›› 2013, Vol. 28 ›› Issue (10): 944-947.DOI: 10.3969/j.issn.1673-8640.2013.10.020
• Orignal Article • Previous Articles Next Articles
Received:
2013-01-30
Online:
2013-10-30
Published:
2013-10-29
CLC Number:
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.shjyyx.com/EN/10.3969/j.issn.1673-8640.2013.10.020
[1] Bloemen K, Verstraelen S, Van Den Heuvel R, et al. The allergic cascade: review of the most important molecules in the asthmatic lung [J]. Immunol Lett, 2007, 113 (1): 6-18. [2] 杭金国,姚泽忠,管敏昌,等. 台州地区支气管哮喘患儿过敏原特异性IgE检测分析及临床意义[J]. 检验医学, 2011, 26 (9): 627-629. [3] Tzortzaki EG, Proklou A, Siafakas NM. Asthma in the elderly: can we distinguish it from COPD [J]. J Allergy (Cairo), 2011, 2011:843543. [4] Huffnagle GB. The microbiota and allergies/asthma [J]. PLoS Pathog, 2010, 6 (5): e1000549. [5] Zhang Q, Illing R, Hui CK, et al. Bacteria in sputum of stable severe asthma and increased airway wall thickness [J]. Respir Res, 2012, 13: 35. [6] 徐慧香, 张慧燕, 车大钿, 等. 哮喘急性发作与呼吸道感染的关系[J]. 实用儿科临床杂志, 2007,22 (4): 271-272. [7] Bezerra PG, Britto MC, Correia JB, et al. Viral and atypical bacterial detection in acute respiratory infection in children under five years [J]. PLoS One, 2011, 6(4): e18928. [8] Kraft M, Cassell GH, Pak J, et al. Mycoplasma pneumoniae and Chlamydia pneumoniae in asthma: effect of clarithromycin [J]. Chest, 2002, 121 (6): 1782-1788. [9] Wood LG, Simpson JL, Hansbro PM, et al. Potentially pathogenic bacteria cultured from the sputum of stable asthmatics are associated with increased 8-isoprostane and airway neutrophilia [J]. Free Radic Res, 2010, 44 (2): 146-154. [10] Klemets P, Lyytikinen O, Ruutu P, et al. Risk of invasive pneumococcal infections among working age adults with asthma [J]. Thorax, 2010, 65 (8): 698-702. [11] Preston JA, Thorburn AN, Starkey MR, et al. Streptococcus pneumoniae infection suppresses allergic airways disease by inducing regulatory T-cells [J]. Eur Respir J, 2011,37(1): 53-64. [12] Busse WW, Lemanske RF Jr, Gern JE. Role of viral respiratory infections in asthma and asthma exacerbations [J]. Lancet, 2010, 376 (9743): 826-834. [13] Heymann PW, Carper HT, Murphy DD, et al. Viral infections in relation to age, atopy, and season of admission among children hospitalized for wheezing [J]. J Allergy Clin Immunol, 2004, 114 (2): 239-247. [14] Qin L, Hu CP, Feng JT, et al. Activation of lymphocytes induced by bronchial epithelial cells with prolonged RSV infection [J]. PLoS One, 2011, 6 (12): e27113. [15] Wenzel SE, Gibbs RL, Lehr MV, et al. Respiratory outcomes in high-risk children 7 to 10 years after prophylaxis with respiratory syncytial virus immune globulin [J]. Am J Med, 2002, 112 (8): 627-633. [16] Sigurs N, Aljassim F, Kjellman B, et al. Asthma and allergy patterns over 18 years after severe RSV bronchiolitis in the first year of life [J]. Thorax, 2010, 65 (12): 1045-1052. [17] Venarske DL, Busse WW, Griffin MR, et al. The relationship of rhinovirus-associated asthma hospitalizations with inhaled corticosteroids and smoking [J]. J Infect Dis, 2006, 193 (11): 1536-1543. [18] Kling S, Donninger H, Williams Z, et al. Persis-tence of rhinovirus RNA after asthma exacerbation in children [J]. Clin Exp Allergy, 2005, 35 (5): 672-678. [19] Gavala ML, Bertics PJ, Gern JE. Rhinoviruses, allergic inflammation, and asthma [J]. Immunol Rev, 2011, 242(1): 69-90. [20] Chung JY, Han TH, Kim SW, et al. Detection of viruses identified recently in children with acute wheezing [J]. J Med Virol, 2007, 79(8): 1238-1243. [21] Vallet C, Pons-Catalano C, Mandelcwajg A, et al. Human bocavirus: a cause of severe asthma exacerbation in children [J]. J Pediatr, 2009, 155 (2): 286-288. [22] O′Driscoll BR, Hopkinson LC, Denning DW. Mold sensitization is common amongst patients with severe asthma requiring multiple hospital admissions [J]. BMC Pulm Med, 2005, 5:4. [23] Black PN, Udy AA, Brodie SM. Sensitivity to fungal allergens is a risk factor for life-threatening asthma [J]. Allergy, 2000, 55(5):501-504. [24] Chaudhary N, Marr KA. Impact of Aspergillus fumigatus in allergic airway diseases [J]. Clin Transl Allergy, 2011, 1 (1): 4. [25] Agarwal R, Aggarwal AN, Gupta D, et