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Updated: Jan 9, 2026

Ammonia Fiber Expansion AFEX Pretreatment of Lignocellulosic Biomass
Published on: April 18, 2020
Challenges and complexities in treating ammonia-induced lung injuries: ammonia disrupts cellular membranes and
Gregory Rankin1, Terese Karlsson1, Åsa Gustafsson1
1Swedish Defence Research Agency, CBRN Defence and Security, Umeå, Sweden.
Objective:
Ammonia (NH3) inhalation is a common occupational exposure, causing injuries similar to acute lung injury (ALI). Medical management is limited to supportive care, as no specific antidotes are currently available. This study aimed to evaluate the efficacy of potential therapeutic interventions to mitigate NH3-induced damage using both in vivo (mouse) and in vitro (A549 alveolar epithelial cells) models.
Methods:
BALB/c mice received 91.0 mg/kg NH3 via intratracheal instillation, followed by intraperitoneal dexamethasone (100 mg/kg) at 1, 5, and 23 h post-exposure to assess therapeutic effects. Analyses were performed on days 1 and 7. The complementary studies in A549 cells examined whether therapeutic interventions could counteract NH3-induced toxicity affecting cell viability and function.
Results:
Dexamethasone-treatment did not counteract the lethal damage in mice or significantly reduce the severity of ALI that intensified over time, including increased lung inflammatory cell infiltration, lung hemorrhages, and coagulation abnormalities. However, treatment reduced methacholine-induced AHR, and MMP-9 and SP-D levels at 20h post-exposure. Most treatments in A549 cells failed to prevent apoptotic and necrotic cell death, oxidative stress, mitochondrial dysfunction, and membrane damage caused by NH3 exposure however, the membrane stabilizer Poloxamer 188 (P188) highlighted the importance of stabilizing the cellular membrane damage to prevent further damages.
Conclusions:
While standard treatment with corticosteroids offered limited protection in NH3-exposed mice, the study's complementary in vitro investigations on new medical counter measures highlighted the complexity and severity of NH3-induced lung injury. Together, the in vivo and in vitro findings emphasize the urgent need for effective medical countermeasures.
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