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Bender

Balázs Bender, Bátonyterenye HU

Patent application numberDescriptionPublished
20100041743TRANSGENIC ANIMAL WITH ENHANCED IMMUNE RESPONSE AND METHOD FOR THE PREPARATION THEREOF - The present invention provides a method for producing a transgenic (Tg) non-human animal capable of developing an enhanced humoral immune response against an antigen as compared to a non-transgenic control animal of the same species, comprising introducing into said non-human animal a genetic construct providing for enhanced MHC class I-related neonatal Fc receptor (FcRn) activity. Also provided a Tg non-human animal comprising a genetic construct providing for enhanced FcRn activity, as well as the use of such animal in a non-therapeutical method. Therapeutic genetic constructs and methods are also provided. The present invention further provides methods for producing immunoglobulins.02-18-2010

Balázs Bender, Bátonyterenye HU

Patent application numberDescriptionPublished
20100041743TRANSGENIC ANIMAL WITH ENHANCED IMMUNE RESPONSE AND METHOD FOR THE PREPARATION THEREOF - The present invention provides a method for producing a transgenic (Tg) non-human animal capable of developing an enhanced humoral immune response against an antigen as compared to a non-transgenic control animal of the same species, comprising introducing into said non-human animal a genetic construct providing for enhanced MHC class I-related neonatal Fc receptor (FcRn) activity. Also provided a Tg non-human animal comprising a genetic construct providing for enhanced FcRn activity, as well as the use of such animal in a non-therapeutical method. Therapeutic genetic constructs and methods are also provided. The present invention further provides methods for producing immunoglobulins.02-18-2010

Brendan C. Bender, Uppsala SE

Patent application numberDescriptionPublished
20110262436TREATMENT METHOD - The present invention relates generally to the fields of molecular biology and growth factor regulation. More specifically, the invention relates to therapies for the treatment of pathological conditions, such as cancer.10-27-2011

Eliyahu Bender, Jerusalem IL

Patent application numberDescriptionPublished
20120134386MULTIFUNCTION LASER POWER METER - A laser power meter incorporating an absorber disc with a peripheral thermopile ring, either continuous or segmented, and an additional temperature detection element in the central portion, that enables measurement of beam size. This detection element can be a thermopile element, generally a ring of smaller diameter than the peripheral thermopile used, and located closer to the center of the absorber disc. With this arrangement the beam size can be measured, in addition to measurements of the power and the position of the beam. Alternatively, this centralized detection element can be a single thermocouple junction located at the center of the disc, which acts as the hot junction of a thermocouple pair. The second or cold junction is effectively located on the disc close to the peripheral thermopile. Alternatively, two temperature measuring elements can be used, one at the disc center and one at the periphery.05-31-2012

Jason Frederick Bender, Osmond AU

Patent application numberDescriptionPublished
20120131655User Authentication Device and Method - An authentication device (05-24-2012

Klaus Bender, Bonaduz CH

Patent application numberDescriptionPublished
20110146907Binding fiber for bonding of flat material containing natural fibers - A binding fiber having, as at least one first thermoplastic component, a copolyamide which has a relative viscosity of at least 1.50 (measured at 0.5% in m-cresol at 25° C.), a MVR of maximum 20 cm06-23-2011

Oskar Wessel Bender, Sao Paulo BR

Patent application numberDescriptionPublished
20080202287Process and Equipment for the Treatment of Loads or Residues of Non-Ferrous Metals and Their Alloys - Process and equipment for the treatment of loads or residues of non-ferrous metals and their alloys including the steps of loading of scraps or dross to be processed; heating the load (08-28-2008
20110203413PROCESS AND EQUIPMENT FOR THE TREATMENT OF LOADS OR RESIDUES OF NON-FERROUS METALS AND THEIR ALLOYS - A process for the treatment of loads or residues of non-ferrous metals and their alloys includes the steps of loading of scraps or dross to be processed and heating the load and melting the metal. The process additionally includes revolving the heated load, tapping the molten metal and emptying a cavity of the furnace. Heating of the load or residues to a temperature above the melting temperature of the metal or non-ferrous alloy to be recovered is carried out by means of a free burning convective arc which is independent from the supply of external gas to the process, and which may dispense with the use of melting salts.08-25-2011

Shane Bender, Kariong AU

Patent application numberDescriptionPublished
20100025565RETAINING SYSTEM - A retaining system includes a retaining section, a coupler for releasably coupling to the retaining section, and means for fixing couplers coupled to adjacent retaining sections to each other to thereby maintain adjacent retaining sections in fixed relationship to each other. The retaining system has a number of possible applications such as garden or footpath edging, or earth retaining walls, but a preferred embodiment relates to the use of the retaining system as concrete formwork.02-04-2010

Veronika Judit Bender, Cremorne AU

Patent application numberDescriptionPublished
20120077732CYCLIC PEPTIDES AND USES THEREOF - The present invention relates to cyclic peptides, comprising alternating D- and L- amino acids and wherein the peptide possesses immunomodulatory activity. The present invention also relates to pharmaceutical compositions comprising the cyclic peptides and to methods for the treatment of disease.03-29-2012

Walter Bender, Rheinfelden CH

Patent application numberDescriptionPublished
20080260860Method for the Acaricidal Finishing of Textile Materials - The use is described of zinc pyrithione for finishing woven and non-woven textiles to render them resistant against colonization by house dust mites. Zinc pyrithione is used alone or in combination with other actives with or without other textile chemicals. The formulations comprising zinc pyrithione are applied to the textiles using the standard processes of textile finishing, such that there is a concentration of preferably 1000 to 6000 ppm of zinc pyrithione on the textile. This gives on uncoated sheetlike textiles a very distinct reduction in the mite population in testing; ideal finishes even eliminate the mite population completely.10-23-2008
20100115706METHOD FOR THE ANTIMICROBIAL FINISHING OF TEXTILES AND FIBERS - A method for the antimicrobial finishing of synthetic fibers, in which an aqueous solution of an organic primer component (P), such as, for example, gallic acid, and, as antimicrobial component05-13-2010
20100120311METHOD FOR PROVIDING TEXTILES WITH DESENSITIZED SILVER COMPONENTS - A process for finishing fibers and textiles with an antimicrobially active component comprising at least one silver component desensitized by an additional component, such as pinacryptol yellow, provides durable protection of textiles against bacterial attack and discolorations of the textiles.05-13-2010
20110065346ANTIMICROBIAL COMPOSITION FOR FINISHING TEXTILES - An antimicrobial composition comprising an organic antimicrobial component (K) and at least one metal salt component (M) and also, where appropriate, a solvent (L) and further auxiliary components, which comprises as organic component (K) at least one compound of the general formula (I)03-17-2011

Patent applications by Walter Bender, Rheinfelden CH