Patent classifications
C07C57/32
PHENYLACETIC ACID DERIVATIVE, USE THEREFOR, AND PRODUCTION INTERMEDIATE THEREOF
The present invention provides a compound having an excellent efficacy for controlling pests. According to the present invention, a compound represented by formula (I) [wherein Q represents a group represented by Q1, or a group represented by Q2 (where • represents a binding site to a benzene ring), E represents a C5-C6 cycloalkenyl group and so on, L represents an oxygen atom or NH, a combination of R.sup.1 and n represents a combination where R.sup.1 represents a hydrogen atom, and n is 1, and so on, and R.sup.2 represents a methyl group and so on] or its N-oxide, or agriculturally acceptable salts thereof has an excellent efficacy for controlling pests.
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Processes of making L-ornithine phenylacetate
Embodiments of the present disclosure are related to improved processes for making L-ornithine phenylacetate without using any silver salts or forming any L-ornithine intermediate salts, such as a benzoate salt. The present processes may be used in the commercial scale manufacturing of L-ornithine phenylacetate with high yields and low impurities.
Processes of making L-ornithine phenylacetate
Embodiments of the present disclosure are related to improved processes for making L-ornithine phenylacetate without using any silver salts or forming any L-ornithine intermediate salts, such as a benzoate salt. The present processes may be used in the commercial scale manufacturing of L-ornithine phenylacetate with high yields and low impurities.
SUBSTITUTED AROMATIC COMPOUNDS AND PHARMACEUTICAL COMPOSITIONS FOR TISSUE SELF-REPAIR AND REGENERATION
Described herein are compounds of Formula I, or pharmaceutically acceptable salts thereof, or combinations thereof, as well as uses thereof. Such uses include promoting tissue self-repair or tissue regeneration of an organ, stimulating the generation of tissue growth, modulating (e.g., increasing) the level of a tissue-repair marker, treating physical injury in an organ, tissue or cell, promoting wound healing, as well as anti-aging applications. Corresponding compositions, methods, kits, and uses are also described. Formula I wherein A is C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.1 is H, F of OH; R.sub.2 is H, F, OH, C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.3 is H, F, OH, or CH.sub.2Ph; R.sub.4 is H, F or OH; Q is 1) (CH.sub.2), C(O)OH wherein m is 1 or 2 2) CH(CH.sub.3)C(O)OH, 3) C(CH.sub.3).sub.2C(O)OH, 4) CH(F)C(O)OH, 5) CF.sub.2C(O)OH or 6) C(O)C(O)OH.
SUBSTITUTED AROMATIC COMPOUNDS AND PHARMACEUTICAL COMPOSITIONS FOR TISSUE SELF-REPAIR AND REGENERATION
Described herein are compounds of Formula I, or pharmaceutically acceptable salts thereof, or combinations thereof, as well as uses thereof. Such uses include promoting tissue self-repair or tissue regeneration of an organ, stimulating the generation of tissue growth, modulating (e.g., increasing) the level of a tissue-repair marker, treating physical injury in an organ, tissue or cell, promoting wound healing, as well as anti-aging applications. Corresponding compositions, methods, kits, and uses are also described. Formula I wherein A is C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.1 is H, F of OH; R.sub.2 is H, F, OH, C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.3 is H, F, OH, or CH.sub.2Ph; R.sub.4 is H, F or OH; Q is 1) (CH.sub.2), C(O)OH wherein m is 1 or 2 2) CH(CH.sub.3)C(O)OH, 3) C(CH.sub.3).sub.2C(O)OH, 4) CH(F)C(O)OH, 5) CF.sub.2C(O)OH or 6) C(O)C(O)OH.
Substituted aromatic compounds and pharmaceutical compositions for tissue self-repair and regeneration
Described herein are compounds of Formula I, or pharmaceutically acceptable salts thereof, or combinations thereof, as well as uses thereof. Such uses include promoting tissue self-repair or tissue regeneration of an organ, stimulating the generation of tissue growth, modulating (e.g., increasing) the level of a tissue-repair marker, treating physical injury in an organ, tissue or cell, promoting wound healing, as well as anti-aging applications. Corresponding compositions, methods, kits, and uses are also described. Formula I wherein A is C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.1 is H, F of OH; R.sub.2 is H, F, OH, C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.3 is H, F, OH, or CH.sub.2Ph; R.sub.4 is H, F or OH; Q is 1) (CH.sub.2), C(O)OH wherein m is 1 or 2 2) CH(CH.sub.3)C(O)OH, 3) C(CH.sub.3).sub.2C(O)OH, 4) CH(F)C(O)OH, 5) CF.sub.2C(O)OH or 6) C(O)C(O)OH.
Substituted aromatic compounds and pharmaceutical compositions for tissue self-repair and regeneration
Described herein are compounds of Formula I, or pharmaceutically acceptable salts thereof, or combinations thereof, as well as uses thereof. Such uses include promoting tissue self-repair or tissue regeneration of an organ, stimulating the generation of tissue growth, modulating (e.g., increasing) the level of a tissue-repair marker, treating physical injury in an organ, tissue or cell, promoting wound healing, as well as anti-aging applications. Corresponding compositions, methods, kits, and uses are also described. Formula I wherein A is C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.1 is H, F of OH; R.sub.2 is H, F, OH, C.sub.5 alkyl, C.sub.6 alkyl, C.sub.5 alkenyl, C.sub.6 alkenyl, C(O)(CH.sub.2).sub.nCH.sub.3 or CH(OH)(CH.sub.2).sub.nCH.sub.3 wherein n is 3 or 4; R.sub.3 is H, F, OH, or CH.sub.2Ph; R.sub.4 is H, F or OH; Q is 1) (CH.sub.2), C(O)OH wherein m is 1 or 2 2) CH(CH.sub.3)C(O)OH, 3) C(CH.sub.3).sub.2C(O)OH, 4) CH(F)C(O)OH, 5) CF.sub.2C(O)OH or 6) C(O)C(O)OH.
L-ORNITHINE PHENYL ACETATE AND METHODS OF MAKING THEREOF
Disclosed herein are forms of L-ornithine phenyl acetate and methods of making the same. A crystalline form may, in some embodiments, be Forms I, II, III and V, or mixtures thereof. The crystalline forms may be formulated for treating subjects with liver disorders, such as hepatic encephalopathy. Accordingly, some embodiments include formulations and methods of administering L-ornithine phenyl acetate.
L-ORNITHINE PHENYL ACETATE AND METHODS OF MAKING THEREOF
Disclosed herein are forms of L-ornithine phenyl acetate and methods of making the same. A crystalline form may, in some embodiments, be Forms I, II, III and V, or mixtures thereof. The crystalline forms may be formulated for treating subjects with liver disorders, such as hepatic encephalopathy. Accordingly, some embodiments include formulations and methods of administering L-ornithine phenyl acetate.
L-ORNITHINE PHENYL ACETATE AND METHODS OF MAKING THEREOF
Disclosed herein are forms of L-ornithine phenyl acetate and methods of making the same. A crystalline form may, in some embodiments, be Forms I, II, III and V, or mixtures thereof. The crystalline forms may be formulated for treating subjects with liver disorders, such as hepatic encephalopathy. Accordingly, some embodiments include formulations and methods of administering L-ornithine phenyl acetate.