参考文献/References:
[1]Zhang P.The role of diet and nutrition in allergic diseases[J].Nutrients,2023,15(17):3683. [2]中华儿科杂志编辑委员会,中华医学会儿科学分会.儿童过敏性疾病诊断及治疗专家共识[J].中华儿科杂志,2019,57(3):164-171. [3]Gu WJ,Li G,Zhang WL,et al.MiR-29b regulates Th2 cell differentiation in asthma by targeting inducible B7-H3 and STAT3[J].Clin Transl Allergy,2022,12(1):e12114. [4]李荣荣,瞿申红,张少杰,等.miR-155/GATA3/CD4+T细胞通路对变应性鼻炎发病机制的调控[J].中国免疫学杂志,2024,40(3):629-635.[5]胡晓娟,聂红.MicroRNA在免疫系统中的作用[J].细胞与分子免疫学杂志,2011,27(8):930-932.[6]张亚洁,陆思楚,马成蕾,等.miR-193a-3p在子宫内膜癌中的表达及临床病理的关系[J].医学研究杂志,2022,51(6):168-172.[7]Hussen BM,Hidayat HJ,Salihi A,et al.MicroRNA: A signature for cancer progression[J].Biomed Pharmacother,2021,138:111528. [8]阿孜古丽·买提玉素甫,塔来提·吐尔干,赵萍.血清LncRNA OSER1-AS1、miR-433-3p表达对肝细胞癌的诊断效能及与病理参数的关系[J].国际检验医学杂志,2025,46(2):163-167,174.[9]Hill M,Tran N.miRNA interplay: mechanisms and consequences in cancer[J].Dis Model Mech,2021,14(4):dmm047662. [10]Li S,Cui H,Lu H,et al.Advances in noncoding RNA in children allergic rhinitis[J].Int Forum Allergy Rhinol,2024,14(8):1350-1362. [11]张瑞,于文章.过敏性鼻炎患儿特异性免疫球蛋白E、微小RNA-487b 和炎症因子水平分析及意义[J].医学理论与实践,2025,38(2):295-297.[12]周立,孙永东,孟娟,等.通窍鼻炎颗粒治疗中重度持续性变应性鼻炎的临床观察[J].中国中西医结合耳鼻咽喉科杂志,2024,32(4):255-260.[13]Chen Z,Deng Y,Li F,et al.MicroRNA-466a-3p attenuates allergic nasal inflammation in mice by targeting GATA3[J].Clin Exp Immunol,2019,197(3):366-375. [14]顾挺,刘晓庆,曹凤,等.变应性鼻炎患儿外周血miRNA-21表达水平及其临床意义[J].实用临床医药杂志,2021,25(16):13-17,21.[15]Hammad NM,Nabil F,Elbehedy EM,et al.Role of MicroRNA-155 as a Potential Biomarker for Allergic Rhinitis in Children[J].Can Respir J,2021,2021:5554461.[16]Jian H,Feng H,Zhu L,et al.MicroRNA-150-5P regulates Th1/Th2 cytokines expression levels by targeting EGR2 in allergic rhinitis[J].Rhinology,2024,62(2):250-256. [17]Li Y,An R,Wu M,et al.miR-224-5p Attenuates Allergic Responses in Mice with Allergic Rhinitis by Modulating the Th1/Th2 Response[J].Anal Cell Pathol (Amst),2024,2024:5531970. [18]Geng XR,Qiu SQ,Yang LT,et al.Allergen-specific immune response suppresses interleukin 10 expression in B cells via increasing micro-RNA-17-92 cluster[J].Cell Biochem Funct,2016,34(6):449-454. [19]Luo X,Hong H,Tang J,et al.Increased Expression of miR-146a in Children With Allergic Rhinitis After Allergen-Specific