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cleome/kræft

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12 resultater

Cleome arabica leaf extract has anticancer properties in human cancer cells.

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BACKGROUND Cleome arabica L. (Capparidaceae) is a desert plant widely distributed in the North part of Africa whose leaves are used in traditional medicine as a sedative for abdominal and rheumatic pains. OBJECTIVE The anticancer activity of methanol Cleome arabica leaf extracts (CALE) is

A methoxylated quercetin glycoside harnesses HCC tumor progression in a TP53/miR-15/miR-16 dependent manner.

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This study focused on studying the impact of flavonoids isolated from Cleome droserifolia on HCC cell lines and to further unveil their possible impact on TP53 and its downstream tumor suppressor miRNAs. Three flavonol glycosides were isolated from C. droserifolia namely,
From the aerial parts of Cleome khorassanica Bunge & Bien, a new 3-oxo-4-oxa-A-homo-25,26,27-trinordammarano-24,20-lactone triterpene (1), a new natural product 20,25-dihydroxy-3-oxodammarane triterpene (2), together with known 5-hydroxy-3,6,7,8,3',4',5'-heptamethoxyflavone (3), have been isolated

Phytochemical constituents and biological activities of Cleome iberica DC.

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Phytochemical investigation of Cleome iberica DC. aerial parts led to the isolation and characterisation of six triterpenoid including glutinol (1), lupeol (2), β-sitosterol (3), cabraleadiol monoacetate (4), cabraleadiol (6) and daucosterol (8), one flavonoid, calycopterin (5) along with a fatty
BACKGROUND Helicobacter pylori (HP) is a gramnegative bacterium and well recognized as being the primary etiological agent responsible for the development of gastritis, dyspepsia, peptic ulcer disease and gastric cancer. In developing countries, a high prevalence of HP infection is associated with

Free radical scavenging activity of Cleome gynandra L. leaves on adjuvant induced arthritis in rats.

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The generation of free radicals has been implicated in the causation of several diseases of known and unknown etiologies such as, rheumatoid arthritis, diabetes, cancer, etc., and compounds that can scavenge free radicals have great potential in ameliorating these disease processes. The present

Evaluation of anticancer activity of Cleome gynandra on Ehrlich's Ascites Carcinoma treated mice.

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BACKGROUND The plant Cleome gynandra L. (Capparidaceae), is commonly known as 'Hurhur'and 'Karaila' in India and 'Cat's whiskers' in English. Traditionally the whole plant is used in the treatment of tumor, anti-inflammatory and lysosomal stability actions. OBJECTIVE The objective of present study
UNASSIGNED The present study investigates the hepato- and DNA-protective effects of standardized extracts of Cleome brachycarpa (cabralealactone), Solanum incanum (solasodin), and Salvadora oleioides (salvadorin) in rats. UNASSIGNED Hepatotoxicity was induced with intraperitoneal injection of carbon
Cleome rutidosperma DC. and Euphorbia thymifolia L. are herbal medicines used in traditional Indian and Chinese medicine to treat various illnesses. Reports document that they have antioxidant and anti-inflammatory activities; nonetheless, the molecular mechanisms involved in their anti-inflammatory

Isolation of new cytotoxic metabolites from Cleome droserifolia growing in Egypt.

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The sulforhodamine B (SRB) assay was used to assess the cytotoxicity of the aqueous (AqEx) and ethanolic (AlEx) extracts, respectively, of the aerial parts of Cleome droserifolia (Forssk.) Del. against two human cancer cell lines, breast (MCF7) and colon (HCT116) adenocarcinoma. AqEx exhibited

Organic extracts from Cleome droserifolia exhibit effective caspase-dependent anticancer activity.

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This study investigated the anticancer potential of the medicinal herb, Cleome droserifolia (CD), a local plant of the Arabian Peninsula. C. droserifolia is traditionally known for its rubefacient, anti-diabetic, anti-oxidant, and anti-inflammatory
Cleome scaposa has been associated with the prevention of many diseases as fever, abdominal complaints and cancer. But its antipyretic effect is not reported so far. The aim of this study was to assess the efficacy of C. scaposa in reducing temperature in Baker's yeast-induced fever model of
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