[1] | Zhu HH, Huang JL, Chen YD, et al. Analysis on endemic status of soil-transmitted nematode infection in China in 2019[J]. Chin J Parasitol Parasit Dis, 2021, 39(5): 666-673. (in Chinese) | | (朱慧慧, 黄继磊, 陈颖丹, 等. 2019年全国土源性线虫感染状况分析[J]. 中国寄生虫学与寄生虫病杂志, 2021, 39(5): 666-673.) | [2] | Zhu HH, Huang JL, Chen YD, et al. National surveillance of hookworm disease in China: a population study[J]. PLoS Negl Trop Dis, 2022, 16(6): e0010405. | [3] | Chen YD, Huang JL, Zhu HH, et al. China’s control process of soil-transmitted helminth infections from pandemic to low-endemic levels[J]. Chin J Parasitol Parasit Dis, 2019, 37(4): 395-398. (in Chinese) | | (陈颖丹, 黄继磊, 朱慧慧, 等. 我国土源性线虫从高感染到低感染水平的防治历程[J]. 中国寄生虫学与寄生虫病杂志, 2019, 37(4): 395-398.) | [4] | Ogulur I, Pat Y, Ardicli O, et al. Advances and highlights in biomarkers of allergic diseases[J]. Allergy, 2021, 76(12): 3659-3686. | [5] | Sánchez-Borges M, Fernandez-Caldas E, Thomas WR, et al. International consensus (ICON) on: clinical consequences of mite hypersensitivity, a global problem[J]. World Allergy Organ J, 2017, 10(1): 14. | [6] | Li L, Qian J, Zhou Y, et al. Domestic mite-induced allergy: causes, diagnosis, and future prospects[J]. Int J Immunopathol Pharmacol, 2018, 32: 2058738418804095. | [7] | Strachan DP. Hay fever, hygiene, and household size[J]. BMJ, 1989, 299(6710): 1259-1260. | [8] | van den Biggelaar AHJ, Rodrigues LC, van Ree R, et al. Long-term treatment of intestinal helminths increases mite skin-test reactivity in Gabonese school children[J]. J Infect Dis, 2004, 189(5): 892-900. | [9] | Kok A, Robinson MJ. IgE, parasites, and allergy[J]. Lancet, 1976, 2(7986): 633. | [10] | Turner KJ, Quinn EH, Anderson HR. Regulation of asthma by intestinal parasites. Investigation of possible mechanisms[J]. Immunology, 1978, 35(2): 281-288. | [11] | Costa M, da Costa V, Frigerio S, et al. Heme-oxygenase-1 attenuates oxidative functions of antigen presenting cells and promotes regulatory T cell differentiation during Fasciola hepatica infection[J]. Antioxidants (Basel), 2021, 10(12): 1938. | [12] | Wu YJ, Zhang M, Yu QY, et al. The regulatory effect of heme oxygenase 1 on Th1/Th2 ratio and ILC2 in asthmatic mice[J]. Curr Immunol, 2021, 41(5): 368-373, 391. (in Chinese) | | (武玉姣, 张梦, 俞倩颖, 等. 血红素加氧酶1对哮喘小鼠Th1/Th2比值及ILC2的调节作用[J]. 现代免疫学, 2021, 41(5): 368-373, 391.) | [13] | Coronado S, Barrios L, Zakzuk J, et al. A recombinant cystatin from Ascaris lumbricoides attenuates inflammation of DSS-induced colitis[J]. Parasite Immunol, 2017, 39(4): 10.1111/pim.12425 | [14] | Coronado S, Zakzuk J, Regino R, et al. Ascaris lumbricoides cystatin prevents development of allergic airway inflammation in a mouse model[J]. Front Immunol, 2019, 10: 2280. | [15] | Navarro S, Pickering DA, Ferreira IB, et al. Hookworm recombinant protein promotes regulatory T cell responses that suppress experimental asthma[J]. Sci Transl Med, 2016, 8(362): 362ra143. | [16] | Martin RK, Damle SR, Valentine YA, et al. B1 cell IgE impedes mast cell-mediated enhancement of parasite expulsion through B2 IgE blockade[J]. Cell Rep, 2018, 22(7): 1824-1834. | [17] | Trampert DC, Hubers LM, van de Graaf SFJ, et al. On the role of IgG4 in inflammatory conditions: lessons for IgG4-related disease[J]. Biochim Biophys Acta Mol Basis Dis, 2018, 1864(4 Pt B): 1401-1409. | [18] | Nkurunungi G, Nassuuna J, Mpairwe H, et al. Allergen skin test reactivity and asthma are inversely associated with ratios of IgG4/IgE and total IgE/allergen-specific IgE in Ugandan communities[J]. Clin Exp Allergy, 2021, 51(5): 703-715. | [19] | Catalán D, Mansilla MA, Ferrier A, et al. Immunosuppressive