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Sökning: WFRF:(Bergström Anna) > Hallberg Jenny

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1.
  • Alhamdow, Ayman, et al. (författare)
  • Low-level exposure to polycyclic aromatic hydrocarbons is associated with reduced lung function among Swedish young adults
  • 2021
  • Ingår i: Environmental Research. - : Elsevier BV. - 0013-9351 .- 1096-0953. ; 197
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: Exposure to polycyclic aromatic hydrocarbons (PAHs) has been linked to adverse pulmonary effects. However, the impact of low-level environmental PAH exposure on lung function in early adulthood remains uncertain. Objectives: To evaluate the associations between urinary PAH metabolites and lung function parameters in young adults. Methods: Urinary metabolites of pyrene, phenanthrene, and fluorene were analysed in 1000 young adults from Sweden (age 22–25 years) using LC-MS/MS. Lung function and eosinophilic airway inflammation were measured by spirometry and exhaled nitric oxide fraction (FeNO), respectively. Linear regression analysis was used to evaluate associations between PAH metabolites and the outcomes. Results: Median urinary concentrations of 1-OH-pyrene, ∑OH-phenanthrene, and ∑OH-fluorene were 0.066, 0.36, 0.22 μg/L, respectively. We found inverse associations of ∑OH-phenanthrene and ∑OH-fluorene with FEV1 and FVC, as well as between 1-OH-pyrene and FEV1/FVC ratio (adjusted P < 0.05; all participants). An increase of 1% in ∑OH-fluorene was associated with a decrease of 73 mL in FEV1 and 59 mL in FVC. In addition, ∑OH-phenanthrene concentrations were, in a dose-response manner, inversely associated with FEV1 (B from −109 to −48 compared with the lowest quartile of ∑OH-phenanthrene; p trend 0.004) and FVC (B from −159 to −102 compared with lowest quartile; p-trend <0.001). Similar dose-response associations were also observed between ∑OH-fluorene and FEV1 and FVC, as well as between 1-OH-pyrene and FEV1/FVC (p-trend <0.05). There was no association between PAH exposure and FeNO, nor was there an interaction with smoking, sex, or asthma. Conclusion: Low-level PAH exposure was, in a dose-response manner, associated with reduced lung function in young adults. Our findings have public health implications due to i) the widespread occurrence of PAHs in the environment and ii) the clinical relevance of lung function in predicting all-cause and cardiovascular disease mortality.
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2.
  • Wang, Gang, et al. (författare)
  • Assessment of chronic bronchitis and risk factors in young adults : results from BAMSE
  • 2020
  • Ingår i: European Respiratory Journal. - Stockholm : Karolinska Institutet, Dept of Clinical Science and Education, Södersjukhuset. - 0903-1936 .- 1399-3003.
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Chronic bronchitis is associated with substantial morbidity among elderly adults, but little is known about its prevalence and risk factors in young adults. Our aim was to assess the prevalence and early life risk factors for chronic bronchitis in young adults. METHODS: Questionnaire data and clinical measures from the 24-year follow-up of the Swedish BAMSE cohort were used. We assessed chronic bronchitis (CB) as the combination of cough and mucus production in the morning during winter. Environmental and clinical data from birth and onwards were used for analyses of risk factors. RESULTS: At the 24-year follow-up, 75% (n=3064) participants completed the questionnaire and 2030 performed spirometry. The overall prevalence of CB was 5.5% (n=158) with similar estimates in males and females. Forty-nine percent of CB cases experienced more than 3 self-reported respiratory infections in the last year compared to 18% in non-CB subjects (p<0.001), and 37% of cases were current smokers (versus 19%). Statistically significant lower post-FEV(1)/FVC were observed in CB compared to non-CB subjects (mean z-score -0.06 versus 0.13, p=0.027). Daily smoking (adjusted Odds Ratio, aOR=3.85, p<0.001), air pollution exposure (black carbon during ages 1-4 years old, aOR=1.71 per 1 μg·m(3) increase, p=0.009) and exclusive breast-feeding during four months or more (aOR=0.66, p=0.044) were associated with CB. CONCLUSION: Chronic bronchitis in young adults is associated with recurrent respiratory infections. Besides smoking, our results support role of early life exposures, such as air pollution and exclusive breast-feeding, for respiratory health later in life.
