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Takayuki Sasaki

Takayuki Sasaki, Kanagawa JP

Patent application numberDescriptionPublished
20110091767ACCUMULATOR MATERIAL AND ACCUMULATOR DEVICE - An electricity storage device including a positive electrode 04-21-2011

Takayuki Sasaki, Matsumoto JP

Patent application numberDescriptionPublished
20100266545OBLIGATELY ANAEROBIC MUTANT LACTIC ACID BACTERIUM AND PREPARATION METHOD THEREFOR, AND EXPRESSION VECTOR FUNCTIONING IN OBLIGATELY ANAEROBIC LACTIC ACID BACTERIUM - The present invention provides an obligately anaerobic lactic acid bacterium having no risk of causing side effects in normal tissue and promising as a safe therapeutic agent and a gene transporter for a disease that is in an anaerobic environment such as a solid tumor, a preparation method therefor, and an expression vector useful in the preparation method. The obligately anaerobic lactic acid bacterium of the present invention has been artificially mutated from being facultatively anaerobic to being obligately anaerobic and, furthermore, is capable of being transformed by an expression vector having introduced thereinto a gene for expressing an active protein useful for the treatment of a disease that is in an anaerobic environment. Furthermore, the expression vector of the present invention functions in an obligately anaerobic lactic acid bacterium and contains a 10-21-2010

Takayuki Sasaki, Kamisu-City JP

Patent application numberDescriptionPublished
20090062416FLEXIBLE POLYURETHANE FOAM AND PROCESS FOR ITS PRODUCTION - A process for producing a flexible polyurethane foam, which comprises reacting a polyol mixture with a polyisocyanate compound in the presence of a urethane-forming catalyst and a blowing agent, characterized in that the polyol mixture comprises the following polyol (A) and the polyol (B), and the proportion of the polyisocyanate compound to the polyol mixture is at least 90 by isocyanate index, and the total amount of Zn and Co contained in the polyol mixture is from 0.1 to 200 ppm.03-05-2009
20090215918PROCESS FOR PRODUCING FLEXIBLE POLYURETHANE FOAM - To provide a flexible polyurethane foam which is excellent in low resiliency and durability without using a plasticizer and which shows little change in hardness against a change in temperature and at the same time, has high air flow.08-27-2009
20090239964PROCESS FOR PRODUCING FLEXIBLE POLYURETHANE FOAM - To provide a process for producing a flexible polyurethane foam, which can suitably form a flexible polyurethane foam having a good cushioning characteristic by using a raw material derived from a natural fat/oil.09-24-2009
20090270520PROCESS FOR PRODUCING FLEXIBLE POLYURETHANE FOAM - To produce a flexible polyurethane foam molded product having good air flow and cushioning characteristic and having cell roughening at the skin portion suppressed by using a raw material derived from a natural fat/oil.10-29-2009
20100096768POLYMER-DISPERSED POLYOL AND PROCESS FOR PRODUCING FLEXIBLE POLYURETHANE FOAM - To provide a process for producing a flexible polyurethane foam having a higher biomass degree than a conventional flexible polyurethane foam and excellent in foam physical properties and its appearance.04-22-2010
20100168262PROCESS FOR PRODUCING FLEXIBLE POLYURETHANE FOAM - To provide a process for producing a flexible polyurethane foam, which comprises reacting a polyol compound and a polyisocyanate compound in an open system substantially without using a silicone foam stabilizer.07-01-2010
20100179240PROCESS FOR PRODUCING FLEXIBLE POLYURETHANE FOAM, PROCESS FOR PRODUCING HOT PRESS MOLDED PRODUCT, AND HOT PRESS MOLDED PRODUCT - To provide a process for producing a flexible polyurethane foam which is excellent in low resiliency, air flow and hot moldability, and a process for producing a hot press molded product by using such a flexible polyurethane foam. Further, the present invention provides a hot press molded product which has a low resiliency and air flow.07-15-2010