Immunotherapy[J].Allergy Asthma Immunol Res,2016,8(2):132-140. [20]Wang N,Li P,Liu J,et al.MiR-29a-3p promotes nasal epithelial barrier dysfunction via direct targeting of CTNNB1-VCL module in allergic rhinitis[J].Int Immunopharmacol,2023,120:110325. [21]Dharmage SC,Perret JL,Custovic A.Epidemiology of Asthma in Children and Adults[J].Front Pediatr,2019,7:246. [22]Kierbiedz-Guzik N,Sozańska B.miRNAs as Modern Biomarkers in Asthma Therapy[J].Int J Mol Sci,2023,24(14):11499.[23]Mao Z,Ding Z,Liu Z,et al.miR-21-5p Modulates Airway Inflammation and Epithelial-Mesenchymal Transition Processes in a Mouse Model of Combined Allergic Rhinitis and Asthma Syndrome[J].Int Arch Allergy Immunol,2024,185(8):775-785. [24]Eikashef SMMAE,Ahma SE,Soliman YMA,et al.Role of microRNA-21 and microRNA-155 as biomarkers for bronchial asthma[J].Innate Immun,2021,27(1):61-69. [25]Tong N,Liu D,Lu L,et al.miR-410 Regulates Helper T Cell Differentiation in Ovalbumin-Induced Asthma through the PI3K-AKT-VEGF Signaling Pathway[J].Int Arch Allergy Immunol,2024,185(1):1-9. [26]Lou L,Tian M,Chang J,et al.MiRNA-192-5p attenuates airway remodeling and autophagy in asthma by targeting MMP-16 and ATG7[J].Biomed Pharmacother,2020,122:109692. [27]Wang T,Zhou Q,Shang Y.MiRNA-451a inhibits airway remodeling by targeting Cadherin 11 in an allergic asthma model of neonatal mice[J].Int Immunopharmacol,2020,83:106440. [28]Duan W,Huang J,Wasti B,et al.miR-146a-3p as a potential novel therapeutic by targeting MBD2 to mediate Th17 differentiation in Th17 predominant neutrophilic severe asthma[J].Clin Exp Med,2023,23(6):2839-2854. [29]Liu Y,Huo SG,Xu L,et al.MiR-135b Alleviates Airway Inflammation in Asthmatic Children and Experimental Mice with Asthma via Regulating CXCL12[J].Immunol Invest,2022,51(3):496-510. [30]Langan SM,Irvine AD,Weidinger S.Atopic dermatitis[J].Lancet,2020,396(10247):345-360. [31]Chen XF,Zhang LJ,Zhang J,et al.MiR-151a is involved in the pathogenesis of atopic dermatitis by regulating interleukin-12 receptor β2[J].Exp Dermatol,2018,27(4):427-432. [32]周锌.MBD2在特应性皮炎中激活IRF4促进Th2细胞分化的分子机制研究[D].广州:南方医科大学,2024.[33]Wagner RN,Pi?觡ón Hofbauer J,Wally V,et al.Epigenetic and metabolic regulation of epidermal homeostasis[J].Exp Dermatol,2021,30(8):1009-1022.
