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三维器官型上皮组织的特征揭示了扁桃体在持续性干扰素信号传导方面的特异性差异。

Characterization of 3D organotypic epithelial tissues reveals tonsil-specific differences in tonic interferon signaling.

作者信息

Jackson Robert, Rajadhyaksha Esha V, Loeffler Reid S, Flores Caitlyn E, Van Doorslaer Koenraad

机构信息

School of Animal and Comparative Biomedical Sciences, College of Agriculture and Life Sciences, University of Arizona, Tucson, AZ, USA.

BIO5 Institute, University of Arizona, Tucson, AZ, USA.

出版信息

bioRxiv. 2023 Jan 20:2023.01.19.524743. doi: 10.1101/2023.01.19.524743.

Abstract

Three-dimensional (3D) culturing techniques can recapitulate the stratified nature of multicellular epithelial tissues. Organotypic 3D epithelial tissue culture methods have several applications, including the study of tissue development and function, drug discovery and toxicity testing, host-pathogen interactions, and the development of tissue-engineered constructs for use in regenerative medicine. We grew 3D organotypic epithelial tissues from foreskin, cervix, and tonsil-derived primary cells and characterized the transcriptome of these tissue equivalents. Using the same 3D culturing method, all three tissues yielded stratified squamous epithelium, validated histologically using basal and superficial epithelial cell markers. The goal of this study was to use RNA-seq to compare gene expression patterns in these three types of epithelial tissues to gain a better understanding of the molecular mechanisms underlying their function and identify potential therapeutic targets for various diseases. Functional profiling by over-representation and gene set enrichment analysis revealed tissue-specific differences: , cutaneous homeostasis and lipid metabolism in foreskin, extracellular matrix remodeling in cervix, and baseline innate immune differences in tonsil. Specifically, tonsillar epithelia may play an active role in shaping the immune microenvironment of the tonsil balancing inflammation and immune responses in the face of constant exposure to microbial insults. Overall, these data serve as a resource, with gene sets made available for the research community to explore, and as a foundation for understanding the epithelial heterogeneity and how it may impact their use. An online resource is available to investigate these data ( https://viz.datascience.arizona.edu/3DEpiEx/ ).

摘要

三维(3D)培养技术可以重现多细胞上皮组织的分层特性。器官型3D上皮组织培养方法有多种应用,包括组织发育与功能研究、药物发现与毒性测试、宿主-病原体相互作用以及用于再生医学的组织工程构建体的开发。我们从包皮、宫颈和扁桃体来源的原代细胞中培养出3D器官型上皮组织,并对这些组织类似物的转录组进行了表征。使用相同的3D培养方法,所有三种组织均产生了分层鳞状上皮,使用基底和表层上皮细胞标记物进行组织学验证。本研究的目的是使用RNA测序来比较这三种上皮组织中的基因表达模式,以更好地理解其功能背后的分子机制,并确定各种疾病的潜在治疗靶点。通过过度表达和基因集富集分析进行的功能分析揭示了组织特异性差异:包皮中的皮肤稳态和脂质代谢、宫颈中的细胞外基质重塑以及扁桃体中的基线固有免疫差异。具体而言,扁桃体上皮可能在塑造扁桃体的免疫微环境中发挥积极作用,在持续暴露于微生物攻击的情况下平衡炎症和免疫反应。总体而言,这些数据可作为一种资源,为研究界提供可用的基因集以供探索,并作为理解上皮异质性及其可能如何影响其用途的基础。有一个在线资源可用于研究这些数据(https://viz.datascience.arizona.edu/3DEpiEx/)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cba7/9882319/83005bb2df6e/nihpp-2023.01.19.524743v1-f0001.jpg

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