基于IRS-1/PI3K信号轴探究补肺健脾方对COPD 大鼠骨骼肌线粒体损伤的影响
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1.河南中医药大学;2.河南中医药大学第一附属医院

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国家重点研发计划项目(2018YFC1704800,2018YFC1704801);省级科技研发计划联合基金 项目(222301420081);国家自然科学基金面上项目(82074413)


To explore the effect of Bufei Jianpi Formula on mitochondrial damage of skeletal muscle in COPD rats based on IRS-1/PI3K signaling axis
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1.河南中医药大学;2.The First Affiliated Hospital of Henan University of CM;3.HENAN UNIVERSITY OF CHINESE MEDICINE

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    摘要:

    目的 探究补肺健脾方(BJF)通过调控IRS-1/PI3K信号轴对COPD大鼠骨骼肌线粒体损伤的影响。方法 将60只SPF级SD大鼠随机分为空白组、模型组(COPD稳定期组)、BJF组、吡格列酮组(PIO组)、BJF PIO组以及氨茶碱组,10只/组。采用烟熏加鼻腔滴菌(肺炎克雷伯杆菌)的方法建立COPD稳定期大鼠模型,自第9周开始给药至20周结束后取材,每周给予大鼠体重测量。分别对肺组织和骨骼肌组织进行常规切片与HE染色,并于光镜下观察其相应的病理学改变。分别于第0、8、20周时采用非束缚全身体积描记系统(whole body plethysmography,WBP)观察大鼠肺功能,包括潮气量(tidal volume,VT)、呼气峰流速(peak expiratory flow,PEF)、50% 潮气量呼气流量(50% tidal volume expiratory flow,EF50)。采用qPCR技术检测大鼠骨骼肌组织中IRS-1、PI3K、PGC1-α以及Leptin mRNA的表达。采用WB技术检测大鼠骨骼肌组织中IRS-1、PI3K、AKT、p-AKT、PGC-1α、TFAM、Leptin蛋白的表达。结果 光镜下观察显示:与Control组相比,Model组肺病理可见肺泡间质以及肺支气管存有大量的炎性细胞浸润,部分肺泡壁出现断裂并融合形成气腔、纤维网被破坏等;与Model组比,用药治疗后各组肺泡壁的断裂以及纤维网的破坏均得到改善,支气管中炎性细胞浸润减轻,其中以BJF组与Am组尤为明显。用药治疗后各组骨骼肌病理与Model组比,可不同程度改善肌纤维之间排列间隙、萎缩与断裂,肌细胞胞质染色不均一等,其中以BJF组疗效较为显著。与Control组比较,Model组PEF、VT和EF50第8周起显著降低(P < 0.01),BJF组、BJF PIO组和Am组可以显著提高PEF、EF50(P < 0.01)。与Control组相比,Model组中IRS-1、PGC1α和PI3K mRNA的表达水平显著降低(P < 0.01),Leptin mRNA的表达水平显著增高(P < 0.01);与Model组比较,四个用药组中Leptin mRNA的表达水平均显著降低(P < 0.01), BJF、PIO和BJF PIO组IRS-1 mRNA的表达水平均显著增高(P < 0.01);BJF和BJF PIO组中PGC-1α mRNA的表达水平较Model组显著升高(P < 0.01);BJF、BJF PIO和Am组中PI3K mRNA的表达水平较Model组显著增高(P < 0.01)。与Control组比较,Model组PGC-1α、IRS-1、PI3K蛋白表达水平显著降低(P < 0.01),Leptin蛋白表达水平显著增高(P < 0.01)。与Model组比较,BJF组PGC-1α蛋白的表达水平显著增高(P < 0.05),BJF PIO与BJF组IRS-1蛋白表达水平较Model组显著增高(P < 0.05, P < 0.01),Am、BJF和BJF PIO组PI3K蛋白的表达水平较Model组显著增高(P < 0.01),以BJF PIO组最为显著。与Control组比较,Model组股四头肌组织中 TFAM、p-AKT蛋白表达有明显的下降趋势,各治疗组的TFAM、p-AKT蛋白表达均有升高趋势,但无显著性统计学差异(P > 0.05)。结论 补肺健脾方可通过调控IRS-1/PI3K信号轴,改善骨骼肌线粒体的损伤,同时提高线粒体辅激活因子PGC-1α与线粒体转录因子TFAM的表达,增强线粒体的生物合成,从而减轻肺与骨骼肌组织的病理性损伤。

