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Secondary Metabolism (Oxford Chemistry Series)

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This book is concerned with the biosynthesis, biological activity, and ecological significance of secondary metabolites (natural products).These include alcaloids such as morphine, steroids like cholesterol, and antibiotics like the penicillins. The author considers each of the major classes of secondary metabolites according to the basic 'building blocks' from which they are derived and highlights the pharmacological and toxicological properties of compounds found in insects, plants, and microorganisms. The final chapter explores the possible ecological significance of these products. The second edition incorporates new material on the isolation and characterization of the enzymes of secondary metabolism and on the new NMR techniques which have revolutionized the elucidation of biosynthetic pathways. The book is important reading for advanced undergraduates and graduates in chemistry, biochemistry, and botany, as well as researchers in the pharmaceutical industry.

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Secondary Metabolism (Oxford Chemistry Series), J. Mann

Langue
Année de publication
1990
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Titre
Secondary Metabolism (Oxford Chemistry Series)
Langue
Anglais
Auteurs
J. Mann
Publié
1990
Format
souple
Pages
392
ISBN10
0198555296
ISBN13
9780198555292
Séries
Description
This book is concerned with the biosynthesis, biological activity, and ecological significance of secondary metabolites (natural products).These include alcaloids such as morphine, steroids like cholesterol, and antibiotics like the penicillins. The author considers each of the major classes of secondary metabolites according to the basic 'building blocks' from which they are derived and highlights the pharmacological and toxicological properties of compounds found in insects, plants, and microorganisms. The final chapter explores the possible ecological significance of these products. The second edition incorporates new material on the isolation and characterization of the enzymes of secondary metabolism and on the new NMR techniques which have revolutionized the elucidation of biosynthetic pathways. The book is important reading for advanced undergraduates and graduates in chemistry, biochemistry, and botany, as well as researchers in the pharmaceutical industry.