The conventional protocols for in solution or in gel protein digestion require many steps and long reaction times. The use of trypsin immobilized onto solid supports has recently captured the attention of many research groups, because these systems can speed-up protein digestion significantly. The utilization of new materials such as mesoporous silica as supports, in which enzyme and substrate are dramatically concentrated and confined in the nanospace, offers new opportunities to reduce the complexity of proteomics workflows. An overview of the procedures for in situ proteolysis of single proteins or complex protein mixtures is reported, with a special focus on porous materials used as catalysts. The challenging efforts for designing such ...
Tryptic digestion followed by identification using mass spectrometry is an important step in many pr...
A novel magnetic mesoporous silica packed S-shaped microfluidic reactor for online proteolysis of lo...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...
The conventional protocols for in solution or in gel protein digestion require many steps and long r...
A novel nanopore based digestion strategy has been developed by directly adding a macroporous materi...
In this study, the concept of size-selective proteolysis was first described by using the mesoporous...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...
Tryptic digestion before identification and quantification by mass spectrometry is an indispensable ...
Fast, efficient characterization of proteins is becoming one of the hottest topics in the bioanalyti...
Large-scale mass spectrometry based proteomic study requires high-throughput sample preparation tech...
Mesoporous silicates (MPS) provide a means of immobilizing proteins and enzymes in a stable environm...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
Fast protein digestion and identification are indispensable in mosr proteomic study.Immobilized enzy...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
Efficient proteolysis using a regenerable metal-ion chelate immobilized enzyme reactor supported on ...
Tryptic digestion followed by identification using mass spectrometry is an important step in many pr...
A novel magnetic mesoporous silica packed S-shaped microfluidic reactor for online proteolysis of lo...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...
The conventional protocols for in solution or in gel protein digestion require many steps and long r...
A novel nanopore based digestion strategy has been developed by directly adding a macroporous materi...
In this study, the concept of size-selective proteolysis was first described by using the mesoporous...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...
Tryptic digestion before identification and quantification by mass spectrometry is an indispensable ...
Fast, efficient characterization of proteins is becoming one of the hottest topics in the bioanalyti...
Large-scale mass spectrometry based proteomic study requires high-throughput sample preparation tech...
Mesoporous silicates (MPS) provide a means of immobilizing proteins and enzymes in a stable environm...
Mesoporous materials as support for immobilized enzymes have been explored extensively during the la...
Fast protein digestion and identification are indispensable in mosr proteomic study.Immobilized enzy...
The use of mesoporous molecular sieves in enzyme immobilisation has been studied. Three different ty...
Efficient proteolysis using a regenerable metal-ion chelate immobilized enzyme reactor supported on ...
Tryptic digestion followed by identification using mass spectrometry is an important step in many pr...
A novel magnetic mesoporous silica packed S-shaped microfluidic reactor for online proteolysis of lo...
Enzyme immobilization in porous silica particles is used to improve enzyme function in biocatalytic ...