Related Experiment Video
Updated: Jun 15, 2025

Using Mouse Mammary Tumor Cells to Teach Core Biology Concepts: A Simple Lab Module
Published on: June 18, 2015
C188-9 reduces patient-specific primary breast cancer cells proliferation at the low, clinic-relevant concentration
Rongji Zheng1, Tian Guan2, Chaoqun Hong1
1The Breast Center, Cancer Hospital of Shantou University Medical College, 7 Raoping Rd, Shantou, Guangdong, 515000, China.
Objectives:
STAT3 is a transcriptional activator of breast cancer oncogenes, suggesting that it could be a potential therapeutic target for breast cancer. Therefore, this study investigated the potential application of C188-9, a STAT3 signal pathway inhibitor, in the treatment of breast cancer through a novel pre-clinical platform with patient-specific primary cells (PSPCs).
Methods:
PSPCs were isolated from breast cancer samples obtained via biopsy or surgery from fifteen patient donors with their full acknowledgements. PSPCs were treated with C188-9 or other chemotherapeutic agents, and then analyzed with cell viability assay. Western blot assay and real-time quantitative PCR were also used to determine the expression and activity of STAT3 signaling pathway of corresponding PSPCs.
Results:
C188-9 treatment at normal (experimental) concentration had valid inhibition on PSPCs proliferation. Meanwhile, treatment at a low (clinic-relevant) concentration of C188-9 for an extended period reduced cell viability of PSPCs still more than some of other traditional chemotherapy drugs. In addition, C188-9 decreased expression level of pSTAT3 in PSPCs from some, but not all patient samples. The treatment of C188-9 reduced cell viability of the breast cancer samples through inhibiting the STAT3 to C-myc signaling pathway.
Conclusions:
In this study, we tested a novel drug C188-9 at a low, clinic-relevant concentration, together with several traditional chemotherapy agents. PSPCs from ten out of fifteen patient donors were sensitive to C188-9, while some of traditional chemotherapy agents failed. This finding suggested that C188-9 could have treatment effects only on those ten PSPC patient donors, indicating the future personalized utilization of PSPCs.
Insights
The STAT3 inhibitor C188-9 shows promise in treating breast cancer by reducing cancer cell viability. This novel drug demonstrated effectiveness in patient-specific primary cells (PSPCs), suggesting potential for personalized cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Signal transducer and activator of transcription 3 (STAT3) is a key transcriptional activator of breast cancer oncogenes.
- STAT3 represents a potential therapeutic target for breast cancer treatment.
- Patient-specific primary cells (PSPCs) offer a novel platform for pre-clinical drug evaluation.
Purpose of the Study:
- To investigate the therapeutic potential of C188-9, a STAT3 signaling pathway inhibitor, in breast cancer treatment.
- To evaluate C188-9 efficacy using a pre-clinical platform with PSPCs.
- To compare C188-9's effectiveness against traditional chemotherapy agents.
Main Methods:
- PSPCs were isolated from fifteen breast cancer patient samples.
- PSPCs were treated with C188-9 (at experimental and clinic-relevant concentrations) and other chemotherapeutic agents.
- Cell viability assays, Western blot, and real-time quantitative PCR were employed to assess drug effects and STAT3 pathway activity.
Main Results:
- C188-9 significantly inhibited PSPC proliferation at experimental concentrations.
- At low, clinic-relevant concentrations, C188-9 reduced PSPC viability more effectively than some traditional chemotherapy drugs.
- C188-9 decreased pSTAT3 expression in a subset of PSPCs and inhibited the STAT3 to C-myc signaling pathway.
Conclusions:
- C188-9 demonstrated treatment effects in PSPCs from ten out of fifteen patients, while some traditional agents were ineffective.
- The study highlights the potential personalized application of C188-9 in breast cancer treatment based on PSPC sensitivity.
- This research underscores the value of PSPCs for predicting drug response and guiding personalized oncology strategies.
Related Concept Videos
Inhibition of Cdk Activity
Targeted Cancer Therapies
There are several types of targeted therapies against...
Mitogens and the Cell Cycle

