0000000000200989

AUTHOR

Silvia Segarra

showing 4 related works from this author

Multigram Scale Enzymatic Synthesis of (R)-1-(4′-Hydroxyphenyl)ethanol Using Vanillyl Alcohol Oxidase

2018

The enantioselective oxyfunctionalisation of C−H bonds is a highly interesting reaction, as it provides access to chiral alcohols that are important pharmaceutical building blocks. However, it is hard to achieve using traditional methods. One way in which it can be achieved is through the action of oxidative enzymes. Although many reports of the oxyfunctionalisation capabilities of enzymes at an analytical scale have been published, reports on the use of enzymes to achieve oxyfunctionalisation on a synthetically relevant scale are fewer. Here, we describe the scale-up of the conversion of 4-ethylphenol to (R)-1-(4′-hydroxyphenyl)ethanol using the flavin-dependent enzyme vanillyl alcohol oxi…

0301 basic medicineVanillyl-alcohol oxidaseBiochemieEnantioselectivityHydroxylation01 natural sciencesBiochemistryHydroxylation03 medical and health scienceschemistry.chemical_compoundOxidative enzymeOrganic chemistryVLAGchemistry.chemical_classificationEthanol010405 organic chemistryChemistryEnantioselective synthesisSubstrate (chemistry)General ChemistryAlkylphenols0104 chemical sciencesFlavoprotein030104 developmental biologyEnzymeYield (chemistry)AlcoholsOxidoreductases
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Study on the effects of several operational variables on the enzymatic batch saccharification of orange solid waste

2017

In this work, batch enzyme-aided extraction and enzymatic saccharification of blade-milled orange waste was studied. The operation variables for this process were thoroughly analysed. It was determined that batch runs with initial pH values of 5.0 and 5.2 controlled during the first hour, 50°C and 300-500r.p.m. agitation resulted in the best yields, with a limited total and partial first-order enzyme deactivation (for cellulases and polygalacturonidase, respectively). Orange peel waste (OPW) at 6.7% w/w dry solid, 0.22 filter paper units (FPU)/g DS and proportional activities of other enzymes led to over 40g/L free monosaccharides and global yields to glucose over 80%. When using 10.1% w/w …

0106 biological sciencesEnvironmental EngineeringMunicipal solid wasteBioengineeringCellulaseOrange (colour)010501 environmental sciencesSolid Waste01 natural sciencesHydrolysis010608 biotechnologyCellulasesMonosaccharideWaste Management and Disposal0105 earth and related environmental scienceschemistry.chemical_classificationChromatographyFilter paperWaste managementbiologyRenewable Energy Sustainability and the EnvironmentHydrolysisHumidityGeneral MedicineGlucoseEnzymechemistryFermentationbiology.proteinCitrus sinensisBioresource Technology
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In silico prospection of microorganisms to produce polyhydroxyalkanoate from whey: Caulobacter segnis DSM 29236 as a suitable industrial strain

2019

15 p.-6 fig.-6 tab.

MicroorganismIn silicoBioengineeringApplied Microbiology and BiotechnologyBiochemistryPolyhydroxyalkanoatesCaulobacter03 medical and health scienceschemistry.chemical_compoundIndustrial MicrobiologyBiotransformationWheyData MiningFood scienceLactoseResearch ArticlesBiotransformation030304 developmental biology0303 health sciencesbiologyStrain (chemistry)030306 microbiologyPolyhydroxyalkanoatesfood and beveragesComputational BiologyIndustrial microbiologybiology.organism_classificationchemistryBacteriaBiotechnologyResearch ArticleMicrobial Biotechnology
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Novel biocatalysts for glycerol conversion into 2,3-butanediol

2016

Abstract Bioconversion of biodiesel-derived waste glycerol into high-value products is proposed as a solution to improve economic viability of biorefineries. Several microorganisms are able to metabolize glycerol into 2,3-butanediol (2,3-BD), a promising bulk chemical with wide applications: solvent, fuel additive, and feedstock for synthetic rubber production, among them. In the present work, a wide screening of microorganisms present both into the waste water treatment system in a biodiesel industry and in culture collections was carried out in order to evaluate their potential as new 2,3-BD producer biocatalysts. Two microorganisms for 2,3-BD production from glycerol as sole carbon sourc…

0106 biological sciences0301 basic medicineBiodieselbiologyBioconversionBioengineeringRaoultella terrigenaPulp and paper industrybiology.organism_classification01 natural sciencesApplied Microbiology and BiotechnologyBiochemistryRaoultella planticola03 medical and health scienceschemistry.chemical_compound030104 developmental biologyRaoultellachemistryBiochemistry010608 biotechnology23-ButanediolGlycerolYeast extractProcess Biochemistry
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