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Background: Real‐world evidence is sparse on the benefits of allergen immunotherapy [AIT; subcutaneous/sublingual immunotherapy (SCIT/SLIT)], the only disease‐modifying intervention for allergic rhinitis (AR) with long‐term efficacy. This real‐life study evaluated the effect of six AITs (native pollen SLIT/SCIT, four allergoid SCITs) vs symptomatic medication use, on AR symptoms and asthma symptoms/onset, in patients with birch pollen‐associated AR and/or asthma.
Methods: In this retrospective cohort analysis of a German longitudinal prescription database, AIT patients received ≥2 successive seasonal treatment cycles; non‐AIT patients had ≥3 AR prescriptions in three seasons or previous month. Patients were matched for: index year, age, gender, main indication at index, number of seasonal cycles within treatment period, baseline AR/asthma treatment prescriptions. Multiple regression analysis compared prescription data in AIT and non‐AIT groups as proxy for clinical status/disease progression.
Results: Up to 6 years of follow‐up, significantly more AIT (65.4%) vs non‐AIT (47.4%) patients were AR medication‐free; odds ratio (OR) [95% confidence interval (CI)]: 0.51 [(0.48‐0.54); P < 0.001] (28.6% covariate‐adjusted reduction vs non‐AIT; P < 0.001), and significantly more AIT (49.1%) vs non‐AIT (35.1%) patients were asthma medication‐free [OR (95% CI): 0.59 (0.55‐0.65); P < 0.001] (32% reduction vs non‐AIT; P < 0.001), or reduced existing asthma medication use (32% covariate‐adjusted reduction vs non‐AIT; P < 0.001). During treatment, new‐onset asthma risk was significantly reduced in the AIT vs non‐AIT group (OR: 0.83; P = 0.001).
Conclusions: Birch pollen AIT demonstrated real‐world benefits up to 6 years post‐treatment cessation through significantly reduced AR and asthma medication intake, and significantly decreased risk of new‐onset asthma medication use on‐treatment.
Attention-deficit/hyperactivity disorder (ADHD) is a common, highly heritable neurodevelopmental disorder. Genetic loci have not yet been identified by genome-wide association studies. Rare copy number variations (CNVs), such as chromosomal deletions or duplications, have been implicated in ADHD and other neurodevelopmental disorders. To identify rare (frequency ≤1%) CNVs that increase the risk of ADHD, we performed a whole-genome CNV analysis based on 489 young ADHD patients and 1285 adult population-based controls and identified one significantly associated CNV region. In tests for a global burden of large (>500 kb) rare CNVs, we observed a nonsignificant (P=0.271) 1.126-fold enriched rate of subjects carrying at least one such CNV in the group of ADHD cases. Locus-specific tests of association were used to assess if there were more rare CNVs in cases compared with controls. Detected CNVs, which were significantly enriched in the ADHD group, were validated by quantitative (q)PCR. Findings were replicated in an independent sample of 386 young patients with ADHD and 781 young population-based healthy controls. We identified rare CNVs within the parkinson protein 2 gene (PARK2) with a significantly higher prevalence in ADHD patients than in controls (P=2.8 × 10(-4) after empirical correction for genome-wide testing). In total, the PARK2 locus (chr 6: 162 659 756-162 767 019) harboured three deletions and nine duplications in the ADHD patients and two deletions and two duplications in the controls. By qPCR analysis, we validated 11 of the 12 CNVs in ADHD patients (P=1.2 × 10(-3) after empirical correction for genome-wide testing). In the replication sample, CNVs at the PARK2 locus were found in four additional ADHD patients and one additional control (P=4.3 × 10(-2)). Our results suggest that copy number variants at the PARK2 locus contribute to the genetic susceptibility of ADHD. Mutations and CNVs in PARK2 are known to be associated with Parkinson disease.