目前通過ISO 10993 -5, 10, 11 (刺激,敏感,急毒,細胞毒)等相關分析,提供穩定細胞培養基質經驗與材料設計匹配,亦可以混摻特殊添加劑或助劑提高特定性能,目前已穩定應用於一類非植入式醫材。
1. Biocompatibility test pass (ISO 10993-5, 10, 11 )
2. Compliance to general LCD base SLA printer. (Phrozen mini 4k-mini8k, Elegoo Mar3)
3. Class I medical device application
4. Class II (under going)
1. Biocompatibility test pass (cytotoxicity testing)
2. Printing with FDM 3D printer with wade extruder
3. Filament size is 1.75mm
特殊混摻需求,石墨烯或氧化還原石墨烯列印專用線材,0.1%-0.5% graphene oxide and reduced graphene oxide, new elastic materials for research.
1. Biocompatibility test pass (cytotoxicity testing)
2. Printing with FDM 3D printer with wade extruder
3. Filament size is 1.75mm
1. 使用通過ISO 10993 -5, 10, 11 測試之安全材料製作
2.可做為製作各種組織培養樣態與建構藥物測試平台
3. 參考文獻如下
1. We made the cell sheet harvesting kit with our biocompatible resin
2. The proprietary biogel was precoating within the plate and you can dispense the cell on the top with cell culturing protocol
1. 數位設計製造/模擬分析
2. 醫材開發全生命週期管控
3. QMS, ISO 13485, US FDA
4. ODM/OEM
5. 可搭配新產品開發如新醫材或藥品
1. 生物醫學裝置或複合加工產品開發
2. CAD/CAM設計全自動加工平台
3. 整合生技醫藥自動化製程
4. 可搭配細胞與動物實驗
5. 可銜接產品開發如新醫材或藥品
1. Project based RD activity
2. Provide automation with 3D printing and design working flow to develop the prototype for your research
3. Link to cell culture experiment or animal study
4. Can be extend to product iteration cycle for medical device or new drug.
Cell Sheet related publications: 細胞片相關文獻
1. Chen, C.-H., Tsai, C.-C., Chen, W., Mi, F.-L., Liang, H.-F., Chen, S.-C., Sung, H.-W.*, “Novel Living-Cell-Sheet Harvest System Composed of Thermoreversible Methylcellulose Hydrogels,” Biomacromolecules, vol.7, pp.736-743, 2006.
2. Lin, Y.-H., Chen, C.-T.,Liang, H.-F.,Kulkarni, A. R., Lee, P.-W., Chen, C.-H., Sung, H.-W.*, “Novel Nanoparticles for Oral Insulin Delivery via the Paracellular Pathway,” Nanotechnology, 18 (10), Art. No. 105102, 2007.
3. Chen, C.-H., Chang, Y., Wang, C.-C., Huang, C.-H. Huang, C.-C., Yeh, Y.-C., Hwang, S.-M., Sung, H.-W. “Construction and Characterization of Fragmented Mesenchymal-Stem-Cell Sheets with a Uniform Size for Intramuscular Injection” Biomaterials, vol.28, pp.4643-4651, 2007
4. Wang, C.-C., Chen, C.-H., Lin, W. W., Hwang S.-M., Patrick, C.H. Hsieh, Lai, P.-H., Yeh, Y.-C., Chang, Y., Sung, H.-W.* “Direct Intramyocardial Injection of Novel Mesenchymal-Stem-Cell Sheet Fragments Significantly Increases Retention of the Transplanted Cells and Improves the Cardiac Function after Myocardial Infarction.” Cardiovascular Research, vol.77, pp.515-524, 2008
5. Chen, C.-H., Wei, H.-J., Lin, W. W., Wang, C.-C., Hwang, S.-M., Liao, C.-K., Chang, Y., Sung, H.-W.* “Porous Tissue Grafts Sandwiched with Multilayered Mesenchymal-Stem-Cell Sheets Induced Neovascularization and Tissue Regeneration for Cardiac Repair.” Cardiovascular Research, vol.80, pp.88-95, 2008
6. Wei, H.-J., Chen, C.-H., Lee, W.-Y., Chiu, I., Hwang, S.-M., Lin, W.-W., Yeh, Y.-C., Huang, C.-C., Chang, Y., Sung, H.-W.* “Bioengineered cardiac patch constructed from multilayered mesenchymal stem cells for myocardial repair.” Biomaterials, vol.29, pp.3457-3456, 2008
7. Huang, C.-C., Liao, C.-K., Yang, M.-J., Chen, C.-H., Hwang, S.-M., Hung, Y.-W., Chang, Y., Sung, H.-W. “A strategy for fabrication of a three-dimensional tissue construct containing uniformly distributed embryoid body-derived cells as a cardiac patch” Biomaterials, vol.31, pp.6218-6227, 2010 (SCI 8.312, Rank: 3/76, Top 5%)
Cell Spheroid related publications: 細胞球相關文獻
1. Yang, M.-J., Chen, C.-H., Lin, P.-J., Huang, C.-H., Chen, W, Sung, H.-W.*, “Novel Method of Forming Human Embryoid Bodies in a Polystyrene Dish Surface-Coated with a Temperature-responsive Methylcellulose Hydrogel” Biomacromolecules, vol.8, pp.2746-2752, 2007.
2. Wang, C.-C., Chen, C.-H., Chang, Y., Sung, H.-W.* “Construction of homotypic mesenchymal-stem-cell bundles for direct intramyocardial injection improve cardiac functions after infarction.” Stem Cells, vol.27, pp 724-732, 2009.
3. Lee, W.-Y., Chang, Y-H., Yeh, Y.-C., Chen, C.-H., Lin, K. M., Huang, C.-C., Chang, Y., Sung, H.-W. “The use of injectable spherically symmetric cell aggregates self-assembled in a thermo-responsive hydrogel for enhanced cell transplantation” Biomaterials, vol.29, pp.5505-5513, 2010
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