Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Aaron M. Gibson is active.

Publication


Featured researches published by Aaron M. Gibson.


The Journal of Allergy and Clinical Immunology | 2013

Diesel exhaust particle induction of IL-17A contributes to severe asthma

Eric B. Brandt; Melinda Butsch Kovacic; Gerald B. Lee; Aaron M. Gibson; Thomas H. Acciani; Timothy D. Le Cras; Patrick H. Ryan; Alison L. Budelsky; Gurjit K. Khurana Hershey

BACKGROUND IL-17A has been implicated in severe forms of asthma. However, the factors that promote IL-17A production during the pathogenesis of severe asthma remain undefined. Diesel exhaust particles (DEPs) are a major component of traffic-related air pollution and are implicated in asthma pathogenesis and exacerbation. OBJECTIVE We sought to determine the mechanism by which DEP exposure affects asthma severity using human and mouse studies. METHODS BALB/c mice were challenged with DEPs with or without house dust mite (HDM) extract. Airway inflammation and function, bronchoalveolar lavage fluid cytokine levels, and flow cytometry of lung T cells were assessed. The effect of DEP exposure on the frequency of asthma symptoms and serum cytokine levels was determined in children with allergic asthma. RESULTS In mice exposure to DEPs alone did not induce asthma. DEP and HDM coexposure markedly enhanced airway hyperresponsiveness compared with HDM exposure alone and generated a mixed T(H)2 and T(H)17 response, including IL-13(+)IL-17A(+) double-producing T cells. IL-17A neutralization prevented DEP-induced exacerbation of airway hyperresponsiveness. Among 235 high DEP-exposed children with allergic asthma, 32.2% had more frequent asthma symptoms over a 12-month period compared with only 14.2% in the low DEP-exposed group (P = .002). Additionally, high DEP-exposed children with allergic asthma had nearly 6 times higher serum IL-17A levels compared with low DEP-exposed children. CONCLUSIONS Expansion of T(H)17 cells contributes to DEP-mediated exacerbation of allergic asthma. Neutralization of IL-17A might be a useful potential therapeutic strategy to counteract the asthma-promoting effects of traffic-related air pollution, especially in highly exposed patients with severe allergic asthma.


American Journal of Physiology-lung Cellular and Molecular Physiology | 2011

Epithelial EGF receptor signaling mediates airway hyperreactivity and remodeling in a mouse model of chronic asthma.

Timothy D. Le Cras; Thomas H. Acciani; Elizabeth M. Mushaben; Elizabeth L. Kramer; Patricia A. Pastura; William D. Hardie; Thomas R. Korfhagen; Umasundari Sivaprasad; Mark B. Ericksen; Aaron M. Gibson; Michael J. Holtzman; Jeffrey A. Whitsett; Gurjit K. Khurana Hershey

Increases in the epidermal growth factor receptor (EGFR) have been associated with the severity of airway thickening in chronic asthmatic subjects, and EGFR signaling is induced by asthma-related cytokines and inflammation. The goal of this study was to determine the role of EGFR signaling in a chronic allergic model of asthma and specifically in epithelial cells, which are increasingly recognized as playing an important role in asthma. EGFR activation was assessed in mice treated with intranasal house dust mite (HDM) for 3 wk. EGFR signaling was inhibited in mice treated with HDM for 6 wk, by using either the drug erlotinib or a genetic approach that utilizes transgenic mice expressing a mutant dominant negative epidermal growth factor receptor in the lung epithelium (EGFR-M mice). Airway hyperreactivity (AHR) was assessed by use of a flexiVent system after increasing doses of nebulized methacholine. Airway smooth muscle (ASM) thickening was measured by morphometric analysis. Sensitization to HDM (IgG and IgE), inflammatory cells, and goblet cell changes were also assessed. Increased EGFR activation was detected in HDM-treated mice, including in bronchiolar epithelial cells. In mice exposed to HDM for 6 wk, AHR and ASM thickening were reduced after erlotinib treatment and in EGFR-M mice. Sensitization to HDM and inflammatory cell counts were similar in all groups, except neutrophil counts, which were lower in the EGFR-M mice. Goblet cell metaplasia with HDM treatment was reduced by erlotinib, but not in EGFR-M transgenic mice. This study demonstrates that EGFR signaling, especially in the airway epithelium, plays an important role in mediating AHR and remodeling in a chronic allergic asthma model.


