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anti irf3  (Cell Signaling Technology Inc)


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    Structured Review

    Cell Signaling Technology Inc anti irf3
    Anti Irf3, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 96/100, based on 484 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/rabbit+anti+irf+3/IRF-3+XP+Rabbit+mAb/pmc13011919-263-28-30
    Average 96 stars, based on 484 article reviews
    anti irf3 - by Bioz Stars, 2026-09
    96/100 stars

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    Related Articles

    other:

    Article Title: Hirsutella sinensis mycelium regulates autophagy of alveolar macrophages via TLR4/NF-κB signaling pathway
    Article Snippet: The antibodies used in this study were rabbit anti-GAPDH (Good HERE, Hefei, China), rabbit anti-LC3B (Cell Signaling Technology, MA, USA), rabbit anti-P62 (Cell Signaling Technology, MA, USA), rabbit anti-ATG5 (Cell Signaling Technology, MA, USA), rabbit anti-NF-κB p65 (Cell Signaling Technology, MA, USA), rabbit anti-phospho-NF-κB p65 (Cell Signaling Technology, MA, USA), rabbit anti-ERK (Cell Signaling Technology, MA, USA), rabbit anti-phospho-ERK (Cell Signaling Technology, MA, USA), rabbit anti-IRF 3 (Cell Signaling Technology, MA, USA), rabbit anti-phospho-IRF 3 (Cell Signaling Technology, MA, USA), PerCP anti-mouse CD45 (clone number: 30-F11) (Biolegend, CA, USA), APC anti-mouse CD11c (clone number: N418) (eBioscience, CA, USA), FITC rat anti-CD11b (clone number: M1/70) (BD Biosciences, CA, USA), PE anti-rabbit LC3B (clone number: D11) (Cell Signaling Technology, MA, USA), goat anti-rabbit IgG (H+L) (Fcmacs, Nanjing, China) and goat anti-rabbit IgG (Fcmacs, Nanjing, China).

    Article Title: Flavivirus Capsid Proteins Inhibit the Interferon Response
    Article Snippet: The following antibodies were obtained from the indicated sources: Goat anti-GFP, rabbit anti-TRIM25/EFP, mouse anti-actin from Abcam; mouse anti-myc 9e10 antibody from the American Type Culture collection; rabbit anti-phospho-IRF-3 (Ser396) (4D4G), rabbit anti-IRF-3 (D6I4C), rabbit anti-FLAG from Cell Signaling Technology; rabbit anti-ZIKV capsid from GeneTex; mouse anti-HA clone HA-7 from Sigma-Aldrich.

    Article Title: Mayaro Virus Non-Structural Protein 2 Circumvents the Induction of Interferon in Part by Depleting Host Transcription Initiation Factor IIE Subunit 2
    Article Snippet: Commercially available antibodies were purchased from the following sources: mouse anti-β-actin (A3853) and mouse anti-FLAG (F3165) from Sigma-Aldrich (St. Louis, MO, USA); rabbit anti-IRF-3 (#11904) from Cell Signaling (Danvers, MA, USA); mouse anti-Rpb1 (GT9010) from GeneTex (Irvine, CA, USA); rabbit anti-GTF2E2 (ab187143) from Abcam (Cambridge, United Kingdom); poly(I:C) HMW (tlrl-pic) from InvivoGen (San Diego, CA, USA).

    Article Title: Neutrophil extracellular traps promote tPA-induced brain hemorrhage via cGAS in mice with stroke
    Article Snippet: The following primary antibodies were used: rat anti-mouse Ly6G (1:1000, 551459, BD Biosciences, San Jose, CA), rabbit anti-H3Cit (1:1000, ab5103, Abcam), mouse anti-PAD4 (1:1000, 684202, BioLegend, San Diego, CA), rabbit anti-ZO-1 (1:1000, 617300, Invitrogen), rabbit anti-occludin (1:1000, ab167161, Abcam), rabbit anti-claudin5 (1:1000, ab15106, Abcam), rabbit anti-VE-cadherin (1:1000, ab33168, Abcam), rabbit anti-LRP-1 (1:1000, ab92544, Abcam), sheep anti-STING (1:1000, AF6516, R&D Systems), rabbit anti-H3 (1:1000, 9715), rabbit anti-cGAS (1:1000, 31659), rabbit anti-IRF-3 (1:1000, 4302), rabbit anti-phospho-IRF-3 (pIRF-3; 1:1000, 4947), rabbit anti-TBK1 (1:1000, 3504), rabbit anti-phospho-TBK1 (pTBK1; 1:1000, 5483), rabbit anti-GAPDH (1:1000, 5174), and rabbit anti-β-actin (1:1000, 4970, all from Cell Signaling Technology, Danvers, MA).

