ArticleBurns & trauma2024
Neuregulin-1, a member of the epidermal growth factor family, mitigates STING-mediated pyroptosis and necroptosis in ischaemic flaps.
Article in Burns & trauma, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 23 papers.
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Who cites it
23 citing papers in PubMed.
- cGAS-STING pathway modulation: A new hope for neural regeneration.Neural regeneration research · 2026Article
- Targeting Mitochondria for Postoperative Cognitive Dysfunction: From Mechanisms to Therapeutics.Molecular neurobiology · 2026Review
- Macrophage membrane-biomimetic nanovehicles delivering amygdalin halt pyroptosis propagation and alleviate endometriosis-associated neuropathic pain.Materials today. Bio · 2026Article
- Neuregulin-1 facilitates myelin regeneration through microglia-mediated mechanisms in a mouse model of chronic demyelination.Nature communications · 2026Article
- Click-chemistry hydrogel for blood vessel organoids self-sustaining delivery to enhance flap survival.Materials today. Bio · 2026Article
- 3,4-Dimethoxychalcone-induced caloric restriction inhibits PANoptosis to promote ischemic and diabetic skin flap survival: experimental studies.International journal of surgery (London, England) · 2026Article
- METTL3-dependent mAutophagy · 2025Article
- The role of cGAS-STING signaling pathway in ferroptosis.Journal of advanced research · 2025Review
- Role of regulatory immune cells in pathogenesis and therapy of periodontitis.Naunyn-Schmiedeberg's archives of pharmacology · 2025Review
- Cu-DHM nanozymes treat flap ischemia-reperfusion injury by amplifying immune modulation in a cascade manner and inhibiting cell apoptosis.Bioactive materials · 2025Article
- Cytokines in age-related eye diseases: pathogenesis and potential targets for innovative therapies.Naunyn-Schmiedeberg's archives of pharmacology · 2025Review
- Novel cardiac biomarkers and multiple-marker approach in the early detection, prognosis, and risk stratification of cardiac diseases.World journal of cardiology · 2025Review
- γ-Secretase-Mediated Endoproteolysis of Neuregulin-1 and E-Cadherin.Biochemistry · 2025Article
- Targeting Programmed Cell Death in Flap Ischemia/Reperfusion Injury.Biomolecules · 2025Review
- Organoid-Like Neurovascular Spheroids Promote the Recovery of Hypoxic-Ischemic Skin Flaps Through the Activation of Autophagy.Advanced healthcare materials · 2025Article
- WTAP Promotes Atherosclerosis by Inducing Macrophage Pyroptosis and M1 Polarization through Upregulating NLRP3.Applied biochemistry and biotechnology · 2025Article
- Aging, vascular dysfunction, and the blood-brain barrier: unveiling the pathophysiology of stroke in older adults.Biogerontology · 2025Review
- The interplay of p16INK4a and non-coding RNAs: bridging cellular senescence, aging, and cancer.Biogerontology · 2025Review
- Enhanced hydrogel loading of quercetin-loaded hollow mesoporous cerium dioxide nanoparticles for skin flap survival.Materials today. Bio · 2025Article
- Amyloid-β Clearance with Monoclonal Antibodies: Transforming Alzheimer's Treatment.Current protein & peptide science · 2025Review
Corrections and comments
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Authors and funding
18 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Background: Ensuring the survival of the distal end of a random flap during hypoperfusion (ischaemia) is difficult in clinical practice. Effective prevention of programmed cell death is a potential strategy for inhibiting ischaemic flap necrosis. The activation of stimulator of interferon genes (STING) pathway promotes inflammation and leads to cell death. The epidermal growth factor family member neuregulin-1 (NRG1) reduces cell death by activating the protein kinase B (AKT) signalling pathway. Moreover, AKT signalling negatively regulates STING activity. We aimed to verify the efficacy of NRG1 injection in protecting against flap necrosis. Additionally, we investigated whether NRG1 effectively enhances ischemic flap survival by inhibiting pyroptosis and necroptosis through STING suppression. Methods: A random-pattern skin flap model was generated on the backs of C57BL/6 mice. The skin flap survival area was determined. The blood supply and vascular network of the flap was assessed by laser Doppler blood flow analysis. Cluster of differentiation 34 immunohistochemistry (IHC) and haematoxylin and eosin (H&E) staining of the flap sections revealed microvessels. Transcriptome sequencing analysis revealed the mechanism by which NRG1 promotes the survival of ischaemic flaps. The levels of angiogenesis, oxidative stress, necroptosis, pyroptosis and indicators associated with signalling pathways in flaps were examined by IHC, immunofluorescence and Western blotting. Packaging adeno-associated virus (AAV) was used to activate STING in flaps. Results: NRG1 promoted the survival of ischaemic flaps. An increased subcutaneous vascular network and neovascularization were found in ischaemic flaps after the application of NRG1. Transcriptomic gene ontology enrichment analysis and protein level detection indicated that necroptosis, pyroptosis and STING activity were reduced in the NRG1 group. The phosphorylation of AKT and forkhead box O3a (FOXO3a) were increased after NRG1 treatment. The increased expression of STING in flaps induced by AAV reversed the therapeutic effect of NRG1. The ability of NRG1 to phosphorylate AKT-FOXO3a, inhibit STING and promote flap survival was abolished after the application of the AKT inhibitor MK2206. Conclusions: NRG1 inhibits pyroptosis and necroptosis by activating the AKT-FOXO3a signalling pathway to suppress STING activation and promote ischaemic flap survival.
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