Suppr超能文献

高级别胶质瘤治疗反应监测生物标志物:关于支持在临床中使用先进MRI技术的证据以及最新的从 bench 到 bedside 进展的立场声明。第2部分:光谱学、化学交换饱和、多参数成像和放射组学。

High-Grade Glioma Treatment Response Monitoring Biomarkers: A Position Statement on the Evidence Supporting the Use of Advanced MRI Techniques in the Clinic, and the Latest Bench-to-Bedside Developments. Part 2: Spectroscopy, Chemical Exchange Saturation, Multiparametric Imaging, and Radiomics.

作者信息

Booth Thomas C, Wiegers Evita C, Warnert Esther A H, Schmainda Kathleen M, Riemer Frank, Nechifor Ruben E, Keil Vera C, Hangel Gilbert, Figueiredo Patrícia, Álvarez-Torres Maria Del Mar, Henriksen Otto M

机构信息

School of Biomedical Engineering and Imaging Sciences, King's College London, St. Thomas' Hospital, London, United Kingdom.

Department of Neuroradiology, King's College Hospital NHS Foundation Trust, London, United Kingdom.

出版信息

Front Oncol. 2022 Feb 28;11:811425. doi: 10.3389/fonc.2021.811425. eCollection 2021.

Abstract

OBJECTIVE

To summarize evidence for use of advanced MRI techniques as monitoring biomarkers in the clinic, and to highlight the latest bench-to-bedside developments.

METHODS

The current evidence regarding the potential for monitoring biomarkers was reviewed and individual modalities of metabolism and/or chemical composition imaging discussed. Perfusion, permeability, and microstructure imaging were similarly analyzed in Part 1 of this two-part review article and are valuable reading as background to this article. We appraise the clinic readiness of all the individual modalities and consider methodologies involving machine learning (radiomics) and the combination of MRI approaches (multiparametric imaging).

RESULTS

The biochemical composition of high-grade gliomas is markedly different from healthy brain tissue. Magnetic resonance spectroscopy allows the simultaneous acquisition of an array of metabolic alterations, with choline-based ratios appearing to be consistently discriminatory in treatment response assessment, although challenges remain despite this being a mature technique. Promising directions relate to ultra-high field strengths, 2-hydroxyglutarate analysis, and the use of non-proton nuclei. Labile protons on endogenous proteins can be selectively targeted with chemical exchange saturation transfer to give high resolution images. The body of evidence for clinical application of amide proton transfer imaging has been building for a decade, but more evidence is required to confirm chemical exchange saturation transfer use as a monitoring biomarker. Multiparametric methodologies, including the incorporation of nuclear medicine techniques, combine probes measuring different tumor properties. Although potentially synergistic, the limitations of each individual modality also can be compounded, particularly in the absence of standardization. Machine learning requires large datasets with high-quality annotation; there is currently low-level evidence for monitoring biomarker clinical application.

CONCLUSION

Advanced MRI techniques show huge promise in treatment response assessment. The clinical readiness analysis highlights that most monitoring biomarkers require standardized international consensus guidelines, with more facilitation regarding technique implementation and reporting in the clinic.

摘要

目的

总结在临床中使用先进磁共振成像(MRI)技术作为监测生物标志物的证据,并突出从实验室到临床的最新进展。

方法

回顾了有关监测生物标志物潜力的现有证据,并讨论了代谢和/或化学成分成像的各个模式。在这篇分两部分的综述文章的第一部分中,对灌注、通透性和微观结构成像进行了类似分析,作为本文的背景阅读很有价值。我们评估了所有个体模式的临床适用性,并考虑了涉及机器学习(影像组学)和MRI方法组合(多参数成像)的方法。

结果

高级别胶质瘤的生化组成与健康脑组织明显不同。磁共振波谱允许同时获取一系列代谢改变,基于胆碱的比率在治疗反应评估中似乎始终具有鉴别性,尽管这是一项成熟技术,但仍存在挑战。有前景的方向涉及超高场强、2-羟基戊二酸分析以及非质子核的使用。内源性蛋白质上的不稳定质子可以通过化学交换饱和转移进行选择性靶向,以获得高分辨率图像。酰胺质子转移成像临床应用的证据已经积累了十年,但需要更多证据来确认化学交换饱和转移作为监测生物标志物的用途。多参数方法,包括纳入核医学技术,结合了测量不同肿瘤特性的探针。尽管可能具有协同作用,但每个个体模式的局限性也可能会叠加,特别是在缺乏标准化的情况下。机器学习需要具有高质量注释的大型数据集;目前关于监测生物标志物临床应用的证据水平较低。

结论

先进的MRI技术在治疗反应评估中显示出巨大的前景。临床适用性分析强调,大多数监测生物标志物需要标准化的国际共识指南,在临床技术实施和报告方面需要更多便利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c79/8948428/42e3f0018fce/fonc-11-811425-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验