4.5 Article

Effects of endogenous sex hormones on lung function and symptom control in adolescents with asthma

期刊

BMC PULMONARY MEDICINE
卷 18, 期 -, 页码 -

出版社

BMC
DOI: 10.1186/s12890-018-0612-x

关键词

Asthma; Sex hormones; Testosterone; Estradiol; Puberty; Lung function

资金

  1. [U10 HL109164]
  2. [U10 HL109257]
  3. [U10 HL109146]
  4. [U10 HL109172]
  5. [U10 HL109250]
  6. [U10 HL109168]
  7. [U10 HL109152]
  8. [U10 HL109086-04]

向作者/读者索取更多资源

Background: Although pre-puberty asthma is more prevalent in males, after puberty through middle-age, asthma is more prevalent in females. The surge of sex hormones with puberty might explain this gender switch. Methods: To examine the effects of sex hormones on lung function and symptoms with puberty, Tanner stage was assessed in 187 children 6-18 years of age (59% severe) enrolled in the NIH/NHLBI Severe Asthma Research Program (SARP). The effects of circulating sex hormones (n = 68; testosterone, dehydroepiandrosterone sulfate (DHEA-S), estrogen, and progesterone) on lung function and 4 week symptom control (ACQ6) in cross-section were tested by linear regression. Results: From pre-/early to late puberty, lung function did not change significantly but ACQ6 scores improved in males with severe asthma. By contrast females had lower post-BD FEV1% and FVC% and worse ACQ6 scores with late puberty assessed by breast development. In males log DHEA-S levels, which increased by Tanner stage, associated positively with pre- and post-BD FEV1%, pre-BD FVC %, and negatively (improved) with ACQ6. Patients treated with high-dose inhaled corticosteroids had similar levels of circulating DHEA-S. In females, estradiol levels increased by Tanner stage, and associated negatively with pre-BD FEV1% and FVC %. Conclusions: These results support beneficial effects of androgens on lung function and symptom control and weak deleterious effects of estradiol on lung function in children with asthma. Longitudinal data are necessary to confirm these cross-sectional findings and to further elucidate hormonal mechanisms informing sex differences in asthma features with puberty.

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