A novel magnetic mesoporous silica packed S-shaped microfluidic reactor for online proteolysis of low-MW proteomeMagnetic mesoporous silica with a magnetic cover and mesoporous core was synthesized, filled with trypsin and located in an S-shaped microfluidic reactor. High-molecular weight (MW) proteins were split to waste by fractionation, whilst low-MW proteins were retained on the chip to be digested
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
Recently, microfluidic systems have been paid much attention to achieve high throughput proteome ana...
The complete elimination of enzymes from the reaction mixture and the possibility of its recycling f...
In this study, the concept of size-selective proteolysis was first described by using the mesoporous...
The conventional protocols for in solution or in gel protein digestion require many steps and long r...
There has been much interest in the application of microfluidic systems to proteomics in recent year...
A microchip reactor coated with a gold nanoparticle network entrapping trypsin was designed for the ...
A microchip reactor coated with a gold nanoparticle net-work entrapping trypsin was designed for the...
The growing field of miniaturized diagnostics is hindered by a lack of pre-analysis treatments that ...
A microreactor for proteinase K (PK)-mediated protein digestion was developed as a step towards the ...
Magnetic mesoporous silica microspheres with core-shell structure and large pores are highly desired...
Core-shell magnetic mesoporous silica microspheres (Magn-MSMs) with tunable large mesopores in the s...
Magnetic mesoporous silica microspheres with core–shell structure and large pores are highly desired...
In this paper, magnetic Fe3O4 nanoparticles modified graphene oxide nanocomposites (GO-CO-NH-Fe3O4) ...
Proteomic analysis requires the combination of an extensive suite of technologies including protein ...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
Recently, microfluidic systems have been paid much attention to achieve high throughput proteome ana...
The complete elimination of enzymes from the reaction mixture and the possibility of its recycling f...
In this study, the concept of size-selective proteolysis was first described by using the mesoporous...
The conventional protocols for in solution or in gel protein digestion require many steps and long r...
There has been much interest in the application of microfluidic systems to proteomics in recent year...
A microchip reactor coated with a gold nanoparticle network entrapping trypsin was designed for the ...
A microchip reactor coated with a gold nanoparticle net-work entrapping trypsin was designed for the...
The growing field of miniaturized diagnostics is hindered by a lack of pre-analysis treatments that ...
A microreactor for proteinase K (PK)-mediated protein digestion was developed as a step towards the ...
Magnetic mesoporous silica microspheres with core-shell structure and large pores are highly desired...
Core-shell magnetic mesoporous silica microspheres (Magn-MSMs) with tunable large mesopores in the s...
Magnetic mesoporous silica microspheres with core–shell structure and large pores are highly desired...
In this paper, magnetic Fe3O4 nanoparticles modified graphene oxide nanocomposites (GO-CO-NH-Fe3O4) ...
Proteomic analysis requires the combination of an extensive suite of technologies including protein ...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
Recently, microfluidic systems have been paid much attention to achieve high throughput proteome ana...
The complete elimination of enzymes from the reaction mixture and the possibility of its recycling f...