No Compound A formation with Superia (R) during minimal-flow sevoflurane anesthesia: A comparison with Sofnolime

MPLA Bouche, LFM Versichelen*, MMRF Struys, JFP Van Bocxlaer, AP De Leenheer, EP Mortier, G Rolly

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

5 Citations (Scopus)

Abstract

There is concern about the toxicity of Compound (Co) A. Absorbents differ in the production of Co A during minimal-flow sevoflurane anesthesia. Strong alkali-free Amsorb(R) does not produce Co A. It was our aim to study Superia(R), another new NaOH- and KOH-free CO2 absorbent, in minimal-flow anesthesia, compared with KOH-free Sofnolime(R). After Ethics Committee approval, 14 consenting adult patients were included randomly by using Superia or Sofnolime as the CO, absorbent in the compact 750-mL canister of an ADU ventilator. After propofol and remifentanil administration, sevoflurane was given in oxygen and air (500 mL/min; fraction of inspired oxygen, 0.4), aiming at an end-tidal concentration of 2.3%-2.5%; ventilation aimed for 33-35 mm Hg PETCO2 Compound A inspired (Co A(insp)) and expired (Co A(exp)) samples were taken for analysis, and canister temperatures were measured for 150 min. Statistical analysis was performed with the Friedman test or the Mann-Whitney U-test where appropriate. Correction for multiple testing was used. In the Superia group, no significant amount of Co A was formed, whereas in the Sofnolime group, maximum median (range) inspiratory values of 25 ppm (16 ppm) were found. The intergroup difference was P <0.05. No difference was noticed between the two groups for the canister CO2 absorbent temperature.

Original languageEnglish
Pages (from-to)1680-1685
Number of pages6
JournalAnesthesia and Analgesia
Volume95
Issue number6
DOIs
Publication statusPublished - Dec-2002
Externally publishedYes

Keywords

  • CARBON-DIOXIDE ABSORBENTS
  • DEGRADATION PRODUCTS
  • SODA LIME
  • CIRCUIT
  • SYSTEM
  • QUANTIFICATION
  • ISOFLURANE
  • ABSORPTION
  • MONOXIDE
  • KOH

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