Related Experiment Video
Updated: May 13, 2026

Isolated Hepatic Perfusion as a Treatment for Liver Metastases of Uveal Melanoma
Published on: January 25, 2015
Physical and chemical stability of high-dose ifosfamide and mesna for prolonged 14-day continuous infusion
YanPing Zhang1, Jitesh D Kawedia, Alan L Myers
1Department of Pharmacy Research, The University of Texas M.D. Anderson Cancer Center, Houston, TX, USA.
Purpose:
Ifosfamide plus mesna have been used recently in a high-dose regimen that allows this chemotherapy to be given to outpatients with less toxicity over 14 days using a portable pump. However, there is a need for published stability information. The aim of this study was to investigate the physicochemical stability of ifosfamide with mesna in normal saline at room temperature over a prolonged period of 14 days.
Methods:
Infusion solutions of 1:1 ifosfamide and mesna at final concentrations of 10, 20 and 30 mg/mL were prepared with 0.9% sodium chloride in PVC bags. Solutions were stored at room temperature. Concentrations of ifosfamide and mesna were measured at 0 and 1, 3, 7 and 14 days using a stability-indicating reversed phase high-performance liquid chromatography (HPLC) assay with ultraviolet detection.
Results:
Ifosfamide and mesna were both physicochemically stable (>94%) for 14 days in all tested infusion solutions (10, 20 and 30 mg/mL).
Conclusions:
Our stability data indicate that ifosfamide and mesna (1:1) combination can be administered as a prolonged continuous infusion with portable pump in an outpatient setting without replacement of the infusion bag. We suggest 20 mg/mL as a reasonable concentration for infusion rates of about 2-4 cc/hr over prolonged periods of time.
Related Concept Videos
Drug Accumulation During Multiple Dosing: Intermittent IV Infusions
Determination of Multiple Dosing Parameters: Steady-State, Minimum and Maximum Concentrations
Oral Drug Delivery Systems: Continuous-Release Systems
Drug Accumulation During Multiple Dosing: Repetitive IV Injections
Pharmaceutical Alternatives: Stability-Related Therapeutic Nonequivalence
Drug Product Stability