proteinauftrennung sowie dem Upscaling zum direkten Einsatz von Molkekonzentrat ohne Vorverd{\"u}nnung.}, language = {de} } @misc{StellbergJeromin2000, author = {Stellberg, Michael and Jeromin, G{\"u}nter Erich}, title = {R{\"u}hrvorrichtung f{\"u}r Magnetr{\"u}hrsystem : Patentschrift DE19807518C2 ; Ver{\"o}ffentlichungstag der Patenterteilung: 31.05.2000}, publisher = {Deutsches Patent- und Markenamt}, address = {M{\"u}nchen}, pages = {14 S. : Ill.}, year = {2000}, language = {de} } @article{SvaneborgKarimiVarzanehHojdisetal.2016, author = {Svaneborg, Carsten and Karimi-Varzaneh, Hossein Ali and Hojdis, Nils and Fleck, Franz and Everaers, Ralf}, title = {Multiscale approach to equilibrating model polymer melts}, series = {Physical Review E}, volume = {94}, journal = {Physical Review E}, number = {032502}, publisher = {AIP Publishing}, address = {Melville, NY}, issn = {2470-0053}, doi = {10.1103/PhysRevE.94.032502}, year = {2016}, abstract = {We present an effective and simple multiscale method for equilibrating Kremer Grest model polymer melts of varying stiffness. In our approach, we progressively equilibrate the melt structure above the tube scale, inside the tube and finally at the monomeric scale. We make use of models designed to be computationally effective at each scale. Density fluctuations in the melt structure above the tube scale are minimized through a Monte Carlo simulated annealing of a lattice polymer model. Subsequently the melt structure below the tube scale is equilibrated via the Rouse dynamics of a force-capped Kremer-Grest model that allows chains to partially interpenetrate. Finally the Kremer-Grest force field is introduced to freeze the topological state and enforce correct monomer packing. We generate 15 melts of 500 chains of 10.000 beads for varying chain stiffness as well as a number of melts with 1.000 chains of 15.000 monomers. To validate the equilibration process we study the time evolution of bulk, collective, and single-chain observables at the monomeric, mesoscopic, and macroscopic length scales. Extension of the present method to longer, branched, or polydisperse chains, and/or larger system sizes is straightforward.}, language = {en} } @article{SvaneborgKarimiVarzanehHojdisetal.2018, author = {Svaneborg, Carsten and Karimi-Varzaneh, Hossein Ali and Hojdis, Nils and Fleck, Franz and Everaers, Ralf}, title = {Kremer-Grest Models for Universal Properties of Specific Common Polymer Species}, series = {Soft Condensed Matter}, journal = {Soft Condensed Matter}, number = {1606.05008}, year = {2018}, abstract = {The Kremer-Grest (KG) bead-spring model is a near standard in Molecular Dynamic simulations of generic polymer properties. It owes its popularity to its computational efficiency, rather than its ability to represent specific polymer species and conditions. Here we investigate how to adapt the model to match the universal properties of a wide range of chemical polymers species. For this purpose we vary a single parameter originally introduced by Faller and M{\"u}ller-Plathe, the chain stiffness. Examples include polystyrene, polyethylene, polypropylene, cis-polyisoprene, polydimethylsiloxane, polyethyleneoxide and styrene-butadiene rubber. We do this by matching the number of Kuhn segments per chain and the number of Kuhn segments per cubic Kuhn volume for the polymer species and for the Kremer-Grest model. We also derive mapping relations for converting KG model units back to physical units, in particular we obtain the entanglement time for the KG model as function of stiffness allowing for a time mapping. To test these relations, we generate large equilibrated well entangled polymer melts, and measure the entanglement moduli using a static primitive-path analysis of the entangled melt structure as well as by simulations of step-strain deformation of the model melts. The obtained moduli for our model polymer melts are in good agreement with the experimentally expected moduli.