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Updated: Jun 14, 2026

Development and Maintenance of a Preclinical Patient Derived Tumor Xenograft Model for the Investigation of Novel Anti-Cancer Therapies
Published on: September 30, 2016
Dual drug targeting to kill colon cancers
Silvia Paola Corona1,2,3,4,5, Francesca Walker1,3,4,5, Janet Weinstock1,3,4,5
1Structural Biology Division, WEHI, Parkville, Australia.
Introduction:
Colorectal cancer (CRC) is driven by a small set of oncogenic and tumour suppressor mutations. However, different combinations of mutations often lead to poor tumour responses to individual anticancer drugs. We have investigated the antiproliferative and in vitro cytotoxic activity of pair-wise combinations of inhibitors which target specific signalling pathways in colon cancer cells.
Objectives:
To target specific signaling pathways pairwise with inhibitors in order to kill colon cancer cells.
Methods:
The effects of different concentrations of two inhibitors on the proliferation and viability of colon cancer cell lines were measured using cell titre glow and cytotoxic assays in 2D and 3D cell micro-cultures. One successful drug combination was used to treat a colon cancer cell line growing as a xenograft in nude mice.
Results:
Colon cancer cells in non-adherent cultures were killed more effectively by combinations of pyrvinium pamoate (a Wnt pathway inhibitor) and ABT263 (a pro-apoptotic Bcl-2 family inhibitor) or Ly29004 (a PI3kinase inhibitor). However, in a mouse xenograft model, the formulation and toxicity of the ABT737/PP combination prevent the use of these drugs for treatment of tumours. Fortunately, oral analogues of PP (pyrvinium phosphate, PPh) and ABT737(ABT263) have equivalent activity and can be used for treatment of mice carrying SW620 colorectal cancer xenografts. The PPh/ABT263 induced SW620 tumour cell apoptosis and reduced the rate of SW620 tumour growth.
Conclusion:
By combining a Wnt signaling inhibitor (pyrvinium phosphate) and a pro-survival inhibitor (ABT263) colon cancer cells can be killed. Combinations of Wnt signalling inhibitors with an inhibitor of the Bcl pro-survival protein family should be considered for the treatment of patients with precancerous colon adenomas or advanced colorectal cancers with APC mutations.
Insights
Combining a Wnt pathway inhibitor with a Bcl-2 inhibitor effectively kills colorectal cancer cells. This dual-targeting strategy shows promise for treating precancerous colon adenomas and advanced colorectal cancers, particularly those with APC mutations.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Colorectal cancer (CRC) is driven by specific mutations, but diverse mutation combinations lead to poor responses to single-agent therapies.
- Targeting key signaling pathways offers a potential strategy to overcome drug resistance in CRC.
Purpose of the Study:
- To investigate the antiproliferative and cytotoxic effects of pairwise inhibitor combinations targeting specific signaling pathways in colon cancer cells.
- To identify effective drug combinations for treating colorectal cancer.
Main Methods:
- Assessed the effects of varying concentrations of two inhibitors on colon cancer cell proliferation and viability using cell titre glow and cytotoxic assays.
- Utilized 2D and 3D cell micro-cultures and a mouse xenograft model to evaluate drug efficacy.
- Administered pyrvinium phosphate (PPh) and ABT263 combination to mice with SW620 colorectal cancer xenografts.
Main Results:
- Combinations of pyrvinium pamoate (Wnt inhibitor) and ABT263 (Bcl-2 inhibitor) or Ly29004 (PI3K inhibitor) demonstrated enhanced killing of colon cancer cells in vitro.
- While initial in vivo studies faced formulation/toxicity issues with ABT737/PP, oral analogues PPh/ABT263 were effective.
- The PPh/ABT263 combination induced apoptosis and reduced tumor growth in SW620 colorectal cancer xenografts.
Conclusions:
- Combining a Wnt signaling inhibitor (pyrvinium phosphate) with a pro-survival inhibitor (ABT263) effectively kills colon cancer cells.
- This combination strategy warrants consideration for treating precancerous colon adenomas and advanced colorectal cancers, especially those with APC mutations.
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