LRRK2 is involved in heat exposure-induced acute lung injury and alveolar type II epithelial cell dysfunction

Heat exposure induces excessive hyperthermia associated with systemic inflammatory response that leads to multiple organ dysfunction including acute lung injury. However, how heat impairs the lung remains elusive so far. We aimed to explore the underlying mechanism by focusing on leucine-rich repeat...

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Veröffentlicht in:Environmental pollution (1987) 2024-04, Vol.347, p.123643-123643, Article 123643
Hauptverfasser: Wang, Yindan, Fan, Wenjun, Zhang, Guoqing, Zhao, Lisha, Li, Ting, Zhang, Lu, Hou, Tong, Hong, Huihua, You, Zhenqiang, Sun, Qinghua, Li, Ran, Liu, Cuiqing
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Sprache:eng
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Zusammenfassung:Heat exposure induces excessive hyperthermia associated with systemic inflammatory response that leads to multiple organ dysfunction including acute lung injury. However, how heat impairs the lung remains elusive so far. We aimed to explore the underlying mechanism by focusing on leucine-rich repeat kinase 2 (LRRK2), which was associated with lung homeostasis. Both in vivo and in vitro models were induced by heat exposure. Firstly, heat exposure exerted core temperature (Tc) disturbance, pulmonary dysfunction, atelectasis, inflammation, impaired energy metabolism, and reduced surfactant proteins in the lung of mice. In addition, decreased LRRK2 expression and increased heat shock proteins (HSPs) 70 were observed with heat exposure in both the lung of mice and alveolar type II epithelial cells (AT2). Furthermore, LRRK2 inhibition aggravated heat exposure-initiated Tc dysregulation, injury in the lung and AT2 cells, and enhanced HSP70 expression. In conclusion, LRRK2 is involved in heat-induced acute lung injury and AT2 cell dysfunction. [Display omitted] •Heat exposure induced atelectasis and reduced surfactant proteins in the lung of mice.•Heat exposure decreased LRRK2 expression and increased HSP70 both in vivo and vitro.•LRRK2 inhibition aggravated heat exposure-evoked lung injury by regulating HSP70.
ISSN:0269-7491
1873-6424
DOI:10.1016/j.envpol.2024.123643