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。

Fabrication of Vascular Engineered Tissue Using Sacrificial Structures

详细技术说明
Cornell researchers have developed a novel technique for fabricating three-dimensional vascular networks made up of thousands of microchannels in a polymer matrix.
*Abstract

Cornell researchers have developed a novel technique for fabricating three-dimensional vascular networks made up of thousands of microchannels in a polymer matrix. The technique is compatible with a wide range of materials, and is based on the use of a sacrificial, melt-spun material. This fibrous material is arranged on a substrate and a selected polymer is poured over it. After the polymer has cured, the sacrificial material can be washed away.

  

The resulting microchannel-filled materials have a wide range of useful applications. They provide excellent, highly vascular, tissue engineering constructs perfect for reconstructive surgery and wound healing applications. The fluidic structures also serve as ideal carriers of healing agents used in self-healing polymer materials, allowing these technologies to be expanded beyond coatings into larger scale materials. The high surface area vascular networks of course also serve as an ideal environment for various microfluidic processes (heat exchange, etc.).

  

Potential Applications

  • Tissue engineering, including reconstructive surgery and would healing
  • Self-healing polymer materials
  • Microfluidics

   

Advantages

  • Low cost
  • Highly scalable
  • Non-toxic
  • Microchannels extend in all three dimensions
*Licensing
Martin Teschlmt439@cornell.edu(607) 254-4454
其他
国家/地区
美国

欲了解更多信息,请点击 这里
移动设备