==== Front Front Immunol Front Immunol Front. Immunol. Frontiers in Immunology 1664-3224 Frontiers Media S.A. 10.3389/fimmu.2020.559746 Immunology Original Research Leukotriene A4 Hydrolase Is a Candidate Predictive Biomarker for Successful Allergen Immunotherapy Ma Ting-Ting 1 † Cao Meng-Da 2 † Yu Rui-Li 1 Shi Hai-Yun 1 Yan Wei-Jun 3 Liu Jian-Guo 3 Pan Chen 2 4 Sun Jinlyu 5 Wei Qing-Yu 6 Wang De-Yun 7 Wei Ji-Fu 2 * Wang Xue-Yan 1 * Yin Jin-Shu 1 * 1 Department of Allergy, Beijing Shijitan Hospital, Capital Medical University, Beijing, China 2 Research Division of Clinical Pharmacology, The First Affiliated Hospital of Nanjing Medical University, Nanjing, China 3 Department of Allergy, Duolun People’s Hospital, Duolun, China 4 School of Basic Medicine and Clinical Pharmacy, China Pharmaceutical University, Nanjing, China 5 Department of Allergy, Peking Union Medical College Hospital, Peking Union Medical College, Chinese Academy of Medical Sciences, Beijing Key Laboratory of Precision Medicine for Diagnosis and Treatment on Allergic Diseases, Beijing, China 6 Department of Allergy, General Hospital of Northern Theater Command, Shenyang, China 7 Department of Otolaryngology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, Singapore Edited by: Peisong Gao, Johns Hopkins University, United States Reviewed by: Ping-Chang Yang, Shenzhen University, China; Eric Oliver, Johns Hopkins University, United States *Correspondence: Xue-Yan Wang, wangxueyan2018@163.com; Ji-Fu Wei, weijifu@hotmail.com; Jin-Shu Yin, yinjinshu55@aliyun.com †These authors have contributed equally to this work This article was submitted to Immunological Tolerance and Regulation, a section of the journal Frontiers in Immunology 24 11 2020 2020 11 55974607 5 2020 22 10 2020 Copyright © 2020 Ma, Cao, Yu, Shi, Yan, Liu, Pan, Sun, Wei, Wang, Wei, Wang and Yin2020Ma, Cao, Yu, Shi, Yan, Liu, Pan, Sun, Wei, Wang, Wei, Wang and YinThis is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.Background Allergic rhinitis is a common disorder that affects 10% to 40% of the population worldwide. Allergen immunotherapy (AIT) represents the only therapy that has the potential to resolve clinical symptoms of allergic rhinitis. However, up to 30% of patients do not respond to AIT. Biomarkers predicting the clinical efficacy of AIT as early as possible would significantly improve the patient selection and reduce unnecessary societal costs. Methods Artemisia pollen allergic patients who received at least 1-year AIT were enrolled. Clinical responses before and after 1-year AIT were evaluated to determine AIT responders. Artemisia specific IgE and IgG4 levels were measured by using ImmunoCAP and enzyme-linked immunosorbent assay (ELISA) separately. Stepwise regression analysis was performed to identify which rhinitis-relevant parameters explained the most variability in AIT results. Liquid chromatography-tandem mass spectrometry (LC-MS/MS)-based proteomics was applied to identify the potential candidate biomarkers in the sera of responders and non-responders collected before and after 1-year therapy. The diagnostic performance of the potential biomarkers was then assessed using enzyme-linked immunosorbent assay (ELISA) in 30 responders and 15 non-responders. Results Artemisia specific IgE and IgG4 levels were elevated only in the responders. Regression analysis of allergic rhinitis-relevant parameters provided a robust model that included two most significant variables (sneeze and nasal congestion). Thirteen candidate biomarkers were identified for predicting AIT outcomes. Based on their association with allergy and protein fold change (more than 1.1 or less than 0.9), four proteins were identified to be potential biomarkers for predicting effective AIT. However, further ELISA revealed that only leukotriene A4 hydrolase (LTA4H) was consistent with the proteomics data. The LTA4H level in responders increased significantly (P < 0.001) after 1-year therapy, while that of non-responders