Tianjin Medical Journal ›› 2024, Vol. 52 ›› Issue (9): 924-929.doi: 10.11958/20240222
• Experimental Research • Previous Articles Next Articles
FAN Huihui(), REN Yumei△(
), TIAN Xinlei, ZHANG Kai, LI Xiaoli
Received:
2024-02-23
Revised:
2024-04-18
Published:
2024-09-15
Online:
2024-09-06
Contact:
△E-mail:FAN Huihui, REN Yumei, TIAN Xinlei, ZHANG Kai, LI Xiaoli. Effects of Zhike Pingchuan Formula on airway inflammation and TLR4/TRAF6/NF-κB pathway in bronchial asthma mice[J]. Tianjin Medical Journal, 2024, 52(9): 924-929.
CLC Number:
组别 | TNF-α | IL-17 |
---|---|---|
对照组 | 8.66±0.31 | 15.52±0.41 |
BA组 | 34.95±1.23a | 58.61±2.06a |
止咳平喘方低剂量组 | 29.51±1.01b | 47.87±1.85b |
止咳平喘方高剂量组 | 12.88±0.42bc | 20.66±1.31bc |
地塞米松组 | 12.91±0.43bc | 20.72±1.35bc |
LPS组 | 43.35±1.87b | 67.68±2.73b |
止咳平喘方高剂量+LPS组 | 25.54±0.96d | 43.36±2.05d |
F | 1 906.643** | 1 535.875** |
Tab.1 Comparison of changes of TNF-α and IL-17 levels in alveolar lavage fluid of mice between seven groups
组别 | TNF-α | IL-17 |
---|---|---|
对照组 | 8.66±0.31 | 15.52±0.41 |
BA组 | 34.95±1.23a | 58.61±2.06a |
止咳平喘方低剂量组 | 29.51±1.01b | 47.87±1.85b |
止咳平喘方高剂量组 | 12.88±0.42bc | 20.66±1.31bc |
地塞米松组 | 12.91±0.43bc | 20.72±1.35bc |
LPS组 | 43.35±1.87b | 67.68±2.73b |
止咳平喘方高剂量+LPS组 | 25.54±0.96d | 43.36±2.05d |
F | 1 906.643** | 1 535.875** |
组别 | Th17/% | Treg/% | Th17/Treg比值 |
---|---|---|---|
对照组 | 3.19±0.12 | 33.56±1.64 | 0.09±0.01 |
BA组 | 22.67±1.01a | 12.28±0.56a | 1.85±0.06a |
止咳平喘方低剂量组 | 16.78±0.73b | 17.73±0.61b | 0.95±0.05b |
止咳平喘方高剂量组 | 7.54±0.31bc | 29.01±1.15bc | 0.26±0.02bc |
地塞米松组 | 7.52±0.19bc | 29.22±1.18bc | 0.25±0.02bc |
LPS组 | 26.67±1.21b | 9.66±0.31b | 2.76±0.13b |
止咳平喘方高剂量+LPS组 | 14.46±0.68d | 20.23±1.02d | 0.71±0.06d |
F | 857.346** | 486.504** | 1 487.178** |
Tab.2 Comparison of Th17, Treg cell ratio and Th17/Treg ratio in spleen tissue of mice between seven groups
组别 | Th17/% | Treg/% | Th17/Treg比值 |
---|---|---|---|
对照组 | 3.19±0.12 | 33.56±1.64 | 0.09±0.01 |
BA组 | 22.67±1.01a | 12.28±0.56a | 1.85±0.06a |
止咳平喘方低剂量组 | 16.78±0.73b | 17.73±0.61b | 0.95±0.05b |
止咳平喘方高剂量组 | 7.54±0.31bc | 29.01±1.15bc | 0.26±0.02bc |
地塞米松组 | 7.52±0.19bc | 29.22±1.18bc | 0.25±0.02bc |
LPS组 | 26.67±1.21b | 9.66±0.31b | 2.76±0.13b |
止咳平喘方高剂量+LPS组 | 14.46±0.68d | 20.23±1.02d | 0.71±0.06d |
F | 857.346** | 486.504** | 1 487.178** |
组别 | TLR4/ GAPDH | TRAF6/ GAPDH | p-NF-κB p65/ NF-κB p65 |
---|---|---|---|
对照组 | 0.65±0.04 | 0.41±0.03 | 0.23±0.01 |
BA组 | 1.84±0.22a | 0.86±0.03a | 0.64±0.05a |
止咳平喘方低剂量组 | 1.50±0.18b | 0.71±0.05b | 0.50±0.04b |
止咳平喘方高剂量组 | 1.03±0.11bc | 0.52±0.03bc | 0.31±0.03bc |
地塞米松组 | 1.01±0.12bc | 0.51±0.04bc | 0.32±0.02bc |
LPS组 | 2.29±0.23b | 0.94±0.04b | 0.81±0.07b |
止咳平喘方高剂量+LPS组 | 1.38±0.12d | 0.69±0.05d | 0.47±0.03d |
F | 73.344** | 145.358** | 155.540** |
Tab.3 Comparison of changes in TLR4, TRAF6 and p-NF-κB p65 protein in lung tissue between seven groups
组别 | TLR4/ GAPDH | TRAF6/ GAPDH | p-NF-κB p65/ NF-κB p65 |
---|---|---|---|
