Shefaa AlAsfoor, Erik Jessen, Suraj R Pullapantula, Jennifer R Voisin, Linda C Hsi, Kevin D Pavelko, Samera Farwana, Jack A Patraw, Xin-Yi Chai, Sihan Ji, Michael A Strausbauch, Gianluca Cipriani, Lai Wei, David R Linden, Ruixue Hou, Richard Myers, Yogesh Bhattarai, Jill Wykosky, Alan J Burns, Surendra Dasari, Gianrico Farrugia, Madhusudan Grover
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In DGE mice, via unbiased clustering, we identified two reduced Mo clusters that exhibit migratory phenotype (Ly6C<sup>hi</sup>CCR2<sup>hi-int</sup>CD62L<sup>hi</sup>Ly6G<sup>hi</sup>CD45R<sup>hi</sup>MERTK<sup>hiint</sup>LGALS3<sup>int</sup>CD14<sup>int</sup>CX3CR1<sup>low</sup>Siglec-H<sup>int-low</sup>) resembling classical Mo (CMo-like). All markers enriched in these clusters are known to regulate cell differentiation, proliferation, adhesion, and migration. Trajectory inference analysis predicted these Mo as precursors to subsequent Mo lineages. In gastric muscle tissue, we demonstrated an increase in the gene expression levels of chemokine receptor C-C chemokine receptor type 2 (<i>Ccr2</i>) and its C-C motif ligand 2 (<i>Ccl2</i>), suggesting increased trafficking of classical-Mo. These findings establish a link between two CMo-like clusters and the development of the DGE phenotype and contribute to a better understanding of the heterogenicity of the Mo population.<b>NEW & NOTEWORTHY</b> Using 32 immune cell surface markers, we identified 23 monocyte clusters in murine blood. Diabetic gastroparesis was associated with a significant decrease in two circulating classical monocyte-like clusters and an upregulation of the <i>Ccr2-Ccl2</i> axis in the gastric muscularis propria, suggesting increased tissue monocyte migration. This study offers new targets by pointing to a possible role for two classical monocyte subsets connected to the <i>Ccr2</i>-<i>Ccl2</i> axis.</p>","PeriodicalId":7725,"journal":{"name":"American journal of physiology. 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引用次数: 0
摘要
循环单核细胞(Mo)是胃常驻肌层巨噬细胞亚群的前体。糖尿病性胃轻瘫患者胃内巨噬细胞(MMs)变化导致胃排空延迟。然而,Mo在动物模型DGE发展中的动力学尚不清楚。使用CyTOF和计算方法,我们显示了Mo-population内的高度异质性。在DGE小鼠中,通过无偏聚类,我们发现了两个表现出迁移表型(ly6chiccr2hi - intcd62lhily6ghicd45rhimertkhiintlgals3intcd14intcx3cr1lowsiglece - hint -low)的减少Mo簇,类似于经典Mo (cmo样)。已知在这些簇中富集的所有标记物都能调节细胞分化、增殖、粘附和迁移。轨迹推断分析预测这些钼是后续钼系的前体。在胃肌肉组织中,我们发现趋化因子受体Ccr2及其配体Ccl2的基因表达水平增加,表明经典mo的运输增加。这些发现建立了两个cmo样集群与DGE表型发展之间的联系,并有助于更好地了解mo群体的异质性。
Mass cytometric analysis of circulating monocyte subsets in a murine model of diabetic gastroparesis.
Circulating monocytes (Mo) are precursors to a subset of gastric resident muscularis macrophages. Changes in muscularis macrophages (MMs) result in delayed gastric emptying (DGE) in diabetic gastroparesis. However, the dynamics of Mo in the development of DGE in an animal model are unknown. Using cytometry by time-of-flight and computational approaches, we show a high heterogeneity within the Mo population. In DGE mice, via unbiased clustering, we identified two reduced Mo clusters that exhibit migratory phenotype (Ly6ChiCCR2hi-intCD62LhiLy6GhiCD45RhiMERTKhiintLGALS3intCD14intCX3CR1lowSiglec-Hint-low) resembling classical Mo (CMo-like). All markers enriched in these clusters are known to regulate cell differentiation, proliferation, adhesion, and migration. Trajectory inference analysis predicted these Mo as precursors to subsequent Mo lineages. In gastric muscle tissue, we demonstrated an increase in the gene expression levels of chemokine receptor C-C chemokine receptor type 2 (Ccr2) and its C-C motif ligand 2 (Ccl2), suggesting increased trafficking of classical-Mo. These findings establish a link between two CMo-like clusters and the development of the DGE phenotype and contribute to a better understanding of the heterogenicity of the Mo population.NEW & NOTEWORTHY Using 32 immune cell surface markers, we identified 23 monocyte clusters in murine blood. Diabetic gastroparesis was associated with a significant decrease in two circulating classical monocyte-like clusters and an upregulation of the Ccr2-Ccl2 axis in the gastric muscularis propria, suggesting increased tissue monocyte migration. This study offers new targets by pointing to a possible role for two classical monocyte subsets connected to the Ccr2-Ccl2 axis.
期刊介绍:
The American Journal of Physiology-Gastrointestinal and Liver Physiology publishes original articles pertaining to all aspects of research involving normal or abnormal function of the gastrointestinal tract, hepatobiliary system, and pancreas. Authors are encouraged to submit manuscripts dealing with growth and development, digestion, secretion, absorption, metabolism, and motility relative to these organs, as well as research reports dealing with immune and inflammatory processes and with neural, endocrine, and circulatory control mechanisms that affect these organs.