International Medicine and Health Guidance News ›› 2024, Vol. 30 ›› Issue (11): 1771-1776.DOI: 10.3760/cma.j.issn.1007-1245.2024.11.003
• New Medical Advances • Previous Articles Next Articles
Research progress on correlation between airborne pollen and allergic diseases
Ren Xuebao, Hou Li, Zhang Liping, Ma Yuanling, Li Yanmei
Department of Otorhinolaryngology, Head, and Neck Surgery, General Hospital of Ningxia Medical University, Yinchuan 750000, China
Received:
2024-03-01
Online:
2024-06-01
Published:
2024-06-25
Contact:
Hou Li, Email: hlahl99@sina.com
Supported by:
Key Plan of Research and Development in Ningxia Hui Autonomous Region (2021BEG92004)
气传花粉与过敏性疾病的相关研究进展
任学宝 侯丽 张丽萍 马元玲 李艳梅
宁夏医科大学总医院耳鼻咽喉头颈外科,宁夏 750000
通讯作者:
侯丽,Email:hlahl99@sina.com
基金资助:
宁夏回族自治区重点研发计划(2021BEG92004)
Ren Xuebao, Hou Li, Zhang Liping, Ma Yuanling, Li Yanmei.
Research progress on correlation between airborne pollen and allergic diseases [J]. International Medicine and Health Guidance News, 2024, 30(11): 1771-1776.
任学宝 侯丽 张丽萍 马元玲 李艳梅.
气传花粉与过敏性疾病的相关研究进展 [J]. 国际医药卫生导报, 2024, 30(11): 1771-1776.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.imhgn.com/EN/10.3760/cma.j.issn.1007-1245.2024.11.003
[1] 叶世泰.变态反应疾病[M].北京:人民卫生出版社,1983:81-85. [2] 李静,孟春明,胡学莲,等. 儿童花粉症研究进展[J]. 中国医药科学,2020,10(18):53-56.DOI:10.3969/j.issn.2095-0616. 2020.18.012. [3] 赵德(鶄)宇,叶彩华,王宇飞,等. 京津冀地区气传花粉数据分析[J]. 植物学报,2021,56(6):751-760.DOI:10.11983/CBB21061. [4] 陈海燕,徐德宇,廖梦娜,等. 中国现代花粉数据集[J]. 植物生态学报,2021,45(7):799-808.DOI:10.17521/cjpe. 2021.0024. [5] 张雨辰,马春梅,方伊曼. 大气花粉监测与传播研究进展[J]. 微体古生物学报,2018,35(2):200-210.DOI:10.16087/j.cnki.1000-0674.2018.02.008. [6] 肖浩,张虹婷,贾巧茹,等. 四川省成都市城区气传花粉监测[J]. 中华临床免疫和变态反应杂志,2020,14(2):99-104.DOI:10.3969∕j.issn.1673-8705.2020.02.003. [7] 姚亚男,李树华,王玥,等. 中国花粉致敏树种分级研究[J]. 中国园林,2023,39(6):114-119.DOI:10.19775/j.cla. 2023.06.0114. [8] Blagkley CH. Experimental researches on the nature and causes of catarrhus aestivus[M].Londrés:Bailliere,Tindal & Cox,1873. [9] Bruffaerts N, De Smedt T, Delcloo A, et al. Comparative long-term trend analysis of daily weather conditions with daily pollen concentrations in Brussels, Belgium[J].Int J Biometeorol,2018,62(3):483-491.DOI:10.1007/s00484-017-1457-3. [10] Ríos B, Torres-Jardón R, Ramírez-Arriaga E, et al. Diurnal variations of airborne pollen concentration and the effect of ambient temperature in three sites of Mexico city[J].Int J Biometeorol,2016,60(5):771-787.DOI:10.1007/s00484-015-1061-3. [11] Ezikanyi DN, Sakwari G, Nnamani CV. Aeroallergens in north-central Nigeria[J].Allergol Immunopathol (Madr),2018,46(6):599-606.DOI:10.1016/j.aller.2018.03.008. [12] Camacho I, Caeiro E, Nunes C, et al. Airborne pollen calendar of Portugal: a 15-year survey (2002-2017)[J].Allergol Immunopathol (Madr),2020,48(2):194-201.DOI:10.1016/j.aller.2019.06.012. [13] Camacho IC. Airborne pollen in Funchal city, (Madeira Island, Portugal) - first pollinic calendar and allergic risk assessment[J].Ann Agric Environ Med,2015,22(4):608-613.DOI:10.5604/12321966.1185762. [14] Antón SF, de la Cruz DR, Sánchez AG, et al. Urban atmospheric levels of allergenic pollen: comparison of two locations in