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Indoor Exposure to Ozone-Derived Carbonyls: Association with Indicators of Blood and Cardiovascular Physiology among Healthy Young Adults

  • Ruohong Qiao
  • , Qiaoyi Hua
  • , Jiajianghui Li
  • , Yunxiu Shi
  • , Wu Chen
  • , Qianqian Chai
  • , Yunfei Fan
  • , Ailin Li
  • , Haonan Li
  • , Xin Meng
  • , Mengshuang Sheng
  • , Ruiwei Xu
  • , Yifan Xu
  • , Yuan Yao
  • , Yi Zhang
  • , Yidan Zhang
  • , Danzengdunzhu
  • , Zhuoga
  • , Charles J. Weschler
  • , Junfeng Zhang
  • Jing Shang, Xinghua Qiu, Tong Zhu*, Jicheng Gong*, Yingjun Liu*
*Corresponding author for this work
  • Peking University
  • Nantong University
  • Xizang Minzu University
  • No. 2 People’s Hospital of Lhasa
  • Duke University

Research output: Contribution to journalJournal articleResearchpeer-review

Abstract

Ozone is a globally important outdoor air pollutant. When transported indoors, where people spend most of their time, ozone is largely consumed through chemical reactions; yet the health effects of its major volatile products, carbonyls, remain unclear. In a panel study of 110 healthy Tibetan college students, we repeatedly measured week-long concentrations of seven selected carbonyls in participants’ dormitories and assessed biomarkers related to cardiovascular health. Carbonyl concentrations were generally higher indoors than outdoors, with the median indoor-to-outdoor ratio for decanal reaching 15. Further analyses suggest that the elevated indoor carbonyl concentrations likely result from ozone reactions, particularly with skin oil. Due to substantial ventilation variations across dormitories, indoor carbonyl concentrations showed no substantial correlations with outdoor ozone levels (r = −0.08∼0.20), enabling the evaluation of ozone-independent carbonyl health effects. Increased carbonyl exposure was significantly associated with the elevation of multiple red blood cell indices. Carbonyl associations with the red blood cell count, hemoglobin level, and hematocrit remained robust in ozone-adjusted models. These associations were further corroborated by additional analyses based on outdoor ozone levels and air-change rates. Increases in these red blood cell indices represent adverse cardiovascular effects in hypoxia-acclimated Tibetans and may contribute to the pathogenesis of chronic mountain sickness.
Original languageEnglish
JournalAmerican Chemical Society Environmental Science and Technology Air
Volume3
Issue number2
Pages (from-to)517-527
Number of pages11
ISSN2837-1402
DOIs
Publication statusPublished - 2026

Keywords

  • Indoor ozone oxidation
  • Passive sampling
  • Cardiovascular effect
  • High-altitude natives
  • Decanal

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