    Abstract:

    Objective To explore the effects of Bufei Jianpi Formula (BJF) on mitochondrial damage of skeletal muscle in COPD rats by regulating IRS-1/PI3K signaling axis. Methods 60 SPF SD rats were randomly divided into blank group, model group (COPD stable stage group), BJF group, pioglitazone group (PIO group), BJF PIO group and aminophylline group, with 10 rats per group. The stable COPD rat model was established by the method of smoking and nasal drip (Klebsiella pneumoniae). The samples were taken from the 9th week to the end of the 20th week, and the weight of the rats was measured every week. Routine sections and HE staining were performed on lung tissue and skeletal muscle tissue respectively, and the corresponding pathological changes were observed under light microscope. Lung function of rats was observed by whole body plethysmography (WBP) at week 0, 8 and 20, including tidal volume (VT) and peak expiratory flow, respectively. PEF), 50% tidal volume expiratory flow (EF50). The mRNA expression of IRS-1, Leptin, PGC1-α and PI3K in rat skeletal muscle was detected by qPCR. The expression of PGC-1α, TFAM, IRS-1, PI3K, AKT, p-AKT and Leptin in rat skeletal muscle tissue was detected by WB technique. Results Compared with the Control group, there were a large number of inflammatory cells infiltrated in the alveolar interstitium and bronchus in the Model group, some alveolar walls were broken and fused to form air cavities, and the fibrous network was destroyed. Compared with Model group, the rupture of alveolar wall and destruction of fibroid network were improved in all groups after medication treatment, and the inflammatory cell infiltration in bronchus was reduced, especially in BJF group and Am group. Compared with the Model group, the skeletal muscle pathology of each group after medication treatment could improve the arrangement space, atrophy and fracture of muscle fibers in different degrees, and the cytoplasmic staining of muscle cells was uneven, among which the BJF group had a more significant effect. Compared with Control group, PEF, VT and EF50 in Model group were significantly decreased from week 8 (P<0.01), while PEF and EF50 in BJF, BJF PIO and Am groups were significantly increased (P<0.01). Compared with Control group, mRNA expression levels of IRS-1, PGC1α and PI3K in Model group were significantly decreased(P<0.01), while Leptin mRNA expression level was significantly increased (P<0.01). Compared with Model group, Leptin mRNA expression levels in four medication groups were significantly decreased (P<0.01), while IRS-1 mRNA expression levels in BJF, PIO and BJF PIO groups were significantly increased (P<0.01). The mRNA expression level of PGC-1α in BJF and BJF PIO groups was significantly higher than that in Model group (P<0.01). Compared with Model group, the expression level of PI3K mRNA in BJF, BJF PIO and Am groups was significantly increased (P < 0.01). Compared with Control group, the protein expression levels of PGC-1α, IRS-1 and PI3K in Model group were significantly decreased (P<0.01), while the protein expression level of Leptin was significantly increased (P<0.01). Compared with Model group, the expression level of PGC-1α protein in BJF group was significantly increased (P<0.05), and the expression level of IRS-1 protein in BJF PIO and BJF groups was significantly increased compared with Model group (P<0.05, P<0.01). The expression level of PI3K protein in Am, BJF and BJF PIO groups was significantly higher than that in Model group (P<0.01), especially in BJF PIO group. Compared with Control group, the protein expressions of TFAM and P-Akt in quadriceps femoris tissue of Model group were significantly decreased, while the protein expressions of TFAM and P-Akt were increased in all treatment groups, but there was no statistically significant difference (P>0.05).Conclusion By regulating IRS-1/PI3K signaling axis, Bufei Jiempi can improve the mitochondrial damage of skeletal muscle, increase the expression of mitochondrial coactivator PGC-1α and mitochondrial transcription factor TFAM, enhance mitochondrial biosynthesis, and reduce the pathological damage of lung and skeletal muscle tissue.

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  • 收稿日期:2023-05-05
  • 最后修改日期:2023-07-20
  • 录用日期:2024-02-26
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