mechanisms of regulatory B cells[J]. Front Immunol, 2021, 12: 611795. | [20] | Xie J, Shi CW, Huang HB, et al. Induction of the IL-10-producing regulatory B cell phenotype following Trichinella spiralis infection[J]. Mol Immunol, 2021, 133: 86-94. | [21] | Qi XW, Shan JY, Liu XL, et al. The role of regulatory B cells in Echinococcus granulosus-infected mice[J]. Parasitol Res, 2021, 120(4): 1389-1404. | [22] | Chayé MAM, Tontini C, Ozir-Fazalalikhan A, et al. Use of toll-like receptor (TLR) ligation to characterize human regulatory B cells subsets[J]. Methods Mol Biol, 2021, 2270: 235-261. | [23] | Gao X, Ren X, Wang Q, et al. Critical roles of regulatory B and T cells in helminth parasite-induced protection against allergic airway inflammation[J]. Clin Exp Immunol, 2019, 198(3): 390-402. | [24] | Haeberlein S, Obieglo K, Ozir-Fazalalikhan A, et al. Schistosome egg antigens, including the glycoprotein IPSE/alpha-1, trigger the development of regulatory B cells[J]. PLoS Pathog, 2017, 13(7): e1006539. | [25] | Okayama Y, Matsumoto H, Odajima H, et al. Roles of omalizumab in various allergic diseases[J]. Allergol Int, 2020, 69(2): 167-177. | [26] | Xiong P, Liu TL, Huang H, et al. IL-27 overexpression alleviates inflammatory response in allergic asthma by inhibiting Th9 differentiation and regulating Th1/Th2 balance[J]. Immunopharmacol Immunotoxicol, 2022, 44(5): 712-718. | [27] | Bellinghausen I, Khatri R, Saloga J. Current strategies to modulate regulatory T cell activity in allergic inflammation[J]. Front Immunol, 2022, 13: 912529. | [28] | Zhang J, Zou Y, Chen LM, et al. Regulatory T cells, a viable target against airway allergic inflammatory responses in asthma[J]. Front Immunol, 2022, 13: 902318. | [29] | Ren JL, Hu LZ, Yang J, et al. Novel T-cell epitopes on Schistosoma japonicum SjP40 protein and their preventive effect on allergic asthma in mice[J]. Eur J Immunol, 2016, 46(5): 1203-1213. | [30] | Johnston CJC, Smyth DJ, Kodali RB, et al. A structurally distinct TGF-β mimic from an intestinal helminth parasite potently induces regulatory T cells[J]. Nat Commun, 2017, 8(1): 1741. | [31] | Chauché C, Rasid O, Donachie AM, et al. Suppression of airway allergic eosinophilia by Hp-TGM, a helminth mimic of TGF-Β[J]. Immunology, 2022, 167(2): 197-211. | [32] | Li L, Shan WQ, Zhu HJ, et al. SJMHE1 peptide from Schistosoma japonicum inhibits asthma in mice by regulating Th17/treg cell balance via miR-155[J]. J Inflamm Res, 2021, 14: 5305-5318. | [33] | Zhang WZ, Li L, Zheng Y, et al. Schistosoma japonicum peptide SJMHE1 suppresses airway inflammation of allergic asthma in mice[J]. J Cell Mol Med, 2019, 23(11): 7819-7829. | [34] | Gao HY, Wan C, Sun FD, et al. Effect of Echinococcus granulosus hydatid cyst fluid protein on allergic rhinitis induced by ovalbumin in mice[J]. Chin J Schisto Control, 2022, 34(2): 158-162. (in Chinese) | | (高宏宇, 万晨, 孙发缔, 等. 细粒棘球蚴囊液蛋白对卵清蛋白诱导的小鼠变应性鼻炎效果[J]. 中国血吸虫病防治杂志, 2022, 34(2): 158-162.) | [35] | Kim HJ, Kang SA, Yong TS, et al. Therapeutic effects of Echinococcus granulosus cystic fluid on allergic airway inflammation[J]. Exp Parasitol, 2019, 198: 63-70. | [36] | Wang SY, Yang XD, Gao HY, et al. Analysis of components of proteins from Echinococcus granulosus cyst fluid[J]. Chin J Schisto Control, 2021, 33(5): 476-482, 539. (in Chinese) | | (王舒颖, 杨小迪, 高宏宇, 等. 细粒棘球蚴囊液蛋白组分分析[J]. 