Patent classifications
A01N37/00
Generation of peroxyformic acid through polyhydric alcohol formate
The present invention relates generally to peroxyformic acid forming compositions, methods for forming peroxyformic acid, preferably in situ, using the peroxyformic acid forming compositions. The present invention also relates to the peroxyformic acid formed by the above compositions and methods. The present invention further relates to the uses of the peroxyformic acid, preferably in situ, for treating a surface or a target. The present invention further relates to methods for treating a biofilm using peroxyformic acid, including peroxyformic acid generated in situ.
Generation of peroxyformic acid through polyhydric alcohol formate
The present invention relates generally to peroxyformic acid forming compositions, methods for forming peroxyformic acid, preferably in situ, using the peroxyformic acid forming compositions. The present invention also relates to the peroxyformic acid formed by the above compositions and methods. The present invention further relates to the uses of the peroxyformic acid, preferably in situ, for treating a surface or a target. The present invention further relates to methods for treating a biofilm using peroxyformic acid, including peroxyformic acid generated in situ.
ANTIBIOFILM FORMULATIONS
Methods and compositions related to molecules and formulations comprising antibiofilm materials are provide, including new formulations of Deep Eutectic Solvents (DES) that are chemically related to choline geranate. Specifically, geranic acid (a component of choline geranate DES) is a molecule from the isoprenoid/terpene family of compounds. Other members of this family as DES components include isoprenoid acids and chemical derivatives thereof.
ANTIBIOFILM FORMULATIONS
Methods and compositions related to molecules and formulations comprising antibiofilm materials are provide, including new formulations of Deep Eutectic Solvents (DES) that are chemically related to choline geranate. Specifically, geranic acid (a component of choline geranate DES) is a molecule from the isoprenoid/terpene family of compounds. Other members of this family as DES components include isoprenoid acids and chemical derivatives thereof.
BIFUNCTIONAL PLANT PROMOTER AND PREPARATION THEREOF
A bifunctional plant growth promoter and methods of preparing the plant growth promoter. The plant growth promoter comprises nano carbon black modified with carboxyl groups referred to as carbon black acid. The nano carbon black has a structure forming a first functional part of the plant growth promoter and the carboxyl groups form a second functional part of the plant growth promoter. The plant growth promoter has an average particle size in a size range of 5 nm to 200 nm and a mass fraction of carboxyl groups in a mass fraction range of 5% to 25%.
BIFUNCTIONAL PLANT PROMOTER AND PREPARATION THEREOF
A bifunctional plant growth promoter and methods of preparing the plant growth promoter. The plant growth promoter comprises nano carbon black modified with carboxyl groups referred to as carbon black acid. The nano carbon black has a structure forming a first functional part of the plant growth promoter and the carboxyl groups form a second functional part of the plant growth promoter. The plant growth promoter has an average particle size in a size range of 5 nm to 200 nm and a mass fraction of carboxyl groups in a mass fraction range of 5% to 25%.
Pesticidal genes and methods of use
Compositions having pesticidal activity and methods for their use are provided. Compositions include isolated and recombinant polypeptides having pesticidal activity, recombinant and synthetic nucleic acid molecules encoding the polypeptides, DNA constructs and vectors comprising the nucleic acid molecules, host cells comprising the vectors, and antibodies to the polypeptides. Nucleotide sequences encoding the polypeptides can be used in DNA constructs or expression cassettes for transformation and expression in organisms of interest. The compositions and methods provided are useful for producing organisms with enhanced pest resistance or tolerance. Transgenic plants and seeds comprising a nucleotide sequence that encodes a pesticidal protein of the invention are also provided. Such plants are resistant to insects and other pests. Methods are provided for producing the various polypeptides disclosed herein, and for using those polypeptides for controlling or killing a pest. Methods and kits for detecting polypeptides of the invention in a sample are also included.
Pesticidal genes and methods of use
Compositions having pesticidal activity and methods for their use are provided. Compositions include isolated and recombinant polypeptides having pesticidal activity, recombinant and synthetic nucleic acid molecules encoding the polypeptides, DNA constructs and vectors comprising the nucleic acid molecules, host cells comprising the vectors, and antibodies to the polypeptides. Nucleotide sequences encoding the polypeptides can be used in DNA constructs or expression cassettes for transformation and expression in organisms of interest. The compositions and methods provided are useful for producing organisms with enhanced pest resistance or tolerance. Transgenic plants and seeds comprising a nucleotide sequence that encodes a pesticidal protein of the invention are also provided. Such plants are resistant to insects and other pests. Methods are provided for producing the various polypeptides disclosed herein, and for using those polypeptides for controlling or killing a pest. Methods and kits for detecting polypeptides of the invention in a sample are also included.
Methods of prediction of wound healing
Methods of detecting a local infection, critical colonization, or infection in a wound, predicting wound healing in a wound, and detecting bacterial pathogenesis in a wound are provided.
Compositions and methods for directing the oviposition of mosquitoes
Compositions described herein are purposed to attract gravid mosquitoes to oviposit in a preferred environment. The composition for directing the oviposition of mosquitoes comprises one or more attractants and NPK additive, wherein the NPK additive is mixture that contain chemical elements nitrogen, phosphorus and potassium. The attractants can be modified to provide a composition for facilitating the oviposition of different kind of mosquito. The composition described above, can be modified to provide a composition for facilitating the oviposition of the Anopheles species of Culicidae. The composition can also include cooked whey, n-heneicosane and/or tetradecanoic acid methyl ester to provide a composition for facilitating the oviposition of the Aedes species of Culicidae. The composition can also be modified to provide a composition for facilitating the oviposition of the Culex species of Culicidae.