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3.
  • Wang, Gang, et al. (författare)
  • Early-life risk factors for reversible and irreversible airflow limitation in young adults : findings from the BAMSE birth cohort
  • 2021
  • Ingår i: Thorax. - : BMJ Publishing Group Ltd. - 0040-6376 .- 1468-3296. ; 76:5, s. 503-507
  • Tidskriftsartikel (refereegranskat)abstract
    • We aimed to determine prevalence and early-life risk factors for reversible and irreversible airflow limitation in young adults from the general population. Among young adults in their 20s, the prevalence was 5.3% for reversible airflow limitation and 2.0% for irreversible airflow limitation. While parental asthma was the only risk factor for development of reversible airflow limitation, the risk factors for development of irreversible airflow limitation were current asthma, childhood respiratory tract infections and asthma, and exposure to air pollution.
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4.
  • Wang, Gang, et al. (författare)
  • Spirometric phenotypes from early childhood to young adulthood : a Chronic Airway Disease Early Stratification study
  • 2021
  • Ingår i: ERJ Open Research. - : ERS Publications. - 2312-0541. ; 7:4
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: The prevalences of obstructive and restrictive spirometric phenotypes, and their relation to early-life risk factors from childhood to young adulthood remain poorly understood. The aim was to explore these phenotypes and associations with well-known respiratory risk factors across ages and populations in European cohorts.Methods: We studied 49334 participants from 14 population-based cohorts in different age groups (⩽10, >10–15, >15–20, >20–25 years, and overall, 5–25 years). The obstructive phenotype was defined as forced expiratory volume in 1 s (FEV1)/forced vital capacity (FVC) z-score less than the lower limit of normal (LLN), whereas the restrictive phenotype was defined as FEV1/FVC z-score ⩾LLN, and FVC z-score Results: The prevalence of obstructive and restrictive phenotypes varied from 3.2–10.9% and 1.8–7.7%, respectively, without clear age trends. A diagnosis of asthma (adjusted odds ratio (aOR=2.55, 95% CI 2.14–3.04), preterm birth (aOR=1.84, 1.27–2.66), maternal smoking during pregnancy (aOR=1.16, 95% CI 1.01–1.35) and family history of asthma (aOR=1.44, 95% CI 1.25–1.66) were associated with a higher prevalence of obstructive, but not restrictive, phenotype across ages (5–25 years). A higher current body mass index (BMI was more often observed in those with the obstructive phenotype but less in those with the restrictive phenotype (aOR=1.05, 95% CI 1.03–1.06 and aOR=0.81, 95% CI 0.78–0.85, per kg·m−2 increase in BMI, respectively). Current smoking was associated with the obstructive phenotype in participants older than 10 years (aOR=1.24, 95% CI 1.05–1.46).Conclusion: Obstructive and restrictive phenotypes were found to be relatively prevalent during childhood, which supports the early origins concept. Several well-known respiratory risk factors were associated with the obstructive phenotype, whereas only low BMI was associated with the restrictive phenotype, suggesting different underlying pathobiology of these two phenotypes.
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5.
