Enzymes in Nonaqueous Solvents

Enzymes in Nonaqueous Solvents
Author: Evgeny N. Vulfson
Publisher: Springer Science & Business Media
Total Pages: 677
Release: 2008-02-05
Genre: Technology & Engineering
ISBN: 1592591124

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Enzymatic catalysis has gained considerable attention in recent years as an efficient tool in the preparation of natural products, pharmaceuticals, fine chemicals, and food ingredients. The high selectivity and mild reaction con- tions associated with enzymatic transformations have made this approach an attractive alternative in the synthesis of complex bioactive compounds, which are often difficult to obtain by standard chemical routes. However, the maj- ity of organic compounds are not very soluble in water, which was traditi- ally perceived as the only suitable reaction medium for the application of biocatalysts. The realization that most enzymes can function perfectly well under nearly anhydrous conditions and, in addition, display a number of useful properties, e. g. , highly enhanced stability and different selectivity, has d- matically widened the scope of their application to the organic synthesis. Another great attraction of using organic solvents rather than water as a reaction solvent is the ability to perform synthetic transformations with re- tively inexpensive hydrolytic enzymes. It is worth reminding the reader that in vivo, the synthetic and hydrolytic pathways are catalyzed by different enzymes. However, elimination of water from the reaction mixture enables the “reversal” of hydrolytic enzymes and thus avoids the use of the expensive cofactors or activated substrates that are required for their synthetic count- parts.

Enzymes in Nonaqueous Solvents

Enzymes in Nonaqueous Solvents
Author: Evgeny N. Vulfson
Publisher:
Total Pages:
Release: 2001
Genre:
ISBN:

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In Enzymes in Nonaqueous Solvents: Methods and Protocols, leading chemists, biochemists, biotechnologists, and process engineers summarize for the first time a wide range of methods for executing enzymatic transformations under nonaqueous conditions. Each method includes detailed step-by-step instructions for its successful completion, a list of materials, and ancillary notes that explain the scientific basis of the procedure, as well as troubleshooting. Also provided are a generic description of key reactions, advice on biocatalyst preparation, discussion of reaction conditions, and instructions on bioreactor design. Comprehensive and state-of-the-art, Enzymes in Nonaqueous Solvents: Methods and Protocols offers today's synthetic chemists, biochemists, and process engineers all the essential information needed to carry out enzymatic reactions in nonaqueous media, as well as to successfully scale up to production quantities.

Methods in Non-Aqueous Enzymology

Methods in Non-Aqueous Enzymology
Author: Munishwar N. Gupta
Publisher: Birkhäuser
Total Pages: 229
Release: 2013-12-01
Genre: Science
ISBN: 3034884729

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Extending the range of enzymatic catalysis by using non-aqueous media has now developed into a powerful approach in biochemistry and biotechnology. One peculiar feature which distinguishes it from the conventional enzymology (carried out in aqueous buffers) is that the awareness of different parameters that control and influence the behaviour of enzymes in such environments has emerged rather slowly. Science is about being able to repeat what somebody else has done. Absence of knowledge about such well-defined parameters/fac tors has sometimes made some workers rather cautious and diffident about using this approach in their laboratories. But for this, non-aqueous enzymol ogy would be more widely practised. It is these thoughts that made me feel that the availability of some well-defined protocols for various applications invol ving enzymes in non-aqueous environments would further catalyze the growth of this area. Hence this book, in which each chapter has some protocols in a specific area. The protocols are preceded by brief background material. The early chapters, which are of general importance, concern control of water ac tivity and stabilization via immobilization. Some subsequent chapters provide the protocols for transformations involving lipids and carbohydrates, peptide synthesis, and preparation of chiral compounds. The disproportionate focus on lipases is not a coincidence; this class of enzymes has been used more often than others in non-aqueous enzymology.

Enzyme Design for Nonaqueous Solvents

Enzyme Design for Nonaqueous Solvents
Author:
Publisher:
Total Pages: 0
Release: 1997
Genre:
ISBN:

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From a biotechnological perspective there are many advantages of employing enzymes in organic as opposed to aqueous media. While there is now little question that enzymes can function in organic media, reaction rates are typically quite low. Relatively few kinetic studies have been carried out, and detailed investigations of enzyme structure and dynamics are fewer still. The overall goal of this ARO-sponsored research has been to identify the factors that govern enzyme activity and specificity in organic solvents, and apply this knowledge in the design of enzyme catalysts with optimal (i.e., aqueous-like) activity in nonaqueous media. In addition, this research set out to expand on our recent success in activating enzymes for use in organic solvents - in some cases activations of greater than 1000-fold have been achieved - and to understand fundamentally the factors that govern enzyme activity and enzyme activation in organic solvents. The knowledge gained in this investigation can be applied to a more general design of enzyme catalysts with optimal (i.e., aqueous-like) activity and tailored selectivity in nonaqueous media.

