典型NFκB通路在纳米姜黄素诱导巨核细胞分化中的作用。

Q3 Medicine
Seyedeh Sahar Mortazavi Farsani, Dina Sadeghizadeh, Sadegh Babashah, Fariba Rad, Majid Sadeghizadeh
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引用次数: 0

摘要

背景:巨核形成的特点是渐进式多倍体化和巨核细胞标记物的表达。许多转录因子和生理信号通路调节这一现象。我们在前期的研究中已经发现纳米姜黄素药物对K562细胞系和造血干细胞的巨核细胞分化诱导作用。K562细胞是典型的慢性髓性白血病(CML)细胞,具有抗凋亡能力,表达bcr-abl融合基因。这些细胞有分化为红细胞和巨核细胞的潜力。众所周知,姜黄素是一种具有改变各种细胞中NFκB活性的强大潜力的成分。NFκB通路调控多种基因,如凋亡和免疫应答基因。本研究试图评估纳米姜黄素在K562细胞系巨核形成过程中调控nf - κ b通路的可能作用。材料与方法:采用流式细胞术和显微成像技术检测纳米姜黄素处理的K562细胞巨核细胞标志物的表达和表型改变。采用western blot检测不同时间纳米姜黄素诱导K562细胞巨核生成过程中NFκB RelA (p65)亚基的核表达水平。采用定量RT-PCR法分析不同时间纳米姜黄素处理的K562细胞中NFκB靶基因c-MYC、BAX、NQO1的表达情况。结果:研究表明,纳米姜黄素可引起巨核细胞分化过程中NFκB活性的短暂升高,随后c-MYC、BAX和NQO1靶基因的表达发生变化。结论:在体外和体内巨核生成实验中,nf - κ b途径可被认为是纳米姜黄素诱导巨核细胞分化的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Involvement of Canonical NFκB Pathway in Megakaryocyte Differentiation Induction by Nanocurcumin.

The Involvement of Canonical NFκB Pathway in Megakaryocyte Differentiation Induction by Nanocurcumin.

The Involvement of Canonical NFκB Pathway in Megakaryocyte Differentiation Induction by Nanocurcumin.

The Involvement of Canonical NFκB Pathway in Megakaryocyte Differentiation Induction by Nanocurcumin.

Background: Megakaryopoiesis is characterized by progressive polyploidization and the expression of megakaryocytic markers. Numerous transcription factors and physiological signaling pathways regulate this phenomenon. Megakaryocyte differentiation induction in the K562 cell line and hematopoietic stem cells via nanocurcumin drug has been identified in our previous study. K562 cells are typical Chronic Myelogenous Leukemia (CML) cells that are resistant to apoptosis and express the bcr-abl fusion gene. These cells have the potential to differentiate into erythrocytes and megakaryocytes. Curcumin is well known as a component with strong potential to alter NFκB activity in various cells. NFκB pathway regulates various genes such as apoptotic and immune response genes. The current study attempted to evaluate the possible role of nanocurcumin in NFκB pathway regulation during the megakaryopoiesis process in the K562 cell line. Materials and Methods: Megakaryocyte markers expression and phenotype alteration of nanocurcumin-treated K562 cells have been detected by flow cytometry and microscopy imaging. The nuclear level of the RelA (p65) subunit of NFκB was determined by western blot test in K562 cells during megakaryopoiesis induction via nanocurcumin treatment at different times. The expression of NFκB target genes including c-MYC, BAX, and NQO1 was also analyzed in nanocurcumin-treated K562 cells by quantitative RT-PCR assay at different times. Results: The study has shown that nanocurcumin causes an increase in NFκB activity transiently during megakaryocyte differentiation, followed by a change in the expression of c-MYC, BAX, and NQO1 target genes. Conclusion: The NFκB pathway can be considered a new pathway for inducing megakaryocyte differentiation by nanocurcumin in vitro and in vivo megakaryopoiesis experiments.

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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
32
审稿时长
12 weeks
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