Life Sciences and Medicine, University of Science and Technology of China, Hefei, China.
National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, China.
Rapid Commun Mass Spectrom. 2024 Jun 30;38(12):e9755. doi: 10.1002/rcm.9755.
Atmospheric pressure matrix-assisted laser desorption/ionization (AP-MALDI) mass spectrometry has enabled the untargeted analysis and imaging of neuropeptides and proteins in biological tissues under ambient conditions. Sensitivity in AP-MALDI can be improved by using sample-specific preparation methods.
A comprehensive and detailed optimization strategy including instrument parameters, matrix spraying and sample tissue washing pretreatment was implemented to enhance the sensitivity and coverage of neuropeptides in mouse pituitary tissues by commercial AP-MALDI mass spectrometry imaging (MSI).
The sensitivity of a commercial AP-MALDI system for endogenous neuropeptides in mouse pituitary was enhanced by up to 15.2-fold by shortening the transmission gap from the sample plate to the inlet, attaching copper adhesive tape to an indium tin oxide-coated glass slide, optimizing the matrix spray solvent and using sample tissue washing pretreatment. Following careful optimization, the distributions of nine endogenous neuropeptides were successfully visualized in the pituitary. Furthermore, the quantitative capability of AP-MALDI for neuropeptides was evaluated and the concentrations of neuropeptides oxytocin and vasopressin in the pituitary posterior lobe were increased approximately twofold under hypertonic saline stress.
Mouse pituitary neuropeptides have emerged as important signaling molecules due to their role in stress response. This work indicates the potential of modified AP-MALDI as a promising AP MSI method for in situ visualization and quantification of neuropeptides in complex biological tissues.
大气压基质辅助激光解吸/电离(AP-MALDI)质谱分析能够在环境条件下对生物组织中的神经肽和蛋白质进行非靶向分析和成像。通过使用特定于样品的制备方法,可以提高 AP-MALDI 的灵敏度。
通过实施全面详细的优化策略,包括仪器参数、基质喷雾和样品组织清洗预处理,以提高商业 AP-MALDI 质谱成像(MSI)中检测小鼠垂体组织中神经肽的灵敏度和覆盖范围。
通过缩短从样品板到入口的传输间隙、在铟锡氧化物涂层玻璃幻灯片上粘贴铜胶带、优化基质喷雾溶剂并使用样品组织清洗预处理,将商业 AP-MALDI 系统检测内源性神经肽的灵敏度提高了 15.2 倍。经过仔细优化,成功地在垂体中可视化了九种内源性神经肽的分布。此外,还评估了 AP-MALDI 对神经肽的定量能力,在高渗盐水应激下,垂体后叶神经肽催产素和血管加压素的浓度增加了约两倍。
由于在应激反应中的作用,小鼠垂体神经肽已成为重要的信号分子。这项工作表明,经过改进的 AP-MALDI 具有成为原位可视化和定量复杂生物组织中神经肽的有前途的 AP MSI 方法的潜力。