IL-10 缺乏会加剧细胞衰老,并通过 PTEN/AKT/ERK 通路加速 BLM 诱导的老年小鼠肺纤维化

IF 2.6 3区 医学 Q2 RESPIRATORY SYSTEM
Yinzhen Li, Hui Yin, Huixiao Yuan, Enhao Wang, Chunmei Wang, Hongqiang Li, Xuedi Geng, Ying Zhang, Jianwen Bai
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引用次数: 0

摘要

肺纤维化(PF)是一种与衰老相关的进行性肺部疾病。衰老的肺会发生功能和结构上的变化,即所谓的免疫衰老和炎症老化,从而促进肺纤维化的发生。白细胞介素-10(IL-10)是一种强效的抗炎和免疫调节细胞因子,但目前仍不清楚IL-10缺乏引起的免疫衰老是如何参与肺纤维化的发展的。首先,我们评估了老龄小鼠纤维化的易感性和IL-10的表达。然后对13个月大的野生型(WT)和IL-10基因敲除(KO)小鼠进行博莱霉素(BLM)治疗,并通过PCR、Western blot和免疫组化染色p16、p21、p53以及DHE和SA-β-gal染色分析衰老相关标记物。我们进一步比较了18个月大的WT小鼠和13个月大的IL-10KO小鼠,以评估与衰老相关的细胞衰老以及肺和BALF中的炎症浸润。此外,还通过FCM、免疫荧光、TUNEL染色和TEM分析评估了肺泡2型细胞(AT2)的增殖和凋亡。此外,还通过气管内注射重组IL-10(rIL-10)来评估其治疗潜力和相关机制。在体外实验中,用分别来自WT、IL-10KO或IL-10KO + rIL-10的13个月肺成纤维细胞的培养液处理10周龄的天真小鼠肺成纤维细胞,并检测衰老相关分泌表型(SASP)因子的分泌及相关途径。老龄小鼠的纤维化易感性增加,IL-10表达减少。与同时代的WT小鼠相比,13个月大的IL-10KO小鼠表现出明显的细胞衰老,甚至比18个月大的WT小鼠表现出更严重的上皮-间质转化(EMT)。这些 IL-10 缺乏的小鼠表现出更强的炎症反应和更快的 PF 进展。气管内注射 rIL-10 可使肺部 CD45 + 细胞浸润减少 15%,其中粒细胞减少 6%,巨噬细胞减少 10%,AT2 细胞比例增加约 8%。此外,rIL-10 还能显著减少这些小鼠体内的 α-SMA 和胶原沉积,并使衰老蛋白 p16 和 p21 的表达量减少 50%。体外分析表明,IL-10缺陷小鼠的条件培养基促进了SASP的分泌,并上调了幼稚肺成纤维细胞中的衰老基因,而rIL-10治疗可减轻这种情况。从机制上讲,rIL-10抑制了TGF-β-Smad2/3和PTEN/PI3K/AKT/ERK通路,从而抑制了衰老和纤维化相关蛋白。老年小鼠缺乏IL-10会导致细胞衰老加速和纤维化加剧,IL-10KO-PLFs显示SASP分泌增加。重组IL-10治疗可有效缓解这些影响,这表明它有可能成为PF的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IL-10 deficiency aggravates cell senescence and accelerates BLM-induced pulmonary fibrosis in aged mice via PTEN/AKT/ERK pathway
Pulmonary fibrosis (PF) is an aging-related progressive lung disorder. The aged lung undergoes functional and structural changes termed immunosenescence and inflammaging, which facilitate the occurrence of fibrosis. Interleukin-10 (IL-10) is a potent anti-inflammatory and immunoregulatory cytokine, yet it remains unclear how IL-10 deficiency-induced immunosenescence participates in the development of PF. Firstly we evaluated the susceptibility to fibrosis and IL-10 expression in aged mice. Then 13-month-old wild-type (WT) and IL-10 knockout (KO) mice were subjected to bleomycin(BLM) and analyzed senescence-related markers by PCR, western blot and immunohistochemistry staining of p16, p21, p53, as well as DHE and SA-β-gal staining. We further compared 18-month-old WT mice with 13-month-old IL-10KO mice to assess aging-associated cell senescence and inflamation infiltration in both lung and BALF. Moreover, proliferation and apoptosis of alveolar type 2 cells(AT2) were evaluated by FCM, immunofluorescence, TUNEL staining, and TEM analysis. Recombinant IL-10 (rIL-10) was also administered intratracheally to evaluate its therapeutic potential and related mechanism. For the in vitro experiments, 10-week-old naïve pramily lung fibroblasts(PLFs) were treated with the culture medium of 13-month PLFs derived from WT, IL-10KO, or IL-10KO + rIL-10 respectively, and examined the secretion of senescence-associated secretory phenotype (SASP) factors and related pathways. The aged mice displayed increased susceptibility to fibrosis and decreased IL-10 expression. The 13-month-old IL-10KO mice exhibited significant exacerbation of cell senescence compared to their contemporary WT mice, and even more severe epithelial-mesenchymal transition (EMT) than that of 18 month WT mice. These IL-10 deficient mice showed heightened inflammatory responses and accelerated PF progression. Intratracheal administration of rIL-10 reduced lung CD45 + cell infiltration by 15%, including a 6% reduction in granulocytes and a 10% reduction in macrophages, and increased the proportion of AT2 cells by approximately 8%. Additionally, rIL-10 significantly decreased α-SMA and collagen deposition, and reduced the expression of senescence proteins p16 and p21 by 50% in these mice. In vitro analysis revealed that conditioned media from IL-10 deficient mice promoted SASP secretion and upregulated senescence genes in naïve lung fibroblasts, which was mitigated by rIL-10 treatment. Mechanistically, rIL-10 inhibited TGF-β-Smad2/3 and PTEN/PI3K/AKT/ERK pathways, thereby suppressing senescence and fibrosis-related proteins. IL-10 deficiency in aged mice leads to accelerated cell senescence and exacerbated fibrosis, with IL-10KO-PLFs displaying increased SASP secretion. Recombinant IL-10 treatment effectively mitigates these effects, suggesting its potential as a therapeutic target for PF.
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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.
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