DelGiorno Kathleen E, Naeem Razia F, Fang Linjing, Chung Chi-Yeh, Ramos Cynthia, Luhtala Natalie, O'Connor Carolyn, Hunter Tony, Manor Uri, Wahl Geoffrey M
Gene Expression Laboratory, Salk Institute for Biological Studies, La Jolla, CA, United States.
Waitt Advanced Biophotonics Center, Salk Institute for Biological Studies, La Jolla, CA, United States.
Front Physiol. 2020 Feb 14;11:88. doi: 10.3389/fphys.2020.00088. eCollection 2020.
Chronic pancreatitis, a known risk factor for the development of pancreatic ductal adenocarcinoma (PDA), is a serious, widespread medical condition characterized by inflammation, fibrosis, and acinar to ductal metaplasia (ADM). ADM is a cell type transdifferentiation event where pancreatic acinar cells become ductal-like under conditions of injury or oncogenic mutation. Here, we show that chronic pancreatitis and ADM in genetically wild type mice results in the formation of a significant population of chemosensory tuft cells. Transcriptomic analyses of pancreatitis tuft cells identify expression of inflammatory mediators, consistent with a role for tuft cells in injury progression and/or resolution. Though similar to tuft cell populations in other organs and disease systems, we identified a number of key differences that suggest context-specific tuft cell functions. We evaluated seven different mouse strains for tuft cell formation in response to chronic injury and identified significant heterogeneity reflecting varying proclivity for epithelial plasticity between strains. These results have interesting implications in the role of epithelial plasticity and heterogeneity in pancreatitis and highlight the importance of mouse strain selection when modeling human disease.
慢性胰腺炎是胰腺导管腺癌(PDA)发生的已知风险因素,是一种严重的、广泛存在的医学病症,其特征为炎症、纤维化以及腺泡到导管化生(ADM)。ADM是一种细胞类型转分化事件,即胰腺腺泡细胞在损伤或致癌突变条件下转变为导管样细胞。在此,我们表明,基因野生型小鼠中的慢性胰腺炎和ADM会导致大量化学感受性簇细胞的形成。对胰腺炎簇细胞的转录组分析确定了炎症介质的表达,这与簇细胞在损伤进展和/或恢复中的作用一致。尽管与其他器官和疾病系统中的簇细胞群体相似,但我们发现了一些关键差异,这表明簇细胞功能具有背景特异性。我们评估了七种不同的小鼠品系对慢性损伤的簇细胞形成反应,发现了显著的异质性,反映出不同品系之间上皮可塑性的倾向不同。这些结果对上皮可塑性和异质性在胰腺炎中的作用具有有趣的启示,并突出了在模拟人类疾病时选择小鼠品系的重要性。