Salamanca, Central-Western Spain[J].Environ Monit Assess,2020,192(7):414.DOI:10.1007/s10661-020-08375-2. [15] Toro AR, Córdova JA, Canales M, et al. Trends and threshold exceedances analysis of airborne pollen concentrations in Metropolitan Santiago Chile[J].PLoS One,2015,10(5):e0123077.DOI:10.1371/journal.pone.0123077. [16] Haberle SG, Bowman DM, Newnham RM, et al. The macroecology of airborne pollen in Australian and New Zealand urban areas[J].PLoS One,2014,9(5):e97925.DOI:10.1371/journal.pone.0097925. [17] So HJ, Moon SJ, Hwang SY, et al. Characteristics of airborne pollen in Incheon and Seoul (2015-2016)[J].Asia Pac Allergy,2017,7(3):138-147.DOI:10.5415/apallergy.2017.7.3.138. [18] Suarez-Suarez M, Costa-Gómez I, Maya-Manzano JM, et al. Diurnal pattern of poaceae and betula pollen flight in Central Europe[J].Sci Total Environ,2023,900:165799.DOI:10.1016/j.scitotenv.2023.165799. [19] Markey E, Clancy JH, Martínez-Bracero M, et al. A comprehensive aerobiological study of the airborne pollen in the Irish environment[J].Aerobiologia (Bologna),2022,38(3):343-366.DOI:10.1007/s10453-022-09751-w. [20] Al-Nesf MA, Gharbi D, Mobayed HM, et al. The association between airborne pollen monitoring and sensitization in the hot desert climate[J].Clin Transl Allergy,2020,10:35.DOI:10.1186/s13601-020-00339-6. [21] Ramon GD, Vanegas E, Felix M, et al. Year-long trends of airborne pollen in Argentina: more research is needed[J].World Allergy Organ J,2020,13(7):100135.DOI:10.1016/j.waojou.2020.100135. [22] 孟龄,杨磊,王巧环,等. 致敏性气传花粉的分布、危害评价及防治措施[J]. 应用生态学报,2023,34(10):2845-2853.DOI:10.13287/j.1001-9332.202310.001. [23] 李全生,江盛学,李欣泽,等. 中国气传致敏花粉的季节和地理播散规律[J]. 解放军医学杂志,2017,42(11):951-955.DOI:10.11855/j.issn.0577-7402.2017.11.03. [24] 邓卓怡. 呼和浩特城区花粉及气象因素与变应性鼻炎就诊情况的相关性研究[D]. 呼和浩特:内蒙古医科大学,2021. [25] 肖兰,王晨钰,宋天园,等. 城市绿地花粉暴露特征与致敏风险评估研究进展[J]. 中国城市林业,2022,20(6):159-167.DOI:10.12169/zgcsly.2022.07.31.0002. [26] 欧阳昱晖,李颖,安羽三,等. 中国北方夏秋季致敏花粉种属和浓度分析[J]. 中国耳鼻咽喉头颈外科,2020,27(4):184-187.DOI:10.16066/j.1672-7002.2020.04.003. [27] 刘宜纲,吕世华,刘建忠,等. 2012-2016年海淀区气传花粉物候特征及其与气象要素的关系[J]. 应用生态学报,2019,30(10):3563-3571.DOI:10.13287/j.1001-9332. 201910.014. [28] 孙爱芝,张海红,李雪银,等. 北京市北部空气花粉类型及浓度变化特征研究[J]. 地理科学,2023,43(4):737-744. DOI:10.13249/j.cnki.sgs.2023.04.017. [29] 徐海侠,崔晓波,刘佳荣,等.内蒙古呼和浩特城区气传致敏花粉流行情况调查[J].山东大学耳鼻喉眼学报,2020,34(2):106-109. [30] 王宏宇,黄海云,刘晓佳,等. 呼和浩特市气传花粉监测与变应性鼻炎变应原谱的研究[J]. 中国眼耳鼻喉科杂志,2023,23(1):55-59,76.DOI:10.14166/j.issn.1671-2420. 2023.01.011. [31] 王涛,刘林菁,黄澜,等. 佛山地区春季气传致敏花粉特点的研究[J]. 现代医学,2018,46(7):802-804.DOI:10.3969/j.issn.1671-7562.2018.07.018. [32] Fernández-González M, Ribeiro H, Pereira JRS, et al. Assessment of the potential real pollen related allergenic load on the atmosphere of Porto city[J]. Sci Total Environ,2019,668:333-341.DOI:10.1016/j.scitotenv.2019.02.345. [33] Rojo J, Rapp A, Lara B, et al. Effect of land uses and wind direction on the contribution of local sources to airborne pollen[J].Sci Total Environ,2015,538:672-682.DOI:10.1016/j.scitotenv.2015.08.074. [34] 苏恺,程甜甜,田露芳,等. 二十四节气与气传致敏花粉及呼吸道过敏相关性研究[J]. 上海交通大学学报(农业科学版),2019,37(5):47-52.DOI:10.3969/J.ISSN.1671-9964. 