对照组 | 0.65±0.04 | 0.41±0.03 | 0.23±0.01 |
BA组 | 1.84±0.22a | 0.86±0.03a | 0.64±0.05a |
止咳平喘方低剂量组 | 1.50±0.18b | 0.71±0.05b | 0.50±0.04b |
止咳平喘方高剂量组 | 1.03±0.11bc | 0.52±0.03bc | 0.31±0.03bc |
地塞米松组 | 1.01±0.12bc | 0.51±0.04bc | 0.32±0.02bc |
LPS组 | 2.29±0.23b | 0.94±0.04b | 0.81±0.07b |
止咳平喘方高剂量+LPS组 | 1.38±0.12d | 0.69±0.05d | 0.47±0.03d |
F | 73.344** | 145.358** | 155.540** |
[1] | LIU X, YU Y, WU Y, et al. A systematic pharmacology-based in vivo study to reveal the effective mechanism of Yupingfeng in asthma treatment[J]. Phytomedicine, 2023, 114:154783. doi:10.1016/j.phymed.2023.154783. |
[2] | 张开功. 止咳平喘方辅治支气管哮喘急性发作期效果观察[J]. 实用中医药杂志, 2022, 38(5):756-758. |
ZHANG K G. Observation on the effect of Zhike Pingchuan prescription in the treatment of acute attack of bronchial asthma[J]. J Prac Chin Med, 2022, 38(5):756-758. | |
[3] | 吴建红. 止咳平喘方重在理肺[J]. 湖北中医学院学报, 2002, 4(1):15. |
WU J H. Zhike Pingchuan prescription focuses on lung management[J]. J Hubei Univ Trad Chin Med, 2002, 4(1):15. doi:10.3969/j.issn.1008-987X.2002.01.006. | |
[4] | 张莹. 止咳平喘方联合西药对支气管哮喘急性发作期的疗效及对肺功能、血清炎性因子和免疫球蛋白的影响[J]. 临床肺科杂志, 2020, 25(10):1565-1569. |
ZHANG Y. Effect of Zhike Pingchuan Formula combined with western medicine on pulmonary function, serum inflammatory factors and immunoglobulins in treatment of patients with acute bronchial asthma[J]. J Clin Pulmonol, 2020, 25(10):1565-1569. doi:10.3969/j.issn.1009-6663.2020.10.025. | |
[5] | 雷俊. 牛蒡子苷元抑制TLR4/TRAF6/NF-κB信号通路对哮喘模型大鼠气道重塑和Th1/Th2免疫平衡的影响[J]. 免疫学杂志, 2023, 39(1):12-20. |
LEI J. Effects of arctigenin on airway remodeling and Th1/Th2 immune balance in asthma model rats by inhibiting TLR4/TRAF6/NF-κB signaling pathway[J]. Immunological Jouranl, 2023, 39(1):12-20. doi:10.13431/j.cnki.immunol.j.20230002. | |
[6] | 钟新春, 朱振刚, 刘超武, 等. 基于STAT1信号通路探讨疏风通络方对支气管哮喘小鼠Th1/Th2失衡的影响[J]. 中国免疫学杂志, 2022, 38(22):2729-2734. |
ZHONG X C, ZHU Z G, LIU C W, et al. Effect of Shufeng Tongluo prescription on Th1/Th2 imbalance in mice with bronchial asthma based on STAT1 signaling pathway[J]. Chin J Immunol, 2022, 38(22):2729-2734. doi:10.3969/j.issn.1000-484X.2022.22.008. | |
[7] | 黄柏文, 杨海丽, 李芳. 平喘止咳方对慢性阻塞性肺疾病模型大鼠γ-GCS、TIMP-1表达及气道重塑的影响[J]. 中国临床研究, 2020, 33(8):1032-1036. |
HUANG B W, YANG H L, LI F. Effect of Pingchuan Zhike Decoction on expression of γ-GCS,TIMP-1 and airway remodeling in rats with COPD[J]. Chin J Clin Res, 2020, 33(8):1032-1036. doi:10.13429/j.cnki.cjcr.2020.08.006. | |
[8] | 李牧瑶, 陈晨, 郭旭冉, 等. 搜风愈喘方基于ERK/p38MAPK信号通路对支气管哮喘模型大鼠气道炎症的作用机制探讨[J]. 中药新药与临床药理, 2023, 34(4):487-493. |
LI M Y, CHEN C, GUO X R, et al. Investigation on the mechanism of Soufeng Yuchuan Recipe on airway inflammation in rats model of bronchial asthma based on ERK/p38MAPK signaling pathway[J]. New Chin Med Clin Pharm, 2023, 34(4):487-493. doi:10.19378/j.issn.1003-9783.2023.04.008. | |
[9] | 刘英杰, 姜茜, 张胜娜. 天麻素对毛果芸香碱诱发的癫痫大鼠TLR4/NF-κB信号通路影响的研究[J]. 新中医, 2020, 52(4):1-6. |
