1.山西中医药大学,山西 晋中 030600
2.山西省针灸医院,太原 030006
吴涵,在读硕士,从事针灸干预变态反应性疾病的机制研究,E-mail:wuhan06282023@163.com
吕玉娥,主任医师,硕士生导师,从事针灸干预变态反应性疾病的机制研究,E-mail:2768770577@qq.com;
翟春涛,副教授,硕士生导师,从事针灸干预变态反应性疾病的机制研究,E-mail:709966203@qq.com
收稿:2024-09-09,
录用:2024-11-07,
网络出版:2024-11-07,
纸质出版:2025-03-05
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吴涵,胡志祥,吉美奇等.基于数据挖掘的过敏性哮喘动物模型应用分析[J].中国实验方剂学杂志,2025,31(05):211-217.
WU Han,HU Zhixiang,JI Meiqi,et al.Analysis of Animal Models of Allergic Asthma Based on Data Mining[J].Chinese Journal of Experimental Traditional Medical Formulae,2025,31(05):211-217.
吴涵,胡志祥,吉美奇等.基于数据挖掘的过敏性哮喘动物模型应用分析[J].中国实验方剂学杂志,2025,31(05):211-217. DOI: 10.13422/j.cnki.syfjx.20241712.
WU Han,HU Zhixiang,JI Meiqi,et al.Analysis of Animal Models of Allergic Asthma Based on Data Mining[J].Chinese Journal of Experimental Traditional Medical Formulae,2025,31(05):211-217. DOI: 10.13422/j.cnki.syfjx.20241712.
目的
2
通过统计分析过敏性哮喘动物模型的造模特点和指标选择,为建立理想的过敏性哮喘动物模型提供参考依据。
方法
2
使用计算机从中国知网、重庆维普、万方、中国生物医学文献数据库及PubMed数据库搜索资源,选择“过敏性哮喘”作为主题词,搜索范围为2019年1月到2024年1月。通过整合文献和提取数据,使用Excel 2021创建个人数据库,对实验所选择的动物品系、性别、致敏物质、模型制备途径、检测指标及检测方法等进行梳理,并运用Excel 2021、SPSS Modeler 18.0、Cytoscape 3.10.2对过敏性哮喘动物模型的相关特性进行分析。
结果
2
数据库共纳入418篇文献,经过对比分析显示造模时应用最多的动物品系为BALB/c小鼠;性别以雌性为主;造模方法以卵清蛋白(OVA)腹腔注射致敏,配合雾化激发给药为主;检测指标主要选择表观指征、细胞分析、肺组织病理、肺功能检测、肺组织蛋白表达、肺组织基因表达等;检测方式主要涉及病理学染色、酶联免疫吸附测定法、免疫组化、免疫荧光、蛋白印迹法及多种聚合酶链式反应等。
结论
2
过敏性哮喘动物模型目前无公认的造模方法及评价标准,基于数据分析的结果,推荐OVA诱导的BALB/c小鼠过敏性哮喘模型,评价造模是否成功的主要标准为一般行为学改变、肺组织气道形态学改变及炎性细胞浸润情况、血清中促炎因子和抑炎因子及支气管肺泡灌洗液中炎性细胞的改变情况。
Objective
2
To provide a basis for the establishment of an ideal animal model of allergic asthma by statistically analyzing the modeling characteristics and the selection of indicators of the available models.
Methods
2
We retrieved the relevant articles from China National Knowledge Infrastructure(CNKI), VIP, Wanfang Data, SinoMed, and PubMed with "allergic asthma" as the keyword and the time interval from January 2019 to January 2024. Through integrating the literature and extracting data, we used Excel 2021 to create a personal database and sorted out the animal strains, genders, allergenic substances, modeling routes, and test indicators and methods. Excel 2021, Cytoscape 3.10.2, and SPSS Modeler 18.0 were then used to analyze the relevant characteristics of the animal models.
Results
2
A total of 418 articles were included in the database, and the comparative analysis showed that the most frequently used animal strain for modeling was BALB/c mice, and female animals were mostly used. The main modeling method was sensitization by intraperitoneal injection of ovalbumin (OVA), which was combined with intranasal inhalation. The test indicators mainly included appearance signs, cellular analysis, lung histopathology, lung function indicators, and protein and gene expression in the lung. The test methods mainly involved pathological staining, enzyme-linked immunosorbent assay, immunohistochemistry, immunofluorescence, Western blot, and polymerase chain reaction(PCR) assays.
