Zink Katherine E, Dean Matthew, Burdette Joanna E, Sanchez Laura M
Department of Medicinal Chemistry and Pharmacognosy, University of Illinois at Chicago.
Department of Medicinal Chemistry and Pharmacognosy, University of Illinois at Chicago; Department of Animal Science, University of Illinois at Urbana-Champaign.
J Vis Exp. 2019 Apr 3(146). doi: 10.3791/59490.
Imaging mass spectrometry (IMS) has routinely been applied to three types of samples: tissue sections, spheroids, and microbial colonies. These sample types have been analyzed using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) to visualize the distribution of proteins, lipids, and metabolites across the biological sample of interest. We have developed a novel sample preparation method that combines the strengths of the three previous applications to address an underexplored approach for identifying chemical communication in cancer, by seeding mammalian cell cultures into agarose in coculture with healthy tissues followed by desiccation of the sample. Mammalian tissue and cells are cocultured in close proximity allowing chemical communication via diffusion between the tissue and cells. At specific time points, the agarose-based sample is dried in the same manner as microbial colonies prepared for IMS analysis. Our method was developed to model the communication between high grade serous ovarian cancer derived from the fallopian tube as it interacts with the ovary during metastasis. Optimization of the sample preparation resulted in the identification of norepinephrine as a key chemical component in the ovarian microenvironment. This newly developed method can be applied to other biological systems that require an understanding of chemical communication between adjacent cells or tissues.
成像质谱(IMS)通常应用于三种类型的样品:组织切片、球体和微生物菌落。这些样品类型已使用基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF MS)进行分析,以可视化蛋白质、脂质和代谢物在感兴趣的生物样品中的分布。我们开发了一种新颖的样品制备方法,该方法结合了之前三种应用的优点,通过将哺乳动物细胞培养物接种到与健康组织共培养的琼脂糖中,然后对样品进行干燥,来解决一种未充分探索的识别癌症中化学通讯的方法。哺乳动物组织和细胞紧密共培养,允许通过组织与细胞之间的扩散进行化学通讯。在特定时间点,基于琼脂糖的样品以与为IMS分析准备的微生物菌落相同的方式干燥。我们的方法旨在模拟源自输卵管的高级别浆液性卵巢癌在转移过程中与卵巢相互作用时的通讯。样品制备的优化导致鉴定出去甲肾上腺素是卵巢微环境中的关键化学成分。这种新开发的方法可应用于其他需要了解相邻细胞或组织之间化学通讯的生物系统。