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gentiopicroside/рак

Врската е зачувана во таблата со исечоци
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15 резултати

Gentiopicroside Inhibits Cell Growth and Migration on Cervical Cancer via the Reciprocal MAPK/Akt Signaling Pathways

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Cervical cancer (CC) is a common gynecological malignancy and represents a major global health challenge. Chemotherapeutic agents are commonly applied in treatment of CC, while along various adverse effects and chemotherapy resistance. As an iridoid glycoside compound, gentiopicroside (GPS)

Inhibitory Potencies of Several Iridoids on Cyclooxygenase-1, Cyclooxygnase-2 Enzymes Activities, Tumor Necrosis factor-α and Nitric Oxide Production In Vitro.

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To verify the anti-inflammatory potency of iridoids, seven iridoid glucosides (aucubin, catalpol, gentiopicroside, swertiamarin, geniposide, geniposidic acid and loganin) and an iridoid aglycone (genipin) were investigated with in vitro testing model systems based on inhibition of cyclooxygenase

Suppression of chemically and immunologically induced hepatic injuries by gentiopicroside in mice.

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Gentiopicroside (GPS), a main bitter secoiridoid constituent of roots of Gentiana macrophylla Pall., was tested for therapeutic effects on the two hepatic injury models, the CCl4-induced and lipopolysaccharide (LPS)/bacillus Calmette-Guerin (BCG)-induced hepatitides. An increase in serum level of

Gentiopicroside protects neurons from astrocyte-mediated inflammatory injuries by inhibition of nuclear factor-κB and mitogen-activated protein kinase signaling pathways.

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The effects of gentiopicroside (Gent), an active component derived from the traditional Chinese medicine Gentiana macrophylla, on lipopolysaccharide-induced astrocyte activation and subsequent neuronal damage were investigated. Gent significantly inhibited the release of tumor necrosis factor-α,

Protective effect of gentiopicroside against dextran sodium sulfate induced colitis in mice.

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This study was designed to investigate the anti-inflammatory activity of the pure compound gentiopicroside (Gent) on dextran sulfate sodium (DSS)-induced colitis in a mouse model and to explore the possible related mechanisms. Experimental colitis was induced in ICR mice by dissolving 5% DSS in

Gentiopicroside exerts convincing antitumor effects in human ovarian carcinoma cells (SKOV3) by inducing cell cycle arrest, mitochondrial mediated apoptosis and inhibition of cell migration.

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Gentiopicroside is an important plant secondary metabolite and has been reported to exhibit tremendous pharmacological potential. In the present study we investigated the anticancer effects of gentiopicroside against ovarian SKOV3 cancer cells.Anticancer

Protective effect of gentiopicroside from Gentiana macrophylla Pall. in ethanol-induced gastric mucosal injury in mice.

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Gentiopicroside isolated from gentiana macrophylla Pall. belongs to iridoid glycosides. This study aimed to evaluate the protective effect of gentiopicroside against ethanol-induced gastric mucosal injury in mice. Mice were proactively administrated with gentiopicroside by intragastric

Anti-Rheumatic Properties of Gentiopicroside Are Associated With Suppression of ROS-NF-κB-NLRP3 Axis in Fibroblast-Like Synoviocytes and NF-κB Pathway in Adjuvant-Induced Arthritis

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Rheumatoid arthritis (RA) is among the most prevalent forms of autoimmunity. Gentiopicroside (Gent) is an iridoid glucoside derived from the Gentiana Macrophylla Pall which is used in traditional Chinese medicine to treat RA. The present study was designed to explore the ability of Gent to

Therapeutic effects of gentiopicroside on adjuvant-induced arthritis by inhibiting inflammation and oxidative stress in rats.

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The purpose of this research was to evaluate the therapeutic effects of gentiopicroside (GPS) on adjuvant-induced arthritis (AA) rats. Rats were injected with complete Freund's adjuvant (CFA) for 0.1 mL in the right hind paw to induce AA. Thirty rats from three groups were treated with GPS (30, 60,

Gentiopicroside (GENT) protects against sepsis induced by lipopolysaccharide (LPS) through the NF-κB signaling pathway.

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Sepsis is a high-mortality disease without effective therapeutic options. The hyperactivation of the monocyte-macrophage system, especially M1 macrophages, triggers the onset of septic shock. Gentiopicroside (GENT), the main active component in the traditional Chinese medicinal herb

Iridoid glycosides from the flowers of Gentiana macrophylla Pall. ameliorate collagen-induced arthritis in rats.

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BACKGROUND The flowers of Gentiana macrophylla have been usually applied to cure the joint inflammation and rheumatoid arthritis in Traditional Chinese Medicine. OBJECTIVE This work aimed to investigate the anti-rheumatoid arthritic effect and possible mechanism of iridoid glycosides from G.

Amarogentin as topical anticancer and anti-infective potential: Scope of lipid based vesicular in its effective delivery.

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There is the need of development of liposomes based nanomedicines formulation for the better efficacy and safety of the available drugs in the market. Liposomes have various applications in the field of pharmaceutical and medical field for their drug target potential, diagnostic importance and

Effect of Feining on bleomycin-induced pulmonary injuries in rats.

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BACKGROUND The flowers of Gentiana veitchiorum has been widely used in decoction form in the traditional medicine of Tibet against tussis, tracheitis, angina for their anti-inflammatory, antimicrobial and alexipharmic properties. OBJECTIVE The aim of current study was to evaluate the therapeutic

Induction of apoptosis in human pancreatic MiaPaCa-2 cells through the loss of mitochondrial membrane potential (ΔΨm) by Gentiana kurroo root extract and LC-ESI-MS analysis of its principal constituents.

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The objective of the current study was to evaluate the methanolic root extract of Gentiana kurroo for antioxidant and antiproliferative activities as well as to study the effect of the extract on the induction of apoptosis in human pancreatic cancer cell line (MiaPaCa-2). The extract exerted

Natural Plants Compounds as Modulators of Epithelial-to-Mesenchymal Transition.

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Epithelial-to-mesenchymal transition (EMT) is a self-regulated physiological process required for tissue repair that, in non-controled conditions may lead to fibrosis, angiogenesis, loss of normal organ function or cancer. Although several molecular pathways involved in EMT regulation have been
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