A novel pulmonary fibrosis NOD/SCID murine model with natural aging

IF 2.6 3区 医学 Q2 RESPIRATORY SYSTEM BMC Pulmonary Medicine Pub Date : 2024-09-16 DOI:10.1186/s12890-024-03268-3
Zhaoxia Ma, Lihua Qiu, Jianxiu Sun, Zhen Wu, Shu Liang, Yunhui Zhao, Jinmei Yang, Shijun Yue, Min Hu, Yanjiao Li
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Abstract

Idiopathic pulmonary fibrosis (IPF) is an age-related disease severely affecting life quality with its prevalence rising as the population ages, yet there is still no effective treatment available. Cell therapy has emerged as a promising option for IPF, however, the absence of mature and stable animal models for IPF immunodeficiency hampers preclinical evaluations of human cell therapies, primarily due to rapid immune clearance of administered cells. This study aims to establish a reliable pulmonary fibrosis (PF) model in immunodeficient mice that supports autologous cell therapy and to investigate underlying mechanism. We utilized thirty 5-week-old male NOD/SCID mice, categorizing them into three age groups: 12weeks, 32 weeks and 43 weeks, with 6 mice euthanized randomly from each cohort for lung tissue analysis. We assessed fibrosis using HE staining, Masson’s trichrome staining, α-SMA immunohistochemistry and hydroxyproline content measurement. Further, β-galactosidase staining and gene expression analysis of MMP9, TGF-β1, TNF-α, IL-1β, IL-6, IL-8, SOD1, SOD2, NRF2, SIRT1, and SIRT3 were performed. ELISA was employed to quantify protein levels of TNF-α, TGF-β1, and IL-8. When comparing lung tissues from 32-week-old and 43-week-old mice to those from 12-week-old mice, we noted a marked increase in inflammatory infiltration, fibrosis severity, and hydroxyproline content, alongside elevated expression levels of α-SMA and MMP9. Notably, the degree of fibrosis intensified with age. Additionally, β-galactosidase staining became more pronounced in older mice. Quantitative PCR analyses revealed age-related, increases in the expression of senescence markers (GLB1, P16, P21), and proinflammatory genes (TGF-β1, TNF-α, IL-1β, IL-6, and IL-8). Conversely, the expression of anti-oxidative stress-related genes (SOD1, SOD2, NRF2, SIRT1, and SIRT3) declined, showing statistically significant differences (*P < 0.05, **P < 0.01, ***P < 0.001). ELISA results corroborated these findings, indicating a progressive rise in the protein levels of TGF-β1, TNF-α, and IL-8 as the mice aged. The findings suggest that NOD/SCID mice aged 32 weeks and 43 weeks effectively model pulmonary fibrosis in an elderly context, with the disease pathogenesis likely driven by age-associated inflammation and oxidative stress.
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具有自然衰老功能的新型肺纤维化 NOD/SCID 鼠模型
特发性肺纤维化(IPF)是一种与年龄有关的疾病,严重影响生活质量,其发病率随着人口老龄化而上升,但目前仍没有有效的治疗方法。细胞疗法已成为治疗 IPF 的一种有前途的选择,然而,由于缺乏成熟稳定的 IPF 免疫缺陷动物模型,人类细胞疗法的临床前评估受到阻碍,主要原因是给药细胞会被快速免疫清除。本研究旨在建立一个可靠的免疫缺陷小鼠肺纤维化(PF)模型,以支持自体细胞疗法,并研究其潜在机制。我们利用 30 只 5 周大的雄性 NOD/SCID 小鼠,将其分为三个年龄组:12 周、32 周和 43 周,每组随机安乐死 6 只小鼠,进行肺组织分析。我们使用 HE 染色法、Masson 三色染色法、α-SMA 免疫组织化学法和羟脯氨酸含量测定法评估纤维化程度。此外,还对 MMP9、TGF-β1、TNF-α、IL-1β、IL-6、IL-8、SOD1、SOD2、NRF2、SIRT1 和 SIRT3 进行了β-半乳糖苷酶染色和基因表达分析。采用酶联免疫吸附法量化 TNF-α、TGF-β1 和 IL-8 的蛋白水平。将 32 周龄和 43 周龄小鼠的肺组织与 12 周龄小鼠的肺组织进行比较,我们发现炎症浸润、纤维化严重程度和羟脯氨酸含量明显增加,α-SMA 和 MMP9 的表达水平也有所升高。值得注意的是,纤维化程度随着年龄的增长而加剧。此外,年龄越大,β-半乳糖苷酶染色越明显。定量 PCR 分析显示,衰老标志物(GLB1、P16、P21)和促炎基因(TGF-β1、TNF-α、IL-1β、IL-6 和 IL-8)的表达与年龄有关。相反,抗氧化应激相关基因(SOD1、SOD2、NRF2、SIRT1 和 SIRT3)的表达量下降,差异有统计学意义(*P < 0.05,**P < 0.01,***P < 0.001)。酶联免疫吸附试验结果证实了这些发现,表明随着小鼠年龄的增长,TGF-β1、TNF-α和IL-8的蛋白水平逐渐升高。研究结果表明,年龄分别为32周和43周的NOD/SCID小鼠能有效地模拟老年肺纤维化,疾病的发病机制可能是由年龄相关的炎症和氧化应激引起的。
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来源期刊
BMC Pulmonary Medicine
BMC Pulmonary Medicine RESPIRATORY SYSTEM-
CiteScore
4.40
自引率
3.20%
发文量
423
审稿时长
6-12 weeks
期刊介绍: BMC Pulmonary Medicine is an open access, peer-reviewed journal that considers articles on all aspects of the prevention, diagnosis and management of pulmonary and associated disorders, as well as related molecular genetics, pathophysiology, and epidemiology.
期刊最新文献
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