al. Aspergillus hypersensitivity and allergic bronchopulmonary aspergillosis in patients with bronchial asthma: systematic review and meta-analysis [J]. Int J Tuberc Lung Dis, 2009, 13 (8):936-944. [26] O′Driscoll BR, Powell G, Chew F, et al. Comparison of skin prick tests with specific serum immunoglobulin E in the diagnosis of fungal sensitization in patients with severe asthma [J]. Clin Exp Allergy, 2009, 39 (11): 1677-1683. [27] Agarwal R. Severe asthma with fungal sensitization [J]. Curr Allergy Asthma Rep, 2011, 11 (5):403-413. [28] Ege MJ, Mayer M, Normand AC, et al. Exposure to environmental microorganisms and childhood asthma [J]. N Engl J Med, 2011, 364(8): 701-709. [29] Nembrini C, Sichelstiel A, Kisielow J, et al. Bacterial-induced protection against allergic inflammation through a multicomponent immunoregulatory mechanism [J]. Thorax, 2011, 66 (9): 755-763. [30] Brand S, Teich R, Dicke T, et al. Epigenetic regulation in murine offspring as a novel mechanism for transmaternal asthma protection induced by microbes [J]. J Allergy Clin Immunol, 2011, 128 (3): 618-625. |
[1] | . [J]. Laboratory Medicine, 2023, 38(7): 692-695. |
[2] | FANG Yongmei, ZHANG Yan, XU Xueying, ZHONG Feng. Correlation of Staphylococcus aureus drug resistance with drug resistance genes and virulence genes [J]. Laboratory Medicine, 2023, 38(4): 357-361. |
[3] | LIU Congcong, LI Jiaping, ZHOU Hongwei. Performance evaluation of 2 mass spectrometry systems in clinical microbial identification [J]. Laboratory Medicine, 2022, 37(11): 1084-1088. |
[4] | . [J]. Laboratory Medicine, 2022, 37(10): 952-954. |
[5] | LI Renqiang, LUO Junfeng, CHEN Yundi. Establishment and evaluation of α-thalassemia and β-thalassemia mutation determinations using hetero-tail dual-labeled fluorescent probe hydridization [J]. Laboratory Medicine, 2022, 37(10): 955-962. |
[6] | BAO Hailin, HUA Hongyan, SUN Hengliang, LIU Hua, JI Shunnian, QIN Chenhao, DU Hong. Rapid identification of carbapenemase producing Enterobacteriaceae phenotypes by modified Carba Np test and mCIM/eCIM test [J]. Laboratory Medicine, 2022, 37(10): 963-968. |
[7] | YANG Xi, SONG Wenqi, DONG Fang, MENG Qingying, ZHEN Jinghui, ZHOU Wei. Application of Gram staining and MALDI-TOF MS in the rapid identification of pathogen kinds in children's positive blood culture [J]. Laboratory Medicine, 2022, 37(10): 969-973. |
[8] | WANG Lixin, SU Yunfu, WANG Yi. Research progress on the drug resistance mechanism of clinical pathogens to fosfomycin [J]. Laboratory Medicine, 2022, 37(10): 993-997. |
[9] | YANG Xiaolan, HU Zengjun, WANG Shengqing, MA Shuxia, ZENG Yongjie, WANG Chenglei. Distribution of some common intestinal bacteria in elderly patients with acute cerebral infarction and its correlation with cognitive function [J]. Laboratory Medicine, 2022, 37(9): 839-843. |
[10] | HAO Jiahui, YANG Zehua. Research progress of bacterial integron determination methods [J]. Laboratory Medicine, 2022, 37(9): 887-891. |
[11] | LI Kun, ZHANG Guojun. Research progress of carbon quantum dots and graphene quantum dots in sensing field [J]. Laboratory Medicine, 2022, 37(8): 787-792. |
[12] | CHEN Hanlu, WU Shenghai. Influence factors of blood culture negative results and progress of pathogen detection in bloodstream infection [J]. Laboratory Medicine, 2022, 37(7): 688-694. |
[13] | DU Jinghui, HUANG Zikun, LIU Min, GONG Jingjing, WANG Dan, LIU Jibo, LIU Xu. Rapid determination of minimum inhibitory concentration and cut-off concentration of Mycobacterium tuberculosis by nitrate reductase assay using liquid medium [J]. Laboratory Medicine, 2022, 37(6): 568-576. |
[14] | WEN Qinghui, LI Fengying, LI Yanchang, HUANG Jinyin, WANG Fengping. Drug susceptibility of multidrug-resistant ESBL-producing Escherichia coli to antimicrobial agents restored by different concentrations of EDTA [J]. Laboratory Medicine, 2022, 37(3): 205-208. |
[15] | CHU Minjun, LI Xiaojuan, HUANG Hailin, LI Jue, MA Mingbiao, DU Tingyi, WANG Haiping. Influence of delayed entry on fastidious bacterium culture in 2 blood culture systems [J]. Laboratory Medicine, 2022, 37(3): 209-212. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||