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Physiological engineering aspects of Penicillium chrysogenum / J. Nielsen.

By: Material type: TextTextPublication details: Singapore ; River Edge, NJ : World Scientific, ©1997.Description: 1 online resource (xvi, 269 pages) : illustrationsContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9789812819987
  • 9812819983
Subject(s): Genre/Form: Additional physical formats: Print version:: Physiological engineering aspects of Penicillium chrysogenum.DDC classification:
  • 660.62 22
LOC classification:
  • QK625.M7 N54 1997eb
Online resources:
Contents:
Ch. 1. History and Present Status of Penicillin Production -- Ch. 2. The Microorganism -- Ch. 3. Physiological Engineering -- Ch. 4. Primary Metabolism -- Ch. 5. Penicillin Biosynthesis -- Ch. 6. Morphology in Submerged Cultures -- Ch. 7. Bioreactor Performance -- Ch. 8. Penicillin Production in Fed-batch Cultures.
Summary: The book gives a review of penicillin production by Penicillium chrysogenum, and also deals with a number of general aspects of fungal cultivations, e.g. primary metabolism of filamentous fungi, morphology, monitoring of fungal cultivations, and bioreactor performance (more than 750 references). The first two chapters give an introduction to the area of penicillin production; with a review of the history and a survey of the present status of this industrially very important process in the first chapter. In the second chapter is given an introduction to the microorganism, i.e. its nutritional requirements, its taxonomy, and an overview of different strain development programmes. Chapter 3 gives an introduction to the concept of Physiological Engineering. This is followed by a review of various monitoring techniques and different theoretical techniques for analysis of cultivation processes, e.g. mathematic modeling, metabolic flux analysis, and metabolic control analysis. Chapters 4 and 5 give a review of the metabolism, with the primary metabolism being the topic of Chapter 4 and the secondary metabolism, i.e. penicillin biosynthesis, being the topic of Chapter 5. The review of the penicillin biosynthetic pathway is followed by a description of a number of results obtained using metabolic flux and metabolic control analysis. Chapter 6 is devoted to the morphology of the fungus, and it gives a detailed description of the growth mechanisms of filamentous fungi. Chapter 7 deals with the bioreactor performance during fungal cultivations, i.e. medium rheology, gas-liquid mass transfer, and mixing. Finally is the fed-batch process applied for penicillin production described in Chapter 8. It gives an overview of the most important factors influencing penicillin production.
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Includes bibliographical references and index.

Ch. 1. History and Present Status of Penicillin Production -- Ch. 2. The Microorganism -- Ch. 3. Physiological Engineering -- Ch. 4. Primary Metabolism -- Ch. 5. Penicillin Biosynthesis -- Ch. 6. Morphology in Submerged Cultures -- Ch. 7. Bioreactor Performance -- Ch. 8. Penicillin Production in Fed-batch Cultures.

Print version record.

The book gives a review of penicillin production by Penicillium chrysogenum, and also deals with a number of general aspects of fungal cultivations, e.g. primary metabolism of filamentous fungi, morphology, monitoring of fungal cultivations, and bioreactor performance (more than 750 references). The first two chapters give an introduction to the area of penicillin production; with a review of the history and a survey of the present status of this industrially very important process in the first chapter. In the second chapter is given an introduction to the microorganism, i.e. its nutritional requirements, its taxonomy, and an overview of different strain development programmes. Chapter 3 gives an introduction to the concept of Physiological Engineering. This is followed by a review of various monitoring techniques and different theoretical techniques for analysis of cultivation processes, e.g. mathematic modeling, metabolic flux analysis, and metabolic control analysis. Chapters 4 and 5 give a review of the metabolism, with the primary metabolism being the topic of Chapter 4 and the secondary metabolism, i.e. penicillin biosynthesis, being the topic of Chapter 5. The review of the penicillin biosynthetic pathway is followed by a description of a number of results obtained using metabolic flux and metabolic control analysis. Chapter 6 is devoted to the morphology of the fungus, and it gives a detailed description of the growth mechanisms of filamentous fungi. Chapter 7 deals with the bioreactor performance during fungal cultivations, i.e. medium rheology, gas-liquid mass transfer, and mixing. Finally is the fed-batch process applied for penicillin production described in Chapter 8. It gives an overview of the most important factors influencing penicillin production.

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