  • Ekström, Sandra, et al. (författare)
  • Dietary intake and plasma concentrations of PUFAs in childhood and adolescence in relation to asthma and lung function up to adulthood
  • 2022
  • Ingår i: American Journal of Clinical Nutrition. - : Oxford University Press (OUP). - 0002-9165 .- 1938-3207. ; 115:3, s. 886-896
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: PUFAs may influence the risk of asthma; however, long-term prospective studies including objective biomarkers of PUFA intake are lacking.Objectives The objective was to investigate the role of dietary intake and plasma concentrations of n–3 and n–6 (ω-3 and ω-6) PUFAs in childhood and adolescence for the development of asthma and lung function up to young adulthood.Methods: The study included participants from the Swedish prospective birth cohort BAMSE. Dietary intake of PUFAs was calculated from FFQs (n = 1992) and plasma proportions of PUFAs were measured in phospholipids (n = 831). We analyzed the n–3 PUFA α-linolenic acid (ALA; 18:3n–3); the sum of very-long-chain (VLC) n–3 PUFAs: EPA (20:5n–3), DHA (22:6n–3), and docosapentaenoic acid (22:5n–3); and the n–6 PUFAs linoleic acid (LA; 18:2n–6) and arachidonic acid (AA; 20:4n–6). Asthma was assessed by questionnaires at 8, 16, and 24 y and lung function was measured by spirometry at 24 y.Results: A high (≥median) self-reported dietary intake of LA at 8 y and AA at 16 y was associated with increased risk of prevalent asthma at 24 y (OR: 1.41; 95% CI: 1.10, 1.82 and OR: 1.32; 95% CI: 1.02, 1.70, respectively). In contrast, plasma proportions of ALA, ∑VLC n–3 PUFAs, and AA at 8 y, as well as LA at 16 y, were inversely associated with prevalent asthma at 24 y (e.g., OR: 0.55; 95% CI: 0.38, 0.81 for ∑VLC n–3 PUFAs). No consistent associations were observed with lung function.Conclusions: High dietary intake of certain n–6 PUFAs in childhood or adolescence may be associated with increased risk of asthma up to young adulthood, whereas dietary biomarkers of certain n–3 and n–6 PUFAs in plasma may be associated with decreased risk. Thus, the role of diet compared with altered metabolism of PUFAs needs further investigation to improve dietary preventive strategies for asthma.
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6.
  • Mogensen, Ida, et al. (författare)
  • Lung function before and after COVID-19 in young adults : A population-based study.
  • 2022
  • Ingår i: The journal of allergy and clinical immunology. Global. - : University of Wisconsin Press. - 2772-8293. ; 1:2, s. 37-42
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: There is limited evidence on the long-term impact of mild-to-moderate coronavirus disease 2019 (COVID-19) on lung function among young adults.OBJECTIVES: We aimed to assess whether COVID-19 has a negative impact on lung function in young adults and whether asthma, allergic sensitization, or use of inhaled corticosteroids (ICSs) modifies a potential association.METHODS: Participants from the population-based BAMSE (Barn, Allergi, Miljö, Stockholm, Epidemiologi) cohort with spirometry assessed before (2016-2019) and after onset of the COVID-19 pandemic (2020-2021) were included. Serum levels of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) receptor-binding domain-specific IgG, IgM, and/or IgA (determined with ELISA) defined seropositivity. Mean change in lung function (ie, change in FEV1, forced vital capacity [FVC], and FEV1/FVC ratio expressed as percent of predicted [pp]) from before to after onset of the pandemic were compared between the seronegative and seropositive participants. In seropositive participants, change in lung function was assessed in relation to allergic sensitization and self-reported ICS use.RESULTS: Of the 853 included participants, 29% (n = 243) were seropositive. There were no differences in change in lung function between the seronegative and seropositive participants (for mean change in FEV1 pp [SD], seropositivity = 0.87% [4.79%] and seronegativity = 1.03% (4.76%) [P = .66] for difference using a t test; FVC pp (SD), seropositivity = 1.34% (4.44%) and seronegativity = 1.29% (4.27%) [P = .87]; and for FEV1/FVC pp (SD), seropositivity = -0.25% (3.13%) and seronegativity = -0.13% (3.15%) [P = .61]). Similar results were observed among participants with asthma (n = 147 [17%]). Among seropositive participants, allergic sensitization or ICS use did not influence lung function.CONCLUSION: We found no evidence of mild-to-moderate COVID-19 affecting lung function long term in a population-based cohort of young adults. Moreover, neither asthma nor allergic sensitization nor ICS use affected the results.
