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大规模布尔模型的类风湿关节炎成纤维样滑膜细胞预测药物协同作用在关节炎关节。

A large-scale Boolean model of the rheumatoid arthritis fibroblast-like synoviocytes predicts drug synergies in the arthritic joint.

机构信息

Université Paris-Saclay, Laboratoire Européen de Recherche pour la Polyarthrite rhumatoïde-Genhotel, Univ Evry, Evry, France.

Lifeware Group, Inria, Saclay-île de France, 91120, Palaiseau, France.

出版信息

NPJ Syst Biol Appl. 2023 Jul 15;9(1):33. doi: 10.1038/s41540-023-00294-5.

Abstract

Rheumatoid arthritis (RA) is a complex autoimmune disease with an unknown aetiology. However, rheumatoid arthritis fibroblast-like synoviocytes (RA-FLS) play a significant role in initiating and perpetuating destructive joint inflammation by expressing immuno-modulating cytokines, adhesion molecules, and matrix remodelling enzymes. In addition, RA-FLS are primary drivers of inflammation, displaying high proliferative rates and an apoptosis-resistant phenotype. Thus, RA-FLS-directed therapies could become a complementary approach to immune-directed therapies by predicting the optimal conditions that would favour RA-FLS apoptosis, limit inflammation, slow the proliferation rate and minimise bone erosion and cartilage destruction. In this paper, we present a large-scale Boolean model for RA-FLS that consists of five submodels focusing on apoptosis, cell proliferation, matrix degradation, bone erosion and inflammation. The five-phenotype-specific submodels can be simulated independently or as a global model. In silico simulations and perturbations reproduced the expected biological behaviour of the system under defined initial conditions and input values. The model was then used to mimic the effect of mono or combined therapeutic treatments and predict novel targets and drug candidates through drug repurposing analysis.

摘要

类风湿关节炎(RA)是一种病因不明的复杂自身免疫性疾病。然而,类风湿关节炎成纤维样滑膜细胞(RA-FLS)通过表达免疫调节细胞因子、黏附分子和基质重塑酶,在引发和持续破坏性关节炎症方面发挥着重要作用。此外,RA-FLS 是炎症的主要驱动因素,表现出高增殖率和抗细胞凋亡表型。因此,RA-FLS 靶向治疗可能成为免疫靶向治疗的一种补充方法,通过预测有利于 RA-FLS 凋亡、限制炎症、降低增殖率以及最小化骨侵蚀和软骨破坏的最佳条件。在本文中,我们提出了一个针对 RA-FLS 的大规模布尔模型,该模型由五个子模型组成,分别关注细胞凋亡、细胞增殖、基质降解、骨侵蚀和炎症。这五个表型特异性子模型可以独立模拟,也可以作为一个整体模型进行模拟。通过对模型的模拟和扰动,在给定的初始条件和输入值下,再现了系统的预期生物学行为。然后,该模型被用于模拟单药或联合治疗的效果,并通过药物再利用分析预测新的靶点和候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e4f/10349856/d030fb72ebf7/41540_2023_294_Fig1_HTML.jpg

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