Related Experiment Video
Updated: Jun 10, 2026

An Open-Source Normothermic Perfusion System Designed for Research Scientists
Published on: July 18, 2025
[Performance of a portable continuous infusion pump (SUREFUSER A) in continuous infusion of 5-FU]
Tsukasa Kimata1, Eiji Sakamoto, Aya Kawachi
1Dept. of Pharmacy, Nagoya Daini Red Cross Hospital.
Abstract:
Therapy with mFOLFOX6/FOLFIRI used in treating colorectal cancer is typical of the regimens performed in outpatient settings. In this therapy, 46-h continuous infusion of 5-fluorouracil (5-FU) with concomitant oxaliplatin and irinotecan hydrochloride is conducted. The portable continuous infusion pump that makes continuous infusion possible has a non-electric structure, so variation in the infusion rate is seen. There are known effects of 5-FU concentration and temperature, and many studies have reported on the precision. In our hospital, we have experienced many cases of incomplete infusion and delays for the above reasons. We changed the specifications of the infusion pump to correspond to the kinematic viscosity of 5-FU and made all drug solution amounts uniform. We measured the time required to administer the drug solution from the time the infusion was started (recorded by a nurse) and the time it was completed (recorded by the patient), and confirmed the precision of the pump after the changes were made. It was found that while there was a decrease in the infusion rate at which the effect of the kinematic viscosity of 5-FU is seen, the mean infusion time was kept to within 46+/-10% hours in more than 90% of patients. There were no effects from concentration differences in 5-FU, and the completion time was reduced. The management and lifestyles of individual patients are potential factors in precision errors, and it is important to explain in advance to patients the necessity of secure fixation and infusion pump problems that might occur.
Related Concept Videos
One-Compartment Model: IV Infusion
The one-compartment model for IV infusion uses mathematical equations to describe the rate of change in drug quantity in the body. At steady-state or infusion equilibrium, the drug input...
Two-Compartment Open Model: IV Infusion
The model illustrates the decrease in plasma drug concentration from the central compartment with a specific equation. It shows that under steady-state conditions, the drug's input rate...
Drug Accumulation During Multiple Dosing: Intermittent IV Infusions
IV Infusion to Oral Dosing: Conversion Methods
One-Compartment Open Model for IV Bolus Administration: Estimation of Clearance
In the one-compartment open model for intravenous (IV) bolus administration, clearance is estimated by dividing the elimination rate by the plasma drug concentration. This equation leverages the elimination rate constant and the apparent...
Determination of Multiple Dosing Parameters: Steady-State, Minimum and Maximum Concentrations
