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Pharmaceutical Biocatalysis: Drugs, Genetic Diseases, and Epigenetics: Jenny Stanford Series on Biocatalysis

Editat de Peter Grunwald
en Limba Engleză Hardback – 26 noi 2020
Volume 7 of the Jenny Stanford Series on Biocatalysis deals with several different aspects of pharmaceuticals, which include not only various applications of drugs and their metabolism but also natural resources for active pharmaceutical ingredients as well as the removal of pharmaceutical pollution. In detail, novel approaches for developing microbial fermentation processes to produce vitamin B6 using microorganisms are described together with novel routes for vitamin B6 biosynthesis. The other topics discussed are new approaches for producing the successful anticancer drug Taxol from naturally occurring precursors, molecular farming through plant engineering as a cost-effective means to produce therapeutic and prophylactic proteins, and successful screening of potent microorganisms producing L-asparaginase for various chemotherapeutic applications. Furthermore, microbial biotransformations in the production and degradation of fluorinated pharmaceuticals are described. The other chapters inform the reader about the biotransformation of xenobiotics/drugs in living systems, the degradation of pharmaceuticals by white-rot fungi and their ligninolytic enzymes, and the removal of pharmaceutical pollution from municipal sewage using laccase.
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Specificații

ISBN-13: 9789814877145
ISBN-10: 981487714X
Pagini: 444
Ilustrații: 23 Tables, black and white; 18 Illustrations, color; 48 Illustrations, black and white
Dimensiuni: 152 x 229 x 30 mm
Greutate: 0.98 kg
Ediția:1
Editura: Jenny Stanford Publishing
Colecția Jenny Stanford Publishing
Seria Jenny Stanford Series on Biocatalysis


Public țintă

Academic and Professional Practice & Development

Cuprins

Fermentative Production of Vitamin B6.  Exploring Alternative Taxol Sources: Biocatalysis of 7-β-Xylosyl-10-Deacetyltaxol and Application for Taxol Production.  Molecular Farming through Plant Engineering: A Cost Effective Approach to Produce Therapeutic and Prophylactic Proteins.  Microbial Biotransformations in the Production and Degradation of Fluorinated Pharmaceuticals.  Successful Screening of Potent Microorganisms Producing L-Asparaginase.  Biotransformation of Xenobiotics in Living Systems.  Degradation of Pharmaceutically Active Compounds by White-Rot Fungi and Their Ligninolytic Enzymes.  Removal of Pharmaceutical Pollutions from Municipal Sewage Mediated by Laccases.  Mechanism of Drug Resistance in Staphylococcus aureus and Future Drug Discovery.  Genome Editing and Gene Therapies: Complex and Expensive Drugs.  Epigenetic and Metabolic Alterations in Cancer Cells: Mechanisms and Therapeutic Approaches.
 

Notă biografică

Peter Grunwald studied chemistry at the Universities of Saarbrücken and Hamburg, Germany. He graduated in the field of high-frequency spectroscopy and then became a staff member of the Institute of Physical Chemistry. After receiving his PhD in physical chemistry, he founded a biotechnology research group. He was appointed professor in 2001.

Descriere

Volume 7 of the Jenny Stanford Series on Biocatalysis deals with several different aspects of pharmaceuticals, which include not only various applications of drugs and their metabolism but also natural resources for active pharmaceutical ingredients as well as the removal of pharmaceutical pollution.

Recenzii

“This book is an important addition to the literature in this field. It not only summarizes the importance of enzymes as targets for pharmaceutical drug research in the past but also shows that there is still enormous potential in the future. Motivated by Peter Grunwald, a large group of experts have shared their specialist knowledge. The book a treasure for anyone working or doing research in the field.”
Prof. Theo Dingermann, Goethe University, Germany
“This book represents an outstanding scientific work. It covers the state of the art, challenges, and key achievements of research focusing on the use of enzymes for therapeutic purposes. It discusses the fundamentals of enzyme function and its applications and shows how this fantastic research field has been explored in drug discovery and innovation for gaining a better understanding of enzymes and their use for a better quality of life.”
Prof. Cláudio Viegas Jr., Universidade Federal de Alfenas, Brazil