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The In ovo CAM-assay as a Xenograft Model for Sarcoma
Published on: July 17, 2013
Tissue penetration and activity of camptothecins in solid tumor xenografts
Alastair H Kyle1, Jennifer H E Baker2, Maria-Jose Gandolfo1
1Department of Integrative Oncology, BC Cancer Research Centre, Vancouver, British Columbia, Canada.
Abstract:
The ability of a panel of camptothecin derivatives to access the tumor compartment was evaluated to determine the mechanisms by which the architecture of solid tumors may act to limit their activity. Microregional localization and activity of members of the camptothecin class of topoisomerase I targeting agents, including topotecan, irinotecan, and irinophore C, a lipid-based nanoparticulate formulation of irinotecan, were evaluated over time in HCT116 and HT29 colorectal tumor xenografts. Using native drug fluorescence, their distributions in tissue cryosections were related to the underlying tumor vasculature, tumor cell proliferation, and apoptosis. Topotecan exhibited a relatively uniform tumor distribution; in tissue 100 μm away from vessels, it reached 94% ± 5% of levels seen around blood vessels, whereas irinotecan and irinophore C were found to reach only 41% ± 10% and 5% ± 2%, respectively. Surprisingly, all three agents were able to initially inhibit proliferation uniformly throughout the tumors, and it was their rate of washout (topotecan > irinotecan > irinophore C) that correlated with activity. To explain this discrepancy, we looked at SN38, the active metabolite of irinotecan, and found it to penetrate tissue similarly to topotecan. Hence, the poor access to the tumor compartment of irinotecan and irinophore C could be offset by their systemic conversion to SN38. It was concluded that all three agents were effective at reaching tumor cells, and that despite the poor access to the extravascular compartment of irinophore C, its extended plasma exposure and systemic conversion to the diffusible metabolite SN38 enabled it to effectively target solid tumors.
Insights
Camptothecin derivatives like topotecan, irinotecan, and irinophore C access solid tumors differently. Despite poor tumor penetration, irinotecan and irinophore C effectively target tumors via systemic conversion to SN38.
Area of Science:
- Pharmacology
- Oncology
- Drug Delivery
Background:
- Solid tumor architecture can limit drug efficacy.
- Camptothecin derivatives target topoisomerase I, crucial for DNA replication.
- Understanding drug penetration is key to optimizing cancer therapy.
Purpose of the Study:
- To evaluate camptothecin derivatives' tumor penetration and activity.
- To determine how tumor microenvironment affects drug efficacy.
- To compare topotecan, irinotecan, and irinophore C in colorectal tumor models.
Main Methods:
- Utilized native drug fluorescence to track drug distribution in tumor cryosections.
- Correlated drug localization with tumor vasculature, proliferation, and apoptosis.
- Assessed topotecan, irinotecan, and irinophore C in HCT116 and HT29 xenografts.
Main Results:
- Topotecan showed uniform tumor distribution, while irinotecan and irinophore C had limited access.
- All agents initially inhibited proliferation uniformly, but washout rates varied.
- SN38, irinotecan's active metabolite, penetrated tissue similarly to topotecan.
Conclusions:
- Drug access to the tumor compartment varies significantly among these agents.
- Systemic conversion to SN38 offsets poor tumor penetration for irinotecan and irinophore C.
- Irinophore C effectively targets solid tumors due to plasma exposure and SN38 conversion.

