Graphene Oxide Attenuates Th2-Type Immune Responses, but Augments Airway Remodeling and Hyperresponsiveness in a Murine Model of Asthma

被引:48
作者
Shurin, Michael R. [1 ]
Yanamala, Naveena [2 ]
Kisin, Elena R. [2 ]
Tkach, Alexey V. [2 ]
Shurin, Galina V. [1 ]
Murray, Ashley R. [2 ]
Leonard, Howard D. [2 ]
Reynolds, Jeffrey S. [2 ]
Gutkin, Dmirtiy W. [1 ]
Star, Alexander [3 ]
Fadeel, Bengt [5 ]
Savolainen, Kai [6 ]
Kagan, Valerian E. [4 ]
Shvedova, Anna A. [2 ,7 ]
机构
[1] Univ Pittsburgh, Dept Pathol, Sch Med, Pittsburgh, PA 15260 USA
[2] NIOSH, Pathol & Physiol Res Branch, CDC, Morgantown, WV 26505 USA
[3] Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15260 USA
[4] Univ Pittsburgh, Dept Environm & Occupat Hlth, Pittsburgh, PA 15260 USA
[5] Karolinska Inst, Inst Environm Med, Div Mol Toxicol, S-17177 Stockholm, Sweden
[6] Finnish Inst Occupat Hlth, Nanosafety Res Ctr, Helsinki 02500, Finland
[7] W Virginia Univ, Dept Physiol & Pharmacol, Morgantown, WV 26505 USA
关键词
Th2; responses; macrophage activation; IgE-independent AHR; chitinases; CHITINASE-LIKE PROTEIN; ACIDIC MAMMALIAN CHITINASE; MULTIWALLED CARBON NANOTUBES; INDUCED TOXICITY FOCUS; EPITHELIAL-CELLS; DIFFERENTIAL EXPRESSION; ACTIVATED MACROPHAGES; SIGNALING PATHWAYS; PRISTINE GRAPHENE; BRONCHIAL-ASTHMA;
D O I
10.1021/nn406454u
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Several lines of evidence indicate that exposure to nanoparticles (NPs) is able to modify airway immune responses, thus facilitating the development of respiratory diseases. Graphene oxide (GO) is a promising carbonaceous nanomaterial with unique physicochemical properties, envisioned for a multitude of medical and industrial applications. In this paper, we determined how exposure to GO modulates the allergic pulmonary response. Using a murine model of ovalbumin (OVA)-induced asthma, we revealed that GO, given at the sensitization stage, augmented airway hyperresponsiveness and airway remodeling in the form of goblet cell hyperplasia and smooth muscle hypertrophy. At the same time, the levels of the cytokines IL-4, IL-5, and IL-13 were reduced in broncho-alveolar lavage (BAL) fluid in GO-exposed mice. Exposure to GO during sensitization with OVA decreased eosinophil accumulation and increased recruitment of macrophages in BAL fluid. In line with the cytokine profiles, sensitization with OVA in the presence of GO stimulated the production of OVA-specific IgG2a and down-regulated the levels of IgE and IgG1. Moreover, exposure to GO increased the macrophage production of the mammalian chitinases, CHI3L1 and AMCase, whose expression is associated with asthma. Finally, molecular modeling has suggested that GO may directly interact with chitinase, affecting AMCase activity, which has been directly proven in our studies. Thus, these data show that GO exposure attenuates Th2 immune response in a model of OVA-induced asthma, but leads to potentiation of airway remodeling and hyperresponsiveness, with the induction of mammalian chitinases.
引用
收藏
页码:5585 / 5599
页数:15
相关论文
共 68 条
[1]   Role of YKL-40 in Bronchial Smooth Muscle Remodeling in Asthma [J].
Bara, Imane ;
Ozier, Annaig ;
Girodet, Pierre-Olivier ;
Carvalho, Gabrielle ;
Cattiaux, Jennifer ;
Begueret, Hugues ;
Thumerel, Matthieu ;
Ousova, Olga ;
Kolbeck, Roland ;
Coyle, Anthony J. ;
Woods, Joanne ;
de Lara, Jose-Manuel Tunon ;
Marthan, Roger ;
Berger, Patrick .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2012, 185 (07) :715-722
[2]   Mechanisms of carbon nanotube-induced toxicity: Focus on pulmonary inflammation [J].
Bhattacharya, Kunal ;
Andon, Fernando Torres ;
El-Sayed, Ramy ;
Fadeel, Bengt .
ADVANCED DRUG DELIVERY REVIEWS, 2013, 65 (15) :2087-2097
[3]  
Brewer JM, 1999, J IMMUNOL, V163, P6448
[4]  
Brinchmann BC, 2011, ANN AGR ENV MED, V18, P7
[5]   The distribution of eosinophils and lymphocytes in the large and small airways of asthmatics [J].
Carroll, N ;
Cooke, C ;
James, A .
EUROPEAN RESPIRATORY JOURNAL, 1997, 10 (02) :292-300
[6]   Simultaneous induction of autophagy and toll-like receptor signaling pathways by graphene oxide [J].
Chen, Guan-Yu ;
Yang, Hong-Jie ;
Lu, Chia-Hsin ;
Chao, Yu-Chan ;
Hwang, Shiaw-Min ;
Chen, Chiu-Ling ;
Lo, Kai-Wei ;
Sung, Li-Yu ;
Luo, Wen-Yi ;
Tuan, Hsing-Yu ;
Hu, Yu-Chen .
BIOMATERIALS, 2012, 33 (27) :6559-6569
[7]   A chitinase-like protein in the lung and circulation of patients with severe asthma [J].
Chupp, Geoffrey L. ;
Lee, Chun Geun ;
Jarjour, Nizar ;
Shim, Yun Michael ;
Holm, Carole T. ;
He, Susan ;
Dziura, James D. ;
Reed, Jennifer ;
Coyle, Anthony J. ;
Kiener, Peter ;
Cullen, Mark ;
Grandsaigne, Martine ;
Dombret, Marie-Christine ;
Aubier, Michel ;
Pretolani, Marina ;
Elias, Jack A. .
NEW ENGLAND JOURNAL OF MEDICINE, 2007, 357 (20) :2016-2027
[8]   Airway hyperresponsiveness as a determinant of the early asthmatic response to inhaled allergen [J].
Cockcroft, DW ;
Davis, BE .
JOURNAL OF ASTHMA, 2006, 43 (03) :175-178
[9]   Identification and Characterization of Acidic Mammalian Chitinase Inhibitors [J].
Cole, Derek C. ;
Olland, Andrea M. ;
Jacob, Jaison ;
Brooks, Jon ;
Bursavich, Matthew G. ;
Czerwinski, Robert ;
DeClereq, Charlene ;
Johnson, Mark ;
Joseph-McCarthy, Diane ;
Ellingboe, John W. ;
Lin, Laura ;
Nowak, Pawel ;
Presman, Ella ;
Strand, James ;
Tam, Amy ;
Williams, Cara M. M. ;
Yao, Shihua ;
Tsao, Desiree H. H. ;
Fitz, Lori J. .
JOURNAL OF MEDICINAL CHEMISTRY, 2010, 53 (16) :6122-6128
[10]   Best practices guideline: T6oxicologic histopathology [J].
Crissman, JW ;
Goodman, DG ;
Hildebrandt, PK ;
Maronpot, RR ;
Prater, DA ;
Riley, JH ;
Seaman, WJ ;
Thake, DC .
TOXICOLOGIC PATHOLOGY, 2004, 32 (01) :126-131