PLOS ONE | 2012

Functional Variant in the Autophagy-Related 5 Gene Promotor is Associated with Childhood Asthma

Lisa J. Martin; Jayanta Gupta; Soma Jyothula; Melinda Butsch Kovacic; Jocelyn M. Biagini Myers; Tia L. Patterson; Mark B. Ericksen; Hua He; Aaron M. Gibson; Tesfaye M. Baye; Sushil Amirisetty; Anna M. Tsoras; Youbao Sha; N. Tony Eissa; Gurjit K. Khurana Hershey

Rationale and Objective Autophagy is a cellular process directed at eliminating or recycling cellular proteins. Recently, the autophagy pathway has been implicated in immune dysfunction, the pathogenesis of inflammatory disorders, and response to viral infection. Associations between two genes in the autophagy pathway, ATG5 and ATG7, with childhood asthma were investigated. Methods Using genetic and experimental approaches, we examined the association of 13 HapMap-derived tagging SNPs in ATG5 and ATG7 with childhood asthma in 312 asthmatic and 246 non-allergic control children. We confirmed our findings by using independent cohorts and imputation analysis. Finally, we evaluated the functional relevance of a disease associated SNP. Measurements and Main Results We demonstrated that ATG5 single nucleotide polymorphisms rs12201458 and rs510432 were associated with asthma (p = 0.00085 and 0.0025, respectively). In three independent cohorts, additional variants in ATG5 in the same LD block were associated with asthma (p<0.05). We found that rs510432 was functionally relevant and conferred significantly increased promotor activity. Furthermore, Atg5 expression was increased in nasal epithelium of acute asthmatics compared to stable asthmatics and non-asthmatic controls. Conclusion Genetic variants in ATG5, including a functional promotor variant, are associated with childhood asthma. These results provide novel evidence for a role for ATG5 in childhood asthma.


Journal of Immunology | 2006

Allergy-Driven Alternative Splicing of IL-13 Receptor α2 Yields Distinct Membrane and Soluble Forms

Yasuhiro Tabata; Weiguo Chen; M.R. Warrier; Aaron M. Gibson; Michael O. Daines; Gurjit K. Khurana Hershey

IL-13 is a key mediator of allergic inflammation. Its diverse functions are mediated by a complex receptor system including IL-4Rα, IL-13Rα1, and IL-13Rα2. IL-4Rα and IL-13Rα1 form a high-affinity signaling heterodimer. IL-13Rα2 binds IL-13 with high affinity and has been found to exist in membrane and soluble forms. Soluble IL-13Rα2 has been postulated as a critical endogenous modulator of IL-13 responses. However, the mechanism of generation for the soluble form remains unclear. We present the initial study that a mechanism for generation of the soluble form is alternative splicing and that alternative splicing yields a distinct form of soluble IL-13Rα2. We found that several mouse organs expressed two IL-13Rα2 transcripts, the 1152-bp transcript encoding the full-length protein and the 1020-bp transcript lacking exon10, which encodes the transmembrane region. Deletion of exon 10 (ΔEx10) caused a frameshift resulting in a different amino acid sequence from position 327 to position 339 and early termination. Constructs encoding both splice variants were transfected into WEHI-274.1 cells. Transfectants expressing the full-length transcript had IL-13Rα2 on the cell surface but produced minimal soluble IL-13Rα2 in the supernatants. In contrast, transfectants expressing the ΔEx10 transcript displayed no membrane IL-13Rα2 but secreted high levels of soluble IL-13Rα2 capable of inhibiting IL-13 signaling. Both variants bound IL-13, but the ΔEx10 variant displayed ∼2-fold increase in IL-13 binding activity. Expression of the two IL-13Rα2 transcripts was differentially regulated in vivo in an experimental allergic asthma model. Thus, alternatively spliced variants of IL-13Rα2 may have a distinct biologic function in vivo.


