发明申请
US20110136162A1 Compositions and Methods for Functionalized Patterning of Tissue Engineering Substrates Including Bioprinting Cell-Laden Constructs for Multicompartment Tissue Chambers
审中-公开
组织工程底物的功能化图案的组合和方法,包括用于多室组织室的生物印迹细胞 - 拉登构建体
- 专利标题: Compositions and Methods for Functionalized Patterning of Tissue Engineering Substrates Including Bioprinting Cell-Laden Constructs for Multicompartment Tissue Chambers
- 专利标题(中): 组织工程底物的功能化图案的组合和方法,包括用于多室组织室的生物印迹细胞 - 拉登构建体
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申请号: US12872992申请日: 2010-08-31
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公开(公告)号: US20110136162A1公开(公告)日: 2011-06-09
- 发明人: Wei Sun , Jessica Snyder , Robert Chang , Eda Yildirim , Alexander Fridman , Halim Ayan
- 申请人: Wei Sun , Jessica Snyder , Robert Chang , Eda Yildirim , Alexander Fridman , Halim Ayan
- 专利权人: Drexel University
- 当前专利权人: Drexel University
- 主分类号: C12Q1/02
- IPC分类号: C12Q1/02 ; C12M1/00 ; C12M1/34 ; C23C16/50 ; C23C16/52
摘要:
The present invention relates to microfluidic systems and methods for monitoring or detecting a change in a characteristic of an input substance. Specifically, the invention relates to a model for in vitro pharmacokinetic study and other pharmaceutical applications, as well as other uses including computing, sensing, filtration, detoxification, production of chemicals and biomolecules, testing cell/tissue behavior, toxicology, drug metabolism, drug screening, drug discovery, and implantation into a subject. The present invention also relates to systems and methods of a microplasm functionalized surface patterning of a substrate. The present invention represents an improvement over existing plasma systems used to modify the surface of a substrate, as the present invention creates surface patterning without the use of a mask, stamp or a chemical treatment.
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