首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Cytotoxic Effect of Vanicosides A and B from Reynoutria sachalinensis against Melanotic and Amelanotic Melanoma Cell Lines and in silico Evaluation for Inhibition of BRAFV600E and MEK1
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Cytotoxic Effect of Vanicosides A and B from Reynoutria sachalinensis against Melanotic and Amelanotic Melanoma Cell Lines and in silico Evaluation for Inhibition of BRAFV600E and MEK1

机译:茶树中的香叶菊苷A和B对黑素瘤和黑黑素瘤黑素瘤细胞系的细胞毒性作用及计算机评价BRAFV600E和MEK1的抑制作用

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摘要

Vanicosides A and B are the esters of hydroxycinnamic acids with sucrose, occurring in a few plant species from the Polygonaceae family. So far, vanicosides A and B have not been evaluated for anticancer activity against human malignant melanoma. In this study, we tested these two natural products, isolated from rhizomes, against two human melanoma cell lines (amelanotic C32 cell line and melanotic A375 cell line, both bearing endogenous BRAFV600E mutation) and two normal human cell lines—keratinocytes (HaCaT) and the primary fibroblast line. Additionally, a molecular docking of vanicoside A and vanicoside B with selected targets involved in melanoma progression was performed. Cell viability was studied using an MTT assay. A RealTime-Glo™ Annexin V Apoptosis and Necrosis assay was used for monitoring programmed cell death (PCD). Vanicoside A demonstrated strong cytotoxicity against the amelanotic C32 cell line (viability of the C32 cell line was decreased to 55% after 72 h incubation with 5.0 µM of vanicoside A), significantly stronger than vanicoside B. This stronger cytotoxic activity can be attributed to an additional acetyl group in vanicoside A. No significant differences in the cytotoxicity of vanicosides were observed against the less sensitive A375 cell line. Moreover, vanicosides caused the death of melanoma cells at concentrations from 2.5 to 50 µM, without harming the primary fibroblast line. The keratinocyte cell line (HaCaT) was more sensitive to vanicosides than fibroblasts, showing a clear decrease in viability after incubation with 25 µM of vanicoside A as well as a significant phosphatidylserine (PS) exposure, but without a measurable cell death-associated fluorescence. Vanicosides induced an apoptotic death pathway in melanoma cell lines, but because of the initial loss of cell membrane integrity, an additional cell death mechanism might be involved like permeability transition pore (PTP)-mediated necrosis that needs to be explored in the future. Molecular docking indicated that both compounds bind to the active site of the BRAFV600E kinase and MEK-1 kinase; further experiments on their specific inhibitory activity of these targets should be considered.
机译:Vanicosides A和B是羟基肉桂酸与蔗糖的酯,存在于Poly科的一些植物中。迄今为止,尚未评估香草苦苷A和B对人恶性黑色素瘤的抗癌活性。在这项研究中,我们测试了从根茎中分离出的两种天然产物,分别针对两种人类黑素瘤细胞系(均带有内源性BRAFV600E突变的Alananotic C32细胞系和黑色素A375细胞系)和两种正常人类细胞系-角质形成细胞(HaCaT)和初级成纤维细胞系。另外,进行了vanicoside A和vanicoside B与涉及黑素瘤进展的选定靶标的分子对接。使用MTT测定法研究细胞活力。使用RealTime-Glo™Annexin V细胞凋亡和坏死分析监测程序性细胞死亡(PCD)。 Vanicoside A表现出了对釉面C32细胞系的强大细胞毒性(与5.0 µM Vanicoside A孵育72 h后,C32细胞系的活力下降至55%),明显强于VanicosideB。这种较强的细胞毒活性可归因于Vanicoside A中的另一个乙酰基。针对不太敏感的A375细胞系,vanicosides的细胞毒性未见明显差异。此外,菊苣甙可导致浓度为2.5至50 µM的黑素瘤细胞死亡,而不会损害原代成纤维细胞系。角质形成细胞系(HaCaT)对vanicosides的敏感性高于成纤维细胞,在与25μMvanicoside A以及显着的磷脂酰丝氨酸(PS)接触孵育后,其活力明显下降,但没有与细胞死亡相关的可测荧光。 Vanicosides诱导了黑素瘤细胞系中的凋亡死亡途径,但由于细胞膜完整性的最初丧失,可能会涉及额外的细胞死亡机制,例如通透性转化孔(PTP)介导的坏死,这在将来需要加以研究。分子对接表明这两种化合物均与BRAFV600E激酶和MEK-1激酶的活性位点结合。应考虑对这些靶标的特异性抑制活性做进一步的实验。

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