Journal of Immunology | 2009

IL-13Rα2 Membrane and Soluble Isoforms Differ in Humans and Mice

Weiguo Chen; Umasundari Sivaprasad; Yasuhiro Tabata; Aaron M. Gibson; Matthew T. Stier; Fred D. Finkelman; Gurjit K. Khurana Hershey

Although mice have nanogram per milliliter serum levels of soluble (s) IL-13Rα2, humans lack sIL-13Rα2 in serum. Our data provide a mechanism for this biological divergence. In mice, discrete transcripts encoding soluble and membrane forms of IL-13Rα2 are generated by alternative splicing. We used small interfering RNA to specifically deplete the transcript encoding membrane (mem) IL-13Rα2 (full-length) or sIL-13Rα2 (ΔEx10) in murine cells. Depletion of the full-length transcript decreased memIL-13Rα2 but had no effect on the level of sIL-13Rα2 in cell supernatants at baseline or following cytokine stimulation. Depletion of the ΔEx10 transcript decreased sIL-13Rα2 in supernatants at baseline and following stimulation. In contrast to mice, we were unable to find a transcript encoding sIL-13Rα2 in humans and siRNA-mediated depletion of full-length IL-13Rα2 decreased both sIL-13Rα2 and memIL-13Rα2 in human cells. Inhibition of matrix metalloproteinases (MMP)/MMP-8 abolished production of sIL-13Rα2 from human cells. Thus, sIL-13Rα2 is derived exclusively from the memIL-13Rα2 transcript in humans through MMPs/MMP-8 cleavage of memIL-13Rα2, supporting a limited role for sIL-13Rα2 in humans and highlighting the potential importance of memIL-13Rα2 in human immunity. These observations require consideration when results of murine IL-13 studies are applied to humans.


The Journal of Allergy and Clinical Immunology | 2008

Matrix metalloproteinase 8 contributes to solubilization of IL-13 receptor α2 in vivo

Weiguo Chen; Yasuhiro Tabata; Aaron M. Gibson; Michael O. Daines; Manoj R. Warrier; Marsha Wills-Karp; Gurjit K. Khurana Hershey

BACKGROUND IL-13 receptor alpha2 (IL-13R alpha 2) is a high-affinity receptor for IL-13, a central mediator of allergic asthma. It acts predominantly as a decoy receptor but can also contribute to IL-13 responses under certain conditions. IL-13R alpha 2 exists in soluble and membrane forms, which can both bind IL-13 and modulate its activity. Yet the proteolytic processes that contribute to the generation of soluble IL-13R alpha 2 are largely unknown. OBJECTIVE We sought to investigate the role of matrix metalloproteinases (MMPs) in the generation of soluble IL-13R alpha 2. METHODS Acellular cleavage assays by MMPs were performed by using glutathione-S-transferase fusion proteins of murine or human IL-13R alpha 2. IL-13R alpha 2 stable-transfected cells were used for analysis of surface expression and release of soluble IL-13R alpha 2. Wild-type and MMP-8-deficient mice were used for analysis of allergen-induced airway hyperresponsiveness and solubilization of IL-13R alpha 2. RESULTS Among several MMPs tested, only MMP-8 cleaved IL-13R alpha 2. Treatment of transfected human or murine cells expressing high levels of surface IL-13R alpha 2 with MMP-8 resulted in release of soluble IL-13R alpha 2 into the supernatants, with a concomitant decrease in surface IL-13R alpha 2 levels. The IL-13R alpha 2 solubilized by MMP-8 retained IL-13 binding activity. In an asthma model MMP-8-deficient mice displayed increased airway hyperresponsiveness and decreased soluble IL-13R alpha 2 protein levels in bronchoalveolar lavage fluid compared with those seen in wild-type mice after house dust mite challenge. CONCLUSION MMP-8 cleaves IL-13R alpha 2 in vitro and contributes to the solubilization of IL-13R alpha 2 in vivo.


