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Chemotherapy-induced tumor gene expression changes in human breast cancers

Publication ,  Journal Article
Lee, SC; Xu, X; Lim, YW; Lau, P; Sukri, N; Lim, SE; Yap, HL; Yeo, WL; Tan, P; Tan, SH; al, E
Published in: Pharmacogenetics and Genomics
2009

Objective Studying chemotherapy-induced gene expression changes in vivo, which could provide insights into mechanisms of chemotherapy resistance. Methods We analyzed and compared tumor gene expression changes of about 38500 genes before and 3 weeks after doxorubicin or docetaxel treatment in 47 breast cancer patients. Results By using the median expression level of each probe set as the parameter, less than 5% of genes were upregulated or downregulated by more than 50% after treatment with either drug. Doxorubicin and docetaxel concordantly induced 251 genes predominantly involved in protein and macromolecule metabolism (upregulated), and cell cycle and DNA/RNA metabolism (downregulated). Doxorubicin treatment resulted in coregulation of a cluster of 345 probe sets involved in focal adhesion, Jak-Stat signaling pathway, cell adhesion molecules, and natural killer cell mediated cytotoxicity, whereas docetaxel treatment resulted in coregulation of a cluster of 448 probe sets involved in focal adhesion, neurodegenerative disorders, sphingolipid metabolism, and cell cycle. Tumors that were intrinsically sensitive or resistant to doxorubicin or docetaxel evoked distinct gene expression changes in response to the drug; doxorubicin-resistant tumors upregulated genes that were enriched for ErbB signaling, ubiquitin-mediated proteolysis, TGF-β signaling, and MAP-kinase signaling pathways, whereas docetaxel-resistant tumors upregulated genes that were enriched for focal adhesion and regulation of actin cytoskeleton. The drug-specific tumor gene expression changes were validated in independent in-vitro and in-vivo datasets. Conclusion Gene expression alterations of breast cancer were specific to doxorubicin and docetaxel treatment, and yielded mechanistic insights into resistance to either drug. Gene expression analysis provides more global perspectives on resistance pathways that could be exploited for therapeutic selection. © 2009 Wolters Kluwer Health| Lippincott Williams & Wilkins.

Duke Scholars

Published In

Pharmacogenetics and Genomics

DOI

ISSN

1744-6872

Publication Date

2009

Volume

19

Issue

3

Start / End Page

181 / 192

Related Subject Headings

  • Pharmacology & Pharmacy
  • 3214 Pharmacology and pharmaceutical sciences
  • 3105 Genetics
  • 1115 Pharmacology and Pharmaceutical Sciences
  • 0604 Genetics
 

Citation

APA
Chicago
ICMJE
MLA
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Lee, S. C., Xu, X., Lim, Y. W., Lau, P., Sukri, N., Lim, S. E., … al, E. (2009). Chemotherapy-induced tumor gene expression changes in human breast cancers. Pharmacogenetics and Genomics, 19(3), 181–192. https://doi.org/10.1097/FPC.0b013e32831ebb5d
Lee, S. C., X. Xu, Y. W. Lim, P. Lau, N. Sukri, S. E. Lim, H. L. Yap, et al. “Chemotherapy-induced tumor gene expression changes in human breast cancers.” Pharmacogenetics and Genomics 19, no. 3 (2009): 181–92. https://doi.org/10.1097/FPC.0b013e32831ebb5d.
Lee SC, Xu X, Lim YW, Lau P, Sukri N, Lim SE, et al. Chemotherapy-induced tumor gene expression changes in human breast cancers. Pharmacogenetics and Genomics. 2009;19(3):181–92.
Lee, S. C., et al. “Chemotherapy-induced tumor gene expression changes in human breast cancers.” Pharmacogenetics and Genomics, vol. 19, no. 3, 2009, pp. 181–92. Scival, doi:10.1097/FPC.0b013e32831ebb5d.
Lee SC, Xu X, Lim YW, Lau P, Sukri N, Lim SE, Yap HL, Yeo WL, Tan P, Tan SH, al E. Chemotherapy-induced tumor gene expression changes in human breast cancers. Pharmacogenetics and Genomics. 2009;19(3):181–192.

Published In

Pharmacogenetics and Genomics

DOI

ISSN

1744-6872

Publication Date

2009

Volume

19

Issue

3

Start / End Page

181 / 192

Related Subject Headings

  • Pharmacology & Pharmacy
  • 3214 Pharmacology and pharmaceutical sciences
  • 3105 Genetics
  • 1115 Pharmacology and Pharmaceutical Sciences
  • 0604 Genetics