Division of Nephrology, Department of Medicine, Indiana University, Indianapolis, Indiana.
Department of Computer Science, Indiana University-Purdue University, Indianapolis, Indiana.
Kidney360. 2022 Mar 28;3(5):968-978. doi: 10.34067/KID.0006802020. eCollection 2022 May 26.
The immune system governs key functions that maintain renal homeostasis through various effector cells that reside in or infiltrate the kidney. These immune cells play an important role in shaping adaptive or maladaptive responses to local or systemic stress and injury. We increasingly recognize that microenvironments within the kidney are characterized by a unique distribution of immune cells, the function of which depends on this unique spatial localization. Therefore, quantitative profiling of immune cells in intact kidney tissue becomes essential, particularly at a scale and resolution that allow the detection of differences between the various "nephro-ecosystems" in health and disease. In this review, we discuss advancements in tissue cytometry of the kidney, performed through multiplexed confocal imaging and analysis using the Volumetric Tissue Exploration and Analysis (VTEA) software. We highlight how this tool has improved our understanding of the role of the immune system in the kidney and its relevance in the pathobiology of renal disease. We also discuss how the field is increasingly incorporating machine learning to enhance the analytic potential of imaging data and provide unbiased methods to explore and visualize multidimensional data. Such novel analytic methods could be particularly relevant when applied to profiling immune cells. Furthermore, machine-learning approaches applied to cytometry could present venues for nonexhaustive exploration and classification of cells from existing data and improving tissue economy. Therefore, tissue cytometry is transforming what used to be a qualitative assessment of the kidney into a highly quantitative, imaging-based "omics" assessment that complements other advanced molecular interrogation technologies.
免疫系统通过驻留或浸润肾脏的各种效应细胞来调控维持肾脏内环境稳定的关键功能。这些免疫细胞在塑造对局部或全身应激和损伤的适应性或失调性反应方面发挥着重要作用。我们越来越认识到,肾脏内的微环境具有独特分布的免疫细胞,其功能取决于这种独特的空间定位。因此,对完整肾脏组织中的免疫细胞进行定量分析变得至关重要,特别是在能够检测到健康和疾病状态下各种“肾生态系统”之间差异的规模和分辨率上。在这篇综述中,我们讨论了通过使用多重共聚焦成像和 Volumetric Tissue Exploration and Analysis (VTEA) 软件进行的肾脏组织细胞计量学的进展。我们强调了该工具如何增进我们对免疫系统在肾脏中的作用及其在肾脏疾病发病机制中的相关性的理解。我们还讨论了该领域如何越来越多地将机器学习应用于增强成像数据的分析潜力,并提供用于探索和可视化多维数据的无偏方法。当应用于免疫细胞分析时,这些新的分析方法可能特别相关。此外,应用于细胞计量学的机器学习方法可以为从现有数据中进行非详尽的细胞探索和分类,并提高组织经济性提供途径。因此,组织细胞计量学正在将过去对肾脏的定性评估转变为高度定量的、基于成像的“组学”评估,这与其他先进的分子检测技术相辅相成。