Conclusion
2
There is no recognized modeling method or evaluation standard for the animal models of allergic asthma. Based on the results of data analysis, the OVA-induced allergic asthma model in BALB/c mice is recommended. The main criteria for evaluating the success of modeling are the general behavioral changes, the morphological changes of the airway and inflammatory cell infiltration in the lung tissue, the changes of pro-inflammatory and anti-inflammatory cytokines in the serum, and the alterations of inflammatory cells in the bronchoalveolar lavage fluid.
王高明 , 王明航 , 杨江 , 等 . 中国支气管哮喘指南质量的系统评价与思考 [J]. 中国全科医学 , 2024 , doi: 13.1222.R.20240909.0850.004 http://dx.doi.org/13.1222.R.20240909.0850.004 .
WANG G M , WANG M H , YANG J , et al . Systematic evaluation and reflection on the quality of bronchial asthma guidelines in China [J]. Chin General Practice , 2024 , doi: 13.1222.R.20240909.0850.004 http://dx.doi.org/13.1222.R.20240909.0850.004 .
PORSBJERG C , MELÉN E , LEHTIMĂKI L , et al . Asthma [J]. Lancet , 2023 , 401 ( 10379 ): 858 - 873 .
BENSON V S , SIDDALL J , HAQ A , et al . Disease burden,treatment patterns and asthma control in adult patients with asthma in China:A real-world study [J]. J Asthma Allergy , 2024 : 949 - 964 .
王从瑶 , 田春燕 , 李竹英 . 度普利尤单抗在中重度支气管哮喘治疗中的研究进展 [J]. 中华全科医学 , 2024 , 22 ( 9 ): 1571 - 1575 .
WANG C Y , TIAN C Y , LI Z Y , et al . Research progress of dupilumab in the treatment of moderate to severe bronchial asthma [J]. Chin J General Practice , 2024 , 22 ( 9 ): 1571 - 1575 .
苗镡允 , 吕玉娥 , 吉美奇 , 等 . 针刺“大椎-身柱”对穴通过DEK激活PI3K/Akt通路干预过敏性哮喘大鼠上皮间质转化的研究 [J]. 针刺研究 , 2024 , doi: 10.13702/j.1000-0607.20230951 http://dx.doi.org/10.13702/j.1000-0607.20230951 .
MIAO X Y , LYU Y E , JI M Q , et al . Acupuncture inhibits epithelial mesenchymal transition in allergic asthma rats by activating the PI3K/Akt pathway through DEK activation [J]. Acupunct Res , 2024 , doi: 10.13702/j.1000-0607.20230951 http://dx.doi.org/10.13702/j.1000-0607.20230951 .
SCHAUNAMAN N , NICHOLS T , CERVANTES D , et al . The effect of a TLR3 agonist on airway allergic inflammation and viral infection in immunoproteasome-deficient mice [J]. Viruses , 2024 , 16 ( 9 ): 1384 .
ZHANG L , ZHANG W , WANG Y , et al . Allergo-immunopathology mechanism of thymol-inhibiting airway remodeling in asthmatic mice by regulating TGF- β /Smad3 pathway [J]. Allergol Immunopathol , 2024 , 52 ( 5 ): 51 - 58 .
LIU M , LIU S , LI F , et al . The miR‐124‐3p regulates the allergic airway inflammation and remodeling in an ovalbumin‐asthmatic mouse model by inhibiting S100A4 [J]. Immun Inflamm Dis , 2023 , 11 ( 2 ): e730 .
BERGWIK J , LIU J , PADRA M , et al . A novel quinoline with airway relaxant effects and anti-inflammatory properties [J]. Respiratory Res , 2024 , 25 ( 1 ): 146 .
WOODROW J S , SHEATS M K , COOPER B , et al . Asthma:The use of animal models and their translational utility [J]. Cells , 2023 , 12 ( 7 ): 1091 .
郑炜东 , 曲妮妮 . 麻杏石甘汤调控过敏性哮喘中辅助T淋巴细胞机制研究 [J]. 辽宁中医药大学学报 , 2023 , 25 ( 4 ): 30 - 35 .
