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Joosten

Christoph E. Joosten, Manlius, NY US

Patent application numberDescriptionPublished
20120015438Mammallian cell culture process for protein production - The present invention describes methods and processes for the production of proteins, particularly glycoproteins, by animal cell or mammalian cell culture, preferably, but not limited to, fed-batch cell cultures. In one aspect, the methods comprise at least two temperature shifts performed during the culturing period, in which the temperature is lower at the end of the culturing period than at the time of initial cell culture. Throughout their duration, the culturing processes of the invention involving two or more downward shifts in temperature sustain a high viability of the cultured cells, and can yield an increased end titer of protein product, and a high quality of protein product, as determined, e.g., by sialic acid content of the produced protein. In another aspect, the methods comprise the delayed addition of polyanionic compound during the culturing period. The delayed addition of polyanionic compound sustains a high viability of the cultured cells, and can extend the growth phase, delay the onset of the death phase, and arrest the death phase.01-19-2012

Darrel J. Joosten, Torrance, CA US

Patent application numberDescriptionPublished
20090169756Paint Strainer System and Method - Systems and methods for painting in which a paint container strainer is held in place with a fastener that exerts strength or force sufficient to keep, hold or restrain the strainer in place, and not fall down into the paint container, during the jostling and other disturbances that typically occur during painting operations.07-02-2009

Dominik Joosten, Frankfurt DE

Patent application numberDescriptionPublished
20110101327Electronic Devices Comprising Metal Complexes Having Isonitrile Ligands - The present invention relates to electronic devices, in particular organic electroluminescent devices, comprising metal complexes which contain isonitrile ligands.05-05-2011
20110108823MATERIALS FOR ORGANIC ELECTROLUMINESCENCE DEVICES - The present invention relates to aromatic amines and to electronic devices in which these amines are used, in particular, as matrix material in the emitting layer and/or as hole-transport material and/or as electron-blocking or exciton-blocking material and/or as electron-transport material.05-12-2011
20110140043MATERIALS FOR ORGANIC ELECTROLUMINESCENCE DEVICE - The present invention relates to the compounds of the formula (1) and to organic electronic devices in which these compounds are used as matrix material in the emitting layer and/or as hole-transport material and/or as electron-blocking or exciton-blocking material and/or as electron-transport material.06-16-2011
20110144366ORGANIC ELECTROLUMINESCENCE DEVICE - The present invention relates to organic electroluminescence devices containing metal complexes having the formula (1) and metal complexes for use in organic electroluminescence devices.06-16-2011
20110201778Organic Electroluminescent Devices - The present invention relates to electronic devices, in particular organic electroluminescent devices, which comprise compounds of the formula (1), and to the corresponding compounds and to the use thereof in organic electroluminescent devices.08-18-2011
20110284799METAL COMPLEXES - The present invention relates to metal complexes and to electronic devices, in particular organic electroluminescent devices, comprising these metal complexes.11-24-2011
20110315933MATERIALS FOR ORGANIC ELECTROLUMINESCENT DEVICES - The present invention relates to metal complexes of the general formulae I to V, in particular as emitter molecules in organic electronic devices, to ligands of the general formulae Ia to Va, and to the use thereof for the preparation of metal complexes, to a layer and an electronic device which comprise the compounds according to the invention, and to a process for the preparation of the compounds according to the invention.12-29-2011
20120004407METAL COMPLEXES HAVING AZABOROL LIGANDS AND ELECTRONIC DEVICE HAVING THE SAME - The present invention relates to an electronic device, in particular an organic electroluminescent device, which comprises metal complexes containing azaborole ligands. The invention also relates to the metal complexes themselves, to the use thereof in an organic electronic device, and to a process for the preparation thereof. Finally, the invention is directed to the ligands and to the use of the ligands for the preparation of the metal complexes according to the invention.01-05-2012
20120187349MATERIALS FOR ELECTRONIC DEVICES - The present invention relates to compounds of the formula (I) and to the use thereof in electronic devices, in particular organic electroluminescent devices. Furthermore, the present invention relates to electronic devices comprising at least one compound according to the invention, preferably as emitter material or as charge-transport material.07-26-2012

Dominik Joosten, Frankfurt Am Main DE

Patent application numberDescriptionPublished
20110037027FLUORINE DERIVATIVES FOR ORGANIC ELECTROLUMINESCENCE DEVICES - The present invention relates to fluorine derivatives and organic electronic devices in which said compounds are used as a matrix material in the emitting layer and/or as a hole transport material, and/or as an electron blocking or exciton blocking material, and/or as an electron transport material.02-17-2011
20120056169ORGANIC ELECTROLUMINESCENT DEVICE - The present invention relates to phosphorescent organic electroluminescent devices which comprise at least one phosphorescent emitter and a mixture of at least two matrix materials in the emitting layer.03-08-2012
20120199794METAL COMPLEXES - The present invention relates to metal complexes and to electronic devices, in particular organic electroluminescent devices, comprising these metal complexes.08-09-2012
20120232241NITROGEN-CONTAINING CONDENSED HETEROCYCLIC COMPOUNDS FOR OLEDS - The present invention relates to compounds of the formula (1), formula (2), formula (3) and formula (4) which are suitable for use in electronic devices, in particular organic electroluminescent devices.09-13-2012

Heinz-Gerd Joosten, Kranenburg DE

Patent application numberDescriptionPublished
20080198377Method for Operating an Optical Emission Spectrometer - The invention relates to a method for the spectral analysis of metal samples with the following steps: 08-21-2008
20090284740Spectrometer Optics Comprising Positionable Slots and Method for the Fully Automatic Transmission of Calibrating Adjustments between Spectrometers Equipped with Optics of this Type - The invention relates to spectrometer optics with a beam path from a beam source to a number of electro-optical sensors without spatial resolution, the beam path comprising an entry slot, a dispersive element, and a number of exit slots arranged on a focal curve, wherein furthermore: 11-19-2009

Patent applications by Heinz-Gerd Joosten, Kranenburg DE

Henricus Joosten, Molle-Margot CH

Patent application numberDescriptionPublished
20120269943CHEMICALLY ACIDIFIED FORMULA - The present invention concerns a directly acidified nutritional formula that prevents growth of pathogenic bacteria in the liquid formula even at room temperature for prolonged time. The invention further relates to a method for preparing the formula and to the use of L(+)-lactic acid for preparing nutritional formulas with a pH in the range of 3.5 to 6.10-25-2012

Michael Joosten, Bartlesville, OK US

Patent application numberDescriptionPublished
20110193027METHOD FOR INHIBITING CORROSION - A method for inhibiting corrosion comprises the steps of providing a fluid; adding a corrosion inhibitor comprising at least one amphiphilic chemical to the fluid; and monitoring micelles presence in the fluid. A method for determining the amount of corrosion inhibitor that is sufficient to inhibit corrosion, a method for monitoring the activity of an amphiphilic chemical and a system for inhibiting corrosion in a conduit are also disclosed.08-11-2011