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miR-181a Regulates Inflammation Responses in Monocytes and Macrophages |  PLOS ONE
miR-181a Regulates Inflammation Responses in Monocytes and Macrophages | PLOS ONE

MiR-200c-3p inhibits LPS-induced M1 polarization of BV2 cells by targeting  RIP2 | SpringerLink
MiR-200c-3p inhibits LPS-induced M1 polarization of BV2 cells by targeting RIP2 | SpringerLink

Increased LPS levels coexist with systemic inflammation and result in  monocyte activation in severe COVID-19 patients - ScienceDirect
Increased LPS levels coexist with systemic inflammation and result in monocyte activation in severe COVID-19 patients - ScienceDirect

Porphyromonas gingivalis (P.g.)-derived LPS-induced inflammation mimics...  | Download Scientific Diagram
Porphyromonas gingivalis (P.g.)-derived LPS-induced inflammation mimics... | Download Scientific Diagram

Clinical significance of miR-129-5p in patients with neonatal sepsis and  its regulatory role in the LPS-induced inflammatory response | Biomolecules  and Biomedicine
Clinical significance of miR-129-5p in patients with neonatal sepsis and its regulatory role in the LPS-induced inflammatory response | Biomolecules and Biomedicine

LPS-stimulated cytokine/chemokine induction is repressed by miR-200b or...  | Download Scientific Diagram
LPS-stimulated cytokine/chemokine induction is repressed by miR-200b or... | Download Scientific Diagram

JCI Insight - The negative feedback loop of NF-κB/miR-376b/NFKBIZ in septic  acute kidney injury
JCI Insight - The negative feedback loop of NF-κB/miR-376b/NFKBIZ in septic acute kidney injury

Antibody WN1 222-5 mimics Toll-like receptor 4 binding in the recognition  of LPS | PNAS
Antibody WN1 222-5 mimics Toll-like receptor 4 binding in the recognition of LPS | PNAS

Original Article MicroRNA-182-5p inhibits inflammation in LPS-treated  RAW264.7 cells by mediating the TLR4/NF-κB signaling pa
Original Article MicroRNA-182-5p inhibits inflammation in LPS-treated RAW264.7 cells by mediating the TLR4/NF-κB signaling pa

Silencing of MEG3 attenuated the role of lipopolysaccharides by modulating  the miR-93-5p/PTEN pathway in Leydig cells | Reproductive Biology and  Endocrinology | Full Text
Silencing of MEG3 attenuated the role of lipopolysaccharides by modulating the miR-93-5p/PTEN pathway in Leydig cells | Reproductive Biology and Endocrinology | Full Text

miR-135a-5p Suppresses TBK1 and Activates NRF2/TXNIP Antioxidant Pathway in  LPS-Driven ALI in Mice
miR-135a-5p Suppresses TBK1 and Activates NRF2/TXNIP Antioxidant Pathway in LPS-Driven ALI in Mice

LPS Model of Systemic Inflammation - Melior Discovery
LPS Model of Systemic Inflammation - Melior Discovery

miR-150 and SRPK1 regulate AKT3 expression to participate in LPS-induced  inflammatory response - Yanfen Yao, Hong Wang, Xueqin Xi, Wei Sun, Junke  Ge, Pibao Li, 2021
miR-150 and SRPK1 regulate AKT3 expression to participate in LPS-induced inflammatory response - Yanfen Yao, Hong Wang, Xueqin Xi, Wei Sun, Junke Ge, Pibao Li, 2021

Role and mechanism of miR‑144‑5p in LPS‑induced macrophages
Role and mechanism of miR‑144‑5p in LPS‑induced macrophages

Effects of miR-181a mimics and inhibitors on IL1a and IL1b mRNA levels in  LPS-induced Raw264.7 (A) and PMA/LPS-induced THP-1 cells (B); effects of  miR-181a mimics and inhibitors on ILa, IL1b, IL6, and
Effects of miR-181a mimics and inhibitors on IL1a and IL1b mRNA levels in LPS-induced Raw264.7 (A) and PMA/LPS-induced THP-1 cells (B); effects of miR-181a mimics and inhibitors on ILa, IL1b, IL6, and

Overexpression of miR-140-5p inhibits lipopolysaccharide-induced human  intervertebral disc inflammation and degeneration by downregulating  toll-like receptor 4
Overexpression of miR-140-5p inhibits lipopolysaccharide-induced human intervertebral disc inflammation and degeneration by downregulating toll-like receptor 4

Structure of Campylobacter jejuni Lipopolysaccharides Determines  Antiganglioside Specificity and Clinical Features of Guillain-Barré and  Miller Fisher Patients | Infection and Immunity
Structure of Campylobacter jejuni Lipopolysaccharides Determines Antiganglioside Specificity and Clinical Features of Guillain-Barré and Miller Fisher Patients | Infection and Immunity

Lipopolysaccharide - Wikipedia
Lipopolysaccharide - Wikipedia

miR-135a-5p Suppresses TBK1 and Activates NRF2/TXNIP Antioxidant Pathway in  LPS-Driven ALI in Mice
miR-135a-5p Suppresses TBK1 and Activates NRF2/TXNIP Antioxidant Pathway in LPS-Driven ALI in Mice

LPS-Induced Rodent Sepsis Model - Creative Biolabs
LPS-Induced Rodent Sepsis Model - Creative Biolabs

Over-expression of miR-223 induces M2 macrophage through glycolysis  alteration and attenuates LPS-induced sepsis mouse model, the cell-based  therapy in sepsis | PLOS ONE
Over-expression of miR-223 induces M2 macrophage through glycolysis alteration and attenuates LPS-induced sepsis mouse model, the cell-based therapy in sepsis | PLOS ONE

JCI Insight - The negative feedback loop of NF-κB/miR-376b/NFKBIZ in septic  acute kidney injury
JCI Insight - The negative feedback loop of NF-κB/miR-376b/NFKBIZ in septic acute kidney injury

Exposure to lipopolysaccharide (LPS) mimics the loss of... | Download  Scientific Diagram
Exposure to lipopolysaccharide (LPS) mimics the loss of... | Download Scientific Diagram

Overexpression of GLUT1 in Macrophages Mimics the Effect of LPS on... |  Download Scientific Diagram
Overexpression of GLUT1 in Macrophages Mimics the Effect of LPS on... | Download Scientific Diagram

A and B) miR-181a expression in LPS-induced Raw264.7 cells and PMA/LPS-induced  THP-1 cells; (C and D) intracellular IL1a levels in LPS-induced Raw264.7  cells and PMA/LPS-induced THP-1 cells; (E) effects of miR-181a mimics
A and B) miR-181a expression in LPS-induced Raw264.7 cells and PMA/LPS-induced THP-1 cells; (C and D) intracellular IL1a levels in LPS-induced Raw264.7 cells and PMA/LPS-induced THP-1 cells; (E) effects of miR-181a mimics

Silencing of MEG3 attenuated the role of lipopolysaccharides by modulating  the miR-93-5p/PTEN pathway in Leydig cells | Reproductive Biology and  Endocrinology | Full Text
Silencing of MEG3 attenuated the role of lipopolysaccharides by modulating the miR-93-5p/PTEN pathway in Leydig cells | Reproductive Biology and Endocrinology | Full Text