期刊文献+

CCR5与支气管哮喘免疫学发病机制研究进展 被引量:8

Research progress of CC chemokine receptor 5 and pathogenetic mechanism of bronchial asthma
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摘要 支气管哮喘(哮喘)是儿童最常见的慢性呼吸道炎症性疾病之一,多种细胞如淋巴细胞、嗜酸性粒细胞、中性粒细胞、肥大细胞、气道上皮细胞等参与该炎症进程。研究表明,趋化因子及其受体通过对炎症细胞的募集与激活,在哮喘的发生、发展中发挥作用。CC趋化因子受体5(CCR5)具有调控T细胞和单核细胞/巨噬细胞系的迁移、增殖与免疫功能,成为哮喘发病机制的研究热点,该文对CCR5及其配体的功能和信号通路与哮喘相关的研究进展进行综述。 Bronchial asthma is one of the most common chronic airway inflammation diseases in chil- dren. Multiple cells, such as T lymphocytes, eosnophils, neutrophils, mastocyte cells and alternative cells air- way epithelial cells participate in the progression of inflammation. Previous studies have indicated that chemo- kines and their receptors play a role in the incidence and development of bronchial asthma by recruiting and activating inflammatory cells. CC chemokine receptor 5 ( CCR5 ) functions to regulate the migration, proliferation and immunity of T lymphocytes and monocytes/macrophages. CCR5 has become the focus of revealing the pathogenesis of bronchial asthma. This article reviewed the function and signaling pathway of CCR5 and their ligands, as well as their relevance with bronchial asthma.
出处 《新医学》 2016年第1期12-16,共5页 Journal of New Medicine
基金 国家自然科学基金面上项目(81370499) 广东省自然科学基金资助项目(2014-A030313020)
关键词 哮喘 趋化因子 CC趋化因子受体5 Bronchial asthma Chemokine CC chemokine receptor 5
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参考文献19

  • 1Martinez FD, Vereelli D. Asthma. Lancet, 2013, 382 (9901) : 1360-1372.
  • 2李雯静,黄花荣.ADAM33基因调控哮喘患儿气道重塑的机制进展[J].新医学,2014,45(10):635-639. 被引量:2
  • 3Finzi A, Pacheco B, Xiang SH, Pancera M, Herschhorn A, Wang L, Zeng X, Desormeaux A, Kwong PD, Sodroski J. Line- age-specific differences between human and simian immunodefi- ciency virus regulation of gpl20 trimer association and CD40 binding. J Virol, 2012, 86 (17): 8974-8986.
  • 4Sokol CL, Luster AD. The chemokine system in innate immuni- ty. Cold Spring Harb Perspect Biol, 2015, 7 (5) : a016303.
  • 5A1-Abdulhadi SA, A1-Rabia MW. Linkage and haplotype analy- sis for chemokine receptors clustered on chromosome 3p21.3 and transmitted in family pedigrees with asthma and atopy. Ann Saudi Med, 2010, 30 (2): 115-122.
  • 6Baba T, Naka K, Morishita S, Komatsu N, Hirao A, Mukaida N. MIP-lalpha,/CCL3-mediated maintenance of leukemia-initia- ting cells in the initiation process of chronic myeloid leukemia. J Exp Med, 2013, 210 (12): 2661-2673.
  • 7孙鑫波,刘朝东.MIP-1α与MMP-9在免疫炎症反应中作用及其关系研究进展[J].中国免疫学杂志,2012,28(5):474-477. 被引量:21
  • 8Sanchooli J, Sanadgol N, Kazemi AM, Kennedy D. CCR5 plays important roles in hepatitis B infection. Viral Immunol, 2014, 27 (1): 2-6.
  • 9Parandhaman DK, Hanna LE, Narayanan S. PknE, a serine/ threonine protein kinase of Myeobaeterium tubereulosis initiates survival erosstalk that also impacts HIV coinfeetion. PLoS One, 2014, 9 (1): e83541.
  • 10Sorce S, Myburgh R, Krause KH. The chemokine receptor CCR5 in the central nervous system. Prog Neurobiol, 2011, 93 (2) : 297-311.

二级参考文献106

  • 1Yiyuan Duan,Jiaoyue Long,Feng Lin,Jun Chen,Rong Xu,Xuemei Jiang,Linhong Deng.Soluble ADAM33 determines mechanical behaviors of airway smooth muscle cells[J].医用生物力学,2013,28(S1):107-108. 被引量:1
  • 2Tse A K W, Wan C K, Zhu G Y et al. Magnolol suppresses NF-KB activation and NF-KB regulated gene expression through inhibition of IkappaB kinase activation[J]. Mol Immunol, 2007 ;44(10) :2647- 2658.
  • 3Oliveira C J F, Cavassani K A, More D D et al. Tick saliva inhibits the chemotactic function of MIP-1 eL and selectively impairs chemotaxis of immature dendritic ceils by down-regulating cell-surface CCR5 [J]. Int J Parasitol,2008; 38(6) :705-716.
  • 4Chen T C, Chien S J, Kuo H C et aL High glucose-treated macro- phages augment e-selective expression in endothelial cells[ J]. J Biol Chem,2011 ; 286(29) :25564-25573.
  • 5Zeremski M, Petrovic L M, Talal A H. The role of chemokines as in ammatory mediators in chronic hepatitis C virus infection[ J]. J Viral Hepat,2007 ; 14 (10) : 675-687.
  • 6Ribeiro S, Horuk R. Clinical potential of chemokine receptor antago- nists[ J]. Pharrnacol Ther,2005 ; 107 ( 1 ) :44-58.
  • 7Penna G, Mondaini N, Amuchastequi Set al, Seminal plasma cyto- kines and ehemokines in prostate in prostate inflammation : interleukin 8 as a predictive biomarker in chronic prostatitis/chronic pelvic pain syndrome and benign prostatic hyperplasia [ J ]. J Eururo, 2007 ; 51 (2) :524-533.
  • 8Desireddi N V, Campbell P L, Stern J Aet al. Monocyte chemoat- tractant protein-1 and macrophage in ammatory protein-1 c~ as possible biomarkers for the chronic Pelvic Pain syndrome [ J ]. J Juro, 2008 ; 179(5) :1857-1861.
  • 9Sugimoto M, 0ka M, Tsunemori H et al. Effect of a phytotherapeutic agent, eviprostat 1, on prostatic and urinary cytokines/chemokines in a rat model of nonbacterial prostatitis[ J]. Prostate,2011 ; 71 (4) : 438-444.
  • 10Zhang N, Inan S, Cowan A et al. A proinflammatory chemokine, CCL3, sensitizes the heat-and capsaicin-gated ion channel TRPV1 [J]. Proc Natl Acad Sci USA,2005 ;102(12) :4536-4541.

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