SLAS Technology Authors Talk Tech: Traceable Impedance-Based Dispensing and Cloning of Living Single Cells and Impedance-Based Single-Cell Pipetting episode artwork

EPISODE · Apr 28, 2020 · 13 MIN

SLAS Technology Authors Talk Tech: Traceable Impedance-Based Dispensing and Cloning of Living Single Cells and Impedance-Based Single-Cell Pipetting

from Sage Life & Biomedical Sciences

Two articles are discussed: Traceable Impedance-Based Dispensing and Cloning of Living Single Cells: Single-cell cloning is essential in stem cell biology, cancer research, and biotechnology. Regulatory agencies now require an indisputable proof of clonality that current technologies do not readily provide. Here, we report a one-step cloning method using an engineered pipet combined with an impedance-based sensing tip. This technology permits the efficient and traceable isolation of living cells, stem cells, and cancer stem cells that can be individually expanded in culture and transplanted. Impedance-Based Single-Cell Pipetting: Many biological methods are based on single-cell isolation. In single-cell line development, the gold standard involves the dilution of cells by means of a pipet. This process is time-consuming as it is repeated over several weeks to ensure clonality. Here, we report the modeling, designing, and testing of a disposable pipet tip integrating a cell sensor based on the Coulter principle. We investigate, test, and discuss the effects of design parameters on the sensor performances with an analytical model. We also describe a system that enables the dispensing of single cells using an instrumented pipet coupled with the sensing tip. Most importantly, this system allows the recording of an impedance trace to be used as proof of single-cell isolation. We assess the performances of the system with beads and cells. Finally, we show that the electrical detection has no effect on cell viability. Link to journal articles: Muller G.; Bonzon D.; Claudinot S.; et al. Traceable Impedance-Based Dispensing and Cloning of Living Single Cells    Bonzon D.; Muller G.; Bureau J.; et al. Impedance-Based Single-Cell Pipetting  Link to issue: http://journals.sagepub.com/toc/jlad/25/3

Episode metadata supplied by the publisher feed · Published Apr 28, 2020

Embed this episode

NOW PLAYING

SLAS Technology Authors Talk Tech: Traceable Impedance-Based Dispensing and Cloning of Living Single Cells and Impedance-Based Single-Cell Pipetting

0:00 13:25

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of Sage Life & Biomedical Sciences?

This episode is 13 minutes long.

When was this Sage Life & Biomedical Sciences episode published?

This episode was published on April 28, 2020.

Can I download this Sage Life & Biomedical Sciences episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!