The major goal of this proposal is to better understand immune maturation and its relationship to viral respiratory infection disease severity. Viral respiratory infections (VRI) are a significant health risk to infants. These common childhood infections, for which few therapeutics or effective vaccines exist, result in significant morbidity and mortality during the first 5 years of life. As such, VRIs are a significant public health problem impacting the quality of life of affected children and places increased societal strain in the workplace and on health care utilization. Additionally VRIs appear to have a long lasting health impact, for example in some children resulting in the development of chronic allergic diseases. Uniquely, unpublished data from MESA demonstrate significantly decreased respiratory infections during the first 2 years of life in farm children compared to non-farm children. These effects parallel published findings from around the world that farm exposures lower the risk of childhood allergies and asthma. Notably, the development of allergen sensitization and highest vulnerability to VRIs coincides with the maturation phase of the immune system, and there is evidence that farm exposures enhance development of innate immunity and T regulatory (Treg) cell function. We hypothesize that farm exposures reduce the risk of VRIs in young children by enhancing the development of innate antiviral immunity and Treg function. To test this hypothesis, we will develop a unique birth cohort study from Wisconsin farm and non-farm families within MESA. Functional assays to define innate and Treg cell maturation will be utilized in a longitudinal manner along with surveillance of VRIs and allergic sensitization. A better mechanistic understanding of how environmental exposures promote resistance to VRIs and diminish allergic diseases through effects on immune maturation will allow for development of new strategies to bring benefits of farm exposures to those who live elsewhere. In addition to addressing these research goals, this project will serve as a source of extensively characterized clinical specimens (airway epithelial cells, clinical isolates of rhinoviruses) that will enable mechanistic studies to define host-virus interactions that contribute to the severity of clinical illnesses.

Public Health Relevance

Viral respiratory infections (VRI) are ubiquitous, cause significant morbidity and mortality in early life, and effective vaccines or therapies are lacking. Farm exposures in early life appear to promote immune maturation, and we have new data to show that farm children have significantly fewer respiratory illnesses. In this proposal, we will assemble a novel birth cohort to better farm effects on immune maturation and viral respiratory illnesses. The goal of this study is to identify new targets for the treatment and prevention of VRI.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19AI104317-05
Application #
9204377
Study Section
Special Emphasis Panel (ZAI1-PA-I)
Project Start
Project End
Budget Start
2017-02-01
Budget End
2018-01-31
Support Year
5
Fiscal Year
2017
Total Cost
$731,371
Indirect Cost
$119,597
Name
University of Wisconsin Madison
Department
Type
Domestic Higher Education
DUNS #
161202122
City
Madison
State
WI
Country
United States
Zip Code
53715
Kim, Chang Keun; Callaway, Zak; Gern, James E (2018) Viral Infections and Associated Factors That Promote Acute Exacerbations of Asthma. Allergy Asthma Immunol Res 10:12-17
Gern, James E; Lee, Wai Ming; Swenson, Cheri A et al. (2018) Development of a Rhinovirus Inoculum using a Reverse Genetics Approach. J Infect Dis :
Leino, Annamari; Lukkarinen, Minna; Turunen, Riitta et al. (2018) Pulmonary function and bronchial reactivity 4 years after the first virus-induced wheezing. Allergy :
Cox, Desmond W; Khoo, Siew-Kim; Zhang, Guicheng et al. (2018) Rhinovirus is the most common virus and rhinovirus-C is the most common species in paediatric intensive care respiratory admissions. Eur Respir J 52:
Shen, Zhong-Jian; Hu, Jie; Kashi, Venkatesh et al. (2018) TLR-7 Stress Signaling in Differentiating and Mature Eosinophils Is Mediated by the Prolyl Isomerase Pin1. J Immunol 201:3503-3513
Yang, Zhonghui; Bochkov, Yury A; Voelker, Dennis R et al. (2018) Identification of a Novel Inhibitor of HRV Replication and Inflammation in Airway Epithelial Cells. Am J Respir Cell Mol Biol :
Hasegawa, Kohei; Jartti, Tuomas; Bochkov, Yury A et al. (2018) Rhinovirus Species in Children with Severe Bronchiolitis: Multicenter Cohort Studies in the US and Finland. Pediatr Infect Dis J :
Yin, John; Redovich, Jacob (2018) Kinetic Modeling of Virus Growth in Cells. Microbiol Mol Biol Rev 82:
Scully, Erik J; Basnet, Sarmi; Wrangham, Richard W et al. (2018) Lethal Respiratory Disease Associated with Human Rhinovirus C in Wild Chimpanzees, Uganda, 2013. Emerg Infect Dis 24:267-274
Ludka-Gaulke, Tiffany; Ghera, Princy; Waring, Stephen C et al. (2018) Farm exposure in early childhood is associated with a lower risk of severe respiratory illnesses. J Allergy Clin Immunol 141:454-456.e4

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