A novel nanopore based digestion strategy has been developed by directly adding a macroporous material as catalyst to the conventional in-solution reaction system. Without increasing the enzyme or protein concentrations, this simple digestion approach exhibits high proteolysis efficiency and selectivity due to the in situ fast adsorption of both enzymes and proteins from bulk solution into the macropores of the catalysts, where the target substrates and enzymes are greatly concentrated and confined in the nanospace to realize a quick digestion. Based on the electrostatic interaction matching between the biomolecules and catalysts, selective extraction and digestion of proteins with different isoelectric points can be achieved by adjusting t...
Nanopores have been successfully implemented for DNA sequencing. However, nanopore is much less empl...
An efficient technique for enzymatic digestion of proteins in nanovial arrays and identification by ...
Protein digestion, using an enzyme called trypsin (TR), is one of the key steps in proteomic analysi...
The conventional protocols for in solution or in gel protein digestion require many steps and long r...
We have developed a smart nanodevice for the highly efficient and selective detection of glycoprotei...
Biological nanopores are a class of membrane proteins that open nanoscale water conduits in biologic...
We review the current status of various aspects of biopolymer translocation through nanopores and th...
In this study, the concept of size-selective proteolysis was first described by using the mesoporous...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
Pore-forming toxins are used in a variety of biotechnological applications. Typically, individual me...
A phospho-directed nanoreactor with multiple functions is reported. Alumina-functionalized macroporo...
Digestion is an indispensable step for protein analysis with bottom-up strategy. However, the tradit...
The encapsulation of enzymes in wet, nanoporous silica gels is a powerful strategy to exploit the ca...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
Bioactive glasses with hierarchical nanoporosity and structures have been heavily involved in immobi...
Nanopores have been successfully implemented for DNA sequencing. However, nanopore is much less empl...
An efficient technique for enzymatic digestion of proteins in nanovial arrays and identification by ...
Protein digestion, using an enzyme called trypsin (TR), is one of the key steps in proteomic analysi...
The conventional protocols for in solution or in gel protein digestion require many steps and long r...
We have developed a smart nanodevice for the highly efficient and selective detection of glycoprotei...
Biological nanopores are a class of membrane proteins that open nanoscale water conduits in biologic...
We review the current status of various aspects of biopolymer translocation through nanopores and th...
In this study, the concept of size-selective proteolysis was first described by using the mesoporous...
Biocatalysis with immobilized enzymes as catalysts holds enormous promise in developing more efficie...
Pore-forming toxins are used in a variety of biotechnological applications. Typically, individual me...
A phospho-directed nanoreactor with multiple functions is reported. Alumina-functionalized macroporo...
Digestion is an indispensable step for protein analysis with bottom-up strategy. However, the tradit...
The encapsulation of enzymes in wet, nanoporous silica gels is a powerful strategy to exploit the ca...
We demonstrate the supramolecular bioconjugation of concanavalin A (Con A) protein with glycoenzyme ...
Bioactive glasses with hierarchical nanoporosity and structures have been heavily involved in immobi...
Nanopores have been successfully implemented for DNA sequencing. However, nanopore is much less empl...
An efficient technique for enzymatic digestion of proteins in nanovial arrays and identification by ...
Protein digestion, using an enzyme called trypsin (TR), is one of the key steps in proteomic analysi...