Patent classifications
C07D311/76
NOVEL USE OF SUBSTITUTED 2H-CHROMENS AND THEIR DERIVATIVES
The present invention is directed towards the use of 2H-chromens and their derivatives of formula (I) and/or of formula (II) wherein R.sup.1 and R.sup.2 are independently from each other H or C.sub.1-11-alkyl or (CH.sub.2).sub.n—OH with n being an integer from 1 to 6 or R.sup.1 and R.sup.2 together represent a keto group, and wherein R.sup.3, R.sup.4, R.sup.5, and R.sup.6 are independently from each other H or C.sub.1-6-alkyl or C.sub.1-6-alkoxy, and R.sup.7 is H or C.sub.1-6-alkyl, as antioxidants, especially in feed such as pet food and feed ingredients such as fish meal, insect meal and poultry meal, as well as PUFA-containing oil such as marine oil, microbial oil, fungal oil, algal oil and PUFA-containing plant oil. The present invention is further directed towards feed ingredients and feed for insects, aquatic and terrestrial animals comprising such 2H- chromens and their derivatives of formula (I) and/or of formula (II).
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NOVEL USE OF SUBSTITUTED 2H-CHROMENS AND THEIR DERIVATIVES
The present invention is directed towards the use of 2H-chromens and their derivatives of formula (I) and/or of formula (II) wherein R.sup.1 and R.sup.2 are independently from each other H or C.sub.1-11-alkyl or (CH.sub.2).sub.n—OH with n being an integer from 1 to 6 or R.sup.1 and R.sup.2 together represent a keto group, and wherein R.sup.3, R.sup.4, R.sup.5, and R.sup.6 are independently from each other H or C.sub.1-6-alkyl or C.sub.1-6-alkoxy, and R.sup.7 is H or C.sub.1-6-alkyl, as antioxidants, especially in feed such as pet food and feed ingredients such as fish meal, insect meal and poultry meal, as well as PUFA-containing oil such as marine oil, microbial oil, fungal oil, algal oil and PUFA-containing plant oil. The present invention is further directed towards feed ingredients and feed for insects, aquatic and terrestrial animals comprising such 2H- chromens and their derivatives of formula (I) and/or of formula (II).
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DIBROMO-DIIODO-DIPOLYCYCLIC COMPOUND AND ELECTRON ACCEPTOR MOLECULES DERIVED THEREFROM
The present Specification provides a di-polycyclic compound, and a polymer chain consisting of alternating electron donor compounds and electron acceptor compounds, which include the di-polycyclic compound.
DIBROMO-DIIODO-DIPOLYCYCLIC COMPOUND AND ELECTRON ACCEPTOR MOLECULES DERIVED THEREFROM
The present Specification provides a di-polycyclic compound, and a polymer chain consisting of alternating electron donor compounds and electron acceptor compounds, which include the di-polycyclic compound.
METHOD FOR TREATING A BRAIN TUMOUR
A method of treating a brain tumour such as glioblastoma in a mammal is provided comprising administering to the mammal a DRD4 antagonist.
NEBIVOLOL SYNTHESIS METHOD AND INTERMEDIATE COMPOUND THEREOF
The present invention relates to a nebivolol synthesis method and intermediate compound thereof. Specifically, the present invention relates to a method for synthesizing nebivolol, intermediate compound thereof, and a method for preparing the intermediate compound.
NEBIVOLOL SYNTHESIS METHOD AND INTERMEDIATE COMPOUND THEREOF
The present invention relates to a nebivolol synthesis method and intermediate compound thereof. Specifically, the present invention relates to a method for synthesizing nebivolol, intermediate compound thereof, and a method for preparing the intermediate compound.
Benzenesulfonyl-Asymmetric Ureas and Medical Uses Thereof
Benzenesulfonyl-asymmetric ureas are provided for the treatment of conditions modulated by the ghrelin receptor.
Benzenesulfonyl-Asymmetric Ureas and Medical Uses Thereof
Benzenesulfonyl-asymmetric ureas are provided for the treatment of conditions modulated by the ghrelin receptor.
SOLID ACID CATALYST AND METHOD FOR PRODUCING OXIDE
Provided is a solid acid catalyst for use in oxidation of a substrate in the coexistence of oxygen and ozone (solid acid catalyst for oxygen-ozone-coexisting oxidation). The solid acid catalyst enables oxidation of the substrate with a high conversion. This solid acid catalyst for oxygen-ozone-coexisting oxidation is a solid acid catalyst for use in an oxidation reaction to oxidize a substrate (A) in the coexistence of oxygen and ozone. The solid acid catalyst includes a transition metal in the form of an elementary substance, a compound, or an ion, and a support supporting the transition metal. The support includes, at least in its surface, a strong acid or super strong acid having a Hammett acidity function (H.sub.0) of −9 or less. The support is preferably a pellet or particle made of a fluorinated sulfonic acid resin, or a support including a solid and a layer of a fluorinated sulfonic acid resin disposed on the solid.