Ann Louise
Ann Louise Huber, Belwood CA
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20160038604 | METAL CHELATING COMPOSITIONS AND METHODS FOR CONTROLLING THE GROWTH OR ACTIVITIES OF A LIVING CELL OR ORGANISM - The present invention provides for metal chelating compositions which are soluble in aqueous media. The present invention also provides chelating compositions that possess acceptable iron sequestering strengths and are able to present a physical form that potentially inhibits (e.g. does not permit easy) access of iron sequestered by the compositions to the cells being targeted. Compositions comprising chelating aspects affixed to or incorporated into suitable carrier materials such that the resulting metal chelating composition is soluble in aqueous media are also provided. Disclosed herein are chelating compositions, for chelating one or more essential metals. The chelating compositions being soluble in an aqueous medium and comprising one or more metal binding chemical groups affixed to or incorporated into the structure of a carrier material, such that the resulting chelating composition is able to bind one or more metals, and remains substantially soluble in the aqueous medium with its bound metal or metals. | 02-11-2016 |
Ann Louise Onton, Fairfield, CT US
Patent application number | Description | Published |
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20100008938 | SELF ASSEMBLING AMPHIPHILIC POLYMERS AS ANTIVIRAL AGENTS - There are provided amphiphilic biodegradable copolymers comprising a hydrophilic backbone with pendant aliphatic groups as the hydrophobic component. The polymers form nanoscale molecular aggregates in aqueous environments, which have hydrophobic interiors that are capable of solubilizing insoluble organic compounds and disrupting viral coat proteins. The polymers optionally feature reactive functional groups that provide attachment points for antibodies, ligands, and other targeting moieties which mediate adherence of the aggregate to a viral target. | 01-14-2010 |
20100260743 | Solubilization and Targeted Delivery of Drugs With Self-Assembling Amphiphilic Polymers - There are provided amphiphilic biodegradable copolymers comprising a hydrophilic backbone with pendant aliphatic groups as the hydrophobic component. The polymers form nanoscale molecular aggregates in aqueous environments, which have hydrophobic interiors that are capable of solubilizing insoluble organic compounds such as drugs, vitamins, dyes, and imaging agents. The polymers optionally feature reactive functional groups that provide attachment points for antibodies, ligands, and other targeting moieties useful for the targeted delivery of drugs and imaging agents. | 10-14-2010 |
Ann Louise Onton, Woodbridge, CT US
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20100239659 | SELF-ASSEMBLING AMPHIPHILIC POLYMERS AS ANTI-CANCER AGENTS - The invention provides amphiphilic biocompatible copolymers which have a hydrophilic backbone and pendant hydrophobic groups. The polymers form nanoscale molecular aggregates in aqueous environments, which have hydrophobic interiors within which anticancer drugs may be solubilized. The polymers optionally feature attached antibodies, receptor ligands, and other targeting moieties which mediate adherence of the drug-carrying aggregates to targeted cancer cells. | 09-23-2010 |
Ann Louise Walker, Stevenage GB
Patent application number | Description | Published |
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20080234358 | NAPHTHALENE DERIVATIVES - A compound of formula (I) | 09-25-2008 |
20100215652 | NICOTINAMIDE DERIVATES USEFUL AS P38 INHIBITORS - Compounds of formula (I): | 08-26-2010 |
20100215661 | NICOTINAMIDE DERIVATES USEFUL AS P38 INHIBITORS - Compounds of formula (I): | 08-26-2010 |
20140066459 | TETRAHYDROQUINOLINE DERIVATIVES USEFUL AS BROMODOMAIN INHIBITORS - Tetrahydroquinoline compounds pharmaceutical compositions containing such compounds and their use in therapy. | 03-06-2014 |
20150175600 | 2-(AZAINDOL-2-YL)BENZIMIDAZOLES AS PAD4 INHIBITORS - Compounds of formula (I): | 06-25-2015 |
Ann Louise Yant, Salinas, CA US
Patent application number | Description | Published |
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20150224271 | MATERIAL RECOVERY AND CAPTURE DEVICE FOR ATOMIZED MATERIAL DELIVERY APPARATUSES - A recovery and collection assembly for an atomized material inhalation device is provided. The recovery and collection assembly includes an outer tubular housing and an input tube. The outer tubular housing includes a sidewall defining an outer chamber, an upper end piece attached to an upper end of the sidewall, and a lower end piece attached to a lower end of the sidewall. The lower end piece has at least one air flow opening allowing fluid communication between an interior of the outer chamber and an atmosphere surrounding the outer tubular housing. The input tube extends through the lower end piece and has a first end in fluid communication with the atomized material inhalation device. The input tube also has a second end disposed in an upper half of the outer chamber and in fluid communication with the outer chamber and defines an inner chamber. | 08-13-2015 |