ZHENG W D , QU N N . Mechanism research on Maxing Shigan decoction regulation on helper T lymphocytes in allergic asthma [J]. J Liaoning Univ Tradit Chin Med , 2023 , 25 ( 4 ): 30 - 35 .
LI H , DI C , XIE Y , et al . Therapeutic potential of the topical recombinant human interleukin-1 receptor antagonist in guinea pigs with allergic rhinitis [J]. Allergy Asthma Clin Immunol , 2024 , 20 ( 1 ): 36 .
ASLANI M R , SHARGHI A , BOSKABADY M H , et al . Altered gene expression levels of IL-17/TRAF6/MAPK/USP25 axis and pro-inflammatory cytokine levels in lung tissue of obese ovalbumin-sensitized rats [J]. Life Sci , 2022 , 296 : 120425 .
MOSTAFA D H D , HEMSHEKHAR M , PIYADASA H , et al . Characterization of sex-related differences in allergen house dust mite-challenged airway inflammation,in two different strains of mice [J]. Sci Rep , 2022 , 12 ( 1 ): 20837 .
王黎源 , 袁圆 , 李成 , 等 . 不同氢氧化铝佐剂剂型辅助卵清蛋白诱导小鼠变应性鼻炎的效果比较 [J]. 牡丹江医学院学报 , 2019 , 40 ( 5 ): 6 - 8,149 .
WANG L Y , YUAN Y , LI C , et al . Comparison of the effects of gel and dry powder of aluminum hydroxide adjuvant on ovalbumin induced allergic rhinitis in mice [J]. J Mudanjiang Med Univ , 2019 , 40 ( 5 ): 6 - 8,149 .
AN M H , LEE P H , CHOI S M , et al . Impact of the junction adhesion molecule-a on asthma [J]. Yonsei Med J , 2023 , 64 ( 6 ): 375 .
XUE J , JIANG C , CHEN X , et al . Trim31 deficiency exacerbates airway inflammation in asthma by enhancing the activation of the NLRP3 inflammasome [J]. Int Immunopharmacol , 2024 , 138 : 112591 .
WAERN I , AKULA S , ALLAM V S R R , et al . Disruption of the mast cell carboxypeptidase A3 gene does not attenuate airway inflammation and hyperresponsiveness in two mouse models of asthma [J]. PLoS One , 2024 , 19 ( 4 ): e0300668 .
胡情 , 苏嘉琪 , 楼金成 , 等 . 针刺对穴“迎香-合谷”对变应性鼻炎大鼠Th1、Th2细胞因子及转录因子T-bet/GATA-3的影响 [J]. 海南医学院学报 , 2023 , 29 ( 15 ): 1135 - 1143 .
HU Q , SU J Q , LOU J C , et al . Effect of acupuncture on acupoint "Yingxiang-Hegu" on Th1,Th2 cytokines and T-bet/GATA-3 of allergic rhinitis rats [J]. J Hainan Med Univ , 2023 , 29 ( 15 ): 1135 - 1143 .
王婷 , 梁华平 , 柴鉴深 , 等 . 三种大鼠急性肺损伤模型的比较 [J]. 成都医学院学报 , 2016 , 11 ( 1 ): 5 - 9 .
WANG T , LIANG H P , CHAI J S , et al . Comparison of three rats' models of acute lung injury [J]. J Chengdu Med College , 2016 , 11 ( 1 ): 5 - 9 .
彭美红 , 卢芳国 . 基于数据挖掘的非物理因素致急性肺损伤动物模型分析 [J]. 中国实验方剂学杂志 , 2023 , 29 ( 23 ): 158 - 165 .
PENG M H , LU F G . Evaluation of animal models of acute lung injury caused by non-physical factors based on data mining [J]. Chin J Exp Tradit Med Form , 2023 , 29 ( 23 ): 158 - 165 .
吴瑞 , 李秀敏 , 苗明三 . 基于数据挖掘的哮喘动物模型应用分析 [J]. 中国比较医学杂志 , 2020 , 30 ( 03 ): 89 - 93 .
WU R , LI X M , MIAO M S , et al . Application analysis of an asthma animal model based on data mining [J]. Chin J Comp Med , 2020 , 30 ( 3 ): 89 - 93 .
CHAUCHÉ C , RASID O , DONACHIE A M , et al . Suppression of airway allergic eosinophilia by Hp‐TGM,a helminth mimic of TGF‐ β [J]. Immunology , 2022 , 167 ( 2 ): 197 - 211 .
