» Articles » PMID: 38072152

Prognostic Performance of Hematological and Serum Iron and Metabolite Indices for Detection of Early Iron Deficiency Induced Metabolic Brain Dysfunction in Infant Rhesus Monkeys

Overview
Journal J Nutr
Publisher Elsevier
Date 2023 Dec 10
PMID 38072152
Authors
Affiliations
Soon will be listed here.
Abstract

Background: The current pediatric practice of monitoring for infantile iron deficiency (ID) via hemoglobin (Hgb) screening at one y of age does not identify preanemic ID nor protect against later neurocognitive deficits.

Objectives: To identify biomarkers of iron-related metabolic alterations in the serum and brain and determine the sensitivity of conventional iron and heme indices for predicting risk of brain metabolic dysfunction using a nonhuman primate model of infantile ID.

Methods: Simultaneous serum iron and RBC indices, and serum and cerebrospinal fluid (CSF) metabolomic profiles were determined in 20 rhesus infants, comparing iron sufficient (IS; N = 10) and ID (N = 10) infants at 2 and 4 mo of age.

Results: Reticulocyte hemoglobin (RET-He) was lower at 2 wk in the ID group. Significant IS compared with ID differences in serum iron indices were present at 2 mo, but Hgb and RBC indices differed only at 4 mo (P < 0.05). Serum and CSF metabolomic profiles of the ID and IS groups differed at 2 and 4 mo (P < 0.05). Key metabolites, including homostachydrine and stachydrine (4-5-fold lower at 4 mo in ID group, P < 0.05), were altered in both serum and CSF. Iron indices and RET-He at 2 mo, but not Hgb or other RBC indices, were correlated with altered CSF metabolic profile at 4 mo and had comparable predictive accuracy (area under the receiver operating characteristic curve scores, 0.75-0.80).

Conclusions: Preanemic ID at 2 mo was associated with metabolic alterations in serum and CSF in infant monkeys. Among the RBC indices, only RET-He predicted the future risk of abnormal CSF metabolic profile with a predictive accuracy comparable to serum iron indices. The concordance of homostachydrine and stachydrine changes in serum and CSF indicates their potential use as early biomarkers of brain metabolic dysfunction in infantile ID.

Citing Articles

Biomarkers of Brain Dysfunction in Perinatal Iron Deficiency.

Rao R Nutrients. 2024; 16(7).

PMID: 38613125 PMC: 11013337. DOI: 10.3390/nu16071092.


Proteomic Profiling of Cerebrospinal Fluid and Its Extracellular Vesicles from Extraventricular Drainage in Pediatric Pilocytic Astrocytoma, towards Precision Oncology.

Spinelli S, Kajana X, Garbarino A, Bartolucci M, Petretto A, Pavanello M Cancers (Basel). 2024; 16(6).

PMID: 38539556 PMC: 10969024. DOI: 10.3390/cancers16061223.

References
1.
Long T, Hicks M, Yu H, Biggs W, Kirkness E, Menni C . Whole-genome sequencing identifies common-to-rare variants associated with human blood metabolites. Nat Genet. 2017; 49(4):568-578. DOI: 10.1038/ng.3809. View

2.
Lozoff B, Georgieff M . Iron deficiency and brain development. Semin Pediatr Neurol. 2006; 13(3):158-65. DOI: 10.1016/j.spen.2006.08.004. View

3.
Shan L, Xu X, Zhang J, Cai P, Gao H, Lu Y . Increased hemoglobin and heme in MALDI-TOF MS analysis induce ferroptosis and promote degeneration of herniated human nucleus pulposus. Mol Med. 2021; 27(1):103. PMC: 8425117. DOI: 10.1186/s10020-021-00368-2. View

4.
Sandri B, Kaplan A, Hodgson S, Peterson M, Avdulov S, Higgins L . Multi-omic molecular profiling of lung cancer in COPD. Eur Respir J. 2018; 52(1). PMC: 6618293. DOI: 10.1183/13993003.02665-2017. View

5.
Coe C, Lubach G, Bianco L, Beard J . A history of iron deficiency anemia during infancy alters brain monoamine activity later in juvenile monkeys. Dev Psychobiol. 2009; 51(3):301-9. PMC: 2746049. DOI: 10.1002/dev.20365. View