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7.
  • Panasevich, Sviatlana, et al. (författare)
  • Investigation of novel genes for lung function in children and their interaction with tobacco smoke exposure : a preliminary report.
  • 2013
  • Ingår i: Acta Paediatrica. - : Wiley. - 0803-5253 .- 1651-2227. ; 102:5, s. 498-503
  • Tidskriftsartikel (refereegranskat)abstract
    • AIM: To replicate newly reported single nucleotide polymorphism (SNP) associations with adult lung function in a cohort of children and to investigate interactions with tobacco smoke exposure on lung function.METHODS: Of 37 reported SNPs in adults, 21 were available in our genome-wide association study data set, either directly genotyped or as proxy SNPs. We tested for association with lung function (FEV1 , FVC, FEV1 /FVC%) in 8-year-old children and analysed interaction with tobacco smoke exposure both prenatally and/or during infancy, as well as at the age of 8 years.RESULTS: SNPs in TNS1, ADAM19, THSD4 and ADCY2 showed significant association with lung function in children, although ADCY2 variants not in the expected direction. For example, variant allele A in THSD4 rs12899618 was associated with 50.2 mL higher FEV1 (p = 0.007) and variant allele C in ADAM19 rs2277027 with 1% unit lower FEV1 /FVC% (p = 0.03) per allele. DAAM2 rs2395730 showed interaction with current tobacco smoke exposure, with variant C allele associated with 1.3% unit decrease in FEV1 /FVC% in exposed children, but not in unexposed (p for interaction 0.04).CONCLUSION: Our data replicate in children an association for TNS1, ADAM19, THSD4 and ADCY2 gene variants with lung function and suggest that interaction with tobacco smoke exposure may be of importance.
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10.
  • Sdona, Emmanouela, et al. (författare)
  • Dietary antioxidant intake in school age and lung function development up to adolescence
  • 2020
  • Ingår i: European Respiratory Journal. - : EUROPEAN RESPIRATORY SOC JOURNALS LTD. - 0903-1936 .- 1399-3003. ; 55:2
  • Tidskriftsartikel (refereegranskat)abstract
    • Dietary antioxidant intake has been hypothesised to influence lung function. The association between total antioxidant capacity (TAC) of the diet at age 8 years and lung function development up to 16 years in 2307 participants from the Swedish population-based birth cohort BAMSE (Children, Allergy, Milieu, Stockholm, Epidemiology) was investigated. Information on TAC was obtained from a food frequency questionnaire at 8 years. Lung function was measured by spirometry at 8 and 16 years, impulse oscillometry (IOS) and exhaled nitric oxide fraction (F-eNO) at 16 years. Low lung function was defined as forced expiratory volume in 1 s (FEV1) z-score below the 25th percentile. Longitudinal associations between TAC and lung function were analysed by mixed effect models adjusted for potential confounders. Stratification by asthma at 8 years was performed to examine effect modification. The median TAC intake was 10 067 mu mol Trolox equivalents (TE).g(-1), with males having a lower mean compared to females (9963 versus 10819 mu mol TE.g(-1)). In analyses of lung function change between 8 and 16 years, there were no statistically significant associations between TAC in tertiles and spirometry results for the total study population. Among children with asthma at 8 years (prevalence 7%), higher TAC was associated with higher mean FEV1 (0.46 SD, 95% CI 0.11-0.80) and decreased odds of low lung function at 16 years (OR 0.28, 95% CI 0.12-0.65). There were no associations between TAC and forced vital capacity or IOS/F-eNO results. High dietary antioxidant intake in school age may be associated with improved lung function development from school age to adolescence among children with asthma.
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