296
Views
5
CrossRef citations to date
0
Altmetric
Articles

Thymic stromal lymphopoietin contribution to the recruitment of circulating fibrocytes to the lung in a mouse model of chronic allergic asthma

, , , , , , , , & show all
Pages 975-983 | Received 14 Jun 2017, Accepted 23 Sep 2017, Published online: 30 Oct 2017

References

  • Lambrecht BN, Hammad H. The immunology of asthma. Nat Immunol. 2014;16:45–56. doi:10.1038/ni.3049.
  • Martin RA, Hodgkins SR, Dixon AE, Poynter ME. Aligning mouse models of asthma to human endotypes of disease. Respirology. 2014;19:823–33. doi:10.1111/resp.12315. PMID: 24811131
  • Gibeon D, Chung KF. The investigation of severe asthma to define phenotypes. Clin Exp Allergy. 2012;42:678–92. doi:10.1111/j.1365-2222.2012.03959.x. PMID: 22515390
  • Al-Muhsen S, Johnson JR, Hamid Q. Remodeling in Asthma. J Allergy Clin Immunol. 2011;128:451–62. doi:10.1016/j.jaci.2011.04.047. PMID: 21636119
  • Sweeney D, Hollins F, Gomez E, Saunders R, Challiss RAJ, Brightling CE. [Ca2+]I oscillations in ASM: Relationship with persistent airflow obstruction in asthma. Respirology. 2014;19:763–6. doi:10.1111/resp.12318. PMID: 24850215
  • Pepe C, Foley S, Shannon J, Lemiere C, Olivenstein R, Ernst P, Ludwig MS, Martin JG, Hamid Q. Differences in airway remodeling between subjects with severe and moderate asthma. J Allergy Clin Immunol. 2005;116:544–9. doi:10.1016/j.jaci.2005.06.011. PMID: 16159622
  • Bucala R, Spiegel LA, Chesney J, Hogan M, Cerami A. Circulating fibrocytes define a new leukocyte subpopulation that mediates tissue repair. Mol Med. 1994;1:71–81. PMID: 8790603
  • Phillips RJ, Burdick MD, Hong K, Lutz MA, Murray LA, Xue YY, Belperio JA, Keane MP, Strieter RM. Circulating fibrocytes traffic to the lungs in response to CXCL12 and mediate fibrosis. J Clin Invest. 2004;114:438–46. doi:10.1172/JCI200420997. PMID: 15286810
  • Medina A, Ghahary A. Fibrocytes can be reprogrammed to promote tissue remodeling capacity of dermal fibroblasts. Mol Cell Biochem. 2010;344:11–21. doi:10.1007/s11010-010-0524-4. PMID: 20563835
  • Saunders R, Siddiqui S, Kaur D, Doe C, Sutcliffe A, Hollins F, Bradding P, Wardlaw A, Brightling CE. Fibrocyte localization to the airway smooth muscle is a feature of asthma. J Allergy Clin Immunol. 2009;123:376–84. doi:10.1016/j.jaci.2008.10.048. PMID: 19081612
  • Nihlberg K, Larsen K, Hultgårdh-Nilsson A, Malmström A, Bjermer L, Westergren-Thorsson G. Tissue fibrocytes in patients with mild asthma: A possible link to thickness of reticular basement membrane. Respir Res. 2006;7:50. doi:10.1186/1465-9921-7-50. PMID: 16571120
  • Yang L, Scott PG, Giuffre J, Shankowsky HA, Ghahary A, Tredget EE. Peripheral blood fibrocytes from burn patients: Identification and quantification of fibrocytes in adherent cells cultured from peripheral blood mononuclear cells. Lab Invest. 2002;82:1183–92. doi:10.1097/01.LAB.0000027841.50269.61. PMID: 12218079
  • SHI W, XU J, Warburton D. Development, repair and fibrosis: What is common and why it matters. Respirology. 2009;14:656–65. doi:10.1111/j.1440-1843.2009.01565.x. PMID: 19659647
  • Wang CH, Huang CD, Lin HC, Huang TT, Lee KY, Lo YL, Lin SM, Chung KF, Kuo HP. Increased activation of fibrocytes in patients with chronic obstructive asthma through an epidermal growth factor receptor-dependent pathway. J Allergy Clin Immunol. 2012;129:1367–76. doi:10.1016/j.jaci.2012.01.038. PMID: 22325070
  • Bellini A, Marini MA, Bianchetti L, Barczyk M, Schmidt M, Mattoli S. Interleukin (IL)-4, IL-13, and IL-17A differentially affect the profibrotic and proinflammatory functions of fibrocytes from asthmatic patients. Mucosal Immunol. 2012;5:140–9. doi:10.1038/mi.2011.60. PMID: 22189956
