The regulatory role of miR-21 in ferroptosis by targeting FTH1 and the contribution of microglia-derived miR-21 in exosomes to arsenic-induced neuronal ferroptosis.

J Hazard Mater

Key Laboratory of Environmental Stress and Chronic Disease Control and Prevention, Ministry of Education, China Medical University, Shenyang, Liaoning, China, 110122; The Key Laboratory of Liaoning Province on Toxic and Biological Effects of Arsenic, China Medical University, Shenyang, Liaoning, China, 110122; Department of Occupational Health, School of Public Health, China Medical University, Shenyang, Liaoning, China, 110122. Electronic address:

Published: October 2024

AI Article Synopsis

  • * Ferroptosis, a type of cell death, plays a role in neurological diseases, and this study identifies how miR-21 regulates ferroptosis in neurons affected by arsenic exposure.
  • * The research also shows that microglial cells communicate with neurons through exosomes, influencing ferroptosis, and suggests that removing these exosomes or knocking down miR-21 can reduce this neuronal cell death.

Article Abstract

Arsenic is recognized as a hazardous environmental toxicant strongly associated with neurological damage, but the mechanism is ambiguous. Neuronal cell death is one of the mechanisms of arsenic-induced neurological injury. Ferroptosis is involved in the pathophysiological process of many neurological diseases, however, the role and regulatory mechanism of ferroptosis in nerve injury under arsenic exposure remains uncovered. Our findings confirmed the role of ferroptosis in arsenic-induced learning and memory disorder and revealed miR-21 played a regulatory role in neuronal ferroptosis. Further study discovered that miR-21 regulated neuronal ferroptosis by targeting at FTH1, a finding which has not been documented before. We also found an extra increase of ferroptosis in neuronal cells conditionally cultured by medium collected from arsenic-exposed microglial cells when compared with neuronal cells directly exposed to the same dose of arsenic. Moreover, microglia-derived exosomes removal or miR-21 knockdown in microglia inhibited neuronal ferroptosis, suggesting the role of intercellular communication in the promotion of neuronal ferroptosis. In summary, our findings highlighted the regulatory role of miR-21 in ferroptosis and the contribution of microglia-derived miR-21 in exosomes to arsenic-induced neuronal ferroptosis.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jhazmat.2024.135580DOI Listing

Publication Analysis

Top Keywords

neuronal ferroptosis
24
regulatory role
12
ferroptosis
12
neuronal
9
role mir-21
8
mir-21 ferroptosis
8
ferroptosis targeting
8
targeting fth1
8
contribution microglia-derived
8
microglia-derived mir-21
8

Similar Publications

Intracerebral hemorrhage (ICH) is a common cerebrovascular disease characterized by a high incidence, disability rate, and mortality. Epigallocatechin gallate (EGCG), a key catechin compound found in green tea, has received increasing attention for its potential neuroprotective and therapeutic effects in neurological disorders. Studies have indicated that EGCG may influence various signaling pathways and molecular targets, including the inhibition of oxidative stress, reduction of inflammatory responses, suppression of cell apoptosis, regulation of cell survival, and enhancement of autophagy.

View Article and Find Full Text PDF

Role of PCBP2 in regulating nanovesicles loaded with curcumin to mitigate neuroferroptosis in neural damage caused by heat stroke.

J Nanobiotechnology

December 2024

Key Laboratory of Special Environmental Medicine of Xinjiang, General Hospital of Xinjiang Military Command, No. 359, Youhao North Road, Urumqi, Xinjiang, China.

Objective: This study aims to elucidate the mechanisms by which nanovesicles (NVs) transport curcumin(CUR) across the blood-brain barrier to treat hypothalamic neural damage induced by heat stroke by regulating the expression of poly(c)-binding protein 2 (PCBP2).

Methods: Initially, NVs were prepared from macrophages using a continuous extrusion method. Subsequently, CUR was loaded into NVs using sonication, yielding engineered cell membrane Nanovesicles loaded with curcumin (NVs-CUR), which were characterized and subjected to in vitro and in vivo tracking analysis.

View Article and Find Full Text PDF

Purpose: This study aims to explore the neuroprotective effect of propofol in improving traumatic brain injury (TBI) by inhibiting ferroptosis through the modulation of the endothelial nitric oxide (NO) synthase (eNOS)/NO signaling pathway.

Methods: The GSE173975 dataset was used to analyze the differentially expressed genes between TBI and sham surgery control groups in the short and long term. A TBI model was established in 2-month-old male SPF C57BL/6 mice by impact exposure of the exposed dura mater.

View Article and Find Full Text PDF
Article Synopsis
  • Postoperative cognitive dysfunction (POCD) is a complication related to surgery involving cognitive decline, potentially influenced by neuroinflammation, ferroptosis, and mitochondrial fatty acid metabolism, particularly via the protein Carnitine palmitoyl transferase 1a (CPT1A).
  • The study used SVG P12 astrocytes to explore how CPT1A affects mitochondrial function, inflammation, and neuron damage by overexpressing or knocking down CPT1A and assessing the resulting changes in cellular conditions.
  • Results showed that higher levels of CPT1A improved mitochondrial function and reduced oxidative stress and inflammation in astrocytes, which benefitted neuron health, while these effects depended on functional mitochondrial respiration, as demonstrated when treatments disrupted this process.
View Article and Find Full Text PDF

Alzheimer's disease is a progressive neurodegenerative disease affecting memory, language, and thinking with no curative treatment. Symptoms appear gradually, and pathological brain changes may occur twenty years before the physical and psychological signs, pointing to the urgent development of preventive interventions. Physical activity has been investigated as a preventive tool to defeat the main biological features of AD: pathological amyloid protein plaques, tau tangles, myelin degeneration, and iron deposits in the brain.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!