ArticlePloS one2013
Pharmacologic inhibition of CXCL10 in combination with anti-malarial therapy eliminates mortality associated with murine model of cerebral malaria.
Article in PloS one, 2013. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 39 papers.
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Who cites it
39 citing papers in PubMed, 60 citations in OpenAlex.
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- Pathogenetic mechanisms and treatment targets in cerebral malaria.Nature reviews. Neurology · 2023Review
- Cerebral Malaria and Neuronal Implications of Plasmodium Falciparum Infection: From Mechanisms to Advanced Models.Advanced science (Weinheim, Baden-Wurttemberg, Germany) · 2022Review
- An update on cerebral malaria for therapeutic intervention.Molecular biology reports · 2022Review
- Treatment Reducing Endothelial Activation Protects against Experimental Cerebral Malaria.Pathogens (Basel, Switzerland) · 2022Article
- Neutrophils in malaria: A double-edged sword role.Frontiers in immunology · 2022Review
- MiR-451a and let-7i-5p loaded extracellular vesicles attenuate heme-induced inflammation in hiPSC-derived endothelial cells.Frontiers in immunology · 2022Article
- Role of CXCL10 in Spinal Cord Injury.International journal of medical sciences · 2022Review
- Role of Chaperone-Mediated Autophagy in Ageing Biology and Rejuvenation of Stem Cells.Frontiers in cell and developmental biology · 2022Review
- C-X-C Chemokines Influence Intraocular Inflammation During Bacillus Endophthalmitis.Investigative ophthalmology & visual science · 2021Article
- Inflammation-induced inhibition of chaperone-mediated autophagy maintains the immunosuppressive function of murine mesenchymal stromal cells.Cellular & molecular immunology · 2021Article
- Article
- Tumor-on-a-chip platform to interrogate the role of macrophages in tumor progression.Integrative biology : quantitative biosciences from nano to macro · 2020Article
- Pathophysiology and neurologic sequelae of cerebral malaria.Malaria journal · 2020Review
- Hemoglobin Genotypes Modulate Inflammatory Response toFrontiers in immunology · 2020Article
- Modelling heme-mediated brain injury associated with cerebral malaria in human brain cortical organoids.Scientific reports · 2019Article
- Neuregulin-1 attenuates experimental cerebral malaria (ECM) pathogenesis by regulating ErbB4/AKT/STAT3 signaling.Journal of neuroinflammation · 2018Article
- Dysregulation of C-X-C motif ligand 10 during aging and association with cognitive performance.Neurobiology of aging · 2018Article
Corrections and comments
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Authors and funding
8 authors at 1 institution in 1 country.
Funding
Abstract
Despite appropriate anti-malarial treatment, cerebral malaria (CM)-associated mortalities remain as high as 30%. Thus, adjunctive therapies are urgently needed to prevent or reduce such mortalities. Overproduction of CXCL10 in a subset of CM patients has been shown to be tightly associated with fatal human CM. Mice with deleted CXCL10 gene are partially protected against experimental cerebral malaria (ECM) mortality indicating the importance of CXCL10 in the pathogenesis of CM. However, the direct effect of increased CXCL10 production on brain cells is unknown. We assessed apoptotic effects of CXCL10 on human brain microvascular endothelial cells (HBVECs) and neuroglia cells in vitro. We tested the hypothesis that reducing overexpression of CXCL10 with a synthetic drug during CM pathogenesis will increase survival and reduce mortality. We utilized atorvastatin, a widely used synthetic blood cholesterol-lowering drug that specifically targets and reduces plasma CXCL10 levels in humans, to determine the effects of atorvastatin and artemether combination therapy on murine ECM outcome. We assessed effects of atorvastatin treatment on immune determinants of severity, survival, and parasitemia in ECM mice receiving a combination therapy from onset of ECM (day 6 through 9 post-infection) and compared results with controls. The results indicate that CXCL10 induces apoptosis in HBVECs and neuroglia cells in a dose-dependent manner suggesting that increased levels of CXCL10 in CM patients may play a role in vasculopathy, neuropathogenesis, and brain injury during CM pathogenesis. Treatment of ECM in mice with atorvastatin significantly reduced systemic and brain inflammation by reducing the levels of the anti-angiogenic and apoptotic factor (CXCL10) and increasing angiogenic factor (VEGF) production. Treatment with a combination of atorvastatin and artemether improved survival (100%) when compared with artemether monotherapy (70%), p<0.05. Thus, adjunctively reducing CXCL10 levels and inflammation by atorvastatin treatment during anti-malarial therapy may represent a novel approach to treating CM patients.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.