Organic Synthesis with Enzymes in Non-Aqueous Media

Organic Synthesis with Enzymes in Non-Aqueous Media
Author: Giacomo Carrea
Publisher: John Wiley & Sons
Total Pages: 328
Release: 2008-04-09
Genre: Science
ISBN: 3527621733

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Closing a gap in the literature, this comprehensive book examines and discusses different non-aqueous systems from organic solvents to ionic liquids for synthetic applications, thus opening the door to new successful methods for biocatalytic reactions. It gathers into one handy source the information otherwise widely spread throughout the literature, combining useful background information with a number of synthetic examples, including industrial scale processes for pharmaceutical and fine chemicals. Extremely well structured, the text introduces the fundamentals of non-aqueous enzymology, before going on to new reaction media and synthetic applications using hydrolases and non-hydrolytic enzymes. The one-stop reference for everyone working in this hot field.

Applied Biocatalysis

Applied Biocatalysis
Author: Harvey W. Blanch
Publisher: CRC Press
Total Pages: 246
Release: 1991-06-24
Genre: Science
ISBN: 9780824785338

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Deep Eutectic Solvents

Deep Eutectic Solvents
Author: Diego J. Ramón
Publisher: John Wiley & Sons
Total Pages: 384
Release: 2020-01-13
Genre: Science
ISBN: 3527345183

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A useful guide to the fundamentals and applications of deep eutectic solvents Deep Eutectic Solvents contains a comprehensive review of the use of deep eutectic solvents (DESs) as an environmentally benign alternative reaction media for chemical transformations and processes. The contributors cover a range of topics including synthesis, structure, properties, toxicity and biodegradability of DESs. The book also explores myriad applications in various disciplines, such as organic synthesis and (bio)catalysis, electrochemistry, extraction, analytical chemistry, polymerizations, (nano)materials preparation, biomass processing, and gas adsorption. The book is aimed at organic chemists, catalytic chemists, pharmaceutical chemists, biochemists, electrochemists, and others involved in the design of eco-friendly reactions and processes. This important book: -Explores the promise of DESs as an environmentally benign alternative to hazardous organic solvents -Covers the synthesis, structure, properties (incl. toxicity) as well as a wide range of applications -Offers a springboard for stimulating critical discussion and encouraging further advances in the field Deep Eutectic Solvents is an interdisciplinary resource for researchers in academia and industry interested in the many uses of DESs as an environmentally benign alternative reaction media.

Biocatalysis for Practitioners

Biocatalysis for Practitioners
Author: Gonzalo de Gonzalo
Publisher: John Wiley & Sons
Total Pages: 54
Release: 2021-07-19
Genre: Science
ISBN: 352734683X

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This reference book originates from the interdisciplinary research cooperation between academia and industry. In three distinct parts, latest results from basic research on stable enzymes are explained and brought into context with possible industrial applications. Downstream processing technology as well as biocatalytic and biotechnological production processes from global players display the enormous potential of biocatalysts. Application of "extreme" reaction conditions (i.e. unconventional, such as high temperature, pressure, and pH value) - biocatalysts are normally used within a well defined process window - leads to novel synthetic effects. Both novel enzyme systems and the synthetic routes in which they can be applied are made accessible to the reader. In addition, the complementary innovative process technology under unconventional conditions is highlighted by latest examples from biotech industry.

Enzyme Design for Nonaqueous Media: Optimization of Enzymatic Catalysis for Organic Solvent Systems

Enzyme Design for Nonaqueous Media: Optimization of Enzymatic Catalysis for Organic Solvent Systems
Author:
Publisher:
Total Pages: 5
Release: 1994
Genre:
ISBN:

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From a biotechnological perspective there are many potential advantages of employing enzymes in organic as opposed to aqueous media. To that end, we have concluded an initial three-year research program in the area of enzymatic catalysis in organic solvents. Our studies have focused on the effect of protein hydration on subtilisins BPN' and Carlsberg in nonaqueous media. Investigations on protein engineered mutants, catalyst engineering studies, and structural studies, primarily employing EPR spectroscopy, have revealed fundamental information on the role of water, the the nature of enzyme structure, and the effects of solvents on the catalytic activity in organic solvents. This study has also resulted in several rational methods to dramatically improve enzyme activity under anhydrous conditions. Catalytic activities in organic solvents can now be expressed at levels similar to that in water--this is a major advance in the field of nonaqueous enzymology. (jg).