下调miR- 125b和miR-365a-3p诱导Nalm-6细胞中灵芝酸- a的凋亡

T. G
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摘要

急性淋巴细胞白血病是儿童中最常见的白血病,尽管有普遍的治疗方法,但其复发率很高。灵芝酸- a (GAA)是灵芝中的一种生物活性化合物,具有潜在的抗白血病作用。本研究旨在探讨GAA提取物对BCP-ALL细胞株microRNA表达及诱导凋亡的影响。在本病例对照研究中,分别用GAA提取物和l -天冬酰胺酶处理NALM-6细胞。分别用MTT和流式细胞术检测细胞活力和凋亡率。此外,与l -天冬酰胺酶相比,我们使用RT-PCR研究了GAA对miR-125b和miR-365a-3p表达的影响。GAA提取物对细胞生长的抑制作用呈剂量和时间依赖性。此外,与l -天冬酰胺酶相比,GAA提取物显著诱导细胞凋亡(P=0.0021比P=0.0112)。结果显示,GAA处理Nalm-6细胞显著降低miR-125b (P< 0.0001)和miR-365a-3p (P= 0.0001)的表达。此外,研究表明,在ga处理的Nalm-6细胞中,miR-125b和miR-365a-3p的下调幅度高于l -天冬酰胺酶处理的Nalm-6细胞。根据研究结果,GAA提取物具有抗白血病作用,可以作为一种有希望的药物,在所有治疗中副作用较小。
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Apoptosis Induction of Ganoderic Acid-A by Downregulating miR- 125b and miR-365a-3p in Nalm-6 cells
Acute lymphoblastic leukemia is the most common leukemia in children, which is associated with a high relapse rate despite prevalent therapies. Ganoderic acid-A (GAA) is one of the bioactive compounds of Ganoderma lucidum, which possesses potential antileukemic properties. This study aimed to investigate the effect of the GAA extract on the expression of microRNA and the apoptosis induction in the BCP-ALL cell line. In this case-control study, NALM-6 Cells were treated with the GAA extract and L-asparaginase separately. The cell viability and apoptosis rates were examined using MTT and flow cytometry, respectively. Moreover, the effect of the GAA on the expression of miR-125b and miR-365a-3p, in comparison to L-asparaginase, was studied using RT-PCR. The GAA extract inhibited the cell growth in a dose- and time-dependent manner. Moreover, the GAA extract significantly induced apoptosis compared to L-asparaginase (P=0.0021 vs. P=0.0112). The results showed that the treatment of Nalm-6 cells with GAA significantly reduced the expression of miR-125b (P< 0.0001) and miR-365a-3p (P= 0.0001). Furthermore, it was demonstrated that the downregulation of miR-125b and miR-365a-3p was surprisingly higher in the GA-treated Nalm-6 cells than in L-asparaginase-treated Nalm-6 cells. According to the findings, the GAA extract has antileukemic effects and can be used as a promising agent with fewer side effects in all treatments.
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