    Article Title: SARS-CoV-2 Nonstructural Protein 1 Inhibits the Interferon Response by Causing Depletion of Key Host Signaling Factors
    Article Snippet: The following antibodies were purchased from the indicated sources: mouse anti-SARS-CoV/SARS-CoV-2 spike antibody (1A9) (GTX632604) from GeneTex; rabbit anti-STAT2 (human, sc-476), rabbit anti-STAT1 (sc-346), and mouse anti-Jak1 (sc-1677) from Santa Cruz; mouse antiFLAG (F3165), rabbit anti-glutathione S-transferase (GST) (G7781), and mouse anti-b-actin (A3853) from Sigma-Aldrich; goat anti-GFP (ab6673), rabbit anti-Tyk2 (ab223733), rabbit anti-IFNAR1 (ab124764), and rabbit anti-TRIM25 (ab167154) from Abcam; rabbit anti-IRF-3 (no. 11904) and rabbit anti-phospho-IRF-3 (no. 4947) from Cell Signaling; mouse horseradish peroxidase (HRP)-conjugated anti-hemagglutinin (HA) (A01244) from GenScript; and mouse anti-V5 (R96025) from Invitrogen.

    Article Title: Flavivirus Capsid Proteins Inhibit the Interferon Response.
    Article Snippet: The following antibodies were obtained from the indicated sources: Goat anti-GFP, rabbit anti-TRIM25/EFP, mouse anti-actin from Abcam; mouse anti-myc 9e10 antibody from the American Type Culture collection; rabbit anti-phospho-IRF-3 (Ser396) (4D4G), rabbit anti-IRF-3 (D6I4C), rabbit anti-FLAG from Cell Signaling Technology; rabbit antiZIKV capsid from GeneTex; mouse anti-HA clone HA-7 from Sigma-Aldrich, St. Louis, MO, USA.

    Article Title: The herpesvirus accessory protein γ 1 34.5 facilitates viral replication by disabling mitochondrial translocation of RIG-I
    Article Snippet: Anti-Myc-horseradish peroxidase (HRP) antibody (#2040), anti-HA-HRP antibody (#2999), rabbit anti-IRF-3 (#11904), rabbit anti-pIRF-3 (#4947), rabbit anti-Flag (#14793), rabbit anti-LDHA (#3582), rabbit anti-COX IV (#4844), anti-rabbit IgG-HRP-linked antibody (#7074), anti-mouse IgG-HRP-linked antibody (#7076), normal rabbit IgG (#2729) were bought from Cell-Signaling Technologies.

    Western Blot:

    Article Title: TFAM deficiency in dendritic cells leads to mitochondrial dysfunction and enhanced antitumor immunity through cGAS-STING pathway
    Article Snippet: .. Primary antibodies used 210 for western blot analysis included rabbit, rabbit anti-Stat1 (CST, #9172), rabbit 211 anti-STING (CST, #13647), rabbit anti- Phospho-TBK1 (CST, #5483), rabbit 212 anti-TBK1 (CST, #3504), rabbit anti-IRF-3 (CST, #4302), rabbit anti-Phospho-IRF-3 213 (CST, #79945) and mouse anti-β-actin (Santa Cruz, #sc-47778). ..



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    Schematic illustration of the ROS-responsive on-demand mild photothermal cascade platform for tendon rejuvenation in Achilles tendinopathy. The platform strategically modulates the <t>mitochondrial-cGAS-STING-IRF3/NF-κB</t> signaling axis and induces heat shock protein 70 (HSP70) expression to attenuate oxidative stress and cellular senescence within tendon stem/progenitor cells (TSPCs). Consequently, it promotes tenogenic differentiation while abrogating aberrant osteogenic/chondrogenic lineage commitment. This cascade effect ultimately mitigates heterotopic ossification, enhances structural tendon regeneration, restores biomechanical function, and alleviates pain. Nanoparticle nomenclature: LA-NPs and TPA-TCNQ-NPs denote nanoparticles encapsulating LA or TPA-TCNQ individually; LT-NPs refers to the composite formulation consisting of a mixture of LA-NPs and TPA-TCNQ-NPs; and LT-NPs-NIR represents the LT-NPs mixture following 808 nm near-infrared (NIR) irradiation to activate the photothermal response and controlled payload release.
    Anti P Irf3 Antibody, supplied by Cell Signaling Technology Inc, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Image Search Results


