Literature DB >> 10423411

Transforming growth factor-beta secreted from CD4(+) T cells ameliorates antigen-induced eosinophilic inflammation. A novel high-dose tolerance in the trachea.

K Haneda1, K Sano, G Tamura, H Shirota, Y Ohkawara, T Sato, S Habu, K Shirato.   

Abstract

The induction of peripheral tolerance is one of the feasible approaches for the control of autoimmunities and allergies. Tolerance induction in the intestine has been studied extensively and therapeutic applications to autoimmunities are in progress, whereas tolerance in the respiratory tract is poorly investigated. We examined the immunoregulatory mechanisms for evading exaggerated inflammatory responses in the murine airway mucosa. Administration of an optimal dose of ovalbumin (OVA) to the trachea elicited eosinophilic inflammation in the trachea of OVA/aluminum hydroxide-sensitized BALB/c mice, whereas higher doses were unable to do so. This failure paralleled the downregulation of interleukin-4 production by mediastinal lymph node (LN) T cells. This high-dose tolerance was attributable to the mechanisms of antigen (Ag)-specific suppression, because the adoptive transfer of CD4(+) LN T cells from the OVA-tolerant mice inhibited the OVA-specific, but not irrelevant Ag KLH-specific, eosinophilic responses. The inhibitory effects were neutralized by the intratracheal administration of anti-transforming growth factor (TGF)-beta, but not that of anti-interferon (IFN)-gamma, monoclonal antibodies, indicating that the high-dose tolerance was mediated by secreted TGF-beta, but not by the dominance of transferred T helper (Th)1 cells over Th2 cells. The pivotal role of TGF-beta was reinforced by the finding that the LN cells from the OVA-tolerant mice produced TGF-beta in response to the in vitro Ag stimulation. These results demonstrate a novel regulatory mechanism in the airway: that TGF-beta secreted by T cells plays an important role in the downmodulation of the immune responses to high doses of Ag which might otherwise induce deleterious inflammation in the airway mucosal tissues.

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Year:  1999        PMID: 10423411     DOI: 10.1165/ajrcmb.21.2.3576

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


  12 in total

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4.  In vivo disruption of TGF-beta signaling by Smad7 in airway epithelium alleviates allergic asthma but aggravates lung carcinogenesis in mouse.

Authors:  Xiaolin Luo; Qiurong Ding; Min Wang; Zhigang Li; Kairui Mao; Bing Sun; Yi Pan; Zhenzhen Wang; Ying Qin Zang; Yan Chen
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7.  Increase of Dose Associated With Decrease in Protection Against Controlled Human Malaria Infection by PfSPZ Vaccine in Tanzanian Adults.

Authors:  Said A Jongo; L W Preston Church; Ali T Mtoro; Tobias Schindler; Sumana Chakravarty; Adam J Ruben; Phillip A Swanson; Kamaka R Kassim; Maximillian Mpina; Anneth-Mwasi Tumbo; Florence A Milando; Munira Qassim; Omar A Juma; Bakari M Bakari; Beatus Simon; Eric R James; Yonas Abebe; Natasha Kc; Elizabeth Saverino; Martina Fink; Glenda Cosi; Linda Gondwe; Fabian Studer; David Styers; Robert A Seder; Tobias Schindler; Peter F Billingsley; Claudia Daubenberger; B Kim Lee Sim; Marcel Tanner; Thomas L Richie; Salim Abdulla; Stephen L Hoffman
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8.  Chronic inhaled ovalbumin exposure induces antigen-dependent but not antigen-specific inhalational tolerance in a murine model of allergic airway disease.

Authors:  Craig M Schramm; Lynn Puddington; Carol Wu; Linda Guernsey; Mehrnaz Gharaee-Kermani; Sem H Phan; Roger S Thrall
Journal:  Am J Pathol       Date:  2004-01       Impact factor: 4.307

9.  Immunomodulatory effects of CpG oligodeoxynucleotides on established th2 responses.

Authors:  Kunihiko Kitagaki; Vipul V Jain; Thomas R Businga; Iftikhar Hussain; Joel N Kline
Journal:  Clin Diagn Lab Immunol       Date:  2002-11

Review 10.  Controversy surrounding the increased expression of TGF beta 1 in asthma.

Authors:  Ynuk Bossé; Marek Rola-Pleszczynski
Journal:  Respir Res       Date:  2007-09-24
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