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Updated: Jun 25, 2025

Isolation and Functional Assessment of Human Breast Cancer Stem Cells from Cell and Tissue Samples
Published on: October 2, 2020
Identification and Pharmacological Targeting of Treatment-Resistant, Stem-like Breast Cancer Cells for Combination
Jeremy Worley1,2, Heeju Noh1, Daoqi You3
1Department of Systems Biology, Vagelos College of Physicians and Surgeons, Columbia University Irving Medical Center, New York, USA 10032.
Abstract:
Tumors frequently harbor isogenic yet epigenetically distinct subpopulations of multi-potent cells with high tumor-initiating potential-often called Cancer Stem-Like Cells (CSLCs). These can display preferential resistance to standard-of-care chemotherapy. Single-cell analyses can help elucidate Master Regulator (MR) proteins responsible for governing the transcriptional state of these cells, thus revealing complementary dependencies that may be leveraged via combination therapy. Interrogation of single-cell RNA sequencing profiles from seven metastatic breast cancer patients, using perturbational profiles of clinically relevant drugs, identified drugs predicted to invert the activity of MR proteins governing the transcriptional state of chemoresistant CSLCs, which were then validated by CROP-seq assays. The top drug, the anthelmintic albendazole, depleted this subpopulation in vivo without noticeable cytotoxicity. Moreover, sequential cycles of albendazole and paclitaxel-a commonly used chemotherapeutic -displayed significant synergy in a patient-derived xenograft (PDX) from a TNBC patient, suggesting that network-based approaches can help develop mechanism-based combinatorial therapies targeting complementary subpopulations.
Statement Of Significance:
Network-based approaches, as shown in a study on metastatic breast cancer, can develop effective combinatorial therapies targeting complementary subpopulations. By analyzing scRNA-seq data and using clinically relevant drugs, researchers identified and depleted chemoresistant Cancer Stem-Like Cells, enhancing the efficacy of standard chemotherapies.
Insights
Researchers identified albendazole as a drug that depletes chemoresistant cancer stem-like cells (CSLCs) in metastatic breast cancer. Combination therapy with albendazole and paclitaxel showed significant synergy, offering a new approach for targeted cancer treatment.
Area of Science:
- Oncology
- Systems Biology
- Pharmacology
Background:
- Tumors contain distinct cancer stem-like cell (CSLC) subpopulations with high tumor-initiating potential.
- CSLCs often exhibit resistance to conventional chemotherapy.
- Master Regulator (MR) proteins govern CSLC transcriptional states and drug resistance.
Purpose of the Study:
- To identify drugs targeting chemoresistant CSLCs using network-based approaches.
- To explore combination therapies for metastatic breast cancer.
- To reveal complementary dependencies in CSLC subpopulations.
Main Methods:
- Single-cell RNA sequencing (scRNA-seq) of metastatic breast cancer patient samples.
- Perturbational profiling of clinically relevant drugs.
- CROP-seq assays for validation.
- In vivo studies using patient-derived xenografts (PDX).
Main Results:
- Identified drugs predicted to invert MR protein activity in chemoresistant CSLCs.
- Albendazole, an anthelmintic, depleted CSLCs in vivo with no significant cytotoxicity.
- Sequential albendazole and paclitaxel treatment showed significant synergy in a triple-negative breast cancer (TNBC) PDX model.
Conclusions:
- Network-based analysis can identify novel therapeutic strategies for targeting complementary cancer cell subpopulations.
- Albendazole demonstrates potential as a targeted therapy against chemoresistant CSLCs.
- Combination therapy with albendazole and standard chemotherapy offers a promising approach for enhancing treatment efficacy in metastatic breast cancer.
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