Research map: The miR-339-5p/ACSL4 Pathway Drives Ferroptosis in Macrophages Exposed to Silica Nanoparticles
Back to the article
Papers in this map
- Ferroptosis: A Regulated Cell Death Nexus Linking Metabolism, Redox Biology, and Disease · Brent R. Stockwell · 2017 · 7879 citations · Cited by this paper
- Transcriptomic Insights Into Brassinolide-Mediated Control of Bioactive Compound Biosynthesis in Salvia miltiorrhiza Bunge · 2026 · Related
- Ferroptosis: mechanisms, biology and role in disease · Xuejun Jiang · 2021 · 7672 citations · Cited by this paper
- Viruses and Antiviral Responses of Nematodes · 2026 · Related
- ACSL4 dictates ferroptosis sensitivity by shaping cellular lipid composition · Sebastian G. Doll · 2016 · 4318 citations · Cited by this paper
- Identification of the Mitochondrial Gene NME6 as an Immune Modulator in Heart Failure · 2026 · Related
- Quantitative proteomics identifies NCOA4 as the cargo receptor mediating ferritinophagy · Joseph Douglas Mancias · 2014 · 2095 citations · Cited by this paper
- Isolation, Characterization, and In-Vitro Establishment of Mammary Epithelial Stem Cells From Beetal Goats · 2026 · Related
- Towards a definition of inorganic nanoparticles from an environmental, health and safety perspective · Mélanie Auffan · 2009 · 1946 citations · Cited by this paper
- Arp2/3 Inhibition Synergizes With PARP Inhibitors by Impairing Homologous Recombination in Gastric Cancer Cells · 2026 · Related
- Ferroptosis at the intersection of lipid metabolism and cellular signaling · Deguang Liang · 2022 · 1367 citations · Cited by this paper
- Performance Evaluation of a Colorectal Cancer-Associated MassARRAY-Based Hotspot Genotyping Assay for KRAS, NRAS, BRAF, and PIK3CA Using Solid Tumor Specimens · 2026 · Related
- Ferrostatin-1 alleviates lipopolysaccharide-induced acute lung injury via inhibiting ferroptosis · Pengfei Liu · 2020 · 716 citations · Cited by this paper
- Mast Cell/Basophil–Nerve Crosstalk: Autonomic Signals and Sensory Circuits · 2026 · Related
- Biology of lung macrophages in health and disease · Helena Aegerter · 2022 · 634 citations · Cited by this paper
- Comparative Analysis of Ultra-Low Versus Hydrogel Growing Conditions for Patient-Derived Glioma Organoids · 2026 · Related
- PKCβII phosphorylates ACSL4 to amplify lipid peroxidation to induce ferroptosis · Hai‐Liang Zhang · 2022 · 579 citations · Cited by this paper
- Betamethasone Dipropionate Inhibits NLRP3 Inflammasome Activation by Suppressing Pro-IL-1β Expression · 2026 · Related
- Ferroptosis and Cancer: Mitochondria Meet the “Iron Maiden” Cell Death · Anna Martina Battaglia · 2020 · 568 citations · Cited by this paper
- Impact of surface functional group modification on cellular internalization and cytotoxicity of silica nanoparticles · 2025 · Related
- Macrophages in Lung Injury, Repair, and Fibrosis · Peiyong Cheng · 2021 · 460 citations · Cited by this paper
- Silica binding and toxicity in alveolar macrophages · Raymond F. Hamilton · 2007 · 421 citations · Cited by this paper
- Silica nanoparticles: Biomedical applications and toxicity · Yanmei Huang · 2022 · 360 citations · Cited by this paper
- Roles of Macrophage Polarization and Macrophage-Derived miRNAs in Pulmonary Fibrosis · Amit Kishore · 2021 · 285 citations · Cited by this paper
- Inhibition of ferroptosis and iron accumulation alleviates pulmonary fibrosis in a bleomycin model · Zhuo Pei · 2022 · 271 citations · Cited by this paper
- Cerium oxide nanoparticles protect against Aβ-induced mitochondrial fragmentation and neuronal cell death · Janet M. Dowding · 2014 · 224 citations · Cited by this paper
- Nanoengineered silica: Properties, applications and toxicity · Andrea Mathilde Mebert · 2017 · 210 citations · Cited by this paper
- Macrophage Recognition of Crystals and Nanoparticles · M. NAKAYAMA · 2018 · 173 citations · Cited by this paper
- Silica nanoparticles induce lung inflammation in mice via ROS/PARP/TRPM2 signaling-mediated lysosome impairment and autophagy dysfunction · Mingxiang Wang · 2020 · 168 citations · Cited by this paper
- Silver Nanoparticles and Mitochondrial Interaction · Eriberto A. Bressan · 2013 · 166 citations · Cited by this paper
- Identification of a targeted ACSL4 inhibitor to treat ferroptosis-related diseases · Qian Wen Huang · 2024 · 159 citations · Cited by this paper
- Silica nanoparticles as pesticide against insects of different feeding types and their non-target attraction of predators · Ahmed F. Thabet · 2021 · 148 citations · Cited by this paper
- Subchronic toxicity of silica nanoparticles as a function of size and porosity · Raziye Mohammadpour · 2019 · 132 citations · Cited by this paper
- Induction of ferroptosis in response to graphene quantum dots through mitochondrial oxidative stress in microglia · Tianshu Wu · 2020 · 131 citations · Cited by this paper
- Silica phagocytosis causes apoptosis and necrosis by different temporal and molecular pathways in alveolar macrophages · Gaurav N. Joshi · 2013 · 106 citations · Cited by this paper
- Size and surface modification of silica nanoparticles affect the severity of lung toxicity by modulating endosomal ROS generation in macrophages · Masahide Inoue · 2021 · 93 citations · Cited by this paper
- Biokinetics of food additive silica nanoparticles and their interactions with food components · Jeong‐Ah Lee · 2016 · 88 citations · Cited by this paper
- Hazard identification of inhaled nanomaterials: making use of short-term inhalation studies · Christoph L. Klein · 2012 · 76 citations · Cited by this paper
- S-RBD-modified and miR-486-5p-engineered exosomes derived from mesenchymal stem cells suppress ferroptosis and alleviate radiation-induced lung injury and long-term pulmonary fibrosis · Weiyuan Zhang · 2024 · 76 citations · Cited by this paper
Source: OpenAlex (CC0)