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Updated: Mar 14, 2026

Murine Model for Non-invasive Imaging to Detect and Monitor Ovarian Cancer Recurrence
Published on: November 2, 2014
Cyclin A1 expression and paclitaxel resistance in human ovarian cancer cells
Kuan-Chun Huang1, Junzheng Yang1, Michelle C Ng2
1Laboratory of Gynecologic Oncology, Division of Gynecologic Oncology, Department of Obstetrics and Gynecology, Boston, MA 02115, USA.
Background:
The development of intrinsic and acquired resistance to antineoplastic agents is a major obstacle to successful chemotherapy in ovarian cancers. Identification and characterisation of chemoresponse-associated biomarkers are of paramount importance for novel therapeutic development.
Methods:
Global RNA expression profiles were obtained by high-throughput microarray analysis. Cell cycle, proliferation rate, and paclitaxel sensitivity of ovarian cancer cells harbouring cyclin A1-inducible expression construct were compared with and without tetracycline induction, as well as when the cyclin A1 expression was suppressed by short inhibiting RNA (siRNA). Cellular senescence was evaluated by β-galactosidase activity staining.
Results:
Global RNA expression profiling and subsequent correlation studies of gene expression level and drug response has identified that elevated expression of cyclin A1 (CCNA1) was significantly associated with cellular resistance to paclitaxel, doxorubicin and 5-fluorouracil. The role of cyclin A1 in paclitaxel resistance was confirmed in ovarian cancer cells that harbour an inducible cyclin A1 expression construct, which showed reduced paclitaxel-mediated growth inhibition and apoptosis when cyclin A1 expression was induced, whereas downregulation of cyclin A1 expression in the same cell lines using cyclin A1-specific siRNAs sensitised the cells to paclitaxel toxicity. However, ovarian cancer cells with ectopic expression of cyclin A1 demonstrated slowdown of proliferation and senescence-associated β-galactosidase activity.
Conclusions:
Our profiling and correlation studies have identified cyclin A1 as one chemoresistance-associated biomarker in ovarian cancer. The results of the characterisation studies suggest that cyclin A1 functions as an oncogene that controls proliferative and survival activities in tumourigenesis and chemoresistance of ovarian cancer.
Insights
Cyclin A1 (CCNA1) is identified as a biomarker for chemoresistance in ovarian cancer. Its elevated expression promotes resistance to chemotherapy drugs, while its suppression sensitizes cancer cells to treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Chemotherapy resistance is a significant challenge in treating ovarian cancer.
- Identifying biomarkers for chemoresponse is crucial for developing new therapies.
Purpose of the Study:
- To identify biomarkers associated with chemoresistance in ovarian cancer.
- To investigate the role of cyclin A1 (CCNA1) in chemoresistance.
Main Methods:
- Global RNA expression profiling using high-throughput microarrays.
- Correlation analysis of gene expression and drug response.
- Functional studies using inducible CCNA1 expression constructs and CCNA1-specific siRNAs in ovarian cancer cells.
- Assessment of cell cycle, proliferation, apoptosis, and senescence.
Main Results:
- Elevated CCNA1 expression strongly correlates with resistance to paclitaxel, doxorubicin, and 5-fluorouracil.
- Inducible CCNA1 expression reduced sensitivity to paclitaxel, while CCNA1 suppression increased sensitivity.
- Ectopic CCNA1 expression led to reduced proliferation and induced senescence.
Conclusions:
- CCNA1 is a significant biomarker for chemoresistance in ovarian cancer.
- CCNA1 acts as an oncogene, influencing tumor growth and chemoresistance through proliferation and survival pathways.
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