TY - JOUR
T1 - Metabolomics in sickle cell disease
T2 - Current knowledge and gaps – A scoping review
AU - van der Veen, Sigrid
AU - Jans, Judith J. M.
AU - van Beers, Eduard J.
AU - Biemond, Bart J.
AU - Bartolucci, Pablo
AU - Boaro, Maria Paola
AU - Collado Gimbert, Anna
AU - Colombatti, Raffaella
AU - D'Agnolo, Mirco
AU - Fijnvandraat, Karin J.
AU - Idrizovic, Amira
AU - Kountouris, Petros
AU - Mañú Pereira, Mar
AU - Mezzalira, Elisabetta
AU - Rab, Minke A. E.
AU - Rijneveld, Anita W.
AU - Sanavia, Tiziana
AU - Verhoeven-Duif, Nanda M.
AU - Cnossen, Marjon H.
N1 - Publisher Copyright:
Copyright © 2024. Published by Elsevier Ltd.
PY - 2025/11
Y1 - 2025/11
N2 - Sickle cell disease (SCD) has large phenotypic variability. Systematic metabolomic profiling may provide insights into phenotypes and treatment responses. We conducted a scoping review on associations between blood metabolites, SCD-related complications, and therapies in studies analyzing ≥10 metabolites in red blood cells, whole blood, and plasma. Lipidomics-focused studies were excluded. Fifteen studies were included, focusing on metabolic profiling, clinical outcomes, or therapies (hydroxyurea, transfusion, and mitapivat). Metabolic profiling differentiated SCD from healthy controls and patients with HbSS and HbSC genotypes. Associations with hemolysis, vaso-occlusive events, nephropathy, TRV, and mortality were identified. Overall, metabolites were involved in arginine, tryptophan, glutamate metabolism, glycolysis, pentose phosphate pathway, and the Lands cycle. Some metabolites showed opposite correlations across complications or sample types. Despite growing interest, gaps remain in study designs, metabolite selection, genotype representation, and underexplored complications and therapies. Standardized, large-scale metabolomics studies are needed to advance personalized treatment in SCD.
AB - Sickle cell disease (SCD) has large phenotypic variability. Systematic metabolomic profiling may provide insights into phenotypes and treatment responses. We conducted a scoping review on associations between blood metabolites, SCD-related complications, and therapies in studies analyzing ≥10 metabolites in red blood cells, whole blood, and plasma. Lipidomics-focused studies were excluded. Fifteen studies were included, focusing on metabolic profiling, clinical outcomes, or therapies (hydroxyurea, transfusion, and mitapivat). Metabolic profiling differentiated SCD from healthy controls and patients with HbSS and HbSC genotypes. Associations with hemolysis, vaso-occlusive events, nephropathy, TRV, and mortality were identified. Overall, metabolites were involved in arginine, tryptophan, glutamate metabolism, glycolysis, pentose phosphate pathway, and the Lands cycle. Some metabolites showed opposite correlations across complications or sample types. Despite growing interest, gaps remain in study designs, metabolite selection, genotype representation, and underexplored complications and therapies. Standardized, large-scale metabolomics studies are needed to advance personalized treatment in SCD.
KW - Hemoglobinopathy
KW - Mass spectrometry
KW - Metabolism
KW - Metabolomics
KW - Sickle cell anemia
KW - Sickle cell disease
UR - https://www.scopus.com/pages/publications/105015989075
U2 - 10.1016/j.blre.2025.101338
DO - 10.1016/j.blre.2025.101338
M3 - Review article
C2 - 40945973
SN - 0268-960X
VL - 74
JO - Blood reviews
JF - Blood reviews
M1 - 101338
ER -