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Published on: January 11, 2019
Clinical determinants of response to irinotecan-based therapy derived from cell line models
Wendy L Allen1, Vicky M Coyle, Puthen V Jithesh
1Centre for Cancer Research and Cell Biology, Queen's University Belfast, Belfast, Northern Ireland.
Purpose:
In an attempt to identify genes that are involved in resistance to SN38, the active metabolite of irinotecan (also known as CPT-11), we carried out DNA microarray profiling of matched HCT116 human colon cancer parental cell lines and SN38-resistant cell lines following treatment with SN38 over time.
Experimental Design:
Data analysis identified a list of genes that were acutely altered in the parental cells following SN38 treatment as well as constitutively altered in the SN38-resistant cells.
Results:
Independent validation of 20% of these genes by quantitative reverse transcription-PCR revealed a strong correlation with the microarray results: Pearson's correlation was 0.781 (r(2) = 0.61, P < 0.000001) for those genes that were acutely altered in the parental setting following SN38 treatment and 0.795 (r(2) = 0.63, P < 0.000002) for those genes that were constitutively altered in the SN38-resistant cells. We then assessed the ability of our in vitro-derived gene list to predict clinical response to 5-fluorouracil/irinotecan using pretreatment metastatic biopsies from responding and nonresponding colorectal cancer patients using both unsupervised and supervised approaches. When principal components analysis was used with our in vitro classifier gene list, a good separation between responding and nonresponding patients was obtained, with only one nonresponding and two responding patients separating with the incorrect groups. Supervised class prediction using support vector machines algorithm identified a 16-gene classifier with 75% overall accuracy, 81.8% sensitivity, and 66.6% specificity.
Conclusions:
These results suggest that in vitro-derived gene lists can be used to predict clinical response to chemotherapy in colorectal cancer.
Insights
Gene expression profiling identified key genes associated with SN38 resistance in colon cancer cells. This in vitro-derived gene list can predict patient response to irinotecan-based chemotherapy.
Area of Science:
- Genomics
- Cancer Biology
- Pharmacogenomics
Background:
- Irinotecan (CPT-11) is a key chemotherapy drug for colorectal cancer.
- SN38 is the active metabolite of irinotecan, and resistance to it is a clinical challenge.
- Understanding the genetic basis of SN38 resistance is crucial for improving treatment outcomes.
Purpose of the Study:
- To identify genes involved in resistance to SN38, the active metabolite of irinotecan.
- To determine if in vitro-derived gene expression profiles can predict clinical response to irinotecan-based chemotherapy in colorectal cancer patients.
Main Methods:
- DNA microarray profiling of HCT116 colon cancer cells and SN38-resistant variants.
- Quantitative reverse transcription-PCR for gene expression validation.
- Analysis of pretreatment metastatic biopsies from colorectal cancer patients using unsupervised and supervised methods (Principal Components Analysis, Support Vector Machines).
Main Results:
- Microarray analysis identified genes acutely altered by SN38 treatment and those constitutively altered in resistant cells.
- Quantitative RT-PCR confirmed strong correlations with microarray findings (Pearson's correlation > 0.78).
- A 16-gene classifier demonstrated 75% accuracy in predicting patient response to 5-fluorouracil/irinotecan chemotherapy.
Conclusions:
- In vitro gene expression profiling can identify mechanisms of chemotherapy resistance.
- Derived gene lists show potential for predicting clinical response to irinotecan in colorectal cancer.
- This approach may aid in personalized medicine strategies for cancer treatment.
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