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  3. Stability of emergency medications during extreme cold: a controlled environmental study.
 

Stability of emergency medications during extreme cold: a controlled environmental study.

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BORIS DOI
10.48620/93049
Publisher DOI
10.1186/s13049-025-01509-w
PubMed ID
41350891
Description
Background
Conditions of extreme cold, encountered during mountain and glacial rescue operations, pose challenges for the storage of emergency medications. Understanding how repeated exposure to extreme cold and ambient temperatures affects drug stability is essential for safe prehospital care.Methods
A controlled environmental study was conducted at the terraXcube, a high-fidelity climate simulation facility at Eurac Research in Bolzano, Italy. The study drugs included Acetazolamide, Amiodarone, Dexamethasone, Epinephrine, Ketamine, Naloxone, Norepinephrine and Rocuronium. Drug ampoules were stored within an insulated storage bag, placed inside a regular mountain rescue backpack. This backpack was then used in a high-fidelity training scenario under conditions of extreme cold. The ampoules remained sealed throughout the experiment. The drugs underwent six cycles of exposure, consisting of 45 min at -15 °C followed by 15 min at + 18 °C, simulating temperature fluctuations during repeated alpine rescue operations. Stability was assessed through visual inspection for physical changes (e.g., crystallization, phase separation) and chemical analysis using mass spectrometry, with results expressed as a percentage of the reference concentration.Results
Visual inspections revealed no overt physical alterations. Mean ± standard deviation (SD) of remaining concentrations ranged from 92.1 ± 1.3% (acetazolamide) to 101.8 ± 7.1% (dexamethasone), with all eight medications retaining ≥ 90% of their labeled concentrations.Conclusion
Emergency medications can remain chemically stable under extreme cold conditions when stored in sealed, insulated packaging. While our study simulated prehospital conditions without direct environmental exposure, these findings support the feasibility of extended storage and transport of emergency medications in challenging field settings. Further research should assess the impact of direct environmental exposure and evaluate additional stability parameters to optimize storage protocols in real-world scenarios.Trial Registration
Not applicable.
Date of Publication
2025-12-05
Publication Type
Article
Subject(s)
600 Technology > 610 Medicine & health
Keyword(s)
Alpine rescue
•
Drug stability
•
Drug storage
•
Emergency medications
•
HEMS
•
Mountain medicine
•
Prehospital care
Language(s)
en
Contributor(s)
Sohm, David
Moeckel, Johannes
Wenzel, Volker
Angerer, Verena
Roveri, Giulia
Rauch, Simon
Albrecht, Roland
Department of Emergency Medicine
Pietsch, Urs
Additional Credits
Department of Emergency Medicine
Series
Scandinavian Journal of Trauma, Resuscitation and Emergency Medicine
Publisher
BioMed Central
ISSN
1757-7241
Access(Rights)
open.access
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