Development of Teaching Materials for a High School Chemistry Lab Experiment Using Silk Cocoon Fibroin

Author:

NINOMIYA Junko1,UENO Takahisa1,KUWAHARA Hitomi2,MORITA Hiroshi2

Affiliation:

1. National Institute of Technology, Oita College

2. Faculty of Environment Engineering, University of Kitakyushu

Publisher

Society of Japan Science Teaching

Reference7 articles.

1. Ajisawa, A. (1998). Dissolution of silk fibroin with calciumchoride/ethanol aqueous solution. J. Seric. Set. Jpn, 67(2), 91–94.

2. Altman, G.H., Diaz, F., Jakuba, C., Calabro, T., Horan, R.L., Chen, J., Lu, H., Richmond, J., & Kaplan, D.L. (2003). Silk-based biomaterials. Biomaterials, 24(3), 401–416.

3. Hirabayashi, K., Chin, K., & Sehata, S. (1991). Utilization of silk fibroin for food materials (in Japan). New Food Industry, 33, 1–4.

4. Kuwahara, H., Ninomiya, J., & Morita, H. (2018). Control of Aliivibrio fischeri Luminescence and Decrease in Bioluminescence by fungicides. Biocontrol Science, 23(3), 85–96.

5. Tabei, Y., Tsutsumi, K., Ogawa, A., Era, M., & Morita, H. (2011). Application of insoluble fibroin film as conditioning film for biofilm formation. Sensors and Materials, 23(4), 195–205.

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