    Schematic illustration of the ROS-responsive on-demand mild photothermal cascade platform for tendon rejuvenation in Achilles tendinopathy. The platform strategically modulates the mitochondrial-cGAS-STING-IRF3/NF-κB signaling axis and induces heat shock protein 70 (HSP70) expression to attenuate oxidative stress and cellular senescence within tendon stem/progenitor cells (TSPCs). Consequently, it promotes tenogenic differentiation while abrogating aberrant osteogenic/chondrogenic lineage commitment. This cascade effect ultimately mitigates heterotopic ossification, enhances structural tendon regeneration, restores biomechanical function, and alleviates pain. Nanoparticle nomenclature: LA-NPs and TPA-TCNQ-NPs denote nanoparticles encapsulating LA or TPA-TCNQ individually; LT-NPs refers to the composite formulation consisting of a mixture of LA-NPs and TPA-TCNQ-NPs; and LT-NPs-NIR represents the LT-NPs mixture following 808 nm near-infrared (NIR) irradiation to activate the photothermal response and controlled payload release.

    Journal: Bioactive Materials

    Article Title: On-demand mild photothermal cascade platform reprogramming mitochondrial immunity for tendon rejuvenation

    doi: 10.1016/j.bioactmat.2026.01.004

    Figure Lengend Snippet: Schematic illustration of the ROS-responsive on-demand mild photothermal cascade platform for tendon rejuvenation in Achilles tendinopathy. The platform strategically modulates the mitochondrial-cGAS-STING-IRF3/NF-κB signaling axis and induces heat shock protein 70 (HSP70) expression to attenuate oxidative stress and cellular senescence within tendon stem/progenitor cells (TSPCs). Consequently, it promotes tenogenic differentiation while abrogating aberrant osteogenic/chondrogenic lineage commitment. This cascade effect ultimately mitigates heterotopic ossification, enhances structural tendon regeneration, restores biomechanical function, and alleviates pain. Nanoparticle nomenclature: LA-NPs and TPA-TCNQ-NPs denote nanoparticles encapsulating LA or TPA-TCNQ individually; LT-NPs refers to the composite formulation consisting of a mixture of LA-NPs and TPA-TCNQ-NPs; and LT-NPs-NIR represents the LT-NPs mixture following 808 nm near-infrared (NIR) irradiation to activate the photothermal response and controlled payload release.

    Article Snippet: After blocking for 1 h, membranes were incubated overnight at 4 °C with primary antibodies against STING (13647, CST, USA; A21051, Abclonal, China), p-STING (72971, CST, USA; AF7416, Affinity, China), IRF3 (ab68481, Abcam, UK), p-IRF3 (29047, CST, USA), P65 (A22331, Abclonal, China; 8242, CST, USA), p-P65 (AP0124, Abclonal, China), P53 (10442-1-AP, Proteintech, USA), SOX9 (sc-166505, Santa Cruz, USA), BMP-2 (ab284387, abcam, USA), OCN (sc-390877, Santa Cruz, USA), and iNOS (ab178945, Abcam, USA).

    Techniques: Expressing, Formulation, Irradiation

    LT-NPs-NIR regulate the mtDNA-STING-IRF3/NF-κB pathway in macrophages. (A) Principal component analysis (PCA) of transcriptomic data from RAW 264.7 cells under different treatments. (B) Volcano plots comparing H 2 O 2 vs. Control (left) and LT-NPs-NIR vs. H 2 O 2 (right). (C) Heatmap of differentially expressed genes (DEGs) with hierarchical clustering. (D, E) Gene Ontology (GO), KEGG, and Gene Set Enrichment Analysis (GSEA) for H 2 O 2 vs. Control (D) and LT-NPs-NIR vs. H 2 O 2 (E). (F) Multi-SIM imaging showing mtDNA (magenta) and the mitochondrial outer membrane protein TOMM20 (green), with quantification of their colocalization. (G) Western blot analysis of key proteins in the cGAS-STING-NF-κB axis. Scale bar: 5 μm (F). Significance: ns, not significant; ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001.

    Journal: Bioactive Materials

    Article Title: On-demand mild photothermal cascade platform reprogramming mitochondrial immunity for tendon rejuvenation

    doi: 10.1016/j.bioactmat.2026.01.004

    Figure Lengend Snippet: LT-NPs-NIR regulate the mtDNA-STING-IRF3/NF-κB pathway in macrophages. (A) Principal component analysis (PCA) of transcriptomic data from RAW 264.7 cells under different treatments. (B) Volcano plots comparing H 2 O 2 vs. Control (left) and LT-NPs-NIR vs. H 2 O 2 (right). (C) Heatmap of differentially expressed genes (DEGs) with hierarchical clustering. (D, E) Gene Ontology (GO), KEGG, and Gene Set Enrichment Analysis (GSEA) for H 2 O 2 vs. Control (D) and LT-NPs-NIR vs. H 2 O 2 (E). (F) Multi-SIM imaging showing mtDNA (magenta) and the mitochondrial outer membrane protein TOMM20 (green), with quantification of their colocalization. (G) Western blot analysis of key proteins in the cGAS-STING-NF-κB axis. Scale bar: 5 μm (F). Significance: ns, not significant; ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001.

