Proteomics

Dataset Information

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Identification of Putative Kidney-Derived Proteins in Plasma using Nanoparticle Enrichment


ABSTRACT: Many diseases, including diabetes and hypertension, can lead to kidney damage, often resulting in long-term health complications and organ failure. Both animal and human studies have documented a causal relationship between high dietary sodium intake and elevated blood pressure. We explored a proteomics analysis of plasma samples to detect early kidney damage in response to a high sodium (HS) diet through the quantification of putative kidney-derived proteins in plasma for early disease detection. Plasma samples from 7 female baboons fed a high sodium diet for 6 weeks were collected before and after the HS diet challenge. Plasma samples were analyzed using a novel nanoparticle enrichment protocol.

INSTRUMENT(S):

ORGANISM(S): Papio Hamadryas

TISSUE(S): Blood Plasma

SUBMITTER: Daniela Key  

LAB HEAD: Michael Olivier

PROVIDER: PXD071248 | Pride | 2026-03-30

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
Animal_1_HS_np1.raw Raw
Animal_1_HS_np2.raw Raw
Animal_1_HS_np3.raw Raw
Animal_1_HS_np4.raw Raw
Animal_1_HS_np5.raw Raw
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Publications

Identification of Putative Kidney-Derived Proteins in Plasma using Nanoparticle Enrichment.

Key Planas Daniela A DA   Nazli Sumaiya S   Riojas Angelica M AM   Reyes Arisbeth Camarillo AC   Jadhav Avinash A   Zimmerman Kip K   Cox Laura A LA   Olivier Michael M  

Molecular omics 20260216


Many diseases, including diabetes and hypertension, can lead to kidney damage, often resulting in long-term health complications and organ failure. Both animal and human studies have documented a causal relationship between high dietary sodium intake and elevated blood pressure. We explored a proteomics analysis of plasma samples to detect early kidney damage in response to a high sodium (HS) diet through the quantification of putative kidney-derived proteins in plasma for early disease detectio  ...[more]

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