ArticleJournal of neuroinflammation2018
Neuregulin-1 attenuates experimental cerebral malaria (ECM) pathogenesis by regulating ErbB4/AKT/STAT3 signaling.
Article in Journal of neuroinflammation, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 27 papers.
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Who cites it
27 citing papers in PubMed, 47 citations in OpenAlex.
- Review
- Pathogens of the Human Central Nervous System-the Major Protozoan Parasites and Helminths.Molecular neurobiology · 2026Review
- Integrative multi-omics analysis reveals inflammation-related molecular networks in acute mountain sickness.Frontiers in immunology · 2026Article
- NRG1 Suppresses NLRP3 Inflammasome Activation and Endothelial-Mesenchymal Transition in Cerebral Ischemia-Reperfusion Injury: Association with the AKT/NF-κB Pathway.Journal of inflammation research · 2026Article
- Mechanisms of resistance to antibody-drug conjugates in cancer: molecular barriers and pharmacological solutions.Cancer chemotherapy and pharmacology · 2025Review
- Interleukin-22 Contributes to Blood-Brain Barrier Disruption via STAT3/VEGFA Activation inACS infectious diseases · 2024Article
- Treadmill Running Regulates Adult Neurogenesis, Spatial and Non-spatial Learning, Parvalbumin Neuron Activity by ErbB4 Signaling.Cellular and molecular neurobiology · 2024Article
- Neuregulin-1, a member of the epidermal growth factor family, mitigates STING-mediated pyroptosis and necroptosis in ischaemic flaps.Burns & trauma · 2024Article
- The case for neuregulin-1 as a clinical treatment for stroke.Frontiers in cellular neuroscience · 2024Review
- Exploring adjunctive therapies for cerebral malaria.Frontiers in cellular and infection microbiology · 2024Review
- Endothelial transcriptomic analysis identifies biomarkers of severe and cerebral malaria.JCI insight · 2023Article
- Effect of thymosin β4 on lipopolysaccharide‑stimulated brain microvascular endothelial cell remodeling: A possible role in blood‑brain barrier injury.Experimental and therapeutic medicine · 2023Article
- Histidine-rich protein II nanoparticle delivery of heme iron load drives endothelial inflammation in cerebral malaria.Proceedings of the National Academy of Sciences of the United States of America · 2023Article
- Neuregulin-1 attenuates hemolysis- and ischemia induced-cerebrovascular inflammation associated with sickle cell disease.Journal of stroke and cerebrovascular diseases : the official journal of National Stroke Association · 2023Article
- Cerebral malaria - modelling interactions at the blood-brain barrier in vitro.Disease models & mechanisms · 2022Review
- Neuregulin-1/ErbB4 signaling modulatesiScience · 2022Article
- Host-parasite interactions duringFrontiers in immunology · 2022Review
- Host-directed therapy, an untapped opportunity for antimalarial intervention.Cell reports. Medicine · 2021Review
- Nrg1β as a Proangiogenesis Therapy: How Is Nrg1β Therapy Unique From Other Angiogenesis Therapies?Arteriosclerosis, thrombosis, and vascular biology · 2021Article
- Elevated neuregulin-1Endocrine and metabolic science · 2021Article
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Authors and funding
6 authors at 2 institutions in 1 country.
Funding
Abstract
backgroundHuman cerebral malaria (HCM) is a severe form of malaria characterized by sequestration of infected erythrocytes (IRBCs) in brain microvessels, increased levels of circulating free heme and pro-inflammatory cytokines and chemokines, brain swelling, vascular dysfunction, coma, and increased mortality. Neuregulin-1β (NRG-1) encoded by the gene NRG1, is a member of a family of polypeptide growth factors required for normal development of the nervous system and the heart. Utilizing an experimental cerebral malaria (ECM) model (Plasmodium berghei ANKA in C57BL/6), we reported that NRG-1 played a cytoprotective role in ECM and that circulating levels were inversely correlated with ECM severity. Intravenous infusion of NRG-1 reduced ECM mortality in mice by promoting a robust anti-inflammatory response coupled with reduction in accumulation of IRBCs in microvessels and reduced tissue damage.
methodsIn the current study, we examined how NRG-1 treatment attenuates pathogenesis and mortality associated with ECM. We examined whether NRG-1 protects against CXCL10- and heme-induced apoptosis using human brain microvascular endothelial (hCMEC/D3) cells and M059K neuroglial cells. hCMEC/D3 cells grown in a monolayer and a co-culture system with 30 μM heme and NRG-1 (100 ng/ml) were used to examine the role of NRG-1 on blood brain barrier (BBB) integrity. Using the in vivo ECM model, we examined whether the reduction of mortality was associated with the activation of ErbB4 and AKT and inactivation of STAT3 signaling pathways. For data analysis, unpaired t test or one-way ANOVA with Dunnett's or Bonferroni's post test was applied.
resultsWe determined that NRG-1 protects against cell death/apoptosis of human brain microvascular endothelial cells and neroglial cells, the two major components of BBB. NRG-1 treatment improved heme-induced disruption of the in vitro BBB model consisting of hCMEC/D3 and human M059K cells. In the ECM murine model, NRG-1 treatment stimulated ErbB4 phosphorylation (pErbB4) followed by activation of AKT and inactivation of STAT3, which attenuated ECM mortality.
conclusionsOur results indicate a potential pathway by which NRG-1 treatment maintains BBB integrity in vitro, attenuates ECM-induced tissue injury, and reduces mortality. Furthermore, we postulate that augmenting NRG-1 during ECM therapy may be an effective adjunctive therapy to reduce CNS tissue injury and potentially increase the effectiveness of current anti-malaria therapy against human cerebral malaria (HCM).
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