Renal function is a major predictor of circulating acyl-CoA-binding protein/diazepam-binding inhibitor

Author:

Schürfeld Robin,Sandner Benjamin,Hoffmann Annett,Klöting Nora,Baratashvili Ekaterine,Nowicki Marcin,Paeschke Sabine,Kosacka Joanna,Kralisch Susan,Bachmann Anette,Frille Armin,Dietel Anja,Stolzenburg Jens-Uwe,Blüher Matthias,Zhang Ming-Zhi,Harris Raymond C.,Isermann Berend,Stumvoll Michael,Tönjes Anke,Ebert Thomas

Abstract

ObjectiveAcyl-CoA-binding protein (ACBP)/diazepam-binding inhibitor has lately been described as an endocrine factor affecting food intake and lipid metabolism. ACBP is dysregulated in catabolic/malnutrition states like sepsis or systemic inflammation. However, regulation of ACBP has not been investigated in conditions with impaired kidney function, so far.Design/methodsSerum ACBP concentrations were investigated by enzyme-linked immunosorbent assay i) in a cohort of 60 individuals with kidney failure (KF) on chronic haemodialysis and compared to 60 individuals with a preserved kidney function; and ii) in a human model of acute kidney dysfunction (AKD). In addition, mACBP mRNA expression was assessed in two CKD mouse models and in two distinct groups of non-CKD mice. Further, mRNA expression of mACBP was measured in vitro in isolated, differentiated mouse adipocytes - brown and white - after exposure to the uremic agent indoxyl sulfate.ResultsMedian [interquartile range] serum ACBP was almost 20-fold increased in KF (514.0 [339.3] µg/l) compared to subjects without KF (26.1 [39.1] µg/l) (p<0.001). eGFR was the most important, inverse predictor of circulating ACBP in multivariate analysis (standardized β=-0.839; p<0.001). Furthermore, AKD increased ACBP concentrations almost 3-fold (p<0.001). Increased ACBP levels were not caused by augmented mACBP mRNA expression in different tissues of CKD mice in vivo or in indoxyl sulfate-treated adipocytes in vitro.ConclusionsCirculating ACBP inversely associates with renal function, most likely through renal retention of the cytokine. Future studies need to investigate ACBP physiology in malnutrition-related disease states, such as CKD, and to adjust for markers of renal function.

Funder

Deutsche Forschungsgemeinschaft

Deutsche Diabetes Gesellschaft

Novo Nordisk

Karolinska Institutet

Stiftelsen Stig och Gunborg Westman

Njurfonden

European Foundation for the Study of Diabetes

Bundesministerium für Bildung, Wissenschaft und Forschung

Medizinische Fakultät, Universität Leipzig

Freistaat Sachsen

Publisher

Frontiers Media SA

Subject

Endocrinology, Diabetes and Metabolism

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