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Journal ArticleDOI

Overcoming the Incompatibility Challenge in Chemoenzymatic and Multi-Catalytic Cascade Reactions.

TLDR
This Minireview will summarize recent synthetic examples of (chemo)enzymatic cascade reactions and outline promising methods for their spatial control either by using bio-derived or synthetic systems.
Abstract
Multi-catalytic cascade reactions bear a great potential to minimize downstream and purification steps, leading to a drastic reduction of the produced waste. In many examples, the compatibility of chemo- and biocatalytic steps could be easily achieved. Problems associated with the incompatibility of the catalysts and their reactions, however, are very frequent. Cascade-like reactions can hardly occur in this way. One possible solution to combine, in principle, incompatible chemo- and biocatalytic reactions is the defined control of the microenvironment by compartmentalization or scaffolding. Current methods for the control of the microenvironment of biocatalysts go far beyond classical enzyme immobilization and are thus believed to be very promising tools to overcome incompatibility issues and to facilitate the synthetic application of cascade reactions. In this Minireview, we will summarize recent synthetic examples of (chemo)enzymatic cascade reactions and outline promising methods for their spatial control either by using bio-derived or synthetic systems.

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Journal ArticleDOI

Developing a Protein Scaffolding System for Rapid Enzyme Immobilization and Optimization of Enzyme Functions for Biocatalysis.

TL;DR: A modular immobilization platform with tunable surface properties is created by developing a toolbox of self-assembling, robust EutM-SpyCatcher scaffolds using an alcohol dehydrogenase as model biocatalyst and it is shown that the scaffolds improve enzyme activity and stability.
Journal ArticleDOI

One-Pot Combination of Metal- and Bio-Catalysis in Water for the Synthesis of Chiral Molecules

TL;DR: In this article, a comprehensive account of the state-of-the-art in the development of catalytic networks by combining metallic and biological catalysts in aqueous media (the natural environment of enzymes) is presented.
Journal ArticleDOI

Chemo-enzymatic cascades to produce cycloalkenes from bio-based resources.

TL;DR: It is shown that compartmentalization of complex enzyme cascades within E. coli whole cells enables the simultaneous use of a metathesis catalyst, thus allowing the sustainable one-pot production of cycloalkenes from oleic acid.
Journal ArticleDOI

Mesoporous Core–Shell Nanostructures Bridging Metal and Biocatalyst for Highly Efficient Cascade Reactions

TL;DR: Mesoporous core-shell structured nanocatalysts with a PdPt bimetallic core and enzyme-immobilized polydopamine (PDA) shell were designed in this paper, in which the PDA shell worked as a barrier to position the...
Journal ArticleDOI

Novel Insights into the Combination of Metal- and Biocatalysis: Cascade One-Pot Synthesis of Enantiomerically Pure Biaryl Alcohols in Deep Eutectic Solvents

TL;DR: One of the pioneering examples of chemoenzymatic cascades in water such as the palladium‐catalysed Suzuki‐cross coupling followed by an enzymatic reduction has been revisited by the employment of a medium containing Deep Eutectic Solvents for the catalytic performance.
References
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Journal Article

Polymer vesicles : Materials science: Soft surfaces

Dennis E. Discher, +1 more
- 01 Jan 2002 - 
TL;DR: Future applications of polymer vesicles will rely on exploiting unique property-performance relations, but results to date underscore the fact that biologically derived vesicle are but a small subset of what is physically and chemically possible.
Journal ArticleDOI

Polymersomes: tough vesicles made from diblock copolymers.

TL;DR: The results suggest a new class of synthetic thin-shelled capsules based on block copolymer chemistry, and both the membrane bending and area expansion moduli of electroformed polymersomes (polymer-based liposomes) fell within the range of lipid membrane measurements.
Journal ArticleDOI

Synthesis of polycaprolactone: a review

TL;DR: This critical review summarises the different conditions which have been described to synthesise PCL, and gives a broad overview of the different catalytic systems that were used (enzymatic, organic and metal catalyst systems).
Journal ArticleDOI

Industrial Methods for the Production of Optically Active Intermediates

TL;DR: For the industrial implementation of many transformations alternative methods are available and the advantages of the individual methods will be discussed herein and exemplified by syntheses of relevant compounds.
Journal ArticleDOI

Highly permeable polymeric membranes based on the incorporation of the functional water channel protein Aquaporin Z

TL;DR: The approach followed here may lead to more productive and sustainable water treatment membranes, whereas the variable levels of permeability obtained with different concentrations of AqpZ may provide a key property for drug delivery applications.
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