2019.05.008. [35] Ravindra K, Goyal A, Mor S. Influence of meteorological parameters and air pollutants on the airborne pollen of city Chandigarh, India[J].Sci Total Environ,2022,818:151829.DOI:10.1016/j.scitotenv.2021.151829. [36] Zhao L, Fu W, Gao B, et al. Variation in IgE binding potencies of seven artemisia species depending on content of major allergens[J].Clin Transl Allergy,2020,10(1):50.DOI:10.1186/s13601-020-00354-7. [37] Gao Z, Fu WY, Sun Y, et al. Artemisia pollen allergy in China: component-resolved diagnosis reveals allergic asthma patients have significant multiple allergen sensitization[J].Allergy,2019,74(2):284-293.DOI:10.1111/all.13597. [38] Razzera G, Gadermaier G, de Paula V, et al. Mapping the interactions between a major pollen allergen and human IgE antibodies[J].Structure,2010,18(8):1011-1021.DOI:10.1016/j.str.2010.05.012. [39] Gadermaier G, Hauser M, Ferreira F. Allergens of weed pollen: an overview on recombinant and natural molecules[J].Methods,2014,66(1):55-66.DOI:10.1016/j.ymeth.2013.06.014. [40] 李椿莹,黄海云,刘晓佳,等. 蒿属花粉变应原特征及相关花粉症的研究进展[J]. 中华预防医学杂志,2022,56(6):748-754.DOI:10.3760/cma.j.cn112150-20220314-00232. [41] Oeo-Santos C, López-Rodríguez JC, García-Mouton C, et al. Biophysical and biological impact on the structure and IgE-binding of the interaction of the olive pollen allergen ole e 7 with lipids[J].Biochim Biophys Acta Biomembr,2020,1862(6):183258.DOI:10.1016/j.bbamem.2020. 183258. [42] Benedé S, Ramos-Soriano J, Palomares F, et al. Peptide glycodendrimers as potential vaccines for olive pollen allergy[J].Mol Pharm,2020,17(3):827-836.DOI:10.1021/acs.molpharmaceut.9b01082. [43] Alonso-Díaz de Durana MD, Pérez-Fernández E, Villalba M, et al. Allergy to cypress and olive pollen: clinical phenotypes and allergen recognition[J].J Investig Allergol Clin Immunol,2023.DOI:10.18176/jiaci.0917. [44] Wu L, Hou X, Luo W, et al. Three patterns of sensitization to mugwort, timothy, birch and their major allergen components revealed by Latent class analysis[J].Mol Immunol,2022,145:59-66.DOI:10.1016/j.molimm. 2022.03.009. [45] 陈晴,岳诗雨,张晓楠,等. 柏树花粉主要致敏蛋白Cup a 1的分离纯化[J]. 中华临床免疫和变态反应杂志,2021,15(1):3-6.DOI:10.3969/j.issn.1673-8705.2021.01.002. [46] Guo W, Zhan X, Jiang F, et al. Analysis of allergen components and identification of bioactivity of HSP70 in pollen of Populus deltoides[J].Proteome Sci,2021,19(1):10.DOI:10.1186/s12953-021-00178-8. [47] 徐香,蒋娟,朱家明. 基于Logistic回归对过敏性疾病影响因素的计量分析[J]. 河北北方学院学报(自然科学版),2021,37(5):55-62.DOI:10.3969/j.issn.1673-1492.2021.05.011. [48] 北京医学会过敏变态反应学分会. 过敏性疾病诊治和预防专家共识(Ⅰ)[J]. 中华预防医学杂志,2022,56(10):1387-1394.DOI:10.3760/cma.j.cn112150-20220209- 00116. [49] Kubo M. Innate and adaptive type 2 immunity in lung allergic inflammation[J].Immunol Rev,2017,278(1):162-172.DOI:10.1111/imr.12557. [50] Gilles-Stein S, Beck I, Chaker A, et al. Pollen derived low molecular compounds enhance the human allergen specific immune response in vivo[J].Clin Exp Allergy,2016,46(10):1355-1365.DOI:10.1111/cea.12739. [51] Bergougnan C, Dittlein DC, Hümmer E, et al. Physical and immunological barrier of human primary nasal epithelial cells from non-allergic and allergic donors[J].World Allergy Organ J,2020,13(3):100109.DOI:10.1016/j.waojou.2020.100109. [52] Scheurer S, Toda M, Vieths S. What makes an allergen?