中国血吸虫病防治杂志, 2021, 33(5): 476-482, 539.) | [37] | Osbourn M, Soares DC, Vacca F, et al. HpARI protein secreted by a helminth parasite suppresses interleukin-33[J]. Immunity, 2017, 47(4): 739-751.e5. | [38] | Alves CLS, Santiago LF, Santana MBR, et al. Immunomodulatory properties of Schistosoma mansoni proteins Sm200 and SmKI-1 in vitro and in a murine model of allergy to the mite Blomia tropicalis[J]. Mol Immunol, 2020, 124: 91-99. | [39] | B?nnelykke K, Matheson MC, Pers TH, et al. Meta-analysis of genome-wide association studies identifies ten loci influencing allergic sensitization[J]. Nat Genet, 2013, 45(8): 902-906. | [40] | B?nnelykke K, Sleiman P, Nielsen K, et al. A genome-wide association study identifies CDHR3 as a susceptibility locus for early childhood asthma with severe exacerbations[J]. Nat Genet, 2014, 46(1): 51-55. | [41] | Stanbery AG, Smita S, von Moltke J, et al. TSLP, IL-33, and IL-25: not just for allergy and helminth infection[J]. J Allergy Clin Immunol, 2022, 150(6): 1302-1313. | [42] | Vacca F, Chauché C, Jamwal A, et al. A helminth-derived suppressor of ST2 blocks allergic responses[J]. eLife, 2020, 9: e54017. | [43] | Shinoda K, Choe A, Hirahara K, et al. Nematode ascarosides attenuate mammalian type 2 inflammatory responses[J]. Proc Natl Acad Sci USA, 2022, 119(9): e2108686119. | [44] | Boonpiyathad T, Satitsuksanoa P, Akdis M, et al. IL-10 producing T and B cells in allergy[J]. Semin Immunol, 2019, 44: 101326. | [45] | Prodjinotho UF, Gres V, Henkel F, et al. Helminthic dehydrogenase drives PGE2 and IL-10 production in monocytes to potentiate Treg induction[J]. EMBO Rep, 2022, 23(5): e54096. | [46] | Tanaka A, Allam VSRR, Simpson J, et al. The parasitic 68-mer peptide FhHDM-1 inhibits mixed granulocytic inflammation and airway hyperreactivity in experimental asthma[J]. J Allergy Clin Immunol, 2018, 141(6): 2316-2319. | [47] | Jin Y, Wi HJ, Choi MH, et al. Regulation of anti-inflammatory cytokines IL-10 and TGF-β in mouse dendritic cells through treatment with Clonorchis sinensis crude antigen[J]. Exp Mol Med, 2014, 46(1): e74. | [48] | Zubeldia-Varela E, Barker-Tejeda TC, Obeso D, et al. Microbiome and allergy: new insights and perspectives[J]. J Investig Allergol Clin Immunol, 2022, 32(5): 327-344. | [49] | Hou KJ, Wu ZX, Chen XY, et al. Microbiota in health and diseases[J]. Signal Transduct Target Ther, 2022, 7(1): 135. | [50] | Brosschot TP, Reynolds LA. The impact of a helminth-modified microbiome on host immunity[J]. Mucosal Immunol, 2018, 11(4): 1039-1046. | [51] | Zaiss MM, Rapin A, Lebon L, et al. The intestinal microbiota contributes to the ability of helminths to modulate allergic inflammation[J]. Immunity, 2015, 43(5): 998-1010. | [52] | Kim JY, Kim EM, Yi MH, et al. Chinese liver fluke Clonorchis sinensis infection changes the gut microbiome and increases probiotic Lactobacillus in mice[J]. Parasitol Res, 2019, 118(2): 693-699. | [53] | Kim JY, Kim EM, Yi MH, et al. Intestinal fluke Metagonimus yokogawai infection increases probiotic Lactobacillus in mouse cecum[J]. Exp Parasitol, 2018, 193: 45-50. | [54] | Verschoor D, von Gunten S. Allergy and atopic diseases: an update on experimental evidence[J]. Int Arch Allergy Immunol, 2019, 180(4): 235-243. | [55] | Bohnacker S, Troisi F, de Los Reyes Jiménez M, et al. What can parasites tell us about the pathogenesis and treatment of asthma and allergic diseases[J]. Front Immunol, 2020, 11: 2106. | [56] | Finlay CM, Stefanska AM, Coleman MM, et al. Secreted products of Fasciola hepatica inhibit the induction of T cell responses that mediate allergy[J]. Parasite Immunol, 2017, 39(10): 10.1111/pim.12460. | [57] | Pascoal VF, da Cunha AA, Morassutti AL, et al. Immunomodulatory effect of different extracts from Angiostrongylus cantonensis on airway inflammation in an allergic asthma model[J]. Parasitol Res, 2020, 119(11): 3719-3728. |
|