2018
DOI: 10.1016/j.jprot.2017.09.008
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A flow-through nanoporous alumina trypsin bioreactor for mass spectrometry peptide fingerprinting

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Cited by 4 publications
(4 citation statements)
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“…The use of porous membranes fixed in membrane holders is also a popular choice [77,79]. Trypsin was immobilized on commercially available nanoporous anodized alumina membranes, creating a flow-through IMER that can be on-line coupled to ESI-TOF-MS [79].…”
Section: Other Supportsmentioning
confidence: 99%
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“…The use of porous membranes fixed in membrane holders is also a popular choice [77,79]. Trypsin was immobilized on commercially available nanoporous anodized alumina membranes, creating a flow-through IMER that can be on-line coupled to ESI-TOF-MS [79].…”
Section: Other Supportsmentioning
confidence: 99%
“…The use of porous membranes fixed in membrane holders is also a popular choice [77,79]. Trypsin was immobilized on commercially available nanoporous anodized alumina membranes, creating a flow-through IMER that can be on-line coupled to ESI-TOF-MS [79]. The developed IMER was characterized by a high trypsin load due to the nanopores (pore size: 200 nm), as well as enhanced stability and straightforward assembly.…”
Section: Other Supportsmentioning
confidence: 99%
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“…The top-most advantage of using NAA templates is that the pore-properties of NAA such as pore diameter, pore-to-pore distance, porosity, pore-density (number of pores per unit area), and pore lengths and so on can be controlled in an easier way by adjusting the process parameters such as current, voltage, temperature, pH and so on. 2 The potential of NAA membranes have been successfully demonstrated in the synthesis of one-dimensional nanomaterials, [3][4][5] metallic nanowires, 6,7 photonic crystals, 8 and for optical biosensing [9][10][11][12] etc.…”
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confidence: 99%