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icariin/inflammation

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[Comparison research with icariin and genistein by anti-inflammatory reaction and angiogenesis pathway to inhibit bone loss on ovariectomized rats].

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OBJECTIVE Through researching the relationship among osteoporosis and inflammatory reaction besides angiogenesis, to compare pharmacological differences between icariin and genistein to inhibit bone loss. METHODS 6 months old female SD rats were randomly divided into SHAM group, model group, ICA

Local icariin application enhanced periodontal tissue regeneration and relieved local inflammation in a minipig model of periodontitis.

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Periodontitis is an inflammatory autoimmune disease. Treatment should alleviate inflammation, regulate the immune reaction and promote periodontal tissue regeneration. Icariin is the main active ingredient of Epimedii Folium, and it is a promising compound for the enhancement of mesenchymal stem

[Effects of icariin on inflammation model stimulated by lipopolysaccharide in vitro and in vivo].

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OBJECTIVE To evaluate the anti-inflammatory effects of icariin, from aspects of pro-inflammatory cytokines, inflammatory mediators and adhesion molecules. METHODS Mouse inflammation model in vitro was established by stimulating macrophage cell line RAW264. 7 with lipopolysaccharide (LPS); and the

Icariin inhibits inflammation via immunomodulation of the cutaneous hypothalamus-pituitary-adrenal axis in vitro.

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BACKGROUND Dysfunction of skin steroidogenesis plays an important role in inflammatory skin diseases. We previously carried out an animal study which showed that icariin could inhibit the inflammation of atopic dermatitis by regulating the cutaneous hypothalamus-pituitary-adrenal axis

Attenuation of LPS-induced inflammation by ICT, a derivate of icariin, via inhibition of the CD14/TLR4 signaling pathway in human monocytes.

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OBJECTIVE To evaluate the anti-inflammatory potential of ICT in LPS stimulated human innate immune cells. BACKGROUND 3, 5, 7-Trihydroxy-4'-methoxy-8-(3-hydroxy-3- methylbutyl)-flavone (ICT) is a novel derivative of icariin, the major active ingredient of Herba Epimedii, an herb used in traditional

Icariin derivative inhibits inflammation through suppression of p38 mitogen-activated protein kinase and nuclear factor-kappaB pathways.

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In this study we investigated the anti-inflammatory effects of an icariin derivative (3,5-dihydroxy-4'-methoxy-6'',6''-dimethy1-4'',5''-dihydropyrano[2'',3'':7,8]-flavone). We found that this icariin derivative inhibits tumor necrosis factor-alpha (TNF-alpha) production, inducible nitric oxide

In vivo and in vitro anti-inflammatory effects of a novel derivative of icariin.

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Icariin is the major active constituent of Epimedii Herba. Our recent study showed that icariin displayed anti-inflammatory potential. One novel derivate of icariin is 3,5,7-Trihydroxy-4'-methoxy-8-(3-hydroxy-3-methylbutyl)-flavone (ICT). Little is known about ICT's pharmacological activities. In

Icariin Attenuates High Glucose-Induced Apoptosis, Oxidative Stress, and Inflammation in Human Umbilical Venous Endothelial Cells.

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Endothelial dysfunction is closely associated with diabetic complications. Icariin, a flavonoid glycoside isolated from the Epimedium plant species, exhibits antidiabetic properties. However, its impact on endothelial function remains poorly understood, particularly under hyperglycemia. In

Inhibitory effect of icariin on Ti-induced inflammatory osteoclastogenesis.

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BACKGROUND Wear particle-induced periprosthetic osteolysis that results in aseptic loosening is the most common cause of long-term failure after total joint replacement. METHODS Icariin (ICA), a flavonoid isolated from Epimedium pubescens, inhibits osteoclast formation, but its effects on wear

The Effects of Icariin on Enhancing Motor Recovery Through Attenuating Pro-inflammatory Factors and Oxidative Stress via Mitochondrial Apoptotic Pathway in the Mice Model of Spinal Cord Injury.

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Spinal cord injury (SCI) is a severe medical problem leading to crucial life change. Icariin (ICA) is a natural flavonoid compound extracted from the Chinese herb Epimedium brevicornum which has neuroprotective effects. But little is known about the relationship between ICA and SCI. We hypothesized

Icariin protects murine chondrocytes from lipopolysaccharide-induced inflammatory responses and extracellular matrix degradation.

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Septic arthritis is an inflammatory arthropathy characterized by degeneration of articular cartilage. Icariin, the main active flavonoid glucoside isolated from Epimedium pubescens, is used as antirheumatics (or antiinflammatory), tonics, and aphrodisiacs in traditional Chinese medicine. In this

Inhibition of airway remodeling and inflammatory response by Icariin in asthma.

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Icariin (ICA) is the major active ingredient extracted from Chinese herbal medicine Epimedium, which has the effects of improving cardiovascular function, inducing tumor cell differentiation and increasing bone formation. It is still rarely reported that ICA can exert its therapeutic

Icariin ameliorates the progression of experimental autoimmune encephalomyelitis by down-regulating the major inflammatory signal pathways in a mouse relapse-remission model of multiple sclerosis

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This study aimed at investigating whether treatment with icariin (ICA) could modulate the progression of experimental autoimmune encephalomyelitis (EAE) and its potential mechanisms in SJL/J mice. Female SJL/J mice were immunized with PLP139-151 peptide to induce relapse-remitting EAE and

Icariin and icaritin ameliorated hippocampus neuroinflammation via inhibiting HMGB1-related pro-inflammatory signals in lipopolysaccharide-induced inflammation model in C57BL/6 J mice.

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Inflammation is a defensive response of the body and is at the center of many diseases' process like depression. High mobility group protein box 1 (HMGB1), has been proved to function as a pro-inflammatory cytokine. We aim to explore the role of HMGB1 played in the neuroinflammation here. In this

Icariin modulates carrageenan-induced acute inflammation through HO-1/Nrf2 and NF-kB signaling pathways.

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Cellular inflammation has been recognized as the leading factor in numerous diseases, causing either cell death, organ-specific damage, or genesis of different cancers. Icariin, a flavonol glucoside, extracted from Herba Epimedii, offers various pharmacological activities, including reducing
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