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Sökning: WFRF:(Leynaert Bénédicte) > (2020-2022) > Franklin Karl A.

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1.
  • Kirkeleit, Jorunn, et al. (författare)
  • Early life origins of lung ageing : A study of lung function decline the ECRHS and NFBC1966 cohorts
  • 2020
  • Ingår i: European Respiratory Journal. - : ERS Publications. - 0903-1936 .- 1399-3003. ; 56
  • Tidskriftsartikel (övrigt vetenskapligt/konstnärligt)abstract
    • Objective: To determine whether early life factors associated with poor lung growth and submaximal attained lung function contribute to accelerated lung function decline later in life.Methods: Participants in the European Community Respiratory Health Survey (ECRHS) and the Northern Finland Birth Cohort 1966 (NFBC1966) with lung function measured in a first (n=10,971), second (n=7,981) and third wave (n=4,849), aged 20 – 68 years, were included. Mean annual decline in maximum forced expired volume in 1 second (FEV1) and forced vital capacity (FVC) were main outcomes. Information on early life factors was provided by standardized interviews and questionnaires. We estimated the effect of early life factors including maternal age, parental smoking, season of birth, parental asthma and respiratory infections using mixed effects models, adjusted for age, FEV1 and FVC at baseline, height, and smoking habits.Results: Decline in FEV1 was accelerated in women born of a mother with asthma (β = 2.4 ml; 95% CI 0.6-4.3) or who smoked during pregnancy (1.9; 0.2-3.6), and in men having a father with asthma (3.5; 0.2-6.9) or born by Cesarean section (7.9; 1.6-14.2). Accelerated decline in FVC was associated with paternal asthma in men (4.3; 0.1-8.5) and early menarche (<12 years) in women (2.4; 0.4-4.4). No statistically significant effect on lung function decline was found for other investigated early life factors.Conclusion: Early life risk factors contribute to an accelerated lung function decline with ageing, following sex-specific patterns. Decline in FEV1 versus FVC showed slightly different patterns.
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2.
  • Triebner, Kai, et al. (författare)
  • Ultraviolet radiation as a predictor of sex hormone levels in postmenopausal women : A European multi-center study (ECRHS)
  • 2021
  • Ingår i: Maturitas. - : Elsevier. - 0378-5122 .- 1873-4111. ; 145, s. 49-55
  • Tidskriftsartikel (refereegranskat)abstract
    • Background: Solar ultraviolet radiation (UVR) affects the body through pathways that exhibit positive as well as negative health effects such as immunoregulation and vitamin D production. Different vitamin D metabolites are associated with higher or lower concentrations of estrogens and may thus alter the female sex hormone balance.Objective: To study whether exposure to UVR, as a modifiable lifestyle factor, is associated with levels of sex hormones (17β-estradiol, estrone, estrone 3-sulfate, testosterone, dehydroepiandrosterone sulfate), gonadotropins (follicle stimulating hormone, luteinizing hormone) as well as sex hormone binding globulin in postmenopausal women, and thus investigate whether managing UVR exposure can influence the hormone balance, with potential benefits for the biological aging process.Methods: The study included 580 postmenopausal women from six European countries, participating in the European Community Respiratory Health Survey (2010–2014). Average UVR exposure during the month before blood sampling was estimated based on personal sun behavior and ambient levels. Hormone concentrations were measured in serum using state-of-the-art methods. Subsequently we applied linear mixed-effects models, including center as random intercept, hormone concentrations (one at a time) as outcome and UVR, age, skin type, body mass index, vitamin D from dietary sources, smoking, age at completed full-time education and season of blood sampling as fixed-effect predictors.Results: One interquartile range increase in UVR exposure was associated with decreased levels of 17β-estradiol (-15.6 pmol/L, 95 % Confidence Interval (CI): -27.69, -3.51) and estrone (-13.36 pmol/L, 95 % CI: -26.04, -0.68) and increased levels of follicle stimulating hormone (9.34IU/L, 95 % CI: 2.91, 15.77) and luteinizing hormone (13.86 IU/daL, 95 % CI: 2.48, 25.25).Conclusions: Exposure to UVR is associated with decreased estrogens and increased gonadotropins in postmenopausal women, a status associated with osteoporosis, lung function decline and other adverse health effects. This study indicates that managing UVR exposure has potential to influence the hormone balance and counteract adverse health conditions after menopause.
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