LIU Y J, JIANG Q, ZHANG S N. Study on the effect of gastrodin on TLR4/NF-κB signaling pathway in rats with epilepsy induced by pilocarpine[J]. New Chin Med, 2020, 52(4):1-6. doi:10.13457/j.cnki.jncm.2020.04.001. | |
[10] | 王生成, 李琪, 蔡潇阳, 等. 汉防己甲素对支气管哮喘小鼠气道重塑的影响及机制探讨[J]. 天津医药, 2023, 51(9):943-948. |
WANG S C, LI Q, CAI X Y, et al. Effect and mechanism of tetrandrine on airway remodeling in bronchial asthma mice[J]. Tianjin Med J, 2023, 51(9):943-948. doi:10.11958/20222063. | |
[11] | PAN L, CHEN Y, JIANG Y, et al. Yanghe pingchuan granules alleviate airway inflammation in bronchial asthma and inhibit pyroptosis by blocking the TLR4/NF-κB/NRLP3 signaling pathway[J]. Mediators Inflamm, 2022,2022:6561048. doi:10.1155/2022/6561048. |
[12] | TEAGUE W G. IgE-specific antibodies to staphylococcal enterotoxins: novel markers of type 2 inflammation in children with moderate to severe asthma[J]. J Allergy Clin Immunol Pract, 2023, 11(3):797-798. doi:10.1016/j.jaip.2022.12.020. |
[13] | MA J G, WU G J, XIAO H L, et al. Vitamin D has an effect on airway inflammation and Th17/Treg balance in asthmatic mice[J]. Kaohsiung J Med Sci, 2021, 37(12):1113-1121. doi:10.1002/kjm2.12441. |
[14] | 黄彬, 刘纪宁, 刘丹, 等. 止咳平喘方联合参麦注射液对支气管哮喘急性发作期患者肺功能和炎症相关因子水平的影响[J]. 河北中医, 2022, 44(7):1107-1110. |
HUANG B, LIU J N, LIU D, et al. Effect of Zhike Pingchuan Formula combined with Shenmai injection on pulmonary function and inflammation-related factors in patients with acute attack of bronchial asthma[J]. Hebei Trad Chin Med, 2022, 44(7):1107-1110. doi:10.3969/j.issn.1002-2619.2022.07.012. | |
[15] | 靳松丽, 王景景, 卢丽娜. 止咳平喘方辅助布地奈德雾化对支气管哮喘患儿肺换气功能及血清miR-155、miR-21的影响[J]. 新中医, 2021, 53(4):124-128. |
JIN S L, WANG J J, LU L N. Effect of aerosol inhalation of budesonide assisted with Zhike Pingchuan Prescription on pulmonary gas exchange and serum miR-155 and miR-21 of children with bronchial asthma[J]. New Chin Med, 2021, 53(4):124-128. doi:10.13457/j.cnki.jncm.2021.04.032. | |
[16] | PRADHAN P, TOY R, JHITA N, et al. TRAF6-IRF5 kinetics,TRIF,and biophysical factors drive synergistic innate responses to particle-mediated MPLA-CpG co-presentation[J]. Sci Adv, 2021, 7(3):eabd4235. doi:10.1126/sciadv.abd4235. |
[17] | ZHOU Q, WANG Q, HE B, et al. MicroRNA 322-5p reduced neuronal inflammation via the TLR4/TRAF6/NF-κB axis in a rat epilepsy model[J]. Open Med(Wars), 2022, 17(1):907-914. doi:10.1515/med-2022-0485. |
[18] | WANG J, CUI Z, LIU L, et al. MiR-146a mimic attenuates murine allergic rhinitis by downregulating TLR4/TRAF6/NF-κB pathway[J]. Immunotherapy, 2019, 11(13):1095-1105. doi:10.2217/imt-2019-0047. |
[19] | CHEN S, PIAO Y, SONG Y, et al. Protective effects of glaucocalyxin A on the airway of asthmatic mice[J]. Open Med(Wars), 2022, 17(1):1158-1171. doi:10.1515/med-2022-0513. |
[1] | CHEN Wei, ZHAO Mengya, XIAO Fei, LIU Chuanhe. Changes of pulmonary function of pertussis in children aged 5-17 years [J]. Tianjin Medical Journal, 2024, 52(10): 1075-1079. |