Journal of Immunology | 2012

Dectin-1 and IL-17A Suppress Murine Asthma Induced by Aspergillus versicolor but Not Cladosporium cladosporioides Due to Differences in β-Glucan Surface Exposure

Rachael A. Mintz-Cole; Aaron M. Gibson; Stacey A. Bass; Alison L. Budelsky; Tiina Reponen; Gurjit K. Khurana Hershey

There is considerable evidence supporting a role for mold exposure in the pathogenesis and expression of childhood asthma. Aspergillus versicolor and Cladosporium cladosporioides are common molds that have been implicated in asthma. In a model of mold-induced asthma, mice were repeatedly exposed to either A. versicolor or C. cladosporioides spores. The two molds induced distinct phenotypes, and this effect was observed in both BALB/c and C57BL/6 strains. C. cladosporioides induced robust airway hyperresponsiveness (AHR), eosinophilia, and a predominately Th2 response, whereas A. versicolor induced a strong Th17 response and neutrophilic inflammation, but very mild AHR. Neutralization of IL-17A resulted in strong AHR and eosinophilic inflammation following A. versicolor exposure. In Dectin-1–deficient mice, A. versicolor exposure resulted in markedly attenuated IL-17A and robust AHR compared with wild-type mice. In contrast, C. cladosporioides induced AHR and eosinophilic inflammation independent of IL-17A and Dectin-1. A. versicolor, but not C. cladosporioides, spores had increased exposure of β-glucans on their surface and were able to bind Dectin-1. Thus, the host response to C. cladosporioides was IL-17A– and Dectin-1–independent, whereas Dectin-1– and IL-17A–dependent pathways were protective against the development of asthma after exposure to A. versicolor.


PLOS ONE | 2011

Identification of KIF3A as a Novel Candidate Gene for Childhood Asthma Using RNA Expression and Population Allelic Frequencies Differences

Melinda Butsch Kovacic; Jocelyn M. Biagini Myers; Ning Wang; Lisa J. Martin; Mark Lindsey; Mark B. Ericksen; Hua He; Tia L. Patterson; Tesfaye M. Baye; Dara G. Torgerson; Lindsey A. Roth; Jayanta Gupta; Umasundari Sivaprasad; Aaron M. Gibson; Anna M. Tsoras; Donglei Hu; Celeste Eng; Rocio Chapela; Jose R. Rodriguez-Santana; William Rodriguez-Cintron; Pedro C. Avila; Kenneth B. Beckman; Max A. Seibold; Chris Gignoux; Salma M.A. Musaad; Weiguo Chen; Esteban G. Burchard; Gurjit K. Khurana Hershey

Background Asthma is a chronic inflammatory disease with a strong genetic predisposition. A major challenge for candidate gene association studies in asthma is the selection of biologically relevant genes. Methodology/Principal Findings Using epithelial RNA expression arrays, HapMap allele frequency variation, and the literature, we identified six possible candidate susceptibility genes for childhood asthma including ADCY2, DNAH5, KIF3A, PDE4B, PLAU, SPRR2B. To evaluate these genes, we compared the genotypes of 194 predominantly tagging SNPs in 790 asthmatic, allergic and non-allergic children. We found that SNPs in all six genes were nominally associated with asthma (p<0.05) in our discovery cohort and in three independent cohorts at either the SNP or gene level (p<0.05). Further, we determined that our selection approach was superior to random selection of genes either differentially expressed in asthmatics compared to controls (p = 0.0049) or selected based on the literature alone (p = 0.0049), substantiating the validity of our gene selection approach. Importantly, we observed that 7 of 9 SNPs in the KIF3A gene more than doubled the odds of asthma (OR = 2.3, p<0.0001) and increased the odds of allergic disease (OR = 1.8, p<0.008). Our data indicate that KIF3A rs7737031 (T-allele) has an asthma population attributable risk of 18.5%. The association between KIF3A rs7737031 and asthma was validated in 3 independent populations, further substantiating the validity of our gene selection approach. Conclusions/Significance Our study demonstrates that KIF3A, a member of the kinesin superfamily of microtubule associated motors that are important in the transport of protein complexes within cilia, is a novel candidate gene for childhood asthma. Polymorphisms in KIF3A may in part be responsible for poor mucus and/or allergen clearance from the airways. Furthermore, our study provides a promising framework for the identification and evaluation of novel candidate susceptibility genes.