[J].Clin Exp Allergy,2015,45(7):1150-1161.DOI:10.1111/cea.12571. [53] Guryanova SV, Finkina EI, Melnikova DN, et al. How do pollen allergens sensitize?[J].Front Mol Biosci,2022,9:900533.DOI:10.3389/fmolb.2022.900533. [54] Bacher P, Heinrich F, Stervbo U, et al. Regulatory T cell specificity directs tolerance versus allergy against aeroantigens in humans[J].Cell,2016,167(4):1067-1078.e16.DOI:10.1016/j.cell.2016.09.050. [55] McKenna OE, Posselt G, Briza P, et al. Multi-approach analysis for the identification of proteases within birch pollen[J].Int J Mol Sci,2017,18(7):1433.DOI:10.3390/ijms18071433. [56] Lee SI, Pham le D, Shin YS, et al. Environmental changes could enhance the biological effect of Hop J pollens on human airway epithelial cells[J].J Allergy Clin Immunol,2014,134(2):470-472.DOI:10.1016/j.jaci.2014.01.034. [57] Eisenbarth SC, Zhadkevich A, Ranney P, et al. IL-4-dependent Th2 collateral priming to inhaled antigens independent of toll-like receptor 4 and myeloid differentiation factor 88[J].J Immunol,2004,172(7):4527-4534.DOI:10.4049/jimmunol.172.7.4527. [58] 高雯雯,郅莉莉,吴福玲,等. IL-37与过敏性疾病的研究进展[J]. 国际医药卫生导报,2023,29(4):461-464.DOI:10.3760/cma.j.issn.1007-1245.2023.04.005. [59] Grilo JR, Kitzmüller C, Aglas L, et al. IgE-cross-blocking antibodies to fagales following sublingual immunotherapy with recombinant bet v 1[J].Allergy,2021,76(8):2555-2564.DOI:10.1111/all.14817. [60] McKenzie CI, Varese N, Aui PM, et al. RNA sequencing of single allergen-specific memory B cells after grass pollen immunotherapy: two unique cell fates and CD29 as a biomarker for treatment effect[J].Allergy,2023,78(3):822-835.DOI:10.1111/all.15529. [61] Babayeva M, Tabynov K, Nurpeisov T, et al. A recombinant Artemisia vulgaris pollen adjuvanted Art v 1 protein-based vaccine treats allergic rhinitis and bronchial asthma using pre- and co-seasonal ultrashort immunotherapy regimens in sensitized mice[J].Front Immunol,2022,13:983621.DOI:10.3389/fimmu. 2022.983621. [62] Yang J, Wang W, Shen Z, et al. Efficacy and safety of artemisia annua sublingual immunotherapy in patients with seasonal allergic rhinoconjunctivitis over two pollen seasons[J].Eur Arch Otorhinolaryngol,2023,280(11):4939-4947.DOI:10.1007/s00405-023-08078-7. [63] Gianni M. Evolution of immunotherapy against pollen allergy[J].Curr Protein Pept Sci,2023,24(6):488-502.DOI:10.2174/1389203724666230303091754. [64] Novak N, Worm M, Staubach P, et al. Subcutaneous birch pollen allergen immunotherapy with a depigmented polymerized extract shows only sustained and long-term efficacy in a subgroup of monosensitized adults and adolescents with allergic rhinitis[J].Clin Transl Allergy,2022,12(10):e12185.DOI:10.1002/clt2.12185. [65] Park KH, Oh EY, Han H, et al. Efficacy of transdermal immunotherapy with biodegradable microneedle patches in a murine asthma model[J].Clin Exp Allergy,2020,50(9):1084-1092.DOI:10.1111/cea.13688. |
[1] |
Zeng Xianhu, Li Ming, Li Zilong, Xiang Xu, Tian Hui, Li Huizhu, Ma Longjie, Fang Xiaoli, Chen Li, Tang Ran.