}, language = {en} } @article{TakenagaBiselliSchnitzleretal.2014, author = {Takenaga, Shoko and Biselli, Manfred and Schnitzler, Thomas and {\"O}hlschl{\"a}ger, Peter and Wagner, Torsten and Sch{\"o}ning, Michael Josef}, title = {Toward multi-analyte bioarray sensors: LAPS-based on-chip determination of a Michaelis-Menten-like kinetics for cell culturing}, series = {Physica status solidi A : Applications and materials science}, volume = {211}, journal = {Physica status solidi A : Applications and materials science}, number = {6}, publisher = {Wiley-VCH}, address = {Weinheim}, issn = {1521-396X (E); 1862-6319 (E-Journal); 0031-8965 (Print); 1862-6300 (Print)}, doi = {10.1002/pssa.201330464}, pages = {1410 -- 1415}, year = {2014}, abstract = {The metabolic activity of Chinese hamster ovary (CHO) cells was observed using a light-addressable potentiometric sensor (LAPS). The dependency toward different glucose concentrations (17-200 mM) follows a Michaelis-Menten kinetics trajectory with Kₘ = 32.8 mM, and the obtained Kₘ value in this experiment was compared with that found in literature. In addition, the pH shift induced by glucose metabolism of tumor cells transfected with the HPV-16 genome (C3 cells) was successfully observed. These results indicate the possibility to determine the tumor cells metabolism with a LAPS-based measurement device.}, language = {en} } @inproceedings{TakenagaHerreraWerneretal.2013, author = {Takenaga, Shoko and Herrera, Cony F. and Werner, Frederik and Biselli, Manfred and Schnitzler, Thomas and Sch{\"o}ning, Michael Josef and {\"O}hlschl{\"a}ger, Peter and Wagner, Torsten}, title = {Detection of the metabolic activity of cells by differential measurements based on a single light-addressable potentiometric sensor chip}, series = {11. Dresdner Sensor-Symposium : 9.-11.12.2013}, booktitle = {11. Dresdner Sensor-Symposium : 9.-11.12.2013}, organization = {Dresdner Sensor-Symposium <11, 2013>}, isbn = {978-3-9813484-5-3}, pages = {63 -- 67}, year = {2013}, language = {en} } @article{TakenagaSchneiderErbayetal.2015, author = {Takenaga, Shoko and Schneider, Benno and Erbay, E. and Biselli, Manfred and Schnitzler, Thomas and Sch{\"o}ning, Michael Josef and Wagner, Torsten}, title = {Fabrication of biocompatible lab-on-chip devices for biomedical applications by means of a 3D-printing process}, series = {Physica status solidi (a)}, volume = {212}, journal = {Physica status solidi (a)}, number = {6}, publisher = {Wiley}, address = {Weinheim}, issn = {1862-6319}, doi = {10.1002/pssa.201532053}, pages = {1347 -- 1352}, year = {2015}, abstract = {A new microfluidic assembly method for semiconductor-based biosensors using 3D-printing technologies was proposed for a rapid and cost-efficient design of new sensor systems. The microfluidic unit is designed and printed by a 3D-printer in just a few hours and assembled on a light-addressable potentiometric sensor (LAPS) chip using a photo resin. The cell growth curves obtained from culturing cells within microfluidics-based LAPS systems were compared with cell growth curves in cell culture flasks to examine biocompatibility of the 3D-printed chips. Furthermore, an optimal cell culturing within microfluidics-based LAPS chips was achieved by adjusting the fetal calf serum concentrations of the cell culture medium, an important factor for the cell proliferation.}, language = {en} } @phdthesis{TemizArtmann1996, author = {Temiz Artmann, Ayseg{\"u}l}, title = {Sicanlarda, akut egzersiz sonucu gelisen oksidan stresin l{\"o}kosit aktivasyon degisiklikleri ile ile olan iliskisi ve eritrosit deformabilitesine etkisi}, year = {1996}, language = {mul} }