Julio César
Julio César Aguilar Rubido, Artemisa CU
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20120308615 | FORMULATION OF HEPATITIS B VIRUS ANTIGENS FOR CELLULAR STIMULATION FOLLOWED BY THERAPEUTIC IMMUNIZATION - The present invention is related with the field of the therapeutic immunization, specifically with the employment of a new formulation of antigens of the Hepatitis B Virus (HBV) for the cellular stimulation. The formulation is formed by the surface antigens (HBsAg) precipitated in suspension and the nucleocapsid (HBcAg) of the HBV. The formulation contains these antigens like suspended particles of sizes less than 500 nm and higher than 500 nm, in a mixture where the proportion among the particles of the mentioned sizes is among 50%-50% and 80%-20%, respectively. The selection of a range of sizes of particles allows that the levels of stimulation of several cellular types are maximized. Additionally, a cellular stimulation method is described with this formulation, and the later passive immunization of patients with chronic Hepatitis B, based on the maximum stimulation in vivo or in vitro using heterologous or autologous cells (dendritic cells, B cells and macrophages). The cells stimulated with this formulation are transferred to patients chronically infected with the HBV. | 12-06-2012 |
Julio César Gonzalez Alvarez, Pontevedra ES
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20090303701 | Automatic Mobile Luminous Device - An automatic luminous device whose use does not require an external manual switch, which is substituted by another internal automatic switch, which activates the device only when it is placed on a sufficiently dense metal surface, nor does it require a connecting cable to an external power source, which is replaced by a preferably rechargeable battery. It was designed as an emergency light for police vehicles, and as a back-up light and is fitted with a base or casing ( | 12-10-2009 |
Julio César Gonzalez Alvarez, Pontevedra ES
Patent application number | Description | Published |
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20090303701 | Automatic Mobile Luminous Device - An automatic luminous device whose use does not require an external manual switch, which is substituted by another internal automatic switch, which activates the device only when it is placed on a sufficiently dense metal surface, nor does it require a connecting cable to an external power source, which is replaced by a preferably rechargeable battery. It was designed as an emergency light for police vehicles, and as a back-up light and is fitted with a base or casing ( | 12-10-2009 |
Julio César Rangel Mata, Coahuila MX
Patent application number | Description | Published |
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20100267859 | ADDITIVE FOR COATINGS CONTAINING METALLIC NANOPARTICLES AND PREPARATION METHOD THEREFOR - The present invention relates to a method of obtaining an additive for coatings that contains nanoparticles of one or more compounds, preferably metallic, selected in relation to the property that is desired to be transferred to the coating, which comprises a first pretreatment phase in which the water content of the active agent is reduced, replacing it with a vehicle compatible with the coating, and a second phase in which it is mixed with a resin compatible with the coating, a dispersant and a solvent, which are also compatible with it. The additive produced by this method contains nanoparticles of one or more compounds, preferably metallic, which become dispersed homogeneously in the coating once incorporated therein. | 10-21-2010 |
Julio César Rangel Mata, Coahuila MX
Patent application number | Description | Published |
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20100267859 | ADDITIVE FOR COATINGS CONTAINING METALLIC NANOPARTICLES AND PREPARATION METHOD THEREFOR - The present invention relates to a method of obtaining an additive for coatings that contains nanoparticles of one or more compounds, preferably metallic, selected in relation to the property that is desired to be transferred to the coating, which comprises a first pretreatment phase in which the water content of the active agent is reduced, replacing it with a vehicle compatible with the coating, and a second phase in which it is mixed with a resin compatible with the coating, a dispersant and a solvent, which are also compatible with it. The additive produced by this method contains nanoparticles of one or more compounds, preferably metallic, which become dispersed homogeneously in the coating once incorporated therein. | 10-21-2010 |