亚洲知识产权资讯网为知识产权业界提供一个一站式网上交易平台,协助业界发掘知识产权贸易商机,并与环球知识产权业界建立联系。无论你是知识产权拥有者正在出售您的知识产权,或是制造商需要购买技术以提高操作效能,又或是知识产权配套服务供应商,你将会从本网站发掘到有用的知识产权贸易资讯。

Submerged Organ Printing

总结
Method of 3D-Printing of cell-containing hydrogel structures with high geometrical complexity.
技术优势
Platform technology for generating different tissue models with high geometrical flexibility in a highly precise and replicable process.
技术应用
The present inventions allows for new strategies in the 3D-cell-printing of tissue substitutes.
详细技术说明
Bioprinting technologies recently appeared as important tissue engineering alternatives for regenerative medicine and organ transplantation. This novel approach for printing of tissues substitutes is based on the submersion of simultaneously printed cell-hydrogel structures into a non-toxic perfluorodecalin liquid substrate. Not only the development of a robotic plattform for 3D-printing has been performed, but also the combination of natural or synthetic hydrogels with human mesenchymal stem cells.
The present invention allows to print the conduits submerged in non-miscible solvents of high density, such as fluorocarbons (e.g. C12F27N), that support the printed structure while it is being generated resulting in superior performance in relation to other methods. The hydrophobicity and high density of the fluorocarbon help to control the deposition of each individual droplet, resulting in a high degree of precision of the 3D-printed construct, which has been proven to remain long-term stable. Furthermore, live/dead- and DAPI-staining showed viable cells 24 h after the printing process, as well as after 21 days in culture.
In a special embodiment, the invention describes a simpler way of reproducing the structural hierarchy of multiple tissue substitutes using an inkjet drop-on-demand (DoD) bioprinting approach. This novel strategy for cell printing can therefore be used in the future for broad applications in the field of tissue engineering and regenerative medicine. In particular the method is suitable for printed tissue substitutes with high geometrical complexity.
合作类型
Licensing
申请日期
02.02.2012
01.02.2013
申请号码
DE 10 2012 100 859.0
EP 2013/052046
其他
No CN patents
ID号码
3067-5117
国家/地区
德国

欲了解更多信息,请点击 这里
移动设备