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fangchinoline/brystkræft

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Fangchinoline (Fan) inhibits cell proliferation and induces apoptosis in several cancer cell lines. The effects of Fan on cell growth and proliferation in breast cancer cells remain to be elucidated. Here, we show that Fan inhibited cell proliferation in the MDA-MB-231 breast cancer cell line

Fangchinoline inhibits migration and causes apoptosis of human breast cancer MDA-MB-231 cells.

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In order to improve outcomes after breast cancer treatment, it is essential to understand the mechanisms of action of potential therapeutic agents. The effect of fangchinoline (FAN) on migration and apoptosis of human breast cancer MDA-MB-231 cells and its underlying mechanisms were investigated.

BACKGROUND
The high expression of BLM (Bloom syndrome) helicase in tumors involves its strong association with cell expansion. Bisbenzylisoquinoline alkaloids own an antitumor property and have developed as candidates for anticancer drugs. This paper aimed to screen potential

Fangchinoline induces G1 arrest in breast cancer cells through cell-cycle regulation.

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Fangchinoline, an alkaloid derived from the dry roots of Stephaniae tetrandrine S. Moore (Menispermaceae), has been shown to possess cytotoxic, anti-inflammatory, and antioxidant properties. In this study, we used Fangchinoline to inhibit breast cancer cell proliferation and to investigate its

Fangchinoline inhibits breast adenocarcinoma proliferation by inducing apoptosis.

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Radix Stephaniae tetrandrae, which contains tetrandrine (Tet) and fangchinoline, is traditionally used as an analgesic, antirheumatic, and antihypertensive drug in China. In this study, we investigated its effect on breast cancer cell proliferation and its potential mechanism of action in vitro.
Fangchinoline, a bisbenzylisoquinoline alkaloid extracted from Stephania tetrandra S. Moore, is known to exert anti-cancer activity. A series of new fangchinoline derivatives have been synthesized and evaluated for their anti-cancer activity. In cell viability assay, these fangchinoline derivatives

Radix Stephaniae Tetrandrine: An emerging role for management of breast cancer.

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Radix Stephaniae Tetrandrine (RST), known as FangJi (Pinyin name) in Chinese, is the dried root of Stephania tetrandra S.Moore, and has been prescribed in combination with other herbs to treat cardiovascular diseases and breast cancer in traditional Chinese medicine (TCM) clinical

Design, Synthesis and Anticancer Evaluation of Fangchinoline Derivatives.

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Twenty fangchinoline derivatives were synthesized from the natural product fangchinoline, and their anticancer activities on human breast cancer MDA-MB-231 cell line, human prostate cancer PC3 cell line, human melanoma WM9 cell line and human leukaemia HEL and K562 cell lines were evaluated. The
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