Nguyen Hoang Anh Thu, Chen Puran, Björnfot Sofia, Högstrand Kari, Lock John G, Grandien Alf, Coles Mark, Svensson Mattias
Center for Infectious Medicine, Department of Medicine, and.
Center for Biosciences, Department of Biosciences and Nutrition, Karolinska Institutet, Stockholm, Sweden; and.
J Leukoc Biol. 2014 Sep;96(3):481-9. doi: 10.1189/jlb.3TA0513-303R. Epub 2014 Jun 4.
This manuscript describes technical advances allowing manipulation and quantitative analyses of human DC migratory behavior in lung epithelial tissue. DCs are hematopoietic cells essential for the maintenance of tissue homeostasis and the induction of tissue-specific immune responses. Important functions include cytokine production and migration in response to infection for the induction of proper immune responses. To design appropriate strategies to exploit human DC functional properties in lung tissue for the purpose of clinical evaluation, e.g., candidate vaccination and immunotherapy strategies, we have developed a live-imaging assay based on our previously described organotypic model of the human lung. This assay allows provocations and subsequent quantitative investigations of DC functional properties under conditions mimicking morphological and functional features of the in vivo parental tissue. We present protocols to set up and prepare tissue models for 4D (x, y, z, time) fluorescence-imaging analysis that allow spatial and temporal studies of human DCs in live epithelial tissue, followed by flow cytometry analysis of DCs retrieved from digested tissue models. This model system can be useful for elucidating incompletely defined pathways controlling DC functional responses to infection and inflammation in lung epithelial tissue, as well as the efficacy of locally administered candidate interventions.
本手稿描述了一些技术进展,这些进展使得对人树突状细胞(DC)在肺上皮组织中的迁移行为进行操控和定量分析成为可能。DC是维持组织稳态和诱导组织特异性免疫反应所必需的造血细胞。其重要功能包括细胞因子产生以及响应感染而迁移,以诱导适当的免疫反应。为了设计合适的策略,以便在临床评估(例如候选疫苗接种和免疫治疗策略)中利用肺组织中人DC的功能特性,我们基于之前描述的人肺器官型模型开发了一种实时成像检测方法。该检测方法能够在模拟体内亲代组织形态和功能特征的条件下,激发并随后对DC的功能特性进行定量研究。我们提供了用于设置和制备组织模型以进行4D(x、y、z、时间)荧光成像分析的方案,该分析可对活上皮组织中的人DC进行空间和时间研究,随后对从消化后的组织模型中获取的DC进行流式细胞术分析。该模型系统有助于阐明控制肺上皮组织中DC对感染和炎症功能反应的尚未完全明确的途径,以及局部施用候选干预措施的效果。