Patent applications by Takayuki Sasaki, Kamisu-City JP

Takayuki Sasaki, Nagano JP

Patent application numberDescriptionPublished
20100129323Novel Shuttle Vector - The present invention provides a shuttle vector for a microorganism of the genus 05-27-2010
20110110893THERAPEUTIC AGENT FOR ANAEROBIC DISEASES - The present invention provides a therapeutic agent for anaerobic diseases such as solid tumor, comprising in combination a pharmaceutical composition for the treatment of an anaerobic disease containing the transformed anaerobic microorganism as an active component and a pharmaceutical composition containing as an active component an anaerobic microorganism colonization and growth enhancer for enhancing the specific colonization and proliferation of the anaerobic microorganism at an anaerobic disease site. Furthermore, the present invention provides to an anaerobic microorganism colonization and growth enhancer for enhancing colonization and growth of the transformed anaerobic microorganism at a disease site that is in an anaerobic environment.05-12-2011
20110189757TRANSFECTION VECTOR - The present invention relates to a novel secretory signal, a novel plasmid containing the secretory signal, a transformed anaerobic bacterium transformed with said plasmid, a gene transfer carrier consisting of said anaerobic bacterium, and a pharmaceutical composition containing said carrier.08-04-2011
20110189758TRANSFECTION VECTOR - The present invention relates to a novel secretory signal, a novel plasmid containing the secretory signal, a transformed anaerobic bacterium transformed with said plasmid, a gene transfer carrier consisting of said anaerobic bacterium, and a pharmaceutical composition containing said carrier.08-04-2011
20110190472TRANSFECTION VECTOR - The present invention relates to a novel secretory signal, a novel plasmid containing the secretory signal, a transformed anaerobic bacterium transformed with said plasmid, a gene transfer carrier consisting of said anaerobic bacterium, and a pharmaceutical composition containing said carrier.08-04-2011

Takayuki Sasaki, Mishima-Shi JP

Patent application numberDescriptionPublished
20090017299THERMOSENSITIVE ADHESIVE MATERIAL - An object of the present invention is to provide a thermosensitive adhesive material which is superior in blocking resistance when not active and which has adequate adhesion in a wide temperature range to a target with little smoothness such as corrugated fiberboard. Specifically, the present invention relates to a thermosensitive adhesive material including a support, and a thermosensitive adhesive layer provided on one surface of the support, the thermosensitive adhesive layer containing as essential components a thermoplastic resin and a hot-melt material that melts when heated, wherein the thermoplastic resin contains as a main component a (meth)acrylic copolymer in which acrylonitrile, a monomer component, occupies 5% by mass to 20% by mass of all monomer components, and wherein the glass transition temperature of the copolymer is in the range of −70° C. to −30° C.01-15-2009

Patent applications by Takayuki Sasaki, Mishima-Shi JP

Takayuki Sasaki, Ibaraki JP

Patent application numberDescriptionPublished
20090008595FLEXIBLE POLYURETHANE FOAM AND PROCESS FOR ITS PRODUCTION - To provide a flexible polyurethane foam having improved sound absorbing properties in a low frequency region.01-08-2009

Takayuki Sasaki, Kawasaki JP

Patent application numberDescriptionPublished
20120095737POWER ESTIMATOR AND POWER ESTIMATION METHOD - In a power estimator, a power coefficient-calculating section acquires an average value of the number of signal changes per unit time in each circuit range to thereby calculate a power coefficient for each circuit range or calculate a power coefficient for each circuit range when the average value of the number of signal changes per unit time is equal to 1, a correction coefficient-calculating section calculates a ratio of an average value of the number of signal changes per unit time at signal lines included in the circuit range to an average value of the number of signal changes per unit time at observing points designated in the circuit range, as a correction coefficient, and a power value-calculating section calculates a power value for each circuit range based on the correction coefficient and the power coefficient calculated for each circuit range.04-19-2012