Wolfel
Catherine Wolfel, Mainz DE
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20090104186 | Melanoma-associated MHC class I associated oligopeptides and the uses thereof - The present invention relates to certain melanoma-associated oligopeptides that are recognized by CD8-positive cytotoxic T-lymphocytes (CTLs) as peptide antigen and which elicit a CTL-induced lysis and/or apoptosis of tumor cells. The present invention also relates to the use of these melanoma-associated oligopeptides in cancer therapy. | 04-23-2009 |
20150366957 | Melanoma-Associated MHC Class I Associated Oligopeptides and the Uses Thereof - The present invention relates to certain melanoma-associated oligopeptides that are recognized by CD8-positive cytotoxic T-lymphocytes (CTLs) as peptide antigen and which elicit a CTL-induced lysis and/or apoptosis of tumor cells. The present invention also relates to the use of these melanoma-associated oligopeptides in cancer therapy. | 12-24-2015 |
Katharina Wölfel, Langenfeld DE
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20140113824 | BICYCLIC (THIO)CARBONYLAMIDINES - Bicyclic (thio)carbonylamidines of the formula (I) | 04-24-2014 |
20140135219 | USE OF ALS INHIBITOR HERBICIDES FOR CONTROL OF UNWANTED VEGETATION IN ALS INHIBITOR HERBICIDE TOLERANT BRASSICA, SUCH AS B. NAPUS, PLANTS - The present invention relates to the use of the ALS inhibitor herbicides for controlling unwanted vegetation in ALS inhibitor herbicide tolerant | 05-15-2014 |
Markus Wolfel, Lauf DE
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20090288762 | METHOD FOR THE CONTINUOUS LAYING OF A CONDUCTOR ON A PRINTED CIRCUIT BOARD AND DEVICE FOR CARRYING OUT SAID METHOD - The invention relates to a method for welding a conductor to a conductive film, which is preferably intended for connection to a circuit board support in order to produce a printed circuit board, the depth or diameter of the conductor being preferably larger than the thickness of the conductive film. According to said method, the conductive film is in contact with a thermal isolation plate, at least during the welding process, the thermal conductivity of said plate being lower than that of the conductive film. | 11-26-2009 |
20150237738 | METHOD FOR PRODUCING A CIRCUIT BOARD ELEMENT, AND CIRCUIT BOARD ELEMENT - A method for producing a circuit board element, and a corresponding circuit board element, with which it is possible to suppress the risk of delamination in the region of a component (e.g. a wire or a plate-like shaped part) that is embedded in the circuit board element. To this end, the present invention suggests that the surface of the component should be roughened, at least partially, in order to ensure a better adhesive bond with the surrounding cover layer (e.g. a prepreg made of an insulating material compound). The component surface can be roughened by chemical methods such as etching or by purely mechanical methods such as sand blasting. | 08-20-2015 |
20150327355 | Angle-Adjustable And/Or Angled Printed Circuit Board Structure Having At Least Two Printed Circuit Board Sections And Method For Producing The Same - An angle-adjustable printed circuit board structure having two printed circuit board sections arranged angularly with respect to one another. The printed circuit board structure contains at least one conduction element which is embedded at least predominantly in the printed circuit board structure and which extends between two contact pads and is electrically conductively connected to said contact pads. The two contact pads are situated on different printed circuit board sections. The printed circuit board sections are angle-adjustable and/or angled relative to one another with maintenance of the connections between the contact pads and the at least one conduction element and with bending of the at least one conduction element via a bending edge between the printed circuit board sections. The conduction element has a larger extent along the bending edge than perpendicularly thereto, as viewed in cross section. | 11-12-2015 |
Markus Wölfel, Eckenthal DE
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20140204553 | PRINTED CIRCUIT BOARD HAVING A MOLDED PART AND METHOD FOR THE PRODUCTION THEREOF - A printed circuit board and a method for the production thereof. The printed circuit board can include a shaped part made of an electrically conducting material and can be used to manage the currents and heat volumes that occur in the field of power electronics. | 07-24-2014 |
Mathias Wölfel, Erlangen DE
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20110116082 | Apparatus for Treating a Material and Method for Operating the Same - A laser-assisted material-machining device comprises a laser ( | 05-19-2011 |
20120080586 | Process for testing a laser device - A process is proposed for testing a laser device that has been set up to emit pulsed focused laser radiation, the focal position of which is adjustable both in and across the direction of propagation of the laser radiation. The laser device includes a contact element that is transparent to the laser radiation, with an abutment surface for abutment of an object to be machined. Within the scope of the process, a test object that is transparent to the laser radiation at least in a machining region is applied onto the abutment surface of the contact element. Then laser radiation is beamed into the test object bearing against the abutment surface and in the process the focal position is moved in accordance with a predetermined test pattern, in order to generate enduring machining structures in the test object. | 04-05-2012 |
20120145687 | Apparatus and method for operating a laser materials processing and measurement device - An apparatus for operating a laser materials processing and measurement device with a controllable laser for generating a laser beam and beam control means for adjusting the focus zone of a controlled portion of the laser beam in three spatial directions comprises an interface for operating a bidirectional data transfer link with the laser and the beam control means, and user control means for inputting and displaying control commands or control command sequences and for monitoring and/or controlling operation and/or the operating state of the device. So that all the components of the apparatus may also be tested with regard to all functionalities, if the laser materials processing and measurement device is not operationally ready and/or not connected to the interface, according to the invention the apparatus comprises simulation means for simulating operation of the device and/or of the user control means. | 06-14-2012 |
