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Antiproliferative Effects of Cynara cardunculus L. var. altilis (DC) Lipophilic Extracts

机译:Cynara cardunculus L. var。的抗增殖作用。 altilis(DC)亲脂性提取物

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摘要

Besides being traditionally used to relieve hepatobiliary disorders, Cynara cardunculus L. has evidenced anticancer potential on triple-negative breast cancer (TNBC). This study highlights the antiproliferative effects of lipophilic extracts from C. cardunculus L. var. altilis (DC) leaves and florets, and of their major compounds, namely cynaropicrin and taraxasteryl acetate, against MDA-MB-231 cells. Our results demonstrated that MDA-MB-231 cells were much less resistant to leaves extract (IC50 10.39 µg/mL) than to florets extract (IC50 315.22 µg/mL), during 48 h. Moreover, leaves extract and cynaropicrin (IC50 6.19 µg/mL) suppressed MDA-MB-231 cells colonies formation, via an anchorage-independent growth assay. Leaves extract and cynaropicrin were also assessed regarding their regulation on caspase-3 activity, by using a spectrophotometric assay, and expression levels of G2/mitosis checkpoint and Akt signaling pathway proteins, by Western blotting. Leaves extract increased caspase-3 activity, while cynaropicrin did not affect it. Additionally, they caused p21Waf1/Cip1 upregulation, as well as cyclin B1 and phospho(Tyr15)-CDK1 accumulation, which may be related to G2 cell cycle arrest. They also downregulated phospho(Ser473)-Akt, without changing total Akt1 level. Cynaropicrin probably contributed to leaves extract antiproliferative action. These promising insights suggest that cultivated cardoon leaves lipophilic extract and cynaropicrin may be considered toward a natural-based therapeutic approach on TNBC.
机译:除传统上用于缓解肝胆疾病外,Cynara cardunculus L.还被证明对三阴性乳腺癌(TNBC)具有抗癌潜力。这项研究强调了C. cardunculus L. var。的亲脂性提取物的抗增殖作用。 altilis(DC)的叶和小花,以及它们的主要化合物,即Cynaropicrin和taraxasterylacetate,可抵抗MDA-MB-231细胞。我们的结果表明,在48小时内,MDA-MB-231细胞对叶提取物(IC50为10.39 µg / mL)的抵抗力要比对小花提取物(IC50 315.22 µg / mL)的抵抗力低得多。此外,通过独立于锚定的生长试验,叶片提取物和西诺卡比林(IC50 6.19 µg / mL)抑制了MDA-MB-231细胞集落的形成。还通过分光光度法评估了叶提取物和西诺卡比林对caspase-3活性的调控,并通过Western印迹法评估了G2 /有丝分裂检查点和Akt信号通路蛋白的表达水平。叶片提取物增加了caspase-3的活性,而西诺卡比林则没有影响。此外,它们还导致p21 Waf1 / Cip1 上调,以及细胞周期蛋白B1和磷酸(Tyr15)-CDK1积累,可能与G2细胞周期停滞有关。他们还下调了磷酸化(Ser473)-Akt,而没有改变总Akt1水平。氰氨苄青霉素可能有助于叶片提取物的抗增殖作用。这些有前途的见解表明,栽培的菜豆叶片的亲脂性提取物和西诺卡比林可考虑用于TNBC的天然治疗方法。

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