نتایج جستجو برای: immobilized biocatalysts
تعداد نتایج: 18914 فیلتر نتایج به سال:
The development of a biotechnological method for the production of new biologically active phosphatidylcholine containing monoterpene citronellic acid (CA) was the aim of this work. Incorporation of citronellic acid (CA) into egg-yolk phosphatidylcholine (PC) in the lipase-catalyzed acidolysis process was studied. Isoprenoid acid CA was used as an acyl donor and five commercially available immo...
The problem of environmental pollution becomes more worrisome day by day, primarily due to the large amounts of wastewater contaminated with various harmful organic compounds, discharged untreated or partially clean into the environment. Feasibility of use of horseradish peroxidase (Amoracia rusticana) in the synthetic dyes decolorization was approved by many researchers. Among a number of supp...
Enzyme immobilization has become a key strategy to improve the stability and recycling of biocatalysts, resulting in greener more cost-efficient processes. The design immobilized catalysts is often focused only on strategy, binding chemistry between enzyme support, while less attention been paid physico-chemical properties material supports. Selecting best carrier for specific application may g...
The feasibility of a peroxidase–aldolase cascade reaction for the synthesis therapeutically-valuable iminocyclitols is discussed herein. A two-enzyme system consisting chloroperoxidase (CPO) and D-fructose-6-phosphate aldolase (FSA) was evaluated D-fagomine precursor (preFagomine) from N-Cbz-3-aminopropanol. An in-depth, systematic, step-by-step kinetic modeling seven reactions two inactivation...
An improved whole-cell technology for detoxifying organophosphate nerve agents was recently developed based on genetically engineered Escherichia coli with organophosphorus hydrolase anchored on the surface. This article reports the immobilization of these novel biocatalysts on nonwoven polypropylene fabric and their applications in detoxifying contaminated wastewaters. The best cell loading (2...
We have recently developed a simple, reusable and coupled whole-cell biocatalytic system with the capability of cofactor regeneration and biocatalyst immobilization for improved production yield and sustained synthesis. Described herewith is the experimental procedure for the development of such a system consisting of two E. coli strains that express functionally complementary enzymes. Together...
Phenolic compounds are among the major classes of pollutants produced by industrial and agricultural activities. The amperometric biosensors have been mainly applied to the determination of phenolic compounds because of the advantages such as good selectivity, low cost, and easy automation. Amperometry is a method to measure the electric current that flows as a result of reactions generated at ...
Immobilized lipases were applied to the enzymatic conversion of oils from spent coffee ground into biodiesel. Two lipases were selected for the study because of their conformational behavior analysed by Molecular Dynamics (MD) simulations taking into account that immobilization conditions affect conformational behavior of the lipases and ultimately, their efficiency upon immobilization. The enz...
Viable E. coli cells were entrapped in hydrogel micropatches photopolymerized within microfluidic systems. The microfluidic channels and the micropatches have sizes on the order of 100-500 microm. Small molecules, such as dyes and surfactants, present in the solution surrounding the hydrogel, are able to diffuse into the gel and encounter the cells, but the cells are sufficiently large to be re...
Hydroxymethylfurfural esters (HMF-esters) have great potential for additive development; this reason, the goal of work was to study optimization esterification conversion HFM and lauric acid using two lipases: Novozym 435® biocatalyst immobilized lipase from Thermomyces lanuginosus (TL). For conversion, a three-level three-factorial Box–Behnken experimental design used. The models achieved good...
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