Application of Lithiated Carbamates to the Asymmetric Synthesis of Sulfolipid I
"Mycobacterium tuberculosis, the causative agent of human tuberculosis, is unique among bacterial pathogens. Sulfolipid-I (SL-I) is the major constituent metabolite of thick cell wall present in Mycobacterium Tuberculosis (M-TB)....
ver más
¿Tienes un proyecto y buscas un partner? Gracias a nuestro motor inteligente podemos recomendarte los mejores socios y ponerte en contacto con ellos. Te lo explicamos en este video
Proyectos interesantes
Asperterpenoid
Unlocking the Antitubercular Mode of Action of Asperterpenoi...
286K€
Cerrado
CTQ2008-06200
DISEÑO, DESARROLLO SINTETICO, ESTUDIO BIOFISICO Y EVALUACION...
48K€
Cerrado
ANTIBIOTICS DOS
Diversity Oriented Synthesis of Peptide Derivatives as Antib...
172K€
Cerrado
CaLiAT
A novel pathway for generation of building blocks for antibi...
195K€
Cerrado
BAN-BOOT
Boronic Acids as a New Strategy to Boost beta-Lactam Antibio...
Cerrado
CTQ2011-22872
GLYCOLIPIDS AND CARBOHYDRATES. NEW SYNTHETIC METHODS AND BIO...
197K€
Cerrado
Información proyecto ALCLASS
Líder del proyecto
UNIVERSITY OF BRISTOL
No se ha especificado una descripción o un objeto social para esta compañía.
TRL
4-5
Presupuesto del proyecto
209K€
Fecha límite de participación
Sin fecha límite de participación.
Descripción del proyecto
"Mycobacterium tuberculosis, the causative agent of human tuberculosis, is unique among bacterial pathogens. Sulfolipid-I (SL-I) is the major constituent metabolite of thick cell wall present in Mycobacterium Tuberculosis (M-TB). SL-I comprises of a disaccharide and four chiral hydrophobic lipid substituents, the overall structure of which is responsible for the resistance of M. Tuberculosis to antibiotics. While SL-I has been shown to elicit specific responses from immune cells, the mechanistic basis of these effects, biosynthesis and biological activities are unknown. Although a number of studies have been reported on the synthesis of disaccharide core and hydrophobic lipids of SL-I, major challenges reside in the synthesis of chiral hydrophobic lipids, which comprise multiple stereocenters. It is aimed to synthesis the enantiopure sulfolipid-I in a short synthesis by utilizing the recent methodology developed by the Aggarwal group involving the reactions of chiral lithiated carbamates with boronic esters. This new strategy is a potentially powerful tool for the iterative asymmetric synthesis of complex molecules in short order."