BERMAN R , MIN E , HUANG J , et al . Single-cell RNA sequencing reveals a unique monocytepopulation in Bronchoalveolar lavage cells of mice challenged with Afghanistan particulate matter and allergen [J]. Toxicol Sci , 2021 , 182 ( 2 ): 297 - 309 .
HUANG W Y , LEE S H , OH S J , et al . Canavalia gladiata pod extract mitigates ovalbumin-induced asthma onset in male BALB/c mice via suppression of MAPK [J]. Molecules , 2022 , 27 ( 19 ): 6317 .
SONG Y , CHEN Y , CAI H , et al . Lentinan attenuates allergic airway inflammation and epithelial barrier dysfunction in asthma via inhibition of the PI3K/Akt/NF- κ B pathway [J]. Phytomedicine , 2024 , 134 : 155965 .
WÓJCIK-PSZCZOŁA K , POCIECHA K , CHŁOŃ-RZEPA G , et al . Inhaled pan-phosphodiesterase inhibitors ameliorate ovalbumin-induced airway inflammation and remodeling in murine model of allergic asthma [J]. Int Immunopharmacol , 2023 , 119 : 110264 .
PAK S W , LEE I S , KIM W I , et al . Camellia sinensis L.alleviates OVA-induced allergic asthma through NF- κ B and MMP-9 pathways [J]. Animal Cells Syst , 2024 , 28 ( 1 ): 381 - 391 .
HERNANDEZ-RAMIREZ G , PAZOS-CASTRO D , GONZALEZ-KLEIN Z , et al . Alt a 1 promotes allergic asthma in vivo through TLR4-alveolar macrophages [J]. Front Immunol , 2022 , 13 : 877383 .
NIE Y , YANG B , HU J , et al . Bruceine D ameliorates the balance of Th1/Th2 in a mouse model of ovalbumin-induced allergic asthma via inhibiting the NOTCH pathway [J]. Allergol Immunopathol , 2021 , 49 ( 6 ): 73 - 79 .
CHEN X , YUE R , LI X , et al . Surfactant protein A modulates the activities of the JAK/STAT pathway in suppressing Th1 and Th17 polarization in murine OVA-induced allergic asthma [J]. Lab Invest , 2021 , 101 ( 9 ): 1176 - 1185 .
BOOMER J , CHOI J , ALSUP A , et al . Increased Muc5AC and decreased ciliated cells in severe asthma partially restored by inhibition of IL-4R α receptor [J]. Am J Resp Crit Care Med , 2024 , 210 ( 12 ): 1409 - 1420 .
GAN S , LIN L , CHEN Z , et al . Ferroptosis contributes to airway epithelial E-cadherin disruption in a mixed granulocytic asthma mouse model [J]. Exp Cell Res , 2024 , 438 ( 1 ): 114029 .
ITOGA M , ISHIOKA Y , MAKIGUCHI T , et al . Role of G-protein-coupled estrogen receptor in the pathogenesis of chronic asthma [J]. Immunol Lett , 2024 , 265 : 16 - 22 .
LI Q , HU Y Z , GAO S , et al . ProBDNF and its receptors in immune-mediated inflammatory diseases:Novel insights into the regulation of metabolism and mitochondria [J]. Front Immunol , 2023 , 14 : 1155333 .
YUAN H , CHEN J , HU S , et al . Early life exposure to house dust mite allergen prevents experimental allergic asthma requiring mitochondrial H2O2 [J]. Mucosal Immunol , 2022 , 15 ( 1 ): 154 - 164 .
ZHU G , ZENG Y , PENG W , et al . Edaravone alleviated allergic airway inflammation by inhibiting oxidative stress and endoplasmic reticulum stress [J]. Eur J Pharmacol , 2024 , 966 : 176317 .
楼金成 , 苗镡允 , 苏嘉琪 , 等 . 过敏性哮喘大鼠模型的建立方法与评价 [J]. 中国比较医学杂志 , 2023 , 33 ( 1 ): 130 - 137 .
LOU J C , MIAO X Y , SU J Q , et al . Establishment and evaluation of rat model of allergic asthma [J]. Chin J Comparative Med , 2023 , 33 ( 1 ): 130 - 137 .
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