LEADER 04485nam 2200409 450 001 9910647242603321 005 20230327122712.0 010 $a3-0365-6266-4 035 $a(CKB)5680000000300001 035 $a(NjHacI)995680000000300001 035 $a(EXLCZ)995680000000300001 100 $a20230327d2023 uy 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 00$aBiocatalytic applications in biotechnology /$fedited by Emmanuel M Papamichael, Panagiota-Yiolanda Stergiou 210 1$a[Place of publication not identified] :$cMDPI - Multidisciplinary Digital Publishing Institute,$d[2023] 210 4$d©2023 215 $a1 online resource (244 pages) 311 $a3-0365-6265-6 327 $aAbout the Editors -- Regioselective Hydroxylation of Rhododendrol by CYP102A1 and Tyrosinase -- Exploring Metagenomic Enzymes: A Novel Esterase Useful for Short-Chain Ester Synthesis -- Counterbalance of Stability and Activity Observed for Thermostable Transaminase from Thermobaculum terrenum in the Presence of Organic Solvents -- Kinetic Analysis of the Lipase-Catalyzed Hydrolysis of Erythritol and Pentaerythritol Fatty Acid Esters: A Biotechnological Application for Making Low-Calorie Healthy Food Alternatives -- Influence of Carrier Structure and Physicochemical Factors on Immobilisation of Fungal Laccase in Terms of Bisphenol A Removal -- Estimating the Product Inhibition Constant from Enzyme Kinetic Equations Using the Direct Linear Plot Method in One-Stage Treatment -- Polymer-Assisted Biocatalysis: Polyamide 4 Microparticles as Promising Carriers of Enzymatic Function -- Engineering of Bifunctional Enzymes with Uricase and Peroxidase Activities for Simple and Rapid Quantification of Uric Acid in Biological Samples -- Rigorous Model-Based Design and Experimental Verification of Enzyme-Catalyzed Carboligation under Enzyme Inactivation -- Conversion of Shrimp Head Waste for Production of a Thermotolerant, Detergent-Stable, Alkaline Protease by Paenibacillus sp. -- Catalytic Activities of Multimeric G-Quadruplex DNAzymes -- Biotransformation with a New Acinetobacter sp. Isolate for Highly Enantioselective Synthesis of a Chiral Intermediate of Miconazole -- Enhancing Enzymatic Properties of Endoglucanase I Enzyme from Trichoderma Reesei via Swapping from Cellobiohydrolase I Enzyme -- Bioproduction of Isoprenoids and Other Secondary Metabolites Using Methanotrophic Bacteria as an Alternative Microbial Cell Factory Option: Current Stage and Future Aspects -- Microbial Phosphotriesterase: Structure, Function, and Biotechnological Applications. 330 $aAt present, the increasing demand for novel biotechnological products is supported through the continuous development of biocatalytic applications. As a consequence, the progress of research regarding enzymatic catalysis in aqueous, non-aqueous, organic (polar or non-polar), and/or non-solvent media is decisive. Experimental design methods, which also may comprise in silico studies, the design of specific reactors and conditions, the reactions of significant chemical and/or biochemical processes that are relevant to industrial production, enzyme kinetic methods, the investigation of enzymatic mechanisms and the use of immobilized enzymes and/or microbial cells on various inert matrices, are all useful. A plethora of enzymes of several classes, which may potentially be used as biocatalysts in biotechnological applications, are available. Among these enzymes, the more common are oxidoreductases (laccase, catalase, glucose oxidase, etc.), hydrolases (amylases, lipases, proteases, amidases, cellulases, esterases, etc.), isomerases (epimerases, topoisomerases, mutases, etc.), and others. By means of the aforementioned biocatalysts and the utilization of specific biotechnological methods, important, cost-effective, sustainable, and environmentally friendly processes have been applied for the synthesis and/or the conversion of a huge number of market-required products. 606 $aBiotechnology 606 $aBiocatalysis 615 0$aBiotechnology. 615 0$aBiocatalysis. 676 $a660.6 702 $aPapamichael$b Emmanuel M 702 $aStergiou$b Panagiota-Yiolanda 801 0$bNjHacI 801 1$bNjHacl 906 $aBOOK 912 $a9910647242603321 996 $aBiocatalytic Applications in Biotechnology$93016397 997 $aUNINA LEADER 01026nam a2200253 i 4500 001 991001119229707536 008 050628s2003 it 000 0 ita d 020 $a8846442652 035 $ab13323350-39ule_inst 040 $aDip.to Scienze pedagogiche$bita 082 0 $a371.9123 100 1 $aFavia, Maria Luisa$0525413 245 14$aUna scuola oltre le parole :$bcomunicare senza barriere : famiglia e istituzioni di fronte alla sorditą /$cMaria Luisa Favia ; presentazione di Virginia Volterra 260 $aMilano :$bF. 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