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Although current LC-MS technology permits scientists to efficiently screen clinical samples in translational research, e.g. steroids, biogenic amines and even plasma or serum proteomes, in a daily routine, maintaining the balance between throughput and analytical depth is still a limiting factor. A ...
ORGANISM(S): Homo sapiens (Human) 
2021-07-09 | PXD024893 | Pride
The design of proteome projects is often restricted by the available amounts of sample, and thus there has been much effort to date to improve the sensitivity of proteome analyses. We have developed a new ultrasensitive nanoLC-MS system for the proteome analysis of microscale samples using a nonporo...
ORGANISM(S): Homo Sapiens (human) 
We have successfully bioinertized a nanoLC/MS/MS system for the highly sensitive analysis of phosphopeptides by depleting metal ions from the mobile phase. We found that not only the direct contact of phosphopeptides with metal materials, but also the indirect contact with HPLC pump through the mobi...
ORGANISM(S): Homo Sapiens (human) 
Vibrio fluvialis A8 was a newly isolated strain that possessed a good agarase production ability. The Secretomic analysis using nanoLC-MS/MS was performed to study the molecular properties including molecular weight, pI and relative abundance of the agarases in the secretome of this strain.
ORGANISM(S): Vibrio fluvialis 
2020-07-30 | PXD019302 | Pride
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