Related Experiment Video
Updated: Jan 26, 2026

Synthesis and Characterization of an Aspirin-fumarate Prodrug that Inhibits NFκB Activity and Breast Cancer Stem Cells
Published on: January 18, 2017
Screening Therapeutic Agents Specific to Breast Cancer Stem Cells Using a Microfluidic Single-Cell Clone-Forming
Dongguo Lin1,2,3,4, Peiwen Li1,5, Jin Feng1
1Department of Laboratory Medicine, Guangzhou First People's Hospital, Guangzhou Medical University, Guangzhou, 510180, China.
Abstract:
Screens of cancer stem cells (CSCs)-specific agents present significant challenges to conventional cell assays due to the difficulty in preparing CSCs ready for drug testing. To overcome this limitation, developed is a microfluidic single-cell assay for screening breast cancer stem cell-specific agents. This assay takes advantage of the single-cell clone-forming capability of CSCs, which can be specifically inhibited by CSC-targeting agents. The single-cell assay is performed on a microfluidic chip with an array of 3840 cell-capturing units; the single-cell arrays are easily formed by flowing a cell suspension into the microchip. Achieved is a single cell-capture rate of ≈60% thus allowing more than 2000 single cells to be analyzed in a single test. Over long-term suspension culture, only a minority of cells survive and form tumorspheres. The clone-formation rate of MCF-7, MDA-MB-231, and T47D cells is 1.67%, 5.78%, and 5.24%, respectively. The clone-forming inhibition assay is conducted by exposing the single-cell arrays to a set of anticancer agents. The CSC-targeting agents show complete inhibition of single-cell clone formation while the nontargeting ones show incomplete inhibition effects. The resulting microfluidic single-cell assay with the potential to screen CSC-specific agents with high efficiency provides new tools for individualized tumor therapy.
Insights
Developing a microfluidic single-cell assay overcomes challenges in screening cancer stem cell (CSC)-specific agents. This high-efficiency assay enables precise analysis of over 2000 single cells for targeted cancer therapies.
Area of Science:
- Biotechnology
- Cancer Research
- Microfluidics
Background:
- Screening cancer stem cell (CSC)-specific agents is difficult with conventional assays.
- Preparing CSCs for drug testing poses significant challenges.
Purpose of the Study:
- To develop a microfluidic single-cell assay for efficient screening of breast CSC-specific agents.
- To overcome limitations in current CSC drug screening methodologies.
Main Methods:
- Utilized a microfluidic chip with 3840 cell-capturing units for single-cell array formation.
- Achieved a single cell-capture rate of approximately 60%, enabling analysis of over 2000 single cells.
- Assessed clone-formation rates of breast cancer cell lines (MCF-7, MDA-MB-231, T47D) and inhibition by anticancer agents.
Main Results:
- Demonstrated the capability to form single-cell arrays efficiently on the microfluidic chip.
- Observed varying clone-formation rates among different breast cancer cell lines.
- Showed that CSC-targeting agents completely inhibited single-cell clone formation, while non-targeting agents had incomplete effects.
Conclusions:
- The developed microfluidic single-cell assay is highly efficient for screening CSC-specific agents.
- This assay provides a valuable new tool for advancing individualized tumor therapy.
- The assay leverages the specific inhibition of CSC clone formation for targeted drug discovery.
Related Concept Videos
Distinctive Features of Adult Stem Cells vs Cancer Stem Cells
Adult stem cells
Adult stem cells are tissue-specific; hence, they divide to develop the tissue from which they originate. One type of adult stem cell is the epithelial stem cell, which gives rise to the keratinocytes in the multiple layers of epithelial cells in the epidermis of the skin. Adult bone marrow has three distinct types of stem cells:...
Cancer Stem Cells and Tumor Maintenance
Cancer stem cells are thought to originate from tissue-specific normal stem cells or progenitor cells. The normal stem cells usually reside in...
Embryonic Stem Cells
Reproductive Cloning
Somatic Cell Nuclear Transfer
In SCNT, an egg cell is taken from an animal and its nucleus is removed, creating an enucleated egg. Then a somatic...
Cancers Originate from Somatic Mutations in a Single Cell
Adult Stem Cells

