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首页> 外文期刊>Natural product sciences >Methanol Extract of Cinnamomum cassia Represses Cellular Proliferation and Gli-mediated Transcription in PANC-1 Human Pancreatic Cancer Cells
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Methanol Extract of Cinnamomum cassia Represses Cellular Proliferation and Gli-mediated Transcription in PANC-1 Human Pancreatic Cancer Cells

机译:肉桂肉桂甲醇提取物抑制PANC-1人胰腺癌细胞的细胞增殖和Gli介导的转录。

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摘要

Twenty five methanolic plant extracts were investigated to determine the anticancer activity against sonic hedgehog (shh)/Gli signaling pathway dependent cancer, PANC-1 human pancreatic cancer cells, through three screening programs. All extracts were inspected their inhibitory properties on sonic hedgehog-conditioned medium (shh-CM) induced alkaline phosphatase (ALP) activity in C3H10T1/2 mouse mesenchymal stem cells to examine whether the plant extracts affect the shh/Gli signaling pathway. Next, plant extracts were screened the ability to suppress the cell proliferation of PANC-1 human pancreatic cancer cells. Finally, active plant extracts from the two screening systems were evaluated for the suppressive effect on Gli-mediated transcriptional activity in PANC-1 cells. Among active plants, Cinnamomum cassia suppressed Gli-mediated transcriptional activity leading to the down-regulated expression of Gli-target genes such as Gli-1 and Patched-1 (Ptch-1). This study provides the consideration for the important role of natural products in drug discovery process as well as the basis for the further analysis of active plant and potential identification of novel bioactive compounds as inhibitors of Gli and therapeutic candidates against shh/Gli signaling pathway dependent cancers.
机译:通过三个筛选程序,研究了二十五个甲醇植物提取物,以确定对声波刺猬(shh)/ Gli信号通路依赖性癌症PANC-1人胰腺癌细胞的抗癌活性。检查了所有提取物对C3H10T1 / 2小鼠间充质干细胞中声波刺猬条件培养基(shh-CM)诱导的碱性磷酸酶(ALP)活性的抑制特性,以检查植物提取物是否影响shh / Gli信号通路。接下来,筛选植物提取物抑制PANC-1人胰腺癌细胞的细胞增殖的能力。最后,评估了来自两个筛选系统的活性植物提取物对PANC-1细胞中Gli介导的转录活性的抑制作用。在活性植物中,肉桂肉桂抑制了Gli介导的转录活性,从而导致Gli靶标基因(例如Gli-1和Patched-1(Ptch-1))的表达下调。这项研究为天然产物在药物发现过程中的重要作用提供了考虑,并为进一步分析活性植物和潜在鉴定新型生物活性化合物作为Gli抑制剂和针对shh / Gli信号途径依赖性癌症的治疗候选物提供了依据。

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