20120150156 | Laser device, in particular, for ophthalmological laser surgery - A laser device, in particular for ophthalmological laser surgery, comprising a laser source ( | 06-14-2012 |
20120150157 | Laser device for ophthalmological laser surgery - A laser device, in particular for ophthalmological laser surgery, comprising a laser source ( | 06-14-2012 |
20120150158 | Device and process for machining the cornea of a human eye with focused pulsed laser radiation - A device for generating at least one continuous slit-like incision ( | 06-14-2012 |
René Wölfel, Heroldsbach DE
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20130245319 | METHOD FOR CATALYTICALLY PRODUCING FORMIC ACID - The invention relates to a method for catalytically producing formic acid. A polyoxometallate ion, which is used as a catalyst, of the general formula [PMo | 09-19-2013 |
René Wölfel, Heroldsbach DE
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20130245319 | METHOD FOR CATALYTICALLY PRODUCING FORMIC ACID - The invention relates to a method for catalytically producing formic acid. A polyoxometallate ion, which is used as a catalyst, of the general formula [PMo | 09-19-2013 |
Thomas Wölfel, Mainz DE
Patent application number | Description | Published |
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20090104186 | Melanoma-associated MHC class I associated oligopeptides and the uses thereof - The present invention relates to certain melanoma-associated oligopeptides that are recognized by CD8-positive cytotoxic T-lymphocytes (CTLs) as peptide antigen and which elicit a CTL-induced lysis and/or apoptosis of tumor cells. The present invention also relates to the use of these melanoma-associated oligopeptides in cancer therapy. | 04-23-2009 |
20100035267 | Detection of Individual T-Cell Reaction Patterns Against Tumor-Associated Antigens (TAA) in Tumor Patients as a Basis for the Individual Therapeutic Vaccination of Patients - The present invention relates to a method for identifying the preferential target antigens of antitumoural T-cells of a tumour patient, comprising: a) providing T-cells from the blood of at least one tumour patient, b) providing dendritic cell (DCs) and/or B-lymphocytes (BLCs) that are autologous for said tumour patient, wherein said DCs and BLCs were transfected beforehand with a selection of mRNAs encoding for T-cell-immunogenic tumour-associated antigens (TAA), and express these, c) contacting said T-cells with the DCs and/or BLCs, d) identifying of those T-cells that recognize antigens of the DCs and/or BLCs, and e) identifying of the preferential target antigens of antitumoural T-cells of the at least one tumour patient on the basis of the T-cells that recognize antigens of the DCs and/or BLCs. The method can furthermore comprise the expansion of the T-cells that recognize the antigens of the DCs and/or BLCs. The present invention furthermore relates to a method for producing an individualized tumour vaccine or individualized tumour therapeutic, as well as corresponding methods for treating a tumourous disease using the individualised tumour vaccine or individualised tumour therapeutic. | 02-11-2010 |
20150366957 | Melanoma-Associated MHC Class I Associated Oligopeptides and the Uses Thereof - The present invention relates to certain melanoma-associated oligopeptides that are recognized by CD8-positive cytotoxic T-lymphocytes (CTLs) as peptide antigen and which elicit a CTL-induced lysis and/or apoptosis of tumor cells. The present invention also relates to the use of these melanoma-associated oligopeptides in cancer therapy. | 12-24-2015 |
Thomas Wölfel, Mainz DE
Patent application number | Description | Published |
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20100035267 | Detection of Individual T-Cell Reaction Patterns Against Tumor-Associated Antigens (TAA) in Tumor Patients as a Basis for the Individual Therapeutic Vaccination of Patients - The present invention relates to a method for identifying the preferential target antigens of antitumoural T-cells of a tumour patient, comprising: a) providing T-cells from the blood of at least one tumour patient, b) providing dendritic cell (DCs) and/or B-lymphocytes (BLCs) that are autologous for said tumour patient, wherein said DCs and BLCs were transfected beforehand with a selection of mRNAs encoding for T-cell-immunogenic tumour-associated antigens (TAA), and express these, c) contacting said T-cells with the DCs and/or BLCs, d) identifying of those T-cells that recognize antigens of the DCs and/or BLCs, and e) identifying of the preferential target antigens of antitumoural T-cells of the at least one tumour patient on the basis of the T-cells that recognize antigens of the DCs and/or BLCs. The method can furthermore comprise the expansion of the T-cells that recognize the antigens of the DCs and/or BLCs. The present invention furthermore relates to a method for producing an individualized tumour vaccine or individualized tumour therapeutic, as well as corresponding methods for treating a tumourous disease using the individualised tumour vaccine or individualised tumour therapeutic. | 02-11-2010 |
Ute Wolfel, Mainz DE
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20130276880 | TRANSPARENT LAYER COMPOSITE ASSEMBLIES - Transparent layer composite assemblies are provided that are suitable for use in solar modules and light emitting diodes, as well as methods for producing such layer composite assemblies and to the uses thereof. The layer composite assemblies have substrate materials that make it possible to increase the luminous efficiency of light emitting diodes and the efficiency of solar modules. | 10-24-2013 |
Ute Wölfel, Mainz-Laubenheim DE
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20160090324 | Pore-free ceramic component - A pore-free ceramic is provided that has a high modulus of elasticity and a low coefficient of thermal expansion. A process for producing a corresponding ceramic is also provided. The pore free ceramic is a dimensionally stable substrate material in applications subjected to temperature gradients including semiconductor manufacture. | 03-31-2016 |