remained unchanged. Assessment of LTA4H generated area under curve (AUC) value of 0.844 (95% confidence interval: 0.727 to 0.962; P < 0.05) in distinguishing responders from the non-responders, suggesting that serum LTA4H might be a potential biomarker for predicting the efficiency of AIT. Conclusion Serum LTA4H may be a potential biomarker for early prediction of an effective AIT. allergic rhinitisallergen immunotherapyserumbiomarkersproteomicsLTA4HBeijing Municipal Administration of Hospitals Clinical Medicine Development of Special Funding Support10.13039/501100009331ZYLX201826 ==== Body Introduction Allergic rhinitis is a common disorder that affects 10% to 40% of the population worldwide (1). It is defined as symptoms of sneezing, rhinorrhea, nasal pruritus and airflow obstruction (2). Allergic rhinitis may occur at any age, peaking in the teenage years (3). It also underlies many complications and is a major risk factor for poor asthma control (4–6). Uncontrolled allergic rhinitis has a negative impact on social life, work productivity and school performance, particularly in patients with severe symptoms. However, allergic rhinitis is often ignored, misdiagnosed, and mistreated, which can be detrimental to health and increases societal costs (3, 7). Pollens are the major cause of seasonal allergic rhinitis. In northern China, over 50% patients with respiratory allergies are sensitized to Artemisia pollen (8). Many classes of drug are available to relieve allergy symptoms, including intranasal corticosteroids and antihistamines. However, even with the best pharmacotherapy, 20% affected individuals remain highly symptomatic (3). Allergen immunotherapy (AIT) represents the only available cause-oriented therapy so far that has the potential to alter the natural history of allergic rhinitis (9–12). AIT is defined as the repeated administration of specific allergens to patients with IgE-mediated allergies in order to provide protection against allergies and inflammatory reactions associated with natural exposure to the same allergens. It is often accompanied by an initial early increase in allergen-specific IgE (sIgE) and allergen-specific (sIgG4) levels (13). The exact mechanism by which AIT conveys a clinical benefit is unknown. Although efficacy of AIT has been demonstrated against highly prevalent allergens such as pollens and house dust mites, up to 30% of patients do not respond to it (14). No predictive biomarkers or diagnostic tests have been developed for its efficacy (15). The unpredictable outcome and a long course (up to 5 years) (16) of AIT imposes a high or even unnecessary cost to the health system especially for people who turn out to be non-responder. Therefore, early prediction of AIT efficacy would greatly reduce the overall cost associated with the treatment. Clinical analysis of serum is the most widespread diagnostic procedure in medicine, and serum biomarkers are usually used to categorize patients and to support treatment decisions (17). Due to its availability and stability, serum represents valuable resource for proteome analysis and biomarker discovery (18, 19). This biological specimen is considered a key source of physiological information about the overall status of each tissue, and it reflects the status of several pathological conditions. The assessment of the circulating molecules, e.g., proteins, in serum may present a potential approach to help predict the outcome of AIT (12, 20). Liquid chromatography-tandem mass spectrometry (LC-MS/MS)-based proteomic analysis can measure global protein abundance and post-translational modifications to provide additional biological insights (21) and rapidly identify candidate biomarkers in clinical samples (22). In this study, we used LC-MS/MS to profile the blood samples from patients after AIT to identify potential biomarkers and further validated the results using enzyme-linked immunosorbent assay (ELISA) ( Figure 1 ). The outcomes of this work might