相似文献/References:
[1]罗婵娟.子宫内膜癌组织中miR-143的表达及与预后的相关性分析[J].医学信息,2022,35(15):75.[doi:10.3969/j.issn.1006-1959.2022.15.016]
LUO Chan-juan.Expression of miR-143 in Endometrial Carcinoma Tissues and its Correlation with Prognosis[J].Journal of Medical Information,2022,35(10):75.[doi:10.3969/j.issn.1006-1959.2022.15.016]
[2]郭居斗,杜振宗,宋剑非.LncRNA作为ceRNA调控miRNA在NSCLC中的作用[J].医学信息,2022,35(15):148.[doi:10.3969/j.issn.1006-1959.2022.15.035]
GUO Ju-dou,DU Zhen-zong,SONG Jian-fei.The Role of LncRNA as ceRNA in Regulating miRNA in NSCLC[J].Journal of Medical Information,2022,35(10):148.[doi:10.3969/j.issn.1006-1959.2022.15.035]
[3]梁 晓,马天仲.miRNAs及其靶基因在子宫内膜容受性中的作用[J].医学信息,2020,33(02):25.[doi:10.3969/j.issn.1006-1959.2020.02.008]
LIANG Xiao,MA Tian-zhong.Study on the Role of miRNAs and its Target Genes in Endometrial Receptivity[J].Journal of Medical Information,2020,33(10):25.[doi:10.3969/j.issn.1006-1959.2020.02.008]
[4]赵振宇.miR-33表达与炎症反应的关系[J].医学信息,2020,33(02):73.[doi:10.3969/j.issn.1006-1959.2020.02.020]
ZHAO Zhen-yu.Relationship Between miR-33 Expression and Inflammatory Response[J].Journal of Medical Information,2020,33(10):73.[doi:10.3969/j.issn.1006-1959.2020.02.020]
[5]张 明.miRNA及lncRNA在糖尿病肾病中的作用机制及临床诊断应用[J].医学信息,2020,33(21):58.[doi:10.3969/j.issn.1006-1959.2020.21.017]
ZHANG Ming.The Mechanism of miRNA and lncRNA in Diabetic Nephropathy and Clinical Diagnosis Application[J].Journal of Medical Information,2020,33(10):58.[doi:10.3969/j.issn.1006-1959.2020.21.017]
[6]卢家兴,陈 昭.2017~2019年唐山工人医院过敏性疾病过敏原检测分析[J].医学信息,2020,33(23):125.[doi:10.3969/j.issn.1006-1959.2020.23.037]
LU Jia-xing,CHEN Zhao.Analysis of Allergen Detection of Allergic Diseases in Tangshan Workers Hospital from 2017 to 2019[J].Journal of Medical Information,2020,33(10):125.[doi:10.3969/j.issn.1006-1959.2020.23.037]
[7]陈明昊,青玉凤,苟婉星,等.绝经后骨质疏松症相关长链非编码RNA的研究进展[J].医学信息,2022,35(22):160.[doi:10.3969/j.issn.1006-1959.2022.22.040]
CHEN Ming-hao,QING Yu-feng,GOU Wan-xing,et al.Research Progress of Long Non-coding RNA Related to Postmenopausal Osteoporosis[J].Journal of Medical Information,2022,35(10):160.[doi:10.3969/j.issn.1006-1959.2022.22.040]
[8]宋 硕,张 颖,陈国通,等.细胞周期蛋白D与女性恶性肿瘤的关系[J].医学信息,2021,34(10):36.[doi:10.3969/j.issn.1006-1959.2021.10.010]
SONG Shuo,ZHANG Ying,CHEN Guo-tong,et al.The Relationship Between Cyclin D and Female Malignant Tumors[J].Journal of Medical Information,2021,34(10):36.[doi:10.3969/j.issn.1006-1959.2021.10.010]
[9]张照亮.过敏性疾病患者血清过敏原检测结果及分析[J].医学信息,2023,36(06):55.[doi:10.3969/j.issn.1006-1959.2023.06.011]
ZHANG Zhao-liang.Results and Analysis of Serum Allergen Detection in Patients with Allergic Diseases[J].Journal of Medical Information,2023,36(10):55.[doi:10.3969/j.issn.1006-1959.2023.06.011]
[10]王 涛,侯润博,潘 鑫.基于生物信息学分析胰岛素分泌细胞诱导过程中miRNA-mRNA调控网络[J].医学信息,2023,36(06):8.[doi:10.3969/j.issn.1006-1959.2023.06.002]
WANG Tao,HOU Run-bo,PAN Xin.Bioinformatics-based Analysis of miRNA-mRNA Regulatory Network During Induction of Insulin-secreting Cells[J].Journal of Medical Information,2023,36(10):8.[doi:10.3969/j.issn.1006-1959.2023.06.002]