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Normalization of organ-on-a-Chip samples for mass spectrometry based proteomics and metabolomics via Dansylation-based assay.
Gallagher, Erin M; Rizzo, Gabrielle M; Dorsey, Russell; Dhummakupt, Elizabeth S; Moran, Theodore S; Mach, Phillip M; Jenkins, Conor C.
Afiliación
  • Gallagher EM; U.S. Army, Threat Agent Sciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA; National Academies of Sciences, Engineering, and Medicine, NRC Research Associateship Program, 500 Fift
  • Rizzo GM; U.S. Army, BioSciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA.
  • Dorsey R; U.S. Army, Threat Agent Sciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA.
  • Dhummakupt ES; U.S. Army, BioSciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA.
  • Moran TS; U.S. Army, Threat Agent Sciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA.
  • Mach PM; U.S. Army, BioSciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA.
  • Jenkins CC; U.S. Army, BioSciences Division, Combat Capabilities Development Command (DEVCOM) Chemical Biological Center (CBC), 5183 Blackhawk Rd., Aberdeen Proving Ground, Gunpowder, MD 21010, USA.
Toxicol In Vitro ; 88: 105540, 2023 Apr.
Article en En | MEDLINE | ID: mdl-36563973
ABSTRACT
Mass spectrometry based 'omics pairs well with organ-on-a-chip-based investigations, which often have limited cellular material for sampling. However, a common issue with these chip-based platforms is well-to-well or chip-to-chip variability in the proteome and metabolome due to factors such as plate edge effects, cellular asynchronization, effluent flow, and limited cell count. This causes high variability in the quantitative multi-omics analysis of samples, potentially masking true biological changes within the system. Solutions to this have been approached via data processing tools and post-acquisition normalization strategies such as constant median, constant sum, and overall signal normalization. Unfortunately, these methods do not adequately correct for the large variations, resulting in a need for increased biological replicates. The methods in this work utilize a dansylation based assay with a subset of labeled metabolites that allow for pre-acquisition normalization to better correlate the biological perturbations that truly occur in chip-based platforms. BCA protein assays were performed in tandem with a proteomics pipeline to achieve pre-acquisition normalization. The CN Bio PhysioMimix was seeded with primary hepatocytes and challenged with VX after six days of culture, and the metabolome and proteome were analyzed using the described normalization methods. A decreased coefficient of variation percentage is achieved, significant changes are observed through the proteome and metabolome, and better classification of biological replicates acquired because of these strategies.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Proteoma / Proteómica Idioma: En Revista: Toxicol In Vitro Asunto de la revista: TOXICOLOGIA Año: 2023 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Proteoma / Proteómica Idioma: En Revista: Toxicol In Vitro Asunto de la revista: TOXICOLOGIA Año: 2023 Tipo del documento: Article