help develop serum-based early assay for AIT efficacy using validated biomarkers and may help reduce the overall therapeutic cost and improve the outcomes. Figure 1 Schematic workflow. An overview of the workflow used for the identification of allergen immunotherapy (AIT) efficacy biomarkers. Methods Patients and Samples Patients from 6 to 60 years of age with Artemisia pollen allergic rhinitis were recruited at Beijing Shijitan Hospital, affiliated to Capital Medical University on 28-31 July 2016 with a course of disease more than 12 months. Clinical responses were evaluated before and after AIT, including total nasal symptoms scores (TNSS), rhinoconjunctivitis quality of life questionnaires (RQLQ), VAS and allergic conjunctivitis symptoms. According to the treatment results after one year, patients were classified as responders (n = 30) and non-responders (n = 15). The curative effect was evaluated by symptoms and sign scores. The curative effect index (%) = (pretreatment total score − posttreatment total score)/pre-treatment total score × 100%. Patients with ineffective therapeutic index (≤25%, n = 15) were included the ineffective group. And those with effective therapeutic index (≥66%, n = 30) were classified as the effective group. Patients with not significantly effective or ineffective results (>25%, <66%, n=3) were not included in the analysis because of unclear treatment results. Ten ml fresh blood was collected from the patients before AIT, immediately centrifuged at 1500 rpm at 4°C for 10 min and stored at −80°C for use in subsequent LC-MS/MS and ELISA. Then, serum was collected and processed in the same way before the last injection of 1-year AIT. Serum samples from 20 patients (10 AIT responders, and 10 AIT non-responders) with Artemisia pollen allergic rhinitis were used for comprehensive proteome profiling. For further development of potential biomarkers, ELISA verification was performed on an independent set of 45 pairs of serum samples (30 AIT responders, and 15 AIT non-responders). Characteristics of enrolled patients were summarized in Table 1 . The study was conducted under the guidance of the Helsinki Declaration and approved by the Institutional Review Board of Beijing Shijitan Hospital, affiliated to Capital Medical University, Beijing, China. Written informed consent was obtained from every participant in this study. Table 1 Baseline characteristics of patients. Effective (n = 30) Ineffective (n = 15) P Age, years 27.4 ± 14.33 36.2 ± 16.26 0.07 Gender, n (%)  Male 17(56.67) 13(86.67)  Female 13(43.33) 2(13.33) Height, cm 161.27 ± 13.03 168.6 ± 13.65 0.09 Body weight, kg 56.63 ± 17.36 66.33 ± 22.64 0.12 Blood pressure, mm Hg  Systolic 109.36 ± 15.11 118.67 ± 5.16 0.03  Diastolic 77.36 ± 10.66 84.33 ± 5.63 0.02 Heart rate, beats/min 77.25 ± 5.46 74.27 ± 3.53 0.06 Body temperature, °C 36.44 ± 0.16 36.43 ± 0.24 0.92 Breath rate, times/min 17.75 ± 1.94 17.2 ± 1.78 0.37 TNSS  Sneeze 2.57 ± 0.57 2.27 ± 0.7 0.154  Rogue 2.63 ± 0.61 2.67 ± 0.49 0.941  Nasal congestion 2.37 ± 0.81 2.33 ± 0.9 0.989  Nasal itching 2.5 ± 0.78 2.07 ± 0.8 0.053  Total score 10.07 ± 1.53 9.27 ± 1.91 0.116 VAS score  Patient evaluation 7.79 ± 1.31 7.24 ± 1.31 0.181  Doctor evaluation 7.74 ± 1.26 6.97 ± 1.2 0.05 Allergic conjunctivitis symptoms scores Itchy/redness 2.6 ± 0.62 2.4 ± 0.74 0.354  Tears 1.7 ± 1.02 1.67 ± 0.82 0.820  Total score 4.27 ± 1.34 4.13 ± 1.3 0.764 Intradermal test of Artemisia 3.97 ± 0.18 3.87 ± 0.52 0.590 Inclusion Criteria The inclusion criteria were as follows: (1) age between 6 and 60, (2) course of disease more than 1 year, (3) typical symptoms appearing in the summer and autumn pollen season, and asymptomatic or mild symptoms in the non-pollen season (non-pollen season VAS <3), (4) intradermal test of Artemisia pollen allergen was ≥+++, and sIgE was ≥II (based on UniCAP allergen-specific IgE detection system), (5) other types of allergen skin test was negative, or “+” and above (including “+”) but specific IgE was