[2] | XU Guiying, LI Yu, LI Xue, LIU Yimeng, CHEN Huaiyong. Study of Lkb1 regulates epithelial regeneration in asthma using airway organoid [J]. Tianjin Medical Journal, 2024, 52(1): 11-15. |
[3] | WANG Shengcheng, LI Qi, CAI Xiaoyang, TANG Yongjie. Effect and mechanism of tetrandrine on airway remodeling in bronchial asthma mice [J]. Tianjin Medical Journal, 2023, 51(9): 943-947. |
[4] | PAN Chenhui, WANG Yu, MA Zifeng, WU Dingzhong, ZHANG Shaoyan, QIU Lei, LU Zhenhui. Clinical features and risk factors of chronic persistent asthma small airway dysfunction [J]. Tianjin Medical Journal, 2023, 51(12): 1365-1368. |
[5] | YUAN Chen, ZHU Zhen-gang. Analysis of clinical characteristics and related factors of fatigue symptoms in asthmatic patients [J]. Tianjin Medical Journal, 2021, 49(8): 833-837. |
[6] | ZHOU Xuan, TAN Zhi-tuan, REN Yi, CHEN Qiu-li, WU Hong, YU Dao-rui△. Naringenin reduces airway inflammation in asthmatic rats by inhibiting NF-κB signaling pathway [J]. Tianjin Medical Journal, 2021, 49(5): 483-489. |
[7] | GENG Bei, LI Kuan, , WU Qi, △, LI Shuang-yan, CHEN Huai-yong, , . The effect of G6PD inhibitor on the proliferation of mouse airway Club cells [J]. Tianjin Medical Journal, 2021, 49(4): 359-363. |
[8] | CHEN Di, DAI Biao, CHEN Ru-hua. The value of microRNA-1 in the diagnosis and prediction of glucocorticoid therapy sensitivity of acute onset of bronchial asthma [J]. Tianjin Medical Journal, 2021, 49(12): 1291-1296. |
[9] | WANG Meng, Paligu·Maimaitili, LI Hui, LYU Chuan-feng. Effects of rhynchophylline solid lipid nanoparticles on miR-155/p38 MAPK axis in asthmatic mice [J]. Tianjin Medical Journal, 2021, 49(11): 1154-1158. |
[10] | LIU Li, ZOU Ying-xue△. Advances in the study of type 2 innate lymphocytes in allergic diseases [J]. Tianjin Medical Journal, 2020, 48(9): 908-912. |
[11] | ZHANG He, ZHANG Yun, WANG Song-ping. Effects of 1, 25-dihydroxyvitamin D3 on ROS regulating airway#br# remodeling through TGF-β1/(Smad2/3) #br# [J]. Tianjin Medical Journal, 2020, 48(4): 267-270. |
[12] | ZHAN Qian, DU Li-jun, DAI Xi, YUAN Jing, LIU Ben, WANG Rong-li△. Effects of heme oxygenase -1 on MUC5AC and IL-25 in asthmatic mice [J]. Tianjin Medical Journal, 2020, 48(10): 952-956. |
[13] | LIU Guo, ZHANG Xiang-yan, ZHANG Cheng. Clinical study of bronchial asthma-chronic obstructive pulmonary disease overlap with depression [J]. Tianjin Med J, 2019, 47(4): 414-417. |
[14] | ZHOU Si-fang1△, DING Ying-ping2, WU Xin-long2, SUN Jian1, HU Xiang-yun1, DENG Huan1. Expression and clinical significance of induced sputum neutrophil S100 A8/A9 in children with bronchial asthma [J]. Tianjin Med J, 2017, 45(3): 267-270. |
[15] | WANG Hanhua, YANG Xiaochun, CUI Mingchao. Activity study of the ethanol extract of thunberg fritillary leaf and the ethanol extract of thunberg fritillary flower on relieving cough, abolishing phlegm and relieving asthma [J]. Tianjin Med J, 2016, 44(10): 1225-1228. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||