Kumar Bharath S
Mass Spectrom (Tokyo). 2023;12(1):A0129. doi: 10.5702/massspectrometry.A0129. Epub 2023 Sep 28.
Cancer metabolic variability has a significant impact on both diagnosis and treatment outcomes. The discovery of novel biological indicators and metabolic dysregulation, can significantly rely on comprehension of the modified metabolism in cancer, is a research focus. Tissue histology is a critical feature in the diagnostic testing of many ailments, such as cancer. To assess the surgical margin of the tumour on patients, frozen section histology is a tedious, laborious, and typically arbitrary method. Concurrent monitoring of ion images in tissues facilitated by the latest advancements in mass spectrometry imaging (MSI) is far more efficient than optical tissue image analysis utilized in conventional histopathology examination. This article focuses on the "desorption electrospray ionization (DESI)-MSI" technique's most recent advancements and uses in cancer research. DESI-MSI can provide wealthy information based on the variances in metabolites and lipids in normal and cancerous tissues by acquiring ion images of the lipid and metabolite variances on biopsy samples. As opposed to a systematic review, this article offers a synopsis of the most widely employed cutting-edge DESI-MSI techniques in cancer research.
癌症代谢变异性对诊断和治疗结果都有重大影响。发现新的生物指标和代谢失调,很大程度上依赖于对癌症中改变的代谢的理解,这是一个研究重点。组织组织学是许多疾病(如癌症)诊断测试中的关键特征。为了评估患者肿瘤的手术切缘,冷冻切片组织学是一种繁琐、费力且通常具有主观性的方法。质谱成像(MSI)的最新进展促进了对组织中离子图像的同步监测,这比传统组织病理学检查中使用的光学组织图像分析效率高得多。本文重点介绍“解吸电喷雾电离(DESI)-MSI”技术的最新进展及其在癌症研究中的应用。DESI-MSI可以通过获取活检样本上脂质和代谢物差异的离子图像,基于正常组织和癌组织中代谢物和脂质的差异提供丰富信息。与系统综述不同,本文概述了癌症研究中最广泛使用的前沿DESI-MSI技术。