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For mass spectrometry-based proteomics, the selected sample preparation strategy is a key determinant for information that will be obtained. However, the corresponding selection is often not based on a fit-for-purpose evaluation. Here we report a comparison of in-gel (IGD), in-solution (ISD), on-fil...
ORGANISM(S): Homo sapiens (Human) 
2018-04-06 | PXD008493 | Pride
Quantification of intact proteins in complex biological matrices by liquid chromatography-mass spectrometry (LC-MS) is a promising analytical strategy but is technically challenging, notably for concentrations at or below the ng/mL level. Therefore, MS-based protein quantification is mostly based on...
ORGANISM(S): Homo sapiens (Human) 
2021-04-12 | PXD013415 | Pride
Affinity ligands such as antibodies are widely used in (bio)medical research for purifying proteins from complex biological samples. These ligands are generally immobilized onto solid supports which facilitate the separation of captured protein from sample matrix. Adsorptive microtiter plates are co...
ORGANISM(S): Murine leukemia virus isolates 
2021-11-25 | PXD027530 | Pride
The accurate processing of complex LC-MS/MS data from biological samples is a major challenge for metabolomics, proteomics and related approaches. Here we present the Pipelines and Systems for Threshold Avoiding Quantification (PASTAQ) LC-MS/MS pre-processing toolset, which allows highly accurate qu...
ORGANISM(S): Homo sapiens (Human) Escherichia coli Saccharomyces cerevisiae (Baker's yeast) 
2021-08-18 | PXD024584 | Pride
The study of low abundant proteins contributes to increasing our knowledge about (patho)physiological processes of ageing and disease onset and development and may lead to the identification and clinical application of disease markers. However, studying these proteins is challenging as high-abundant...
ORGANISM(S): Homo sapiens (Human) 
2019-04-09 | PXD010115 | Pride
Nano-sized objects such as liposomes are modified by adsorption of biomolecules in biological fluids. The resulting corona critically changes nanoparticle behavior at cellular level. A better control of corona composition could allow to modulate uptake by cells. Within this context, in this work, li...
ORGANISM(S): Homo sapiens (Human) 
2020-02-28 | PXD017776 | Pride
DallePezze2016 - Activation of AMPK and mTOR by amino acids (Model 3) This model is as described in the Supplementary Software 3 of the reference publication: SBML model similar to Model S2, but including a more complex p70-S6K module. This model is described in the article: A...
2024-09-02 | BIOMD0000000640 | BioModels
DallePezze2016 - Activation of AMPK and mTOR by amino acids (Model 1) This model is as described in Supplementary Software 2 of the reference publication: SBML model including only the canonical amino acid input on mTORC1. This model is described in the article: A systems study reveals ...
2017-05-18 | MODEL1705030000 | BioModels
DallePezze2016 - Activation of AMPK and mTOR by amino acids (Model 2) This model is as described in the Supplementary Software 2 of the reference publication:  SBML model including four amino acids input in the network (simple p70-S6K module). This model is described in the article:...
2017-05-18 | MODEL1705030001 | BioModels
Acinetobacter baumannii is an important pathogen of nosocomial infection worldwide, which can primarily cause pneumonia, bloodstream infection, and urinary tract infection. The increasing drug resistance rate of A. baumannii and the slow development of new antibacterial drugs brought great challenge...
ORGANISM(S): Mus musculus (Mouse) 
2021-03-16 | PXD020640 | Pride
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