Validation and shortcomings of the most common mouse model of chronic rhinosinusitis with nasal polyps

被引:2
作者
Sanchez-Montalvo, Alba [1 ,2 ]
Lecocq, Marylene [1 ]
Bouillet, Elise [1 ]
Steelant, Brecht [2 ]
Gohy, Sophie [1 ,3 ,4 ]
Froidure, Antoine [1 ,3 ]
Bullens, Dominique [2 ,5 ]
Pilette, Charles [1 ,3 ]
Hox, Valerie [1 ,6 ]
机构
[1] Univ Catholique Louvain UCLouvain, Inst Expt & Clin Res IREC, Pole Pneumol ORL Airways & Dermatol Skin LUNS, B-1200 Brussels, Belgium
[2] KULeuven, Dept Microbiol Immunol & Transplantat, Allergy & Clin Immunol Res Grp, Leuven, Belgium
[3] Clin Univ St Luc, Dept Pneumol, Brussels, Belgium
[4] Clin Univ St Luc, Cyst Fibrosis Reference Ctr, Brussels, Belgium
[5] UZ Leuven, Clin Div Paediat, Leuven, Belgium
[6] Clin Univ St Luc, Dept Otorhinolaryngol, B-1200 Brussels, Belgium
关键词
chronic rhinosinusitis; maxillary sinus; nasal polyps; rhinitis; INFLAMMATION; PHYSIOLOGY; CHALLENGE; ALLERGY; HEALTH; CELLS; MICE;
D O I
10.4193/Rhin23.331
中图分类号
R76 [耳鼻咽喉科学];
学科分类号
100213 ;
摘要
Background: : Chronic rhinosinusitis (CRS) is a highly prevalent airway disease worldwide. Whereas eosinophilic CRS with nasal polyps (eCRSwNP) represents its most severe phenotype, pathogenic mechanisms remain poorly understood despite a wide spectrum of in vitro and in vivo experimental models. A mouse model of experimental ovalbumin (OVA)-induced airway allergy with coadministration of Staphylococcus aureus enterotoxin B (SEB) has been widely used to study eosinophilic eCRSwNP. This study revisits the features of this model and its suitability for studying eCRS. Methodology: : We implemented the most used eCRSwNP mouse model based on OVA+SEB intranasal challenges. Readouts including inflammatory features by (immuno)histology of the sinonasal epithelium (NP formation, eosinophils, epithelial and basement membrane thickness, fibrosis, goblet cells, Charcot-Leyden crystals (CLC)-like, tight junctions) and IgE production by enzyme-linked immunosorbent assay (ELISA), were compared to features of the corresponding human disease. Results: The : The OVA+SEB model induced eosinophilic inflammation of upper and lower airways, with epithelial and basement membrane thickening, goblet cell hyperplasia and subepithelial fibrosis in the sinuses, along increased IgE production. Except local IgE in nasal lavage (NL), which was only increased in OVA+SEB group, all other features did not differ between OVA and OVA+SEB groups. Macro- or microscopic NP were not detected. Conclusions: : With the notable exception of local IgE production, the addition of SEB did not induce additional inflammatory or structural change in the sinuses from mice exposed to and challenged with OVA. This model might represent a model for severe upper airway allergy rather than a specific model of human eCRSwNP.
引用
收藏
页码:446 / 456
页数:14
相关论文
共 50 条
[11]   Type 2 inflammation in chronic rhinosinusitis without nasal polyps: Another relevant endotype [J].
Delemarre, Tim ;
Holtappels, Gabriele ;
De Ruyck, Natalie ;
Zhang, Nan ;
Nauwynck, Hans ;
Bachert, Claus ;
Gevaert, Elien .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2020, 146 (02) :337-+
[12]   Usefulness and optimization of mouse models of allergic airway disease [J].
Finkelman, Fred D. ;
Wills-Karp, Marsha .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2008, 121 (03) :603-606
[13]   European Position Paper on Rhinosinusitis and Nasal Polyps 2020 [J].
