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Molecular, Cellular, and Tissue Engineering Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
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- Biomaterials (8)
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- Medicine and Health Sciences (8)
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- Keyword
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- Tissue engineering (5)
- Microfluidics (3)
- Biotechnology (2)
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- Differentiation (2)
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- 3-D tissue imaging (1)
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- Angioplasty (1)
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- Publication
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- The Summer Undergraduate Research Fellowship (SURF) Symposium (27)
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- Journal of Pre-College Engineering Education Research (J-PEER) (1)
- The 8th International Conference on Physical and Numerical Simulation of Materials Processing (1)
- Publication Type
Articles 31 - 32 of 32
Full-Text Articles in Molecular, Cellular, and Tissue Engineering
Inkjet Printing Of Polarized Yeast Cells, Xiuyuan Yang, Kari Clase
Inkjet Printing Of Polarized Yeast Cells, Xiuyuan Yang, Kari Clase
The Summer Undergraduate Research Fellowship (SURF) Symposium
The motivation is to applying engineering knowledge to develop 3D bio-printing in inkjet printer (first stage--monolayer). To achieve the goal, there are three problems to solve. First, we have to figure out regulation of growth of target cells; inability to regulate the location and pattern of growing cells make us even unable to build 3D printer in the direct way. Second problem is how to protect of yeast cells from high temperature and viscous force when printing. The third issue is how to modify the inkjet printer especially the feeding system in order to implement printing on other materials rather …
Adhesive Elastomeric Proteins, Haefa Mansour, Julie Liu
Adhesive Elastomeric Proteins, Haefa Mansour, Julie Liu
The Summer Undergraduate Research Fellowship (SURF) Symposium
Sutures and staples commonly used to close surgical wounds tend to be much stiffer than the surrounding tissue, often resulting in external tissue damage. Surgical adhesives provide a promising alternative to these sutures and staples. Ideal surgical adhesives are biocompatible, able to set well and remain sticky in moist conditions, possess strong adhesive and cohesive properties, and exhibit mechanical properties that mimic those of the surrounding tissue. Unfortunately, the adhesives available today are unable to satisfactorily meet all of these criteria. We are utilizing protein engineering techniques to design, create, and test a new surgical adhesive that combines the adhesive …