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IL-17 induces macrophages to M2-like phenotype via NF-κB | CMAR
IL-17 induces macrophages to M2-like phenotype via NF-κB | CMAR

Natural product celastrol suppressed macrophage M1 polarization against  inflammation in diet-induced obese mice via regulating Nrf2/HO-1, MAP  kinase and NF-κB pathways | Aging
Natural product celastrol suppressed macrophage M1 polarization against inflammation in diet-induced obese mice via regulating Nrf2/HO-1, MAP kinase and NF-κB pathways | Aging

M2 macrophage-derived exosomes carry microRNA-148a to alleviate myocardial  ischemia/reperfusion injury via inhibiting TXNIP and the TLR4/NF-κB/NLRP3  inflammasome signaling pathway - Journal of Molecular and Cellular  Cardiology
M2 macrophage-derived exosomes carry microRNA-148a to alleviate myocardial ischemia/reperfusion injury via inhibiting TXNIP and the TLR4/NF-κB/NLRP3 inflammasome signaling pathway - Journal of Molecular and Cellular Cardiology

Counter Regulation of Spic by NF-κB and STAT Signaling Controls  Inflammation and Iron Metabolism in Macrophages - ScienceDirect
Counter Regulation of Spic by NF-κB and STAT Signaling Controls Inflammation and Iron Metabolism in Macrophages - ScienceDirect

Kinsenoside attenuates osteoarthritis by repolarizing macrophages through  inactivating NF-κB/MAPK signaling and protecting chondrocytes -  ScienceDirect
Kinsenoside attenuates osteoarthritis by repolarizing macrophages through inactivating NF-κB/MAPK signaling and protecting chondrocytes - ScienceDirect

Macrophages regulate the progression of osteoarthritis - Osteoarthritis and  Cartilage
Macrophages regulate the progression of osteoarthritis - Osteoarthritis and Cartilage

JCI Insight - NF-κB/MAPK activation underlies ACVR1-mediated inflammation  in human heterotopic ossification
JCI Insight - NF-κB/MAPK activation underlies ACVR1-mediated inflammation in human heterotopic ossification

Tolerance and M2 (alternative) macrophage polarization are related  processes orchestrated by p50 nuclear factor κB | PNAS
Tolerance and M2 (alternative) macrophage polarization are related processes orchestrated by p50 nuclear factor κB | PNAS

Frontiers | NF-κB Signaling in Macrophages: Dynamics, Crosstalk, and Signal  Integration
Frontiers | NF-κB Signaling in Macrophages: Dynamics, Crosstalk, and Signal Integration

NF-κB signaling in inflammation | Signal Transduction and Targeted Therapy
NF-κB signaling in inflammation | Signal Transduction and Targeted Therapy

JCI - Altered macrophage differentiation and immune dysfunction in tumor  development
JCI - Altered macrophage differentiation and immune dysfunction in tumor development

Figure 1 from IKKβ/NF-κB and the miscreant macrophage | Semantic Scholar
Figure 1 from IKKβ/NF-κB and the miscreant macrophage | Semantic Scholar

NF-κB signaling in inflammation | Signal Transduction and Targeted Therapy
NF-κB signaling in inflammation | Signal Transduction and Targeted Therapy

Azithromycin Polarizes Macrophages to an M2 Phenotype via Inhibition of the  STAT1 and NF-κB Signaling Pathways | The Journal of Immunology
Azithromycin Polarizes Macrophages to an M2 Phenotype via Inhibition of the STAT1 and NF-κB Signaling Pathways | The Journal of Immunology

Regulating the Polarization of Macrophages: A Promising Approach to  Vascular Dermatosis
Regulating the Polarization of Macrophages: A Promising Approach to Vascular Dermatosis

miR-146a promotes M2 macrophage polarization and accelerates diabetic wound  healing by inhibiting the TLR4/NF-κB axis in: Journal of Molecular  Endocrinology Volume 69 Issue 2 (2022)
miR-146a promotes M2 macrophage polarization and accelerates diabetic wound healing by inhibiting the TLR4/NF-κB axis in: Journal of Molecular Endocrinology Volume 69 Issue 2 (2022)

NF-κB: blending metabolism, immunity, and inflammation: Trends in Immunology
NF-κB: blending metabolism, immunity, and inflammation: Trends in Immunology

NF‐κB as a central regulator of macrophage function in tumors - Biswas -  2010 - Journal of Leukocyte Biology - Wiley Online Library
NF‐κB as a central regulator of macrophage function in tumors - Biswas - 2010 - Journal of Leukocyte Biology - Wiley Online Library

NF-κB signaling in inflammation | Signal Transduction and Targeted Therapy
NF-κB signaling in inflammation | Signal Transduction and Targeted Therapy

Correlation between M2 macrophage marker, USP24, p300, NF-κB, β-TrCP,... |  Download Scientific Diagram
Correlation between M2 macrophage marker, USP24, p300, NF-κB, β-TrCP,... | Download Scientific Diagram

Increased canonical NF-kappaB signaling specifically in macrophages is  sufficient to limit tumor progression in syngeneic murine models of ovarian  cancer | BMC Cancer | Full Text
Increased canonical NF-kappaB signaling specifically in macrophages is sufficient to limit tumor progression in syngeneic murine models of ovarian cancer | BMC Cancer | Full Text

Transcriptional Control of Macrophage Polarization | Arteriosclerosis,  Thrombosis, and Vascular Biology
Transcriptional Control of Macrophage Polarization | Arteriosclerosis, Thrombosis, and Vascular Biology

IJMS | Free Full-Text | An Emerging Target in the Battle against  Osteoarthritis: Macrophage Polarization | HTML
IJMS | Free Full-Text | An Emerging Target in the Battle against Osteoarthritis: Macrophage Polarization | HTML

Macrophage Polarization Induced by Probiotic Bacteria: a Concise Review |  SpringerLink
Macrophage Polarization Induced by Probiotic Bacteria: a Concise Review | SpringerLink

Macrophage polarization in inflammatory diseases. - Abstract - Europe PMC
Macrophage polarization in inflammatory diseases. - Abstract - Europe PMC

Azithromycin Polarizes Macrophages to an M2 Phenotype via Inhibition of the  STAT1 and NF-κB Signaling Pathways | The Journal of Immunology
Azithromycin Polarizes Macrophages to an M2 Phenotype via Inhibition of the STAT1 and NF-κB Signaling Pathways | The Journal of Immunology

Angiotensin II induces RAW264.7 macrophage polarization to the M1‑type  through the connexin 43/NF‑κB pathway
Angiotensin II induces RAW264.7 macrophage polarization to the M1‑type through the connexin 43/NF‑κB pathway