Please use this identifier to cite or link to this item: https://doi.org/10.3390/ijms23021009
Title: Identifying Candidate Protein Markers of Acute Kidney Injury in Acute Decompensated Heart Failure
Authors: Templeton, EM
Lassé, M
Kleffmann, T
Ellmers, LJ
Palmer, SC
Davidson, T
Scott, NJA
Pickering, JW
Charles, CJ
Endre, ZH
Cameron, VA
Richards, AM 
Rademaker, MT
Pilbrow, AP
Keywords: CCT
CCT6A
SWATH–MS
TRiC
acute decompensated heart failure
acute kidney injury
acute renal failure
biomarker
heart failure
proteomics
Acute Kidney Injury
Animals
Biomarkers
Disease Models, Animal
Heart Failure
Humans
Platelet Membrane Glycoproteins
Prognosis
Proteomics
Sheep
Issue Date: 1-Jan-2022
Publisher: MDPI AG
Citation: Templeton, EM, Lassé, M, Kleffmann, T, Ellmers, LJ, Palmer, SC, Davidson, T, Scott, NJA, Pickering, JW, Charles, CJ, Endre, ZH, Cameron, VA, Richards, AM, Rademaker, MT, Pilbrow, AP (2022-01-01). Identifying Candidate Protein Markers of Acute Kidney Injury in Acute Decompensated Heart Failure. International Journal of Molecular Sciences 23 (2) : 1009-. ScholarBank@NUS Repository. https://doi.org/10.3390/ijms23021009
Abstract: One‐quarter of patients with acute decompensated heart failure (ADHF) experience acute kidney injury (AKI)—an abrupt reduction or loss of kidney function associated with increased longterm mortality. There is a critical need to identify early and real‐time markers of AKI in ADHF; however, to date, no protein biomarkers have exhibited sufficient diagnostic or prognostic performance for widespread clinical uptake. We aimed to identify novel protein biomarkers of AKI associated with ADHF by quantifying changes in protein abundance in the kidneys that occur during ADHF development and recovery in an ovine model. Relative quantitative protein profiling was performed using sequential window acquisition of all theoretical fragment ion spectra–mass spectrometry (SWATH–MS) in kidney cortices from control sheep (n = 5), sheep with established rapidpacing‐induced ADHF (n = 8), and sheep after ~4 weeks recovery from ADHF (n = 7). Of the 790 proteins quantified, we identified 17 candidate kidney injury markers in ADHF, 1 potential kidney marker of ADHF recovery, and 2 potential markers of long‐term renal impairment (differential abundance between groups of 1.2–2.6‐fold, adjusted p < 0.05). Among these 20 candidate protein markers of kidney injury were 6 candidates supported by existing evidence and 14 novel candidates not previously implicated in AKI. Proteins of differential abundance were enriched in pro‐inflammatory signalling pathways: glycoprotein VI (activated during ADHF development; adjusted p < 0.01) and acute phase response (repressed during recovery from ADHF; adjusted p < 0.01). New biomarkers for the early detection of AKI in ADHF may help us to evaluate effective treatment strategies to prevent mortality and improve outcomes for patients.
Source Title: International Journal of Molecular Sciences
URI: https://scholarbank.nus.edu.sg/handle/10635/241793
ISSN: 1661-6596
1422-0067
DOI: 10.3390/ijms23021009
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