乳腺癌细胞系的染色体外DNA:检测和表征。

IF 2 3区 工程技术 Q2 ANATOMY & MORPHOLOGY
Shadira Anindieta Irdianto, Fadhillah Fadhillah, Retno Lestari, Fadilah Fadilah, Anom Bowolaksono, Astari Dwiranti
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引用次数: 0

摘要

这项研究深入研究了乳腺癌中染色体外DNA (ecDNA)的有趣世界,揭示了它在癌症的侵袭性和遗传变异性中的关键作用。ecDNA是染色体外发现的一种环状DNA,已知通过增加癌基因表达在癌症进展中发挥重要作用。聚焦于两种不同的细胞系,MDA-MB-231(三阴性)和MCF-7 (Luminal-A),我们利用先进的显微镜和荧光技术来检测和表征ecDNA。我们的研究结果揭示了一个明显的差异:以高转移潜力而闻名的MDA-MB-231细胞表现出惊人的ecDNA丰度,表现为双分钟和单形式,具有强烈的荧光信号。相比之下,侵袭性较低的MCF-7细胞携带的ecDNA明显较少。这种差异突出了ecDNA作为癌症进展的关键参与者和新疗法的有希望的靶点的潜力。这项研究揭示了驱动乳腺癌的看不见的基因力量,并为癌症治疗的新策略打开了大门。进一步研究ecDNA的形成机制及其在不同乳腺癌亚型中的作用是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extrachromosomal DNA in Breast Cancer Cell Lines: Detection and Characterization.

This study delves into the intriguing world of extrachromosomal DNA (ecDNA) in breast cancer, uncovering its pivotal role in cancer's aggressiveness and genetic variability. ecDNA, a form of circular DNA found outside chromosomes, is known to play a significant role in cancer progression by increasing oncogene expression. Focusing on two contrasting cell lines, MDA-MB-231 (triple-negative) and MCF-7 (Luminal-A), we utilized advanced microscopy and fluorescence techniques to detect and characterize ecDNA. Our findings reveal a stark difference: MDA-MB-231 cells, known for their high metastatic potential, exhibit a striking abundance of ecDNA, manifested as double minutes and single form with intense fluorescence signals. In contrast, the less aggressive MCF-7 cells harbor significantly fewer ecDNA. This disparity highlights the potential of ecDNA as a key player in cancer progression and a promising target for novel therapies. This research sheds light on the unseen genetic forces driving breast cancer and opens the door to new strategies in cancer treatment. Further research is necessary to understand the mechanisms of ecDNA formation and its role in different breast cancer subtypes.

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来源期刊
Microscopy Research and Technique
Microscopy Research and Technique 医学-解剖学与形态学
CiteScore
5.30
自引率
20.00%
发文量
233
审稿时长
4.7 months
期刊介绍: Microscopy Research and Technique (MRT) publishes articles on all aspects of advanced microscopy original architecture and methodologies with applications in the biological, clinical, chemical, and materials sciences. Original basic and applied research as well as technical papers dealing with the various subsets of microscopy are encouraged. MRT is the right form for those developing new microscopy methods or using the microscope to answer key questions in basic and applied research.
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