Fokkens, Wytske J. ;
Lund, Valerie J. ;
Hopkins, Claire ;
Hellings, Peter W. ;
Kern, Robert ;
Reitsma, Sietze ;
Toppila-Salmi, Sanna ;
Bernal-Sprekelsen, Manuel ;
Mullol, Joaquim ;
Alobid, Isam ;
Anselmo-Lima, Wilma Terezinha ;
Bachert, Claus ;
Baroody, Fuad ;
von Buchwald, Christian ;
Cervin, Anders ;
Cohen, Noam ;
Constantinidis, Jannis ;
De Gabory, Ludovic ;
Desrosiers, Martin ;
Diamant, Zuzana ;
Douglas, Richard G. ;
Gevaert, Philippe H. ;
Hafner, Anita ;
Harvey, Richard J. ;
Joos, Guy F. ;
Kalogjera, Livije ;
Knill, Andrew ;
Kocks, Janwillem H. ;
Landis, Basile N. ;
Limpens, Jacqueline ;
Lebeer, Sarah ;
Lourenco, Olga ;
Matricardi, Paolo M. ;
Meco, Cem ;
O'Mahony, Liam ;
Philpott, Carl M. ;
Ryan, Dermot ;
Schlosser, Rodney ;
Senior, Brent ;
Smith, Timothy L. ;
Teeling, Thijs ;
Tomazic, Peter Valentin ;
Wang, De Yun ;
Wang, Dehui ;
Zhang, Luo ;
Agius, Adrian M. ;
Ahlstrom-Emanuelsson, Cecilia ;
Alabri, Rashid ;
Albu, Silviu ;
Alhabash, Saied .
RHINOLOGY, 2020, 58 :1-464
[14]   Adaptive immune responses in Staphylococcus aureus biofilm-associated chronic rhinosinusitis [J].
Foreman, A. ;
Holtappels, G. ;
Psaltis, A. J. ;
Jervis-Bardy, J. ;
Field, J. ;
Wormald, P. -J. ;
Bachert, C. .
ALLERGY, 2011, 66 (11) :1449-1456
[15]   Eosinophilic chronic rhinosinusitis [J].
Fujieda, Shigeharu ;
Imoto, Yoshimasa ;
Kato, Yukinori ;
Ninomiya, Takahiro ;
Tokunaga, Takahiro ;
Tsutsumiuchi, Toshiki ;
Yoshida, Kanano ;
Kidoguchi, Masanori ;
Takabayashi, Tetsuji .
ALLERGOLOGY INTERNATIONAL, 2019, 68 (04) :403-412
[16]   Epithelial barrier function: At the front line of asthma immunology and allergic airway inflammation [J].
Georas, Steve N. ;
Rezaee, Fariba .
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2014, 134 (03) :509-520
[17]   The Role of IgE in Upper and Lower Airway Disease: More Than Just Allergy! [J].
Gevaert, Philippe ;
Wong, Kit ;
Millette, Lauren A. ;
Carr, Tara F. .
CLINICAL REVIEWS IN ALLERGY & IMMUNOLOGY, 2022, 62 (01) :200-215
[18]   Key role of the epithelium in chronic upper airways diseases [J].
Gohy, Sophie ;
Hupin, Cloe ;
Ladjemi, Maha Zohra ;
Hox, Valerie ;
Pilette, Charles .
CLINICAL AND EXPERIMENTAL ALLERGY, 2020, 50 (02) :135-146
[19]   Allergic Phenotype of Chronic Rhinosinusitis Based on Radiologic Pattern of Disease [J].
Hamizan, Aneeza W. ;
Loftus, Patricia A. ;
Alvarado, Raquel ;
Ho, Jacqueline ;
Kalish, Larry ;
Sacks, Raymond ;
DelGaudio, John M. ;
Harvey, Richard J. .
LARYNGOSCOPE, 2018, 128 (09) :2015-2021
[20]   The Role of Allergic Rhinitis in Chronic Rhinosinusitis [J].
Helman, Samuel N. ;
Barrow, Emily ;
Edwards, Thomas ;
DelGaudio, John M. ;
Levy, Joshua M. ;
Wise, Sarah K. .
IMMUNOLOGY AND ALLERGY CLINICS OF NORTH AMERICA, 2020, 40 (02) :201-+