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senna obliqua/syöpä

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Sivu 1 alkaen 60 tuloksia
The main objective of this study was to evaluate the hydroethanolic extract of Senna alata for the possible free radical scavenging and cytotoxic properties. Using such hydroethanolic extract, various in vitro antioxidant assays at different concentrations were performed and analyzed. In all the

Cassia alata leaf extract induces cytotoxicity in A549 lung cancer cells via a mechanism that is caspase 8 dependent.

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OBJECTIVE To evaluate the cytotoxic effect of a hexane extract of Cassia alata leaves in A549 lung cancer cells. METHODS Parental A549 lung cancer cells were exposed to various concentrations (100-180 microg/ml) of Cassia alata leaf extract for 24 hours. Following treatment, the cells were evaluated

Potent Antiproliferative Effect on Liver Cancer of Medicinal Plants Selected from the Thai/Lanna Medicinal Plant Recipe Database "MANOSROI III".

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Thai/Lanna medicinal plant recipes have been used for the treatment of several diseases including liver cancer. In this study, methanolic extracts (MEs) of 23 plants were tested for antiproliferative activity on human hepatoma cell line (Hep G2) by the sulforhodamine B (SRB) assay. Nine MEs with

Evaluation of Cassia occidentalis for in vitro cytotoxicity against human cancer cell lines and antibacterial activity.

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OBJECTIVE To evaluate the in vitro cytotoxicity and antibacterial properties of Cassia occidentalis (whole plant) via alcoholic, hydro-alcoholic, and aqueous extracts against eight human cancer cell lines from six different tissues and four bacterial strains. METHODS in vitro cytotoxicity against

Reversal effects of traditional Chinese herbs on multidrug resistance in cancer cells.

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Multidrug resistance (MDR) continues to be a major obstacle for successful anticancer therapy. In this work, fractions from 17 clinically used antitumour traditional Chinese medicinal herbs were tested for their potential to restore the sensitivity of MCF-7/ADR and A549/Taxol cells to a known

Chronic Inflammatory-Modulating Potential of Cassia auriculata With Pro-inflammatory Cytokine IL-1beta and Its Anticancer Efficacy on Lung Cancer Cell line

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Background: Inflammation is a key element in tumor progression, over time, persistent inflammation causes damage to DNA and leads to cancer. The relationship between chronic inflammation and tumor development is well established and

Apoptosis mediated anti-proliferative effect of compound isolated from Cassia auriculata leaves against human colon cancer cell line.

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A compound was isolated from Cassia auriculata leaves and characterized by high-performance liquid chromatography (HPLC), liquid chromatography mass spectrometry (LC-MS), UV-vis spectroscopy (UV-vis), Fourier transform infrared spectroscopy (FT-IR) and nuclear magnetic resonance spectroscopy (NMR).

Obtusifolin suppresses phthalate esters-induced breast cancer bone metastasis by targeting parathyroid hormone-related protein.

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This study is the first to demonstrate that parathyroid hormone-related protein (PTHrP), produced by human breast cancer cells after exposure to phthalate esters, contributes to bone metastasis by increasing osteoclastogenesis. This is also the first to reveal that obtusifolin reverses phthalate

Anti-proliferative effect of a compound isolated from Cassia auriculata against human colon cancer cell line HCT 15.

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The compound was isolated from leaves of Cassia auriculata and its structure was characterized using high-performance liquid chromatography (HPLC), liquid chromatography mass spectrometry (LC-MS), UV-vis spectroscopy (UV-vis), fourier transform infrared spectroscopy (FT-IR) and nuclear magnetic

Anti-cancer effect of Cassia auriculata leaf extract in vitro through cell cycle arrest and induction of apoptosis in human breast and larynx cancer cell lines.

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The in vitro anti-cancer effect of Cassia auriculata leaf extract (CALE) was evaluated in human breast adenocarcinoma MCF-7 and human larynx carcinoma Hep-2 cell lines. CALE preferentially inhibited the growth of both the cell lines in a dose-dependent manner with IC(50) values of 400 and 500 microg

Detarium microcarpum, Guiera senegalensis, and Cassia siamea Induce Apoptosis and Cell Cycle Arrest and Inhibit Metastasis on MCF7 Breast Cancer Cells.

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Despite the availability of anticancer drugs, breast cancer remains the most death-causing tumor-related disease in women. Hence, there is a need for discovery and development of efficient alternative drugs, and sources such as plants need to be explored. In this study, antioxidant capacities and

Effects of Cassia alata Linn on bowel function recovery following surgery for gynecological cancer: A randomized controlled trial.

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Postoperative ileus is a common complication following abdominal surgery. This study was undertaken to determine the effectiveness and safety of Cassia alata Linn in stimulating gastrointestinal function recovery among women with gynecologic cancer who had undergone laparotomy for

Leaves of Cassia tora as a novel cancer therapeutic--an in vitro study.

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Cassia tora Linn (Leguminacea) is a medicinal plant traditionally used as laxative, for the treatment of leprosy and various skin disorders. Preliminary phytochemical analysis of leaf showed the presence of polyphenols (3.7 mg gallic acid equivalent per gram dried leaves). The presence of phenolic

Rhein inhibits angiogenesis and the viability of hormone-dependent and -independent cancer cells under normoxic or hypoxic conditions in vitro.

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Hypoxia is a hallmark of solid tumors, including breast cancer, and the extent of tumor hypoxia is associated with treatment resistance and poor prognosis. Considering the limited treatment of hypoxic tumor cells and hence a poor prognosis of breast cancer, the investigation of natural products as

Senna and the formation of aberrant crypt foci and tumors in rats treated with azoxymethane.

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Chronic use of anthraquinone laxatives has been blamed for the induction of habituation and the development of colonic cancer, but there are no definitive studies which have demonstrated this. To evaluate the carcinogenic potential of anthraquinones, the effect of long-term senna pod extract (SE)
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