| Preface | p. v |
| Contributors | p. xiii |
| Control of Enzyme Activity in Nonaqueous Solvents | p. 1 |
| Salt-Induced Activation of Enzymes in Organic Solvents: Optimizing the Lyophilization Time and Water Content | p. 3 |
| Imprinting Enzymes for Use in Organic Media | p. 13 |
| Entrapment of Biocatalysts by Prepolymer Methods | p. 19 |
| Microencapsulation of Enzymes and Cells for Nonaqueous Biotransformations | p. 31 |
| Immobilization of Lipases on Hydrogels | p. 41 |
| Polyethylene Glycol-Modified Enzymes in Hydrophobic Media | p. 49 |
| Chemical Modification of Lipase for Use in Ester Synthesis | p. 65 |
| Preparation and Properties in Organic Solvents of Noncovalent PEG-Enzyme Complexes | p. 77 |
| Preparation of a Lipid-Coated Enzyme and Activity for Reverse Hydrolysis Reactions in Homogeneous Organic Media | p. 83 |
| Very High Activity Biocatalysts for Low-Water Systems: Propanol-Rinsed Enzyme Preparations | p. 97 |
| Methods for Measurement and Control of Water in Nonaqueous Biocatalysis | p. 105 |
| Water Activity Control in Organic Media by Equilibration Through Membranes | p. 127 |
| Water Activity Control for Lipase-Catalyzed Reactions in Nonaqueous Media | p. 135 |
| Immobilization of Enzymes and Control of Water Activity in Low-Water Media: Properties and Applications of Celite R-640 (Celite Rods) | p. 151 |
| Enzyme Activity and Enantioselectivity Measurements in Organic Media | p. 173 |
| Calorimetric Methods in Evaluating Hydration and Solvation of Solid Proteins Immersed in Organic Solvents | p. 183 |
| Detection of Structural Changes of Enzymes in Nonaqueous Media by Fluorescence and CD Spectroscopy | p. 203 |
| The Effects of Crown Ethers on the Activity of Enzymes in Organic Solvents | p. 213 |
| Control of Acid-Base Conditions in Low-Water Media | p. 227 |
| Enzymatic Acylation of [alpha]-Butylglucoside in Nonaqueous Media | p. 235 |
| Synthetic Applications | p. 241 |
| Choosing Hydrolases for Enantioselective Reactions Involving Alcohols Using Empirical Rules | p. 243 |
| Candida antarctica Lipase B: A Tool for the Preparation of Optically Active Alcohols | p. 261 |
| Enantioselective Lipase-Catalyzed Transesterifications in Organic Solvents | p. 277 |
| Pseudomonas cepacia Lipase-Catalyzed Enantioselective Acylation of 2-Substituted-1-alkanols in Organic Solvents | p. 291 |
| Preparation of 2-, 3-, and 4-Methylcarboxylic Acids and the Corresponding Alcohols of High Enantiopurity by Lipase-Catalyzed Esterification | p. 307 |
| Optimization of Enzymatic Enantiomeric Resolutions Through Solvent Selection | p. 319 |
| Chemoselective Amidification of Amino-Polyols Catalyzed with Lipases in Organic Solvents | p. 325 |
| Synthesis of Esters Catalyzed by Lipases in Water-in-Oil Microemulsions | p. 331 |
| Enzymatic Conversion of Organosilicon Compounds in Organic Solvents | p. 339 |
| Synthetic Applications of Enzymes in Nonaqueous Media | p. 357 |
| Enzymes in Nonaqueous Solvents: Applications in Carbohydrate and Peptide Preparation | p. 373 |
| Interface Bioreactor: Microbial Transformation Device on an Interface Between a Hydrophilic Carrier and a Hydrophobic Organic Solvent | p. 401 |
| Yeast-Mediated Reactions in Organic Solvents | p. 417 |
| Biocatalysis in Pharmaceutical Process Development: SCH56592, a Case Study | p. 423 |
| Reaction Systems and Bioreactor Design | p. 469 |
| Enzymatic Solid-to-Solid Peptide Synthesis | p. 471 |
| Enzymatic Synthesis and Hydrolysis Reactions of Acylglycerols in Solvent-Free Systems | p. 479 |
| Solid-Gas Catalysis at Controlled Water Activity: Reactions at the Gas-Solid Interface Using Lipolytic Enzymes | p. 497 |
| Solvent-Free Biotransformations of Lipids | p. 509 |
| Lipase-Catalyzed Synthesis of Sugar Fatty Acid Esters in Supercritical Carbon Dioxide | p. 517 |
| Transformations in Frozen Aqueous Solutions Catalyzed by Hydrolytic Enzymes | p. 523 |
| Enzymatic Synthesis of Sugar Fatty Acid Esters in Solvent-Free Media | p. 531 |
| Biotransformations in Supersaturated Solutions | p. 545 |
| Enzymatic Transformations in Suspensions (I): One Solid Substrate and Product | p. 553 |
| Biotransformations in Supercritical Fluids | p. 565 |
| Reverse Micellar Systems: General Methodology | p. 575 |
| Enzymatic Transformations in Supercritical Fluids | p. 587 |
| Enzymatic Transformations in Suspensions (II) | p. 603 |
| Characterization and Operation of a Micellar Membrane Bioreactor | p. 611 |
| Immobilization of Lipase Enzymes and Their Application in the Interesterification of Oils and Fats | p. 627 |
| Index | p. 651 |
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