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荧光引导手术切除的人脑肿瘤的互补分子和元素质谱成像。

Complementary Molecular and Elemental Mass-Spectrometric Imaging of Human Brain Tumors Resected by Fluorescence-Guided Surgery.

机构信息

Institute of Inorganic and Analytical Chemistry , University of Münster , Corrensstraße 30 , 48149 Münster , Germany.

Institute of Neuropathology , University Hospital Münster , Pottkamp 2 , 48149 Münster , Germany.

出版信息

Anal Chem. 2018 Oct 16;90(20):12253-12260. doi: 10.1021/acs.analchem.8b03516. Epub 2018 Oct 2.

Abstract

Fluorescence-guided surgery (FGS) has been established as a powerful technique for glioblastoma resection. After oral application of the prodrug 5-aminolevulinic acid (5-ALA), protoporphyrin IX (PpIX) is formed as an intermediate of the heme-biosynthesis cascade and accumulates within the tumor. By intraoperative fluorescence microscopy, the specific PpIX fluorescence can be used to differentiate the tumor from healthy brain tissue. To investigate possible limitations of fluorescence diagnosis, the complementary use of molecular and elemental mass-spectrometry imaging (MSI) is presented. Matrix-assisted laser-desorption-ionization mass spectrometry (MALDI-MS) is used to examine the distribution of PpIX and heme b in human brain tumors. MALDI-MS/MS imaging is performed to validate MS data and improve the signal-to-noise ratio (S/N). Comparing the imaging results with histological evaluation, increased PpIX accumulation in areas of high tumor-cell density is observed. Heme b accumulation are only found in areas of blood vessels and hemorrhage, confirming the hampered transformation from PpIX to heme b in glioblastoma tissue. Investigation of non-neoplastic brain tissue and glioblastoma resected without external 5-ALA administration as control samples with true-negative fluorescence verified the absence of PpIX accumulation. Analysis of necrotic tumor tissue and gliosarcoma, one rare type of glioma appearing nonfluorescent during FGS, as case examples with false-negative-fluorescence diagnosis, revealed the absence of significant amounts of PpIX, indicating an impairment of PpIX formation. Molecular analysis is complemented by quantitative laser ablation-inductively coupled plasma (LA-ICP) MSI correlating heme b and Fe distribution. Mathematical pixel-by-pixel correlation of molecular and elemental data revealed a positive correlation with heteroscedasticity for the spatially resolved heme b signal intensities and Fe concentrations.

摘要

荧光引导手术(FGS)已被确立为一种强大的胶质母细胞瘤切除技术。在口服前体药物 5-氨基酮戊酸(5-ALA)后,原卟啉 IX(PpIX)作为血红素生物合成途径的中间产物形成,并在肿瘤内积累。通过术中荧光显微镜检查,可以利用肿瘤特异性的 PpIX 荧光来区分肿瘤与健康脑组织。为了研究荧光诊断的可能局限性,提出了分子和元素质谱成像(MSI)的互补使用。基质辅助激光解吸电离质谱(MALDI-MS)用于检测人脑肿瘤中 PpIX 和血红素 b 的分布。进行 MALDI-MS/MS 成像以验证 MS 数据并提高信号与噪声比(S/N)。将成像结果与组织学评估进行比较,观察到 PpIX 在高肿瘤细胞密度区域的积累增加。血红素 b 积累仅在血管和出血区域发现,证实了在胶质母细胞瘤组织中 PpIX 向血红素 b 的转化受阻。对无外部 5-ALA 给药的非肿瘤性脑组织和切除的胶质母细胞瘤作为真阴性荧光的对照样本进行研究,证实了 PpIX 积累的不存在。对坏死肿瘤组织和神经胶质瘤肉瘤(一种在 FGS 期间表现为非荧光的罕见胶质瘤类型)的分析作为假阴性荧光诊断的病例示例,显示 PpIX 含量明显减少,表明 PpIX 形成受损。分子分析通过定量激光烧蚀电感耦合等离子体质谱(LA-ICP)MSI 得到补充,该技术可对血红素 b 和 Fe 分布进行相关分析。分子和元素数据的像素到像素的数学相关性表明,血红素 b 信号强度和 Fe 浓度的空间分辨率存在正相关关系,且存在异方差性。

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