Central nervous system cytokine gene expression: modulation by lead
Abstract
AbstractThe environmental heavy metal toxicant, lead (Pb) has been shown to be more harmful to the central nervous system (CNS) of children than to adults, given that Pb exposure affects the neural system during development. Because growth factors and cytokines play very important roles in development of the CNS, we have examined the impact of Pb exposure on the expression of cytokines during CNS development. Cytokine expression was studied in post‐natal‐day 21 (pnd21) mice by microarray, real‐time RT‐PCR, Luminex, and ELISA methodologies. BALB/c mouse pups were exposed to Pb through the dam's drinking water (0.1 mM Pb acetate), from gestation‐day 8 (gd8) to pnd21. Two cytokines, interleukin‐6 (IL‐6) and transforming growth factor‐β1 (TGF‐β1), displayed significantly changed transcript levels in the presence of Pb. IL‐6 and TGF‐β1 both have signal transduction cascades that can cooperatively turn on the gene for the astrocyte marker glial‐fibrillary acidic protein (GFAP). Microarray results indicated that Pb exposure significantly increased expression of GFAP. Pb also modulated IL‐6, TGF‐β1, and IL‐18 protein expression in select brain regions. The deleterious effects of Pb on learning and long‐term memory are posited to result from excessive astrocyte growth and/or activation with concomitant interference with neural connections. Differential neural expression of cytokines in brain regions needs to be further investigated to mechanistically associate Pb and neuroinflammation with behavioral and cognitive changes. © 2010 Wiley Periodicals, Inc. J Biochem Mol Toxicol 25:41–54 2011; View this article online at wileyonlinelibrary.com. DOI 10.1002/jbt.20358
Key Biomarkers
Symptom Clusters
References (3)
- Increased expression of interleukin-6 by vasoactive intestinal peptide is associated with regulation of CREB, AP-1 and C/EBP, but not NF-κB, in mouse calvarial osteoblastsBone · 2005
- Neuro–glia interaction effects on GFAP gene: a novel role for transforming growth factor‐β1European Journal of Neuroscience · 2002
- Glial fibrillary acidic protein gene promoter is differently modulated by transforming growth factor‐beta 1 in astrocytes from distinct brain regionsEuropean Journal of Neuroscience · 2004
Related Papers
- Association of mold exposure and solid household fuel use with depression and anxiety among older adults in ChinaEnvironmental Health · 2025 · 1 shared tag
- Pain, Fear, Anxiety, and Stress: Relations to the Endogenous Opioid SystemAdvances in neurobiology · 2024 · 1 shared tag
- Probing the VIPR2 Microduplication Linkage to Schizophrenia in Animal and Cellular ModelsFrontiers in Neuroscience · 2021 · 1 shared tag
- CGRP sensory neurons promote tissue healing via neutrophils and macrophagesNature · 2024 · 1 shared tag
- High Value Phycotoxins From the Dinoflagellate ProrocentrumFrontiers in Marine Science · 2021 · 1 shared tag
- Invited review: Mechanisms of hypophagia during diseaseJournal of Dairy Science · 2021 · 1 shared tag