    Article Snippet: After blocking for 1 h, membranes were incubated overnight at 4 °C with primary antibodies against STING (13647, CST, USA; A21051, Abclonal, China), p-STING (72971, CST, USA; AF7416, Affinity, China), IRF3 (ab68481, Abcam, UK), p-IRF3 (29047, CST, USA), P65 (A22331, Abclonal, China; 8242, CST, USA), p-P65 (AP0124, Abclonal, China), P53 (10442-1-AP, Proteintech, USA), SOX9 (sc-166505, Santa Cruz, USA), BMP-2 (ab284387, abcam, USA), OCN (sc-390877, Santa Cruz, USA), and iNOS (ab178945, Abcam, USA).

    Techniques: Control, Imaging, Membrane, Western Blot

    LT-NPs-NIR attenuate oxidative stress, preserve mitochondrial integrity, and suppress senescence in TSPCs by inhibiting the mtDNA-STING-NF-κB axis. (A) Schematic of the experimental design. (B) TSPC proliferation assessed by CCK-8 assay. (C, E) Immunofluorescence staining and quantification of HSP70 (n = 3). (D, F) Mitochondrial membrane potential (ΔΨm) visualized by JC-1 staining (red: high potential; green: low potential) and quantification. (G) Multi-SIM of mtDNA (magenta) and TOMM20 (green) with colocalization analysis. (H) Western blot of cGAS-STING-IRF3-NF-κB pathway proteins. (I, K) Colony-forming unit fibroblast (CFU-F) assay and quantification of self-renewal capacity (n = 3). (J) Senescence-associated β-galactosidase (SA-β-gal) activity. (L, M) Apoptosis analysis by Annexin V/PI flow cytometry and quantification (n = 3). Scale bars: 100 μm (C); 5 μm (D, G); 200 μm (J). Significance: ns, not significant; ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001.

    Journal: Bioactive Materials

    Article Title: On-demand mild photothermal cascade platform reprogramming mitochondrial immunity for tendon rejuvenation

    doi: 10.1016/j.bioactmat.2026.01.004

    Figure Lengend Snippet: LT-NPs-NIR attenuate oxidative stress, preserve mitochondrial integrity, and suppress senescence in TSPCs by inhibiting the mtDNA-STING-NF-κB axis. (A) Schematic of the experimental design. (B) TSPC proliferation assessed by CCK-8 assay. (C, E) Immunofluorescence staining and quantification of HSP70 (n = 3). (D, F) Mitochondrial membrane potential (ΔΨm) visualized by JC-1 staining (red: high potential; green: low potential) and quantification. (G) Multi-SIM of mtDNA (magenta) and TOMM20 (green) with colocalization analysis. (H) Western blot of cGAS-STING-IRF3-NF-κB pathway proteins. (I, K) Colony-forming unit fibroblast (CFU-F) assay and quantification of self-renewal capacity (n = 3). (J) Senescence-associated β-galactosidase (SA-β-gal) activity. (L, M) Apoptosis analysis by Annexin V/PI flow cytometry and quantification (n = 3). Scale bars: 100 μm (C); 5 μm (D, G); 200 μm (J). Significance: ns, not significant; ∗p < 0.05, ∗∗p < 0.01, ∗∗∗p < 0.001.

    Article Snippet: After blocking for 1 h, membranes were incubated overnight at 4 °C with primary antibodies against STING (13647, CST, USA; A21051, Abclonal, China), p-STING (72971, CST, USA; AF7416, Affinity, China), IRF3 (ab68481, Abcam, UK), p-IRF3 (29047, CST, USA), P65 (A22331, Abclonal, China; 8242, CST, USA), p-P65 (AP0124, Abclonal, China), P53 (10442-1-AP, Proteintech, USA), SOX9 (sc-166505, Santa Cruz, USA), BMP-2 (ab284387, abcam, USA), OCN (sc-390877, Santa Cruz, USA), and iNOS (ab178945, Abcam, USA).

    Techniques: CCK-8 Assay, Immunofluorescence, Staining, Membrane, Western Blot, Activity Assay, Flow Cytometry