肺癌液体活检:四种新兴技术和潜在的临床应用。

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL
Dimple Chudasama, Periklis Katopodis, Nick Stone, Jennifer Haskell, Hannah Sheridan, Benjamin Gardner, Howard Urnovitz, Ekkehard Schuetz, Julia Beck, Marcia Hall, James Barr, Cristina Sisu, Alexandra Rice, Andreas Polychronis, Vladimir Anikin, Emmanouil Karteris
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引用次数: 12

摘要

背景:液体活检提供了一种有前途的替代组织样本,提供非侵入性诊断方法或疾病演变的系列监测。然而,某些挑战仍然存在,液体活检的全部潜力尚未实现。在这里,我们报告了几种方法,利用循环肿瘤细胞(CTC)枚举和表征、转录组学、拉曼光谱和肺癌(LC)患者血液样本的拷贝数不稳定性(CNI)评分来询问液体活检。方法:我们选择LC;由于它仍然是全球癌症相关死亡的最常见原因,因此需要开发新的非侵入性诊断/预后技术。使用RNA-seq评估基因表达的变化,使用成像流式细胞仪ImageStream评估ctc的基因表达变化。我们还研究了配对组织/ctDNA的CNI评分。利用拉曼光谱技术提供了等离子体样品的化学指纹图谱。结果:LC患者均检出ctc (n = 10)。我们观察到LC患者(n = 10)的CTC水平显著高于对照组(n = 21)。在2例患者的组织和血浆中发现了类似的CNI,其中CNI评分越高,预后越差。LC患者(n = 20)与对照组(n = 10)相比,拉曼光谱(类胡萝卜素浓度)发生了显著变化。RNA-seq分析显示,LC患者与对照组在LC组织和血液样本中有21个基因的差异表达。结论:与单一组织活检相比,液体活检可能提供更全面的疾病图像。CTC计数对LC患者是可行且敏感的。CTCs的分子谱分析也可以从全血中得到。CNI分数和拉曼光谱需要进一步研究。在更大的LC队列中探索这些检测方法的进一步工作正在进行中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Liquid Biopsies in Lung Cancer: Four Emerging Technologies and Potential Clinical Applications.

Liquid Biopsies in Lung Cancer: Four Emerging Technologies and Potential Clinical Applications.

Liquid Biopsies in Lung Cancer: Four Emerging Technologies and Potential Clinical Applications.

Liquid Biopsies in Lung Cancer: Four Emerging Technologies and Potential Clinical Applications.

Background: Liquid biopsies offer a promising alternative to tissue samples, providing non-invasive diagnostic approaches or serial monitoring of disease evolution. However, certain challenges remain, and the full potential of liquid biopsies has yet to be reached. Here we report several methodological approaches to interrogate liquid biopsies using circulating tumour cell (CTC) enumeration and characterisation, transcriptomics, Raman spectroscopy, and copy number instability (CNI) scores using blood samples of lung cancer (LC) patients. Methods: We choose LC; since it still is the most common cause of cancer-related mortality worldwide, and therefore there is a need for development of new non-invasive diagnostic/prognostic technologies. Changes in gene expression were assessed using RNA-seq, and in CTCs using ImageStream, an imaging flow-cytometer. CNI scores, from paired tissue/ctDNA were also explored. Raman spectroscopy was used to provide chemical fingerprints of plasma samples. Results: CTCs were detected in all LC patients (n = 10). We observed a significant increase in CTC levels in LC patients (n = 10) compared to controls (n = 21). A similar CNI was noted in the tissue and plasma of 2 patients, where higher CNI scores corresponded with poorer outcome. Significant changes in Raman spectra (carotenoid concentrations) were noted in LC patients (n = 20) compared to controls (n = 10). RNA-seq revealed differential expression of 21 genes between LC cases and controls in both LC tissue and blood samples. Conclusions: Liquid biopsies can potentially provide a more comprehensive picture of the disease compared to a single tissue biopsy. CTC enumeration is feasible and sensitive for LC patients. Molecular profiling of CTCs is also possible from total blood. CNI scores and Raman spectra require further investigation. Further work is being undertaken to explore these methods of detection in a larger LC cohort.

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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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