Development of the headspace gas chromatography–tandem mass spectrometry method for ethylene oxide and ethylene chlorohydrin residue in medical devices

Author:

Chiang Yi Chun1ORCID,Fang Ming Chih2ORCID,Yang Chuan Kai1,Wang Sheng Wei1,Tseng Su Hsiang1

Affiliation:

1. Division of Research and Analysis, Taiwan Food and Drug Administration Ministry of Health and Welfare Taipei City Taiwan

2. Department of Food Science National Taiwan Ocean University Keelung Taiwan

Abstract

RationaleEthylene oxide (EO) sterilization is commonly employed for the sterilization of medical devices and has a very high market share. However, EO and its metabolite ethylene chlorohydrin (ECH) are toxic to humans. In compliance with the classification and residue limits of medical devices defined by ISO 10993‐7, our study established two extraction methods for the testing of EO and ECH.MethodsThe first method involves simulated‐use extraction using water as the extraction solvent. While the second, exhaustive extraction, directly extracts sample through headspace sampling analysis. Gas chromatography–tandem mass spectrometry in multiple reaction monitoring mode was utilized, requiring only 16 min. Then, the developed method was applied to assess 10 commercially available medical devices sterilized by EO.ResultsIn simulated‐use extraction, calibration curves were evaluated in the range of 1–100 and 5–500 μg for EO and ECH, respectively (r > 0.999). Inter‐day recoveries ranged from 85.0% to 95.2% and from 94.8% to 102.4%. In exhaustive extraction, calibration curves spanned 0.5–50 and 2–200 μg for EO and ECH, respectively (r > 0.999). Inter‐day recoveries ranged from 101.6% to 102.1% for EO and from 98.1% to 102.2% for ECH. After analysis of the 10 commercially available medical devices, two cotton swabs were found to have ECH of 35.1 and 28.4 μg per device, and four medical devices were found to have EO with concentration below the limit of quantification. Meanwhile, we found that the EO internal standard (propylene oxide) recommended by ISO 10993‐7 had interference problems with other similar substances and was not suitable as an internal standard for EO.ConclusionsThis study offers a sensitive and straightforward analytical approach to EO and ECH residues in a variety of medical devices. In addition, the results show that the EO or ECH content of these types of medical devices in our study falls below the regulatory limits, therefore instilling confidence among consumers regarding their safe use.

Publisher

Wiley

Reference18 articles.

1. World Health Organization (WHO).Environmental health criteria 55 – Ethylene oxide.1985. Accessed December 4 2023.https://wedocs.unep.org/handle/20.500.11822/29329

2. Ethylene Oxide Gas Sterilization of Medical Devices

3. Gamma Industry Processing Alliance (GIPA) and International Irradiation Association (IIA).A comparison of gamma E‐beam X‐ray and ethylene oxide technologies for the industrial sterilization of medical devices and healthcare products.2017. Accessed December 4 2023.https://iiaglobal.com/iia-publications/

4. Agency for Toxic Substances and Disease Registry (ATSDR).Toxicological profile for ethylene oxide.2022. Accessed December 4 2023.https://wwwn.cdc.gov/TSP/ToxProfiles/ToxProfiles.aspx?id=734&tid=133

5. Toxic effects of ethylene chlorohydrin;Goldblatt MW;Brit J Industr Med,1944

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