Class schedule | HW assignments (Including preparation and review of the class.) | Amount of Time Required | |
---|---|---|---|
1. | Overview of cellular device engineering ○Goals, three technological fields. ○Difference from life sciences. ○Methods for English literature search. Basics in cell culture ○History ○Categories in cell culture ○Parameters describing proliferation |
Handout No.1 | 60minutes |
Mini-report preparation | 60minutes | ||
2. | Cell culture techniques ○Areas and equipment ○Tools and cell culture vessels. ○Steps ○Media and reagents |
Handout No.2 | 60minutes |
Mini-report preparation | 60minutes | ||
3. | Evaluation of cells ○Microscopy for morphology ○Microscopy for flouorescence detection. ○Assessment of cell viability |
Handout No.3 | 60minutes |
Mini-report preparation | 60minutes | ||
4. | 細胞培養の物理化学的条件 ○培地組成と代謝 ○pHと酸素濃度 ○浸透圧 ○壁せん断力 |
Handout No.4 | 60minutes |
Mini-report preparation | 60minutes | ||
5. | Cell isolation, coculture, 3D culture ○Methods for cell sorting ○Spheroids, organoids ○Methods for coculture and 3D culture |
Handout No.5 | 60minutes |
Mini-report preparation | 60minutes | ||
6. | Forces on microfluids ○Characteristics of microfluids ○Nondimensional Navier-Stokes Eq. Laminar flow solution and pressure loss. ○Advection-diffusion ○Surface tension and Laplace pressure |
Handout No.6 | 60minutes |
Mini-report preparation | 60minutes | ||
7. | Microfluidic elements ○Using capillary forces. ○Using electro- or surface chemistry ○Using strain and deformation |
Handout No.7 | 60minutes |
Mini-report preparation | 60minutes | ||
8. | ※Mini-reports submission due (1) Materials for microfluidic devices ○Biocompatible alloys ○Polymers ○Hydrogels |
Handout No.8 | 60minutes |
Mini-report preparation | 60minutes | ||
9. | Miromachining ○Photolithography ○Bonding, surface treatment ○Rapid prototyping (3D printing, soft lith.) |
Handout No.9 | 60minutes |
Mini-report preparation | 60minutes | ||
10. | Biomacromolecules ○Extracellular matrices ○Three S's of tissue engineering ○Types of scaffolds ○Coating, forming of scaffolds ○Signaling molecules |
Handout No.10 | 60minutes |
Mini-report preparation | 60minutes | ||
11. | Biosensing and bioassays ○Enzyme-based biosensors ○Antibody-based biosensors ○Cell viability assays ※ Final presentation assignment |
Handout No.11 | 60minutes |
Mini-report preparation | 60minutes | ||
12. | Biomolecule separation and detection ○Separation based on affinity ○Electrophoresis ○PCR and application ○Physical dection methods (QCM etc) |
Handout No.12 | 60minutes |
Mini-report preparation | 60minutes | ||
13. | Future of microfluidic systems ○Traditional methods work better? ○Simplicity in microfludiic systems ○Collaboration of science and technology Final presentation (1) |
Reading a given review paper | 150minutes |
Literature search and reading | 300minutes | ||
14. | Mini-reports submission due (2) Final Presentation (2) |
Literature search and reading | 320minutes |
Presentation | 400minutes | ||
Total. | - | - | 2610minutes |
Mini-Reports | Presentation | Total. | |
---|---|---|---|
1. | 20% | 5% | 25% |
2. | 20% | 15% | 35% |
3. | 20% | 20% | 40% |
Total. | 60% | 40% | - |
Work experience | Work experience and relevance to the course content if applicatable |
---|---|
Applicatable | Experience in research in biomicrofluidic field, and working at a startup company developing microfluidic embryo culture systems. |