Related Experiment Video
Updated: Aug 7, 2026

Utilizing 18F-FDG PET/CT Imaging and Quantitative Histology to Measure Dynamic Changes in the Glucose Metabolism in Mouse Models of Lung Cancer
Published on: July 21, 2018
SarCNU, a nitrosourea analog on a day 1, 5, and 9 oral schedule: a phase I and pharmacokinetic study in patients with
L Panasci1, S F Stinson, D Melnychuk
1McGill Center for Translational Research in Cancer, Jewish General Hospital, Montreal, Quebec, Canada. lpanasci@hotmail.com
Purpose:
2-Chloroethyl-3-sarcosinamide-1-nitrosourea (SarCNU) is a novel chloroethylnitrosourea that demonstrates selective cytotoxicity in athymic mice bearing human glioma. SarCNU demonstrates selective cytotoxicity in vitro against human glioma at least in part because of the selective SarCNU uptake by the extraneuronal monoamine transporter. The purpose of this phase I study was to determine the maximum-tolerated dose (MTD), the toxicity profile, the pharmacokinetics profile, and recommended phase II dose.
Patients And Methods:
Forty-three eligible patients with advanced solid tumors were enrolled. SarCNU was administered orally on days 1,5, and 9 every 28 days. The dose ranged from 30 to 1,075 mg/m2. Pharmacokinetic evaluation was done on the first cycle (one dose was given intravenously on day 1 or 5 of the first cycle to determine bioavailability).
Results:
Delayed myelosuppression (thrombocytopenia and neutropenia occurring 4 to 6 weeks after administration) was the dose-limiting toxicity (DLT). Anemia occurred but was mild. Nonhematologic toxicity was generally mild, but one patient died with pulmonary toxicity that was probably secondary to SarCNU. There were no partial or complete responses, but eight patients had stable disease for 19 to 46 weeks. The oral bioavailability of SarCNU was 80% +/- 37%. The terminal phase half-life was similar after intravenous (58.4 +/- 23.5 minutes) or oral (64.0 +/- 34.8 minutes) administration. The total plasma clearance was 20.4 +/- 8.8 L/h/m2, and the apparent volume of distribution was 29.9 +/- 17.6 L/m2. The area under the plasma concentration-time profile increased proportionally with the dose, and the pharmacokinetics seemed to be independent of the route of administration and the number of doses.
Conclusion:
SarCNU was well tolerated and the MTD was 1,075 mg/m2. The recommended starting dose for phase II trials is 860 mg/m2 orally on days 1, 5, and 9 every 6 weeks.
Insights
The novel anticancer drug 2-Chloroethyl-3-sarcosinamide-1-nitrosourea (SarCNU) showed selective cytotoxicity and was well tolerated in a Phase I trial. The maximum-tolerated dose was established, guiding future clinical studies.
Area of Science:
- Oncology
- Pharmacology
- Clinical Trials
Background:
- 2-Chloroethyl-3-sarcosinamide-1-nitrosourea (SarCNU) is a novel nitrosourea derivative.
- SarCNU exhibits selective cytotoxicity against human glioma xenografts in athymic mice.
- Selective uptake by the extraneuronal monoamine transporter contributes to SarCNU's in vitro efficacy against human glioma.
Purpose of the Study:
- To determine the maximum-tolerated dose (MTD) of SarCNU.
- To evaluate the toxicity profile of SarCNU.
- To characterize the pharmacokinetic profile and recommend a phase II dose.
Main Methods:
- Phase I clinical trial involving 43 patients with advanced solid tumors.
- SarCNU administered orally on days 1, 5, and 9 every 28 days, with doses ranging from 30 to 1,075 mg/m2.
- Pharmacokinetic evaluation included bioavailability assessment via single intravenous doses.
Main Results:
- Delayed myelosuppression (thrombocytopenia, neutropenia) was the dose-limiting toxicity.
- Oral bioavailability was 80% ± 37%; terminal half-life was similar for IV and oral administration.
- Pharmacokinetics were dose-proportional and independent of administration route or dose number.
Conclusions:
- SarCNU was well tolerated up to the MTD of 1,075 mg/m2.
- Recommended starting dose for Phase II trials is 860 mg/m2 orally on days 1, 5, and 9 every 6 weeks.
- SarCNU demonstrates favorable tolerability and pharmacokinetic properties for further clinical investigation.
More Related Videos
06:21Multi-Gene Single Nucleotide Polymorphism Detection in Gastric Cancer Based on Ion Semiconductor Sequencing Platform
Published on: May 10, 2024
05:11Construction of An Orthotopic Xenograft Model of Non-Small Cell Lung Cancer Mimicking Disease Progression and Predicting Drug Activities
Published on: May 10, 2024