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Automatic device for the trypsinization of animal tissues.
Applied Microbiology
|January 1, 1972
Summary
Researchers developed a simple glass device to separate and isolate monodisperse cells from tissue fragments using a fluid velocity gradient. This method enables efficient cell isolation for various research applications.
Area of Science:
- Biotechnology
- Cell Biology
- Tissue Engineering
Background:
- Cell isolation from tissue is crucial for research.
- Current methods can be complex or inefficient.
- Need for a simple, effective cell separation technique.
Purpose of the Study:
- To develop a simple device for isolating monodisperse cells from tissue fragments.
- To utilize a discontinuous fluid velocity gradient for cell separation.
Main Methods:
- Enzymatic digestion of tissue to release cells.
- Utilizing a simple glass device for cell separation.
- Employing a discontinuous fluid velocity gradient to separate cells from debris.
Main Results:
- Successfully separated and isolated monodisperse cells from tissue fragments.
- Demonstrated the effectiveness of the fluid velocity gradient technique.
- Achieved high purity of isolated cells.
Conclusions:
- The developed glass device provides a simple and effective method for cell isolation.
- This technique is valuable for obtaining pure cell populations from tissue.
- Potential applications in various fields of cell-based research.