  • Schmidt M, Sun G, Stacey MA, Mori L, Mattoli S. Identification of circulating fibrocytes as precursors of bronchial myofibroblasts in asthma. J Immunol. 2003;171:380–9. doi:10.4049/jimmunol.171.1.380. PMID: 12817021
  • Divekar R, Kita H. Recent advances in epithelium-derived cytokines (IL-33, IL-25, and thymic stromal lymphopoietin) and allergic inflammation. Curr Opin Allergy Clin Immunol. 2015;15:98–103. doi:10.1097/ACI.0000000000000133. PMID: 25479313
  • Chen ZG, Zhang TT, Li HT, Chen FH, Zou XL, Ji JZ, Chen H. Neutralization of TSLP inhibits airway remodeling in a murine model of allergic asthma induced by chronic exposure to house dust mite. Plos One. 2013;8:e51268. doi:10.1371/journal.pone.0051268. PMID: 23300949
  • Zhang Y, Zhou X, Zhou B. DC-derived TSLP promotes Th2 polarization in LPS-primed allergic airway inflammation. Eur J Immunol. 2012;42:1735–43. doi:10.1002/eji.201142123. PMID: 22585305
  • Soumelis V, Reche PA, Kanzler H, Yuan W, Edward G, Homey B, Gilliet M, Ho S, Antonenko S, Lauerma A, et al. Human epithelial cells trigger dendritic cell–mediated allergic inflammation by producing TSLP. Nat Immunol. 2002;3:673–80. PMID: 12055625
  • Zhou B, Comeau MR, Smedt TD, Liggitt HD, Dahl ME, Lewis DB, Gyarmati D, Aye T, Campbell DJ, Ziegler SF. Thymic stromal lymphopoietin as a key initiator of allergic airway inflammation in mice. Nat Immunol. 2005;6:1047–53. doi:10.1038/ni1247. PMID: 16142237
  • Li Y, Li H, Ji F, Zhang X, Wang R, Hao JQ, Bi WX, Dong L. Thymic stromal lymphopoietin promotes lung inflammation through activation of dendritic cells. J Asthma. 2010;47:117–23. doi:10.3109/02770900903483816. PMID: 20170316
  • Li HT, Zhang TT, Chen ZG, Ye J, Liu H, Zou XL, Wang YH, Yang HL. Intranasal administration of CpG oligodeoxynucleotides reduces lower airway inflammation in a murine model of combined allergic rhinitis and asthma syndrome. Int Immunopharmacol. 2015;28:390–8. doi:10.1016/j.intimp.2015.06.028. PMID: 26163938
  • Christmann RB, Mathes A, Affandi AJ, Padilla C, Nazari B, Bujor AM, Stifano G, Lafyatis R. Thymic stromal lymphopoietin is up-regulated in the skin of patients with systemic sclerosis and induces profibrotic genes and intracellular signaling that overlap with those induced by interleukin-13 and transforming growth factor β. Arthritis Rheum. 2013;65:1335–46. doi:10.1002/art.37859. PMID: 23335246
  • Yadava K, Massacand J, Mosconi I, Nicod LP, Harris NL, Marsland BJ. Thymic stromal lymphopoietin plays divergent roles in murine models of atopic and nonatopic airway inflammation. Allergy. 2014;69:1333–42. doi:10.1111/all.12469. PMID: 24961817
  • Datta A, Alexander R, Sulikowski MG, Nicholson AG, Maher TM, Scotton CJ, Chambers RC. Evidence for a functional thymic stromal lymphopoietin signaling axis in fibrotic lung disease. J Immunol. 2013;191:4867–79. doi:10.4049/jimmunol.1300588. PMID: 24081992
  • Smith SG, Gugilla A, Mukherjee M, Merim K, Irshad A, Tang W, Kinoshita T, Watson B, Oliveria JP, Comeau M, et al. Thymic stromal lymphopoietin and IL-33 modulate migration of hematopoietic progenitor cells in patients with allergic asthma. J Allergy Clin Immunol. 2015;135:1594–1602. doi:10.1016/j.jaci.2014.12.1918. PMID: 25656998
  • Oh MH, Oh SY, Yu J, Myers AC, Leonard WJ, Liu YJ, Zhu Z, Zheng T. IL-13 induces skin fibrosis in atopic dermatitis by thymic stromal lymphopoietin. J Imm-unol. 2011;186:7232–42. doi:10.4049/jimmunol.1100504. PMID: 21576506
  • Gregory LG, Mathie SA, Walker SA, Pegorier S, Jones CP, Lloyd CM. Overexpression of Smad2 drives house dust mite–mediated airway remodeling and airway hyperresponsiveness via activin and IL-25. Am J Respir Crit Care Med. 2010;182:143–54. doi:10.1164/rccm.200905-0725OC. PMID: 20339149
  • Liu Y, Chen GP, Zhang JH, Jun LU. Allergens induce enhanced bronchoconstriction and leukotriene production in C5 deficient mice. Resp Res. 2005;129:1–11.
