Related Experiment Video
Updated: Jun 27, 2026

Generating Primary Fibroblast Cultures from Mouse Ear and Tail Tissues
Published on: January 10, 2016
Cell cycle synchronization of canine ear fibroblasts for somatic cell nuclear transfer
Ok Jae Koo1, Mohammad Shamim Hossein, So Gun Hong
1Department of Theriogenology and Biotechnology, College of Veterinary Medicine, Seoul National University, Seoul, Korea.
Abstract:
Cycle synchronization of donor cells in the G0/G1 stage is a crucial step for successful somatic cell nuclear transfer. In the present report, we evaluated the effects of contact inhibition, serum starvation and the reagents - dimethyl sulphoxide (DMSO), roscovitine and cycloheximide (CHX) - on synchronization of canine fibroblasts at the G0/G1 stage. Ear fibroblast cells were collected from a beagle dog, placed into culture and used for analysis at passages three to eight. The population doubling time was 36.5 h. The proportion of G0/G1 cells was significantly increased by contact inhibition (77.1%) as compared with cycling cells (70.1%); however, extending the duration of culture did not induce further synchronization. After 24 h of serum starvation, cells were effectively synchronized at G0/G1 (77.1%). Although synchronization was further increased gradually after 24 h and even showed significant difference after 72 h (82.8%) of starvation, the proportion of dead cells also significantly increased after 24 h. The percentage of cells at the G0/G1 phase was increased (as compared with controls) after 72 h treatment with DMSO (76.1%) and after 48 h treatment with CHX (73.0%) or roscovitine (72.5%). However, the rate of cell death was increased after 24 and 72 h of treatment with DMSO and CHX, respectively. Thus, we recommend the use of roscovitine for cell cycle synchronization of canine ear fibroblasts as a preparatory step for SCNT.
Insights
Roscovitine effectively synchronizes canine fibroblasts for somatic cell nuclear transfer (SCNT). This method improves G0/G1 cell cycle arrest, crucial for successful SCNT procedures.
Area of Science:
- Reproductive Biology
- Cell Biology
- Biotechnology
Background:
- Somatic cell nuclear transfer (SCNT) requires precise donor cell cycle synchronization.
- Achieving G0/G1 stage arrest in donor cells is critical for efficient SCNT.
Purpose of the Study:
- To evaluate methods for synchronizing canine fibroblasts at the G0/G1 stage.
- To determine the optimal method for preparing canine ear fibroblasts for SCNT.
Main Methods:
- Canine ear fibroblasts were synchronized using contact inhibition, serum starvation, and chemical agents (DMSO, roscovitine, CHX).
- Cell cycle phase distribution and cell viability were assessed using flow cytometry.
Main Results:
- Contact inhibition and serum starvation increased G0/G1 cell proportion, but prolonged starvation increased cell death.
- DMSO, roscovitine, and CHX treatments also increased G0/G1 phase cells, with varying effects on cell viability.
- Roscovitine at 72 hours showed a notable increase in G0/G1 synchronization with acceptable cell viability.
Conclusions:
- Roscovitine is recommended for synchronizing canine ear fibroblasts for SCNT.
- Optimizing cell cycle synchronization is key to improving SCNT efficiency in canines.
More Related Videos
09:52Combinational Treatment of Trichostatin A and Vitamin C Improves the Efficiency of Cloning Mice by Somatic Cell Nuclear Transfer
Published on: April 26, 2018
04:36A Simple Microaspiration Technique for Isolating Somatic Cells from Cryopreserved Equine Semen as Nuclear Donors for Cloning
Published on: December 19, 2025