Moulder Robert, Bhosale Santosh D, Viiri Keijo, Lahesmaa Riitta
Turku Bioscience Centre, University of Turku and Åbo Akademi University, Turku, Finland.
InFLAMES Research Flagship Center, University of Turku, Turku, Finland.
Front Mol Biosci. 2024 Aug 28;11:1446822. doi: 10.3389/fmolb.2024.1446822. eCollection 2024.
Organoid models enable three-dimensional representation of cellular systems, providing flexible and accessible research tools, and can highlight key biomolecules. Such models of the intestinal epithelium can provide significant knowledge for the study of celiac disease and provide an additional context for the nature of markers observed from patient biopsy data.
Using LC-MS/MS, the proteomes of the crypt and enterocyte-like states of a mouse mini-gut organoid model were measured. The data were further compared with published biopsy data by comparing the changes induced by gluten challenge after a gluten-free diet.
These analyses identified 4,850 protein groups and revealed how 400 putative biomarkers of dietary challenge were differentially expressed in the organoid model. In addition to the extensive changes within the differentiated cells, the data reiterated the disruption of the crypt-villus axis after gluten challenge. The mass spectrometry data are available via ProteomeXchange with the identifier PXD025690.
类器官模型能够对细胞系统进行三维呈现,提供灵活且易于获取的研究工具,并能突出关键生物分子。这种肠上皮模型可为乳糜泻的研究提供重要知识,并为从患者活检数据中观察到的标志物性质提供更多背景信息。
使用液相色谱-串联质谱法(LC-MS/MS)测定小鼠迷你肠道类器官模型隐窝和肠上皮细胞样状态的蛋白质组。通过比较无麸质饮食后麸质激发引起的变化,将数据与已发表的活检数据进一步比较。
这些分析鉴定出4850个蛋白质组,并揭示了400个假定的饮食激发生物标志物在类器官模型中是如何差异表达的。除了分化细胞内的广泛变化外,数据还重申了麸质激发后隐窝-绒毛轴的破坏。质谱数据可通过ProteomeXchange获得,标识符为PXD025690。