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mRNAs biomarker related to the control of proliferation and cell death in HepG2/C3A spheroid and monolayer cultures treated with piperlongumine

机译:MRNA生物标志物与用哌隆治疗的HepG2 / C3A球体和单层培养物中的增殖和细胞死亡的控制

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Cell culture (spheroid and 2D monolayer cultures) is an essential tool in drug discovery. Piperlongumine (PLN), a naturally occurring alkaloid present in the long pepper (Piper longum), has been implicated in the regulation of GSTP1 activity. In vitro treatment of cancer cells with PLN increases ROS (reactive oxygen species) levels and induces cell death, but its molecular mode of action has not been entirely elucidated. In this study, we correlated the antiproliferative effects (2D and 3D cultures) of PLN (CAS 20069–09-4, Sigma-Aldrich) with morphological and molecular analyses in HepG2/C3A cell line. We performed assays for cytotoxicity (MTT), comet assays for genotoxicity, induction of apoptosis, analysis of the cell cycle phase, and analysis of the membrane integrity by flow cytometry. Relative expression of mRNA of genes related to proliferation, apoptosis, cell cycle control, metabolism of xenobiotics, and reticulum endoplasmic stress. PLN reduced the cell proliferation by the cell cycle arrest in G2/M. Changes in the mRNA expression for CDKN1A (4.9x) and CCNA2 (0.5x) of cell cycle control genes were observed. Cell death occurred due to apoptosis, which may have been induced by increased expression of proapoptotic mRNAs (BAK1, 3.1x; BBC3, 2.4x), and by an increase in 9 and 3/7 active caspases. PLN induced cellular injury by ROS generation and DNA damage. DNA damage induced MDM2 signaling (3.0x) associated with the appearance of the monastral spindle in mitosis. Genes associated with ROS degradation also showed increased mRNA expression (GSR, 2.0x; SOD1, 2.1x). PLN induce endoplasmic reticulum stress with the increase in the mRNA expression of ERN1 (4.5x) and HSPA14 (2.2x). The xenobiotic metabolism showed increased mRNA expression for CYP1A2 (2.2x) and CYP3A4 (3.4x). In addition to 2D culture, PLN treatment also inhibited the growth of 3D culture (spheroids). Thus, the findings of our study show that several gene expression biomarkers (mRNAs) and monastral spindle formation indicated the many pathways of damage induced by PLN treatment that contributes to its antiproliferative effects.
机译:细胞培养(球状和2D单层培养物)是药物发现中的必要工具。 Piperlongumine(PLN)是一种在长辣椒(吹笛者Longum)中存在的天然存在的生物碱,已经涉及GSTP1活性的调节。用PLN的癌细胞体外治疗增加ROS(反应性氧物质)水平并诱导细胞死亡,但其分子的作用模式尚未完全阐明。在这项研究中,我们将PLN(CAS 20069-09-4,Sigma-Aldrich)的抗增殖效应(2D和3D培养物相关联于HepG2 / C3A细胞中的形态学和分子分析。我们对细胞毒性(MTT)进行了测定,用于遗传毒性的彗星测定,诱导细胞凋亡,细胞周期阶段的分析,并通过流式细胞术分析膜完整性。与增殖,细胞凋亡,细胞周期控制,异种菌素代谢相关的基因mRNA的相对表达,以及网内质应力。 PLN通过G2 / m的细胞周期停滞来降低细胞增殖。观察到CDKN1A(4.9x)和CCNA2(0.5x)细胞周期控制基因的mRNA表达的变化。由于细胞凋亡,细胞死亡发生,这可能通过增加促孔凋亡MRNA的表达(BAK1,3.1X; BBC3,2.4X)的表达,并通过9和3/7活性胱天膜的增加。 PLN通过ROS生成和DNA损伤诱发细胞损伤。 DNA损伤诱导与丝分裂中蒙斯罗拉纺织外观相关的MDM2信号(3.0x)。与ROS降解相关的基因也显示出增加的mRNA表达(GSR,2.0x; SOD1,2.1X)。 PLN诱导内质网胁迫随ERN1(4.5x)和Hspa14(2.2x)的mRNA表达的增加。异丙酚代谢显示CYP1A2(2.2X)和CYP3A4(3.4X)的MRNA表达增加。除了2D培养外,PLN治疗还抑制了3D培养(球状体)的生长。因此,我们的研究结果表明,几种基因表达生物标志物(MRNA)和猴子主轴形成表明了PLN治疗诱导的损伤的许多途径,这有助于其抗增殖作用。

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