Compartmentalization at the nanoscale is fundamental in nature, where the spatial segregation of biochemical reactions within cells ensures optimal conditions for regulating metabolic pathways. Here, we present a nature-inspired approach to engineer enzymatic cascade reactions taking place between separate vesicular nanocompartments (polymersomes), each containing one enzyme type. We propose, by the selected combination of enzymes, an efficient solution to detoxify the harmful effect of uric acid and prevent the accumulation of the derived H2O2, both being associated with various pathological conditions (e.g., gout and oxidative stress). Fungal uricase and horseradish peroxidase combined to act in tandem, and they were separately encapsulat...
Enzyme loading of polymersomes requires permeability to enable them to interact with the external en...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Compartmentalization at the nanoscale is fundamental in nature, where the spatial segregation of bio...
Compartmentalization is fundamental in nature, where the spatial segregation of biochemical reaction...
We describe an innovative strategy to generate catalytic compartments with triggered functionality a...
AbstractIn various pathological conditions an advantage may be gained by reinforcing an intrinsic or...
Cellular compartmentalization enables enzymes to perform complex sequences of chemical transformatio...
In eukaryotic cells, enzymes are compartmentalized into specific organelles so that different reacti...
Within each biological cell, surface- and volume-confined enzymes control a highly complex network o...
One of the main features of living matter is compartmentalization, that is the temporal and spatial ...
Cells are sophisticated biocatalytic systems driving a complex network of biochemical reactions. A b...
In nature, the interior of a cell hosts a remarkable network of organelles and subcellular compartme...
Physical separation of reactions by interactive multicompartments in biological cells is an attracti...
Porous polymersomes based on block copolymers of isocyanopeptides and styrene have been used to anch...
Enzyme loading of polymersomes requires permeability to enable them to interact with the external en...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...
Compartmentalization at the nanoscale is fundamental in nature, where the spatial segregation of bio...
Compartmentalization is fundamental in nature, where the spatial segregation of biochemical reaction...
We describe an innovative strategy to generate catalytic compartments with triggered functionality a...
AbstractIn various pathological conditions an advantage may be gained by reinforcing an intrinsic or...
Cellular compartmentalization enables enzymes to perform complex sequences of chemical transformatio...
In eukaryotic cells, enzymes are compartmentalized into specific organelles so that different reacti...
Within each biological cell, surface- and volume-confined enzymes control a highly complex network o...
One of the main features of living matter is compartmentalization, that is the temporal and spatial ...
Cells are sophisticated biocatalytic systems driving a complex network of biochemical reactions. A b...
In nature, the interior of a cell hosts a remarkable network of organelles and subcellular compartme...
Physical separation of reactions by interactive multicompartments in biological cells is an attracti...
Porous polymersomes based on block copolymers of isocyanopeptides and styrene have been used to anch...
Enzyme loading of polymersomes requires permeability to enable them to interact with the external en...
Reactions inside confined compartments at the nanoscale represent an essential step in the developme...
Compartmentalization of functional biological units, cells, and organelles serves as an inspiration ...