Arthritis and Tissue Degeneration Program and Research Institute, Hospital for Special Surgery, New York, NY, USA.
Weill Cornell Medical College, New York, NY, USA.
Nat Commun. 2024 Aug 29;15(1):7503. doi: 10.1038/s41467-024-51012-6.
Rheumatoid arthritis (RA) is a complex immune-mediated inflammatory disorder in which patients suffer from inflammatory-erosive arthritis. Recent advances on histopathology heterogeneity of RA synovial tissue revealed three distinct phenotypes based on cellular composition (pauci-immune, diffuse and lymphoid), suggesting that distinct etiologies warrant specific targeted therapy which motivates a need for cost effective phenotyping tools in preclinical and clinical settings. To this end, we developed an automated multi-scale computational pathotyping (AMSCP) pipeline for both human and mouse synovial tissue with two distinct components that can be leveraged together or independently: (1) segmentation of different tissue types to characterize tissue-level changes, and (2) cell type classification within each tissue compartment that assesses change across disease states. Here, we demonstrate the efficacy, efficiency, and robustness of the AMSCP pipeline as well as the ability to discover novel phenotypes. Taken together, we find AMSCP to be a valuable cost-effective method for both pre-clinical and clinical research.
类风湿性关节炎(RA)是一种复杂的免疫介导的炎症性疾病,患者患有炎症性侵蚀性关节炎。最近对 RA 滑膜组织的组织病理学异质性的研究进展表明,基于细胞组成(少免疫、弥漫性和淋巴样)可分为三种不同的表型,这表明不同的病因需要特定的靶向治疗,这促使人们在临床前和临床环境中需要经济有效的表型工具。为此,我们开发了一种用于人类和小鼠滑膜组织的自动化多尺度计算病理分型(AMSCP)管道,该管道具有两个可以一起或独立利用的不同组件:(1)不同组织类型的分割,以描述组织水平的变化,以及(2)每个组织隔室中的细胞类型分类,评估疾病状态下的变化。在这里,我们证明了 AMSCP 管道的有效性、效率和稳健性,以及发现新表型的能力。总之,我们发现 AMSCP 是一种用于临床前和临床研究的有价值的经济有效的方法。