TY - PAT A1 - Al-Kaidy, Huschyar A1 - Tippkötter, Nils A1 - Ulber, Roland T1 - A system and a method for the implementation of chemical, biological or physical reactions [Europäische Patentanmeldung] N2 - The invention relates to a system for the implementation of chemical, biological or physical reactions, consisting of - one or more magnetic micro-reactors, each comprising a shell made of hydrophobic magnetic nanoparticles encapsulating an aqueous core, - a plane platform comprising a surface to receive the micro-reactors, - a source that generates a magnetic field above or underneath the platform for manipulating the one or more hydrophobic magnetic micro-reactors, or for moving them along the surface of the platform from one position to another position, characterized in that the aqueous core of the one or more magnetic micro-reactors contains a reaction solution or buffer, and wherein the magnetic field generated by the source correlates to a defined position on the surface of the platform. Y1 - 2013 PB - Europäisches Patentamt CY - Den Hague ER - TY - PAT A1 - Stadtmüller, Ralf A1 - Tippkötter, Nils A1 - Ulber, Roland T1 - A method for production of single-stranded nucleic acids [Europäische Patentanmeldung] Y1 - 2013 PB - Europäisches Patentamt CY - Den Hague ER - TY - JOUR A1 - Pellegrini, Paul A. A1 - Howell, Nicholas R. A1 - Shepherd, Rachael K. A1 - Lengkeek, Nigel A. A1 - Paulßen, Elisabeth A1 - Katsifis, Andrew G. A1 - Greguric, Ivan T1 - Synthesis and Radiolabelling of DOTA-Linked Glutamine Analogues with 67,68Ga as Markers for Increased Glutamine Metabolism in Tumour Cells JF - Molecules Y1 - 2013 U6 - http://dx.doi.org/10.3390/molecules18067160 SN - 1420-3049 VL - 18 IS - 6 SP - 7160 EP - 7178 PB - MDPI CY - Basel ER - TY - JOUR A1 - Paulßen, Elisabeth A1 - Le, Van So A1 - Lengkeek, Nigel A1 - Pellegrini, Paul A1 - Jackson, Tim A1 - Greguric, Ivan A1 - Weiner, Ron T1 - Influence of Metal Ions on the 68Ga-labeling of DOTATATE JF - Applied Radiation and Isotopes Y1 - 2013 U6 - http://dx.doi.org/10.1016/j.apradiso.2013.08.010 SN - 1872-9800 VL - 82 SP - 232 EP - 238 PB - Elsevier CY - Amsterdam ER - TY - CHAP A1 - Tippkötter, Nils A1 - Möhring, S. A1 - Maurer, S. A1 - Roth, J. T1 - Dezentrale Vorbehandlung und Verarbeitung pflanzlicher Reststoffe für Bioraffinerien T2 - Kurzfassungen der Vorträge nach Sessions : Frühjahrstagung der Biotechnologen 2013, 4. - 5. März 2013, Dechema-Haus, Frankfurt am Main Y1 - 2013 SP - 5 CY - Frankfurt am Main ER - TY - CHAP A1 - Tippkötter, Nils T1 - Biotechnologische Gewinnung von Wertstoffen aus Molke : BiobasedWorld - Innovation in food T2 - Biotechnica 2013 : European biotechnology science & industry news Y1 - 2013 VL - 12 IS - 9, special SP - 33 EP - 50 ER - TY - JOUR A1 - Scheer, Nico A1 - Wolf, C. Roland T1 - Xenobiotic receptor humanized mice and their utility JF - Drug Metabolism Reviews Y1 - 2013 U6 - http://dx.doi.org/10.3109/03602532.2012.738687 SN - 1097-9883 IS - 1 SP - 110 EP - 121 PB - Taylor & Francis CY - London ER - TY - JOUR A1 - Huck, Christina A1 - Schiffels, Johannes A1 - Herrera, Cony N. A1 - Schelden, Maximilian A1 - Selmer, Thorsten A1 - Poghossian, Arshak A1 - Baumann, Marcus A1 - Wagner, Patrick A1 - Schöning, Michael Josef T1 - Metabolic responses of Escherichia coli upon glucose pulses captured by a capacitive field-effect sensor JF - Physica Status Solidi (A) N2 - Living cells are complex biological systems transforming metabolites taken up from the surrounding medium. Monitoring the responses of such cells to certain substrate concentrations is a challenging task and offers possibilities to gain insight into the vitality of a community influenced by the growth environment. Cell-based sensors represent a promising platform for monitoring the metabolic activity and thus, the “welfare” of relevant organisms. In the present study, metabolic responses of the model bacterium Escherichia coli in suspension, layered onto a capacitive field-effect structure, were examined to pulses of glucose in the concentration range between 0.05 and 2 mM. It was found that acidification of the surrounding medium takes place immediately after glucose addition and follows Michaelis–Menten kinetic behavior as a function of the glucose concentration. In future, the presented setup can, therefore, be used to study substrate specificities on the enzymatic level and may as well be used to perform investigations of more complex metabolic responses. Conclusions and perspectives highlighting this system are discussed. Y1 - 2013 U6 - http://dx.doi.org/10.1002/pssa.201200900 SN - 0031-8965 VL - 210 IS - 5 SP - 926 EP - 931 PB - Wiley-VCH CY - Weinheim ER - TY - JOUR A1 - Bäcker, Matthias A1 - Rakowski, D. A1 - Poghossian, Arshak A1 - Biselli, Manfred A1 - Wagner, Patrick A1 - Schöning, Michael Josef T1 - Chip-based amperometric enzyme sensor system for monitoring of bioprocesses by flow-injection analysis JF - Journal of Biotechnology N2 - A microfluidic chip integrating amperometric enzyme sensors for the detection of glucose, glutamate and glutamine in cell-culture fermentation processes has been developed. The enzymes glucose oxidase, glutamate oxidase and glutaminase were immobilized by means of cross-linking with glutaraldehyde on platinum thin-film electrodes integrated within a microfluidic channel. The biosensor chip was coupled to a flow-injection analysis system for electrochemical characterization of the sensors. The sensors have been characterized in terms of sensitivity, linear working range and detection limit. The sensitivity evaluated from the respective peak areas was 1.47, 3.68 and 0.28 μAs/mM for the glucose, glutamate and glutamine sensor, respectively. The calibration curves were linear up to a concentration of 20 mM glucose and glutamine and up to 10 mM for glutamate. The lower detection limit amounted to be 0.05 mM for the glucose and glutamate sensor, respectively, and 0.1 mM for the glutamine sensor. Experiments in cell-culture medium have demonstrated a good correlation between the glutamate, glutamine and glucose concentrations measured with the chip-based biosensors in a differential-mode and the commercially available instrumentation. The obtained results demonstrate the feasibility of the realized microfluidic biosensor chip for monitoring of bioprocesses. Y1 - 2013 U6 - http://dx.doi.org/10.1016/j.jbiotec.2012.03.014 SN - 0168-1656 VL - 163 IS - 4 SP - 371 EP - 376 PB - Elsevier CY - Amsterdam ER -