Research progress on ulcerative colitis in traditional Chinese and western medicines [J]. International Medicine and Health Guidance News, 2024, 30(9): 1415-1418. |
[2] |
Gao Wenwen, Zhang Xiang, Wang Hong, Yin Yanhui.
New progress in treatment of intestinal bacterial overgrowth [J]. International Medicine and Health Guidance News, 2024, 30(9): 1418-1421. |
[3] |
Sun Xiao, Liu Chengxia, Wang Na, Hao Jiahui, Chu Linlin, Li Chengyu.
Relationship between putrescine and macrophage polarization in gastric "inflammatory carcinoma transformation" [J]. International Medicine and Health Guidance News, 2024, 30(9): 1426-1429. |
[4] |
Li Chun, Du Qiaoting, Liu Lingling.
Progress in treatment of primiparae with postpartum lactation deficiency [J]. International Medicine and Health Guidance News, 2024, 30(9): 1446-1449. |
[5] |
He Xiangqin, Yang Fang, Ding Guofeng.
Research progress of traditional Chinese patent medicine related liver injury [J]. International Medicine and Health Guidance News, 2024, 30(9): 1450-1453. |
[6] |
Yang Shoujuan, Zhang Haitao, Cui Mingli, Wang Jian, Li Yang, Cheng Yanli.
Research progress of Wnt signaling pathway in acute myocardial infarction [J]. International Medicine and Health Guidance News, 2024, 30(8): 1291-1296. |
[7] |
Zou Haozhen, Yang Jia, Xi Zhefan, Ji Rui, Dong Hua.
Advances in single-cell RNA sequencing in kidney disease [J]. International Medicine and Health Guidance News, 2024, 30(8): 1307-1311. |
[8] |
Shao Shuang, Guo Jiwei, Meng Wei.
m6A and m5C methylation modification affects the initiation and development of cancers by regulating cellular proliferation and metastasis [J]. International Medicine and Health Guidance News, 2024, 30(8): 1316-1320. |
[9] |
Zhao Bo, Li Siwei, Xing Tian, Gao Ping, Zhu Hongzhe, Li Min.
Research progress of TRPV1 channel in infectious diseases [J]. International Medicine and Health Guidance News, 2024, 30(7): 1057-1062. |
[10] |
Li Mengqi, Li Peng, Du Gangqiang, Sun Hongsuo, Zhang Kai.
Research progress on incidence rate and surgical treatment of long bone nonunion [J]. International Medicine and Health Guidance News, 2024, 30(7): 1062-1066. |
[11] |
Ding Jiawen, Li Na.
Research progress on ESBLs positive Klebsiella pneumoniae [J]. International Medicine and Health Guidance News, 2024, 30(7): 1071-1074. |
[12] |
Chen Xiaolin, Yang Zhen.
Research progress on the relevance of HR-HPV load and cervical precancerous lesions and cervical cancer [J]. International Medicine and Health Guidance News, 2024, 30(6): 932-935. |
[13] |
Zou Haozhen, Yang Jia, Xi Zhefan, Ji Rui, Dong Hua.
Advances in single-cell RNA sequencing in secondary nephrosis [J]. International Medicine and Health Guidance News, 2024, 30(6): 936-940. |
[14] |
Wang Yuwei, Li Rui, Liu Chao, Liang Kuixiang.
Research progress on diagnosis and prevention strategies of pregnancy associated venous thromboembolism [J]. International Medicine and Health Guidance News, 2024, 30(6): 940-945. |
[15] |
Wu Qiaoqiao.
Research progress in pre-anesthetic evaluation of elderly patients [J]. International Medicine and Health Guidance News, 2024, 30(6): 946-948. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||