Zhang Qiang, Zhou Dong, Liang Yu
Department of Orthopedics, Ruijin Hospital, Shanghai Jiaotong University School of Medicine, Shanghai, People's Republic of China.
Department of Orthopaedic, The Affiliated Changzhou No.2 People's Hospital of Nanjing Medical University, Changzhou, People's Republic of China.
J Inflamm Res. 2022 Sep 24;15:5579-5593. doi: 10.2147/JIR.S369376. eCollection 2022.
Injury-related cellular senescence may be involved in heterotopic ossification, and no research has been performed about this before.
The study utilized integrated single-cell RNA-sequencing (scRNA-seq) data from heterotopic ossification samples. The number of senescent cells increased from day 3 and reached the highest level at day 21. However, the expression level of Cyclin Dependent Kinase Inhibitor 2A (Cdkn2a) has no such tendency as the change of cell amount, indicating that the expression level of Cdkn2a may be different in different types of senescent cells or the same time of senescent cell at different time points. The expression level of SASPs (senescence associated secret phenotypes) was also different in different types of senescent cells or at different time points. The GO (gene ontology) analysis revealed that the senescent cells were significantly correlated with the ossification processes, like ECM organization, cell adhesion, ossification, cartilage development, etc. Trajectory analysis showed that injury-related senescent fibroblasts (day 7 and 21) and age-related senescent fibroblasts (day 0 and 42) were in different branches. GO analysis demonstrated that injury-related senescent fibroblasts were mainly related to ossification and ECM remodeling. The KEGG (Kyoto Encyclopedia of Genes and Genomes) results revealed that the ossification was significantly corrected with protein processing in PI3K-Akt signaling, MAPK signaling, focal adhesion, etc.
Consequently, we demonstrated that, unlike age-related senescence, the injury-related senescence demonstrated significantly different SASP phenotypes. The injury-related senescence of fibroblasts is associated with heterotopic ossification formation and may act through PI3K/Akt-induced SASPs.
与损伤相关的细胞衰老可能参与异位骨化,此前尚未有关于此的研究。
本研究利用来自异位骨化样本的整合单细胞RNA测序(scRNA-seq)数据。衰老细胞数量从第3天开始增加,并在第21天达到最高水平。然而,细胞周期蛋白依赖性激酶抑制剂2A(Cdkn2a)的表达水平并未随细胞数量的变化呈现相同趋势,这表明Cdkn2a的表达水平在不同类型的衰老细胞中或同一衰老细胞在不同时间点可能存在差异。衰老相关分泌表型(SASPs)的表达水平在不同类型的衰老细胞或不同时间点也有所不同。基因本体(GO)分析显示,衰老细胞与骨化过程显著相关,如细胞外基质组织、细胞粘附、骨化、软骨发育等。轨迹分析表明,与损伤相关的衰老成纤维细胞(第7天和第21天)和与年龄相关的衰老成纤维细胞(第0天和第42天)处于不同分支。GO分析表明,与损伤相关的衰老成纤维细胞主要与骨化和细胞外基质重塑有关。京都基因与基因组百科全书(KEGG)结果显示,骨化与PI3K-Akt信号通路、MAPK信号通路、粘着斑等中的蛋白质加工显著相关。
因此,我们证明,与年龄相关的衰老不同,与损伤相关的衰老表现出显著不同的SASP表型。成纤维细胞的损伤相关衰老与异位骨化形成有关,可能通过PI3K/Akt诱导的SASPs发挥作用。