The invention relates to new carboxyalkyl dipeptide derivatives and related compounds which are useful as antihypertensives.
这项发明涉及新的羧基烷基二肽衍生物和相关化合物,可用作降压药。
Substances and Pharmaceutical Compositions for the Inhibition of Glyoxalases and Their Use As Anti-Fungal Agents
申请人:Huse Klaus
公开号:US20080300303A1
公开(公告)日:2008-12-04
The present invention pertains to substances of the formula (I) wherein X is O or S; and R1-R4 are defined in the claims as inhibitors of glyoxalase I and/or II, pharmaceutical compositions comprising one or more compounds according to formula (I) and the use of one or more compounds according to formula (I) for the treatment of diseases associated with increased glycolytic metabolism. In one embodiment, the disease is a fungal infection.
[EN] BIOLOGICAL FERMENTATION USING DIHYDROXYACETONE AS A SOURCE OF CARBON<br/>[FR] FERMENTATION BIOLOGIQUE UTILISANT DE LA DIHYDROXYACÉTONE COMME SOURCE DE CARBONE
申请人:KEMBIOTIX LLC
公开号:WO2017139420A1
公开(公告)日:2017-08-17
The present invention relates to the use of hydrocarbons derived from natural gas in the fermentative production of biochemicals including biofuels. More specifically, the present invention provides the method for manufacturing dihydroxyacetone ("DHA") from natural gas, biogas, biomass and CO2 released from industrial plants including electricity-generating plants, steel mills and cement factories and the use of DHA as a source of organic carbon in the fermentative production of biochemicals including biofuels. The present invention comprises three stages. In the first stage of the present invention, syngas and formaldehyde are produced from natural gas, biogas, biomass and CO2 released from industrial plants. In the second stage of the present invention, formaldehyde and syngas are condensed to produce DHA. In the third stage of the present invention, biochemicals including biofuels are produced from DHA using fermentation process involving wild type or genetically modified microbial biocatalysts.
There are disclosed processes for preparing carboxyalkyl dipeptide derivatives and related compounds which are useful as angiotension converting enzyme (ACE) inhibitors and as antihypertensives and pharmaceutical compositions containing these carboxyalkyl dipeptide compounds in combination with another antihypertensive and/or diuretic compound.
DESIGNER CALVIN-CYCLE-CHANNELED PRODUCTION OF BUTANOL AND RELATED HIGHER ALCOHOLS
申请人:Lee James Weifu
公开号:US20110177571A1
公开(公告)日:2011-07-21
Designer Calvin-cycle-channeled and photosynthetic NADPH-enhanced pathways, the associated designer genes and designer transgenic photosynthetic organisms for photobiological production of butanol and related higher alcohols from carbon dioxide and water are provided. The butanol and related higher alcohols include 1-butanol, 2-methyl-1-butanol, isobutanol, 3-methyl-1-butanol, 1-hexanol, 1-octanol, 1-pentanol, 1-heptanol, 3-methyl-1-pentanol, 4-methyl-1-hexanol, 5-methyl-1-heptanol, 4-methyl-1-pentanol, 5-methyl-1-hexanol, and 6-methyl-1-heptanol. The designer photosynthetic organisms such as designer transgenic oxyphotobacteria and algae comprise designer Calvin-cycle-channeled and photosynthetic NADPH-enhanced pathway gene(s) and biosafety-guarding technology for enhanced photobiological production of butanol and related higher alcohols from carbon dioxide and water.