Houdelet Camille, Arafah Karim, Bocquet Michel, Bulet Philippe
CR Université Grenoble Alpes, Institute for Advanced Biosciences, Inserm U1209, CNRS UMR 5309, Grenoble, France.
Saint Julien-en Genevois, Plateforme BioPark d'Archamps, France.
Proteomics. 2022 May;22(9):e2100224. doi: 10.1002/pmic.202100224. Epub 2022 Jan 19.
Matrix-assisted laser desorption/ionization imaging mass spectrometry (MALDI IMS) is a powerful technology used to investigate the spatio-temporal distribution of a huge number of molecules throughout a body/tissue section. In this paper, we report the use of MALDI IMS to follow the molecular impact of an experimental infection of Apis mellifera with the microsporidia Nosema ceranae. We performed representative molecular mass fingerprints of selected tissues obtained by dissection. This was followed by MALDI IMS workflows optimization including specimen embedding and positioning as well as washing and matrix application. We recorded the local distribution of peptides/proteins within different tissues from experimentally infected versus non infected honeybees. As expected, a distinction in these molecular profiles between the two conditions was recorded from different anatomical sections of the gut tissue. More importantly, we observed differences in the molecular profiles in the brain, thoracic ganglia, hypopharyngeal glands, and hemolymph. We introduced MALDI IMS as an effective approach to monitor the impact of N. ceranae infection on A. mellifera. This opens perspectives for the discovery of molecular changes in peptides/proteins markers that could contribute to a better understanding of the impact of stressors and toxicity on different tissues of a bee in a single experiment.
基质辅助激光解吸/电离成像质谱(MALDI IMS)是一种强大的技术,用于研究大量分子在整个身体/组织切片中的时空分布。在本文中,我们报告了使用MALDI IMS来追踪蜜蜂感染微孢子虫(Nosema ceranae)的实验性感染所产生的分子影响。我们对通过解剖获得的选定组织进行了代表性的分子质量指纹图谱分析。随后进行了MALDI IMS工作流程的优化,包括标本包埋和定位以及洗涤和基质应用。我们记录了实验感染与未感染蜜蜂不同组织内肽/蛋白质的局部分布。正如预期的那样,在肠道组织的不同解剖切片中记录到了两种情况下这些分子谱的差异。更重要的是,我们在大脑、胸神经节、下咽腺和血淋巴中观察到了分子谱的差异。我们引入MALDI IMS作为监测蜜蜂微孢子虫感染对蜜蜂影响的有效方法。这为发现肽/蛋白质标志物中的分子变化开辟了前景,这些变化有助于在单个实验中更好地理解应激源和毒性对蜜蜂不同组织的影响。