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运用体内操作技术探究小肠绒帽细胞-ILC2 回路。

Interrogating the Small Intestine Tuft Cell-ILC2 Circuit Using In Vivo Manipulations.

机构信息

Department of Medicine, University of California, San Francisco, San Francisco, California.

Institute of Physiology, University of Zurich, Zurich, Switzerland.

出版信息

Curr Protoc. 2021 Mar;1(3):e77. doi: 10.1002/cpz1.77.

Abstract

Recent findings position tuft cells as key mediators of intestinal immunity through their production of the cytokine interleukin (IL)-25 and activation of group 2 innate lymphoid cells (ILC2s). Though tuft cells are found in numerous epithelial tissues, their phenotype and function have been best characterized in the small intestine, where robust in vivo techniques have enabled the dissection of their cellular function, ontogeny, and key signaling pathways. We describe methods for the identification, quantification, and manipulation of tuft cells, focusing on analysis of ILC2s as a readout of tuft cell function. © 2021 Wiley Periodicals LLC. Basic Protocol 1: Ex vivo analysis of small intestinal tuft cells and ILC2 by flow cytometry Alternate Protocol: Ex vivo analysis of small intestinal tuft cells and ILC2 by flow cytometry in the context of type 2 inflammation Basic Protocol 2: Ex vivo analysis of small intestinal tuft cells by imaging of intestinal Swiss roll Basic Protocol 3: Tuft-ILC2 circuit activation by oral gavage of adult Nippostrongylus brasiliensis worms Basic Protocol 4: Circuit activation by colonization with Tritrichomonas spp. Basic Protocol 5: Circuit activation by treatment with succinate in drinking water Basic Protocol 6: Circuit activation by treatment with recombinant IL-25.

摘要

最近的研究结果表明,毛细胞通过产生细胞因子白细胞介素 (IL)-25 和激活 2 型先天淋巴细胞 (ILC2),成为肠道免疫的关键调节因子。虽然毛细胞存在于许多上皮组织中,但它们的表型和功能在小肠中得到了最好的描述,在小肠中,强大的体内技术使它们的细胞功能、发生和关键信号通路得以解析。我们描述了鉴定、定量和操纵毛细胞的方法,重点分析 ILC2 作为毛细胞功能的读出。© 2021 威立出版社。基础方案 1:通过流式细胞术对小肠毛细胞和 ILC2 进行离体分析可选方案:通过流式细胞术在 2 型炎症背景下对小肠毛细胞和 ILC2 进行离体分析基础方案 2:通过肠道瑞士卷的成像对小肠毛细胞进行离体分析基础方案 3:通过口服巴西旋毛虫感染成年鼠激活毛细胞-ILC2 回路基础方案 4:通过定居性感染三梨形虫激活回路基础方案 5:通过饮用琥珀酸盐处理激活回路基础方案 6:通过用重组白细胞介素 25 处理激活回路

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