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在健康和疾病中高多重化蛋白质谱的空间可视化单细胞病理学。

Spatially visualized single-cell pathology of highly multiplexed protein profiles in health and disease.

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, USA.

School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA.

出版信息

Commun Biol. 2021 May 27;4(1):632. doi: 10.1038/s42003-021-02166-2.

Abstract

Deep molecular profiling of biological tissues is an indicator of health and disease. We used imaging mass cytometry (IMC) to acquire spatially resolved 20-plex protein data in tissue sections from normal and chronic tonsillitis cases. We present SpatialViz, a suite of algorithms to explore spatial relationships in multiplexed tissue images by visualizing and quantifying single-cell granularity and anatomical complexity in diverse multiplexed tissue imaging data. Single-cell and spatial maps confirmed that CD68+ cells were correlated with the enhanced Granzyme B expression and CD3+ cells exhibited enrichment of CD4+ phenotype in chronic tonsillitis. SpatialViz revealed morphological distributions of cellular organizations in distinct anatomical areas, spatially resolved single-cell associations across anatomical categories, and distance maps between the markers. Spatial topographic maps showed the unique organization of different tissue layers. The spatial reference framework generated network-based comparisons of multiplex data from healthy and diseased tonsils. SpatialViz is broadly applicable to multiplexed tissue biology.

摘要

对生物组织进行深入的分子剖析是了解健康和疾病的一个指标。我们使用成像质谱细胞术(IMC)在正常和慢性扁桃体炎病例的组织切片中获取空间分辨的 20 重蛋白质数据。我们展示了 SpatialViz,这是一套算法套件,通过可视化和量化多样化的多重组织成像数据中的单细胞粒度和解剖复杂性,来探索多重组织图像中的空间关系。单细胞和空间图谱证实,CD68+细胞与增强的 Granzyme B 表达相关,而 CD3+细胞在慢性扁桃体炎中表现出 CD4+表型的富集。SpatialViz 揭示了不同解剖区域中细胞组织的形态分布,跨解剖类别解析单细胞关联,以及标记物之间的距离图谱。空间地形图谱显示了不同组织层的独特组织。生成的空间参考框架为健康和患病扁桃体的多重数据进行了基于网络的比较。SpatialViz 广泛适用于多重组织生物学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80ed/8160218/2ffbca232612/42003_2021_2166_Fig1_HTML.jpg

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