Wu Junhan, Fang Xinqi, Zhang Haoyue, Xu Hao, Wong Peter Jih Cheng, Mao Ying, Zhang Wenpeng, Ouyang Zheng, Hua Wei
State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing 100084, China.
Department of Neurosurgery, Huashan Hospital, Fudan University, Shanghai, 200040, China.
Theranostics. 2025 Jul 24;15(16):8137-8149. doi: 10.7150/thno.113336. eCollection 2025.
While mass spectrometry (MS) is known for being capable of analyzing a wide range of biomarkers, its usages in clinical settings have been hindered by the stringent requirements for operating the MS analysis system as well as performing the analytical procedure at the point of care (POC). We have developed a miniature MS system and extremely simplified analytical protocols for POC analysis of tumors. It enabled comprehensive metabolite profiling with brain tissue biopsy, which allowed accurate and real-time diagnosis of brain tumors and guiding of surgical resection strategy. A miniature linear ion trap MS system with direct sampling ionization for tissue biopsy analysis was developed, which is suitable for performing real-time analysis in a surgical room. A segment scan method was developed to allow coverage of a wide range of metabolites while providing adequate sensitivity. An extremely simplified protocol was developed to allow a real-time analysis of the tissue samples taken from patients. The development and validation of this method involved 137 brain tissue samples from 109 patients. The miniature MS system could operate on battery without requiring compressed gas or large amounts of solvents like traditional MS analysis systems in lab. With optimized sampling and scanning method, 183 metabolites in the range of m/z 50 - 500 could be identified from human brain tissues after a 2 min analysis time. Metabolomic features were extracted that allowed distinctions between glioma and normal tissues (at an area under the curve (AUC) of 0.932), isocitrate dehydrogenase (IDH) mutant and wildtype gliomas (at an AUC of 1.000), and IDH mutant gliomas and glioblastoma (at an AUC of 1.000). A comparison study was also carried out between fresh and stored tissue samples and decrease in abundance was observed for metabolites such as glutamate and N-acetylaspartic acid, which indicates the importance of real-time analysis of the biological samples for clinical applications. This study shows the potential of performing intraoperative or bedside MS analysis of a panel of metabolomic biomarkers in real time to facilitate the diagnosis of the disease as well as the decision making for surgery or therapy. Miniature mass spectrometry system with direct sampling ionization method serves as a valid platform for transferring MS analysis from traditional laboratories to clinical settings.
虽然质谱(MS)以能够分析多种生物标志物而闻名,但其在临床环境中的应用受到操作MS分析系统以及在护理点(POC)进行分析程序的严格要求的阻碍。我们开发了一种微型MS系统和极其简化的分析方案,用于肿瘤的POC分析。它能够通过脑组织活检进行全面的代谢物谱分析,从而实现脑肿瘤的准确实时诊断并指导手术切除策略。开发了一种用于组织活检分析的具有直接采样电离功能的微型线性离子阱MS系统,该系统适用于在手术室进行实时分析。开发了一种分段扫描方法,以在提供足够灵敏度的同时覆盖广泛的代谢物。开发了一种极其简化的方案,以允许对取自患者的组织样本进行实时分析。该方法的开发和验证涉及来自109名患者的137个脑组织样本。微型MS系统可以使用电池运行,无需像实验室中的传统MS分析系统那样使用压缩气体或大量溶剂。通过优化采样和扫描方法,在2分钟的分析时间后,可以从人脑组织中鉴定出m/z 50 - 500范围内的183种代谢物。提取了代谢组学特征,这些特征能够区分胶质瘤和正常组织(曲线下面积(AUC)为0.932)、异柠檬酸脱氢酶(IDH)突变型和野生型胶质瘤(AUC为1.000)以及IDH突变型胶质瘤和成胶质细胞瘤(AUC为1.000)。还对新鲜和储存的组织样本进行了比较研究,观察到谷氨酸和N-乙酰天门冬氨酸等代谢物的丰度下降,这表明生物样本实时分析在临床应用中的重要性。这项研究显示了实时进行一组代谢组学生物标志物的术中或床边MS分析以促进疾病诊断以及手术或治疗决策的潜力。具有直接采样电离方法的微型质谱系统是将MS分析从传统实验室转移到临床环境的有效平台。