The Journal of Allergy and Clinical Immunology | 2011

Downregulation of glutathione S-transferase pi in asthma contributes to enhanced oxidative stress

Kathy T. Schroer; Aaron M. Gibson; Umasundari Sivaprasad; Stacey A. Bass; Mark B. Ericksen; Marsha Wills-Karp; Tim LeCras; Anne M. Fitzpatrick; Lou Ann S. Brown; Keith F. Stringer; Gurjit K. Khurana Hershey

BACKGROUND Glutathione S-transferase pi (GSTPi) is the predominant redox regulator in the lung. Although evidence implicates an important role for GSTPi in asthma, the mechanism for this has remained elusive. OBJECTIVES We sought to determine how GSTPi is regulated in asthma and to elucidate its role in maintaining redox homeostasis. METHODS We elucidated the regulation of GSTPi in children with asthma and used murine models of asthma to determine the role of GSTPi in redox homeostasis. RESULTS Our findings demonstrate that GSTPi transcript levels are markedly downregulated in allergen- and IL-13-treated murine models of asthma through signal transducer and activator of transcription 6-dependent and independent pathways. Nuclear factor erythroid 2-related factor 2 was also downregulated in these models. The decrease in GSTPi expression was associated with decreased total glutathione S-transferase activity in the lungs of mice. Examination of cystine intermediates uncovered a functional role for GSTPi in regulating cysteine oxidation, whereby GSTPi-deficient mice exhibited increased oxidative stress (increase in percentage cystine) compared with wild-type mice after allergen challenge. GSTPi expression was similarly downregulated in children with asthma. CONCLUSIONS These data collectively suggest that downregulation of GSTPi after allergen challenge might contribute to the asthma phenotype because of disruption of redox homeostasis and increased oxidative stress. Furthermore, GSTPi might be an important therapeutic target for asthma, and evaluation of GSTPi expression might prove beneficial in identifying patients who would benefit from therapy targeting this pathway.


Journal of Immunology | 2010

IL-13Rα2 Has a Protective Role in a Mouse Model of Cutaneous Inflammation

Umasundari Sivaprasad; M.R. Warrier; Aaron M. Gibson; Weiguo Chen; Yasuhiro Tabata; Stacey A. Bass; Marc E. Rothenberg; Gurjit K. Khurana Hershey

IL-13 is expressed in lesions of atopic dermatitis (AD) and has been associated with increased disease severity. IL-13 has two cognate receptors: IL-13Rα1 and IL-13Rα2. Although IL-13Rα2 expression is known to be induced in response to IL-13 in keratinocytes, its function in AD has never been evaluated. We characterized the loss of skin barrier function and the development of cutaneous inflammation in IL-13Rα2–null versus wild-type BALB/c mice following an epicutaneous allergen-sensitization/challenge model that shares similarities with human AD. Mice lacking IL-13Rα2 had significantly increased transepidermal water loss, cutaneous inflammation, peripheral eosinophilia, and IgG1 and IgE levels compared with wild-type mice. The rate of resolution of the cutaneous inflammation was not significantly altered in the IL-13Rα2–null mice. IL-13 induced expression of IL-13Rα2 in keratinocyte cell lines and primary human keratinocytes. Depletion of IL-13Rα2 in a keratinocyte cell line resulted in increased STAT6 signaling in response to IL-13. In conclusion, IL-13Rα2 serves a protective role in the pathogenesis of allergic inflammation and loss of skin barrier function in a mouse model of AD, suggesting that it may be an important endogenous regulator of IL-13–induced cutaneous inflammation in humans.

Collaboration


Dive into the Aaron M. Gibson's collaboration.

Top Co-Authors

Avatar

Gurjit K. Khurana Hershey

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

Stacey A. Bass

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

Weiguo Chen

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

Umasundari Sivaprasad

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

Yasuhiro Tabata

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

M.R. Warrier

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

Mark B. Ericksen

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Eric B. Brandt

Cincinnati Children's Hospital Medical Center

View shared research outputs
Top Co-Authors

Avatar

G.K. Khurana Hershey

Cincinnati Children's Hospital Medical Center

View shared research outputs
Researchain Logo
Decentralizing Knowledge