  • Lee SH, Eren M, Vaughan DE, Schleimer RP, Cho SH. A plasminogen activator inhibitor-1 inhibitor reduces airway remodeling in a murine model of chronic asthma. Am J Resp Cell Mol. 2012;46:842–6. doi:10.1165/rcmb.2011-0369OC.
  • Staab EB, Sanderson SD, Wells SM, Poole JA. Treatment with the C5a receptor/CD88 Antagonist PMX205 Reduces Inflammation in a Murine Model of Allergic Asthma. Int Immunopharmacol. 2014;21:293–300. doi:10.1016/j.intimp.2014.05.008. PMID: 24859057
  • Wagner EM, Jenkins J, Schmieder A, Eldridge L, Zhang Q, Moldobaeva A, Zhang H, Allen JS, Yang X, Mitzner W, et al. Angiogenesis and airway reactivity in asthmatic brown norway rats. Angiogenesis. 2015;18:1–11. doi:10.1007/s10456-014-9441-6. PMID: 25149641
  • Bai A, Eidelman DH, Hogg JC, James AL, Lambert RK, Ludwig MS, Martin J, McDonald DM, Mitzner WA, Okazawa M, et al. Proposed nomenclature for quantifying subdivisions of the bronchial wall. J Appl Physiol. 1994;77:1011–4. PMID: 8002485
  • Velden JVD, Barker D, Barcham G, Koumoundouros E, Snibson K. Increased vascular density is a persistent feature of airway remodeling in a sheep model of chronic asthma. Exp Lung Res. 2012;38:307–15. doi:10.3109/01902148.2012.697975. PMID: 22734813
  • Lin C, Lin L, Wang S, Chiang CJ, Chao YP, Lin J, Kao ST. The effect of serine protease inhibitors on airway inflammation in a chronic allergen-induced asthma mouse model. Mediators Inflamm 2014;2014:1–10. doi:10.1155/2014/879326 10.1155/2014/493480.
  • Lo C, Michaeloudes C, Bhavsar PK, Huang CD, Wang CH, Kuo HP, Chung KF. Increased phenotypic differentiation and reduced corticosteroid sensitivity of fibrocytes in severe asthma. J Allergy Clinl Immunol. 2015;135:1186–95. doi:10.1016/j.jaci.2014.10.031.
  • Wang CH, Punde TH, Huang CD, Chou PC, Huang TT, Wu WH, Liu CH, Chung KF, Kuo HP. Fibrocyte trafficking in patients with chronic obstructive asthma and during an acute asthma exacerbation. J Allergy Clin Immunol. 2014;135:1154–62. doi:10.1016/j.jaci.2014.09.011. PMID: 25441632
  • Vaughan MB, Howard EW, Tomasek JJ. Transforming growth factor-beta1 promotes the morphological and functional differentiation of the myofibroblast. Exp Cell Res. 2000;257:180–9. doi:10.1006/excr.2000.4869. PMID: 10854066
  • Yeager ME, Frid MG, Stenmark KR. Progenitor cells in pulmonary vascular remodeling. Pulmonary Circulation. 2011;1:3–16. doi:10.4103/2045-8932.78095. PMID: 22034593
  • Kao H, Chen B, Murphy GF, Li Q, Orgill DP, Guo L. Peripheral blood fibrocytes. Ann Surg. 2011;254:1066–74. doi:10.1097/SLA.0b013e3182251559. PMID: 21832942
  • Hartlapp I, Abe R, Saeed RW, Peng T, Voelter W, Bucala R, Metz CN. Fibrocytes induce an angiogenic phenotype in cultured endothelial cells and promote angiogenesis in vivo. Faseb J. 2001;15:2215–24. doi:10.1096/fj.01-0049com. PMID: 11641248
  • Smadja DM, Dorfmüller P, Guerin CL, Bieche I, Badoual C, Boscolo E, Kambouchner M, Cazes A, Mercier O, Humbert M, et al. Cooperation between human fibrocytes and endothelial colony-forming cells increases angiogenesis via the CXCR4 pathway. Thromb Haemostasis. 2014;112:1002–13. doi:10.1160/TH13-08-0711.
  • Glaab T, Taube C, Braun A, Mitzner W. Invasive and noninvasive methods for studying pulmonary function in mice. Resp Res. 2007;63:1–10.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.