Enhanced expression of xylanase in Aspergillus niger enabling a two-step enzymatic pathway for extracting β-glucan from oat bran
Zhou Zeng, Mengling You, Rong Rong, Cong Fan, Meini Chen, Haibo Li, Dan Ji, Xiaobo Xia
Journal:Redox Biology
IF:11.4
DOI:10.1016/j.redox.2023.102713
PMID:37120931
Published:2023-04-24
research field:神经科学分子生物学细胞生物学干细胞生物学结构生物学眼科病理学
Abstract
Biomass burning (BB) has an important impact on local/regional air quality and human health in China, but most previous studies overlooked the influence of atmospheric aging processes on cytotoxicity and chemical composition of BB aerosols. In this study, we combined a combustion chamber and an oxidation flow reactor to generate fresh and aged BB PM 2.5 . Human bronchial epithelial BEAS-2B cells were exposed to PM 2.5 preparation for 24 h, and then determined for particle-induced reactive oxygen species (ROS) in vitro . The particle-induced ROS production increased by 11 %–64 % after two days of aging, suggesting an enhancement of in vitro -induced oxidative stress (OS) of aged BB particles. Chemical analysis showed that organic matter (OM) was the dominant component with no changes in relative abundance for the fresh and aged BB particles. Organic polycyclic aromatic compounds and some metals showed strong correlations with ROS in fresh particles, indicating the important effects of these harmful components on the OS of fresh BB aerosols. However, such correlations were not found for the aged particles, which is possibly related to the loss of non- or low-toxic semivolatile compounds and the formation of secondary harmful OM (such as some N-containing organic compounds) during the atmospheric aging processes.
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