Invention Grant
- Patent Title: Scaffolds comprising nanoelectronic components for cells, tissues, and other applications
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Application No.: US15216068Application Date: 2016-07-21
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Publication No.: US10369255B2Publication Date: 2019-08-06
- Inventor: Charles M. Lieber , Jia Liu , Bozhi Tian , Tal Dvir , Robert S. Langer , Daniel S. Kohane
- Applicant: President and Fellows of Harvard College , Massachusetts Institute of Technology , Children's Medical Center Corporation
- Applicant Address: US MA Cambridge US MA Cambridge US MA Boston
- Assignee: President and Fellows of Harvard College,Massachusetts Institute of Technology,Children's Medical Center Corporation
- Current Assignee: President and Fellows of Harvard College,Massachusetts Institute of Technology,Children's Medical Center Corporation
- Current Assignee Address: US MA Cambridge US MA Cambridge US MA Boston
- Agency: Wolf, Greenfield & Sacks, P.C.
- Main IPC: A61L27/56
- IPC: A61L27/56 ; A61L27/30 ; C12M1/12 ; A61L27/02 ; A61L27/04 ; A61L27/08 ; A61L27/38 ; A61L27/50 ; C12M1/42 ; A61L27/18

Abstract:
The present invention generally relates to nanoscale wires and tissue engineering. In various embodiments, cell scaffolds for growing cells or tissues can be formed that include nanoscale wires that can be connected to electronic circuits extending externally of the cell scaffold. The nanoscale wires may form an integral part of cells or tissues grown from the cell scaffold, and can even be determined or controlled, e.g., using various electronic circuits. This approach allows for the creation of fundamentally new types of functionalized cells and tissues, due to the high degree of electronic control offered by the nanoscale wires and electronic circuits. Accordingly, such cell scaffolds can be used to grow cells or tissues which can be determined and/or controlled at very high resolutions, due to the presence of the nanoscale wires, and such cell scaffolds will find use in a wide variety of novel applications, including applications in tissue engineering, prosthetics, pacemakers, implants, or the like.
Public/Granted literature
- US20170072109A1 SCAFFOLDS COMPRISING NANOELECTRONIC COMPONENTS FOR CELLS, TISSUES, AