Long-term physicochemical stability of 5-fluorouracil at selected standardised rounded doses in polyolefin bags

J Oncol Pharm Pract. 2023 Dec;29(8):1878-1883. doi: 10.1177/10781552231152618. Epub 2023 Jan 31.

Abstract

Background: Chemotherapy doses are usually prescribed on the basis of body surface area but dose banding is emerging as an efficient alternative. Dose banding presents the possibility of in-advance preparation in a Centralized Intravenous Admixture Service.

Aim of the study: To evaluate the long-term stability of 5-fluorouracil at banded doses (700 mg and 800 mg) in polyolefin bags.

Materials and methods: Ten polyolefin bags were prepared under aseptic conditions and stored at 23 ± 2°C for 24 days. Five of them were composed of 14 mL 5-fluorocuracil (700 g) in 100 mL 0.9% sodium chloride solution and the five other of 16 mL 5-fluorouracil (800 mg) in 100 mL 0.9% sodium chloride solution. At defined times, physical stability parameters were assessed: optical densities, pH measurements, visual and microscopical inspections. Solutions concentrations were measured using high-performance liquid chromatography coupled with a photodiode array detector.

Results: No change was observed on pH and optical density measurements during the study period. Visual and microscopical inspections remained free of colour change, precipitate, microagregate or crystal. The concentrations of 5-Fluorouracil in 800 mg bags remained stable for 24 days while the concentration in 700 mg bags showed a stability of at least 17 days.

Conclusion: Five-fluorouracil at banded doses of 700 and 800 mg in polyolefin bags is physicochemically stable for at least 17 days at 23 ± 2°C. These results support the possibility of in advance centralised preparation.

Keywords: 5-fluorouracil; Stability; chromatography; dose banding.

MeSH terms

  • Chromatography, High Pressure Liquid
  • Drug Packaging
  • Drug Stability
  • Drug Storage
  • Fluorouracil*
  • Humans
  • Sodium Chloride* / chemistry

Substances

  • PL 732
  • Fluorouracil
  • Sodium Chloride