间质细胞
生物
背景(考古学)
炎症性肠病
转录组
结肠炎
再生(生物学)
炎症
免疫学
肠粘膜
细胞生物学
病理
癌症研究
医学
疾病
基因表达
基因
遗传学
内科学
古生物学
作者
Clara Morral,Reem Ghinnagow,Tatiana A. Karakasheva,Yusen Zhou,Anusha Thadi,Ning Li,Benjamin Yoshor,Gloria E. Soto,Chia-Hui Chen,Daniel Aleynick,Sarah Weinbrom,MaryKate Fulton,Yasin Uzun,Meenakshi Bewtra,Judith R. Kelsen,Christopher J. Lengner,Kai Tan,Andy J. Minn,Kathryn E. Hamilton
出处
期刊:Bio-protocol
[American Academy of Arts and Sciences]
日期:2023-01-01
卷期号:13 (18): e4825-e4825
被引量:10
标识
DOI:10.21769/bioprotoc.4825
摘要
Inflammation of the gastrointestinal tract is a prevalent pathology in diseases such as inflammatory bowel disease (IBD). Currently, there are no therapies to prevent IBD, and available therapies to treat IBD are often sub-optimal. Thus, an unmet need exists to better understand the molecular mechanisms underlying intestinal tissue responses to damage and regeneration. The recent development of single-cell RNA (sc-RNA) sequencing-based techniques offers a unique opportunity to shed light on novel signaling pathways and cellular states that govern tissue adaptation or maladaptation across a broad spectrum of diseases. These approaches require the isolation of high-quality cells from tissues for downstream transcriptomic analyses. In the context of intestinal biology, there is a lack of protocols that ensure the isolation of epithelial and non-epithelial compartments simultaneously with high-quality yield. Here, we report two protocols for the isolation of epithelial and stromal cells from mouse and human colon tissues under inflammatory conditions. Specifically, we tested the feasibility of the protocols in a mouse model of dextran sodium sulfate (DSS)-induced colitis and in human biopsies from Crohn's patients. We performed sc-RNA sequencing analysis and demonstrated that the protocol preserves most of the epithelial and stromal cell types found in the colon. Moreover, the protocol is suitable for immunofluorescence staining of surface markers for epithelial, stromal, and immune cell lineages for flow cytometry analyses. This optimized protocol will provide a new resource for scientists to study complex tissues such as the colon in the context of tissue damage and regeneration. Key features • This protocol allows the isolation of epithelial and stromal cells from colon tissues. • The protocol has been optimized for tissues under inflammatory conditions with compromised cell viability. • This protocol is suitable for experimental mouse models of colon inflammation and human biopsies.
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