Khopade
Ajay Khopade, Baroda IN
Patent application number | Description | Published |
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20090104274 | PROCESS OF MAKING MICROSPHERES - A process for the manufacture of free-flowing uniformly sized micro spheres for the sustained release of therapeutically active ingredient comprising: a) preparing a first dispersed phase comprising a therapeutically active ingredient, a biodegradable polymer and an organic solvent; b) mixing the first dispersed phase with a aqueous phase to form an emulsion; c) spraying the emulsion into a vessel ( | 04-23-2009 |
20090110744 | SUSTAINED RELEASE PHARMACEUTICAL COMPOSITIONS - A sustained release microsphere composition comprising— | 04-30-2009 |
20090123556 | SUSTAINED RELEASE PHARMACEUTICAL COMPOSITIONS - The present invention provides a sustained release microsphere composition comprising | 05-14-2009 |
Ajay Jaysingh Khopade, Baroda IN
Patent application number | Description | Published |
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20100137432 | OPHTHALMIC COMPOSITION COMPRISING A PROSTAGLANDIN - The present invention relates to a pharmaceutical composition suitable for ophthalmic use comprising one or more prostaglandin derivatives or salts, a stabilizing amount of polyethylene glycol hydroxystearate and pharmaceutically acceptable vehicle. | 06-03-2010 |
20100297244 | NANODISPERSION - The present invention provides a nanodispersion comprising nanoparticles having a mean size less than 300 nm dispersed in a vehicle comprising a water miscible solvent and water, said nanoparticles comprising one or more taxane derivative, a polymer and a surfactant comprising a mixture of fatty acids or its salts and sterol or its derivatives or its salts. | 11-25-2010 |
20110003816 | OPHTHALMIC COMPOSITION - An ophthalmic composition comprising therapeutically effective amount of a beta-blocker and a polymeric vehicle consisting essentially of a water soluble cellulose derivative and polyvinylpyrrolidone; wherein the composition is a clear aqueous solution with a viscosity id 20 cps to 60 cps. | 01-06-2011 |
20120087959 | NANODISPERSION OF A DRUG AND PROCESS FOR ITS PREPARATION - The present invention provides a nanodispersion comprising nanoparticles having a mean size less than 300 nm dispersed in a vehicle comprising a water miscible solvent and water, said nanoparticles comprising one or more drugs, a polymer and a surfactant comprising a mixture of fatty acids or its salts and sterol or its derivatives or its salts. | 04-12-2012 |
20130267591 | NOVEL OPHTHALMIC COMPOSITIONS - An ophthalmic solution comprising therapeutically effective amount of a prostaglandin or its analog and water soluble excipient(s) dissolved in a pharmaceutically acceptable vehicle, wherein the solution is free of a surfactant. | 10-10-2013 |
20140030352 | NANODISPERSION - The present invention provides a nanodispersion comprising nanoparticles having a mean size less than 300 nm dispersed in a vehicle comprising a water miscible solvent and water, said nanoparticles comprising one or more taxane derivative, a polymer and a surfactant comprising a mixture of fatty acids or its salts and sterol or its derivatives or its salts. | 01-30-2014 |
Vijay Khopade, Richardson, TX US
Patent application number | Description | Published |
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20110097080 | Method and System for Protection Switching - A method is provided for protection switching in an optical network. The method may include establishing a baseline power level for a channel. The method may further include receiving a signal associated with the channel via each of a first path of the optical network and a second path of the optical network. The method may also include monitoring a power intensity of the signal received via the first path. The method may additionally include protection switching from the signal received via the first path to the signal received via the second path in response to a determination that the baseline power level exceeds the power intensity of the signal received via the first path by a predetermined threshold. | 04-28-2011 |
20110097081 | Method and System for Protection Switching - A method is provided for protection switching in an optical network. The method may include: (i) establishing a baseline power level for a channel and a threshold value for the channel approximately equal to a predetermined threshold value; (ii) receiving a signal associated with the channel via each of a first path of the optical network and a second path of the optical network; (iii) monitoring a power intensity of the signal received via the first path; (iv) determining an average power intensity of the signal received via the first path based on the monitored power intensity; (v) modifying at least one of the baseline power level and the threshold value in response to a determination that the average power intensity exceeds the baseline power level; and (vi) protection switching from the signal received via the first path to the signal received via the second path in response to a determination that the baseline power level exceeds the power intensity of the signal received via the first path by the threshold. | 04-28-2011 |