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Comparative anticancer activities of Ficus carica and Ficus salicifolia latex in MDA-MB-231 cells

机译:Ficus Carica和Ficus Salicifolia乳胶在MDA-MB-231细胞中的比较抗癌活动

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摘要

Ficus latex is rich in polyphenolic compounds and hence considered as an antioxidant and anti-proliferative. Many studies are available on Ficus carica (common fig) whereas Ficus salicifolia is less studied. F. salicifolia grows in a harsh dry environment, therefore its latex was selected in the current study along with the F. carica for their comparative anti-cancer potential and the involved molecular mechanism. Triple-negative breast cancer (TNBC) derived MDA-MB-231 cells were used in the study. MTT and morphological studies indicated that the latex of both plants has anti-proliferative effects. To know their anti-metastatic effects, a wound-healing assay was performed. Both species were able to maintain the wound size compared to the untreated cells indicating their anti-metastatic effects. Using a DNA damage assay kit, we found that both fig species have genotoxic and cytotoxic effects in MDA-MB-231 cells compared to the untreated control. To know the potential molecular mechanism involved, we used a human kinase array kit. We found that ERK2, CREB, and AKT2 were downregulated after treatment the MDA-Mb-231 cells with the latex of F. carica. We assumed that F. salicifolia will also affect the same pathways, however after confirmation through real-time (RT)-PCR, downregulations of the above mentioned pathways were confirmed in cells treated with F. carica latex, however, in cells treated with F. salicifolia the selected genes were upregulated at the transcriptional level. We conclude that latex of both species of ficus have anti-cancer effects in MDA-MB-231 cells, however differ in their level of toxicity and the mechanism of action at the molecular level.
机译:Ficus Latex富含多酚化合物,因此被认为是抗氧化剂和抗增殖性。在Ficus Carica(常见图)上有许多研究,而Ficus Salicifolia则较少。 F. Salicifolia在苛刻的干燥环境中增长,因此在目前的研究中选择了它的乳胶,以及F. Carica的比较抗癌潜力和所涉及的分子机制。研究中使用三阴性乳腺癌(TNBC)衍生的MDA-MB-231细胞。 MTT和形态学研究表明,两种植物的乳胶具有抗增殖的作用。为了了解它们的抗转移效果,进行伤口愈合测定。与未处理的细胞相比,两种物种能够保持伤口尺寸,表明其抗转移效应。使用DNA损伤测定试剂盒,我们发现,与未处理的对照相比,两个图物种在MDA-MB-231细胞中具有遗传毒性和细胞毒性作用。要知道所涉及的潜在分子机制,我们使用了人类激酶阵列试剂盒。我们发现在用F. Carica的乳胶治疗MDA-MB-231细胞后下调ERK2,CREB和AKT2。我们假设F. Salicifolia也会影响相同的途径,但是通过实时(RT)-PCR在确认后,在用F.Carica乳胶治疗的细胞中证实了上述途径的下调,但是在用F处理的细胞中。Salicifolia在转录水平上上调所选基因。我们的结论是榕树的两个物种的乳胶在MDA-MB-231细胞抗癌作用,但其毒性程度和行动在分子水平的机制不同。

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