» Articles » PMID: 24558439

Thiol/redox Metabolomic Profiling Implicates GSH Dysregulation in Early Experimental Graft Versus Host Disease (GVHD)

Overview
Journal PLoS One
Date 2014 Feb 22
PMID 24558439
Citations 16
Authors
Affiliations
Soon will be listed here.
Abstract

Graft-versus-host disease (GVHD) is a common complication of allogeneic bone marrow transplantation (BMT). Upregulation of inflammatory cytokines precedes the clinical presentation of GVHD and predicts its severity. In this report, thiol/redox metabolomics was used to identify metabolic perturbations associated with early preclinical (Day+4) and clinical (Day+10) stages of GVHD by comparing effects in Syngeneic (Syn; major histocompatibility complex- identical) and allogeneic transplant recipients (Allo BMT) in experimental models. While most metabolic changes were similar in both groups, plasma glutathione (GSH) was significantly decreased, and GSH disulfide (GSSG) was increased after allogeneic compared to syngeneic recipient and non-transplant controls. The early oxidation of the plasma GSH/GSSG redox couple was also observed irrespective of radiation conditioning treatment and was accompanied by significant rise in hepatic protein oxidative damage and ROS generation. Despite a significant rise in oxidative stress, compensatory increase in hepatic GSH synthesis was absent following Allo BMT. Early shifts in hepatic oxidative stress and plasma GSH loss preceded a statistically significant rise in TNF-α. To identify metabolomic biomarkers of hepatic GVHD injury, plasma metabolite concentrations analyzed at Day+10 were correlated with hepatic organ injury. GSSG (oxidized GSH) and β-alanine, were positively correlated, and plasma GSH cysteinylglycine, and branched chain amino acids were inversely correlated with hepatic injury. Although changes in plasma concentrations of cysteine, cystathionine (GSH precursors) and cysteinylglycine (a GSH catabolite) were not significant by univariate analysis, principal component analysis (PCA) indicated that accumulation of these metabolites after Allo BMT contributed significantly to early GVHD in contrast to Syn BMT. In conclusion, thiol/redox metabolomic profiling implicates that early dysregulation of host hepatic GSH metabolism and oxidative stress in sub-clinical GVHD before elevated TNF-α levels is associated with GVHD pathogenesis. Future studies will probe the mechanisms for these changes and examine the potential of antioxidant intervention strategies to modulate GVHD.

Citing Articles

The effect of danger-associated molecular patterns on survival in acute graft versus host disease.

Celik S, Kaynar L, Guven Z, Atasever Duran K, Kontas O, Keklik M Bone Marrow Transplant. 2023; 59(2):189-195.

PMID: 37935781 DOI: 10.1038/s41409-023-02145-7.


The presence of busulfan metabolites and pharmacometabolomics in plasma drawn immediately before allograft infusion in hematopoietic cell transplant recipients.

McCune J, Navarro S, Risler L, Phillips B, Ren S, Schoch H Clin Transl Sci. 2023; 16(12):2577-2590.

PMID: 37749994 PMC: 10719475. DOI: 10.1111/cts.13651.


Malabaricone C, a constituent of spice , exhibits anti-inflammatory effects via modulation of cellular redox.

Patwardhan R, Kundu K, Purohit V, Kumar B, Singh B, Thoh M J Biosci. 2023; 48.

PMID: 36971326 PMC: 10040911.


Metabolic Reprogramming-A New Era How to Prevent and Treat Graft Versus Host Disease After Allogeneic Hematopoietic Stem Cell Transplantation Has Begun.

Kumari R, Palaniyandi S, Hildebrandt G Front Pharmacol. 2020; 11:588449.

PMID: 33343357 PMC: 7748087. DOI: 10.3389/fphar.2020.588449.


Prediction of Acute Graft versus Host Disease and Relapse by Endogenous Metabolomic Compounds in Patients Receiving Personalized Busulfan-Based Conditioning.

McCune J, McKiernan J, van Maarseveen E, Huitema A, Randolph T, Deeg H J Proteome Res. 2020; 20(1):684-694.

PMID: 33064008 PMC: 8214873. DOI: 10.1021/acs.jproteome.0c00599.


References
1.
Shelton M, Mieyal J . Regulation by reversible S-glutathionylation: molecular targets implicated in inflammatory diseases. Mol Cells. 2008; 25(3):332-46. PMC: 3367451. View

2.
Ziegler T, Gu L, Jonas C, Farrell C, Lacey D, Jones D . Regulation of glutathione redox status in lung and liver by conditioning regimens and keratinocyte growth factor in murine allogeneic bone marrow transplantation. Transplantation. 2001; 72(8):1354-62. DOI: 10.1097/00007890-200110270-00004. View

3.
Karlsson H, Nava S, Remberger M, Hassan Z, Hassan M, Ringden O . N-acetyl-L-cysteine increases acute graft-versus-host disease and promotes T-cell-mediated immunity in vitro. Eur J Immunol. 2011; 41(4):1143-53. DOI: 10.1002/eji.201040589. View

4.
Maeda Y, Levy R, Reddy P, Liu C, Clouthier S, Teshima T . Both perforin and Fas ligand are required for the regulation of alloreactive CD8+ T cells during acute graft-versus-host disease. Blood. 2004; 105(5):2023-7. DOI: 10.1182/blood-2004-08-3036. View

5.
Suh J, Kim R, Lee D . A new metabolomic assay to examine inflammation and redox pathways following LPS challenge. J Inflamm (Lond). 2012; 9(1):37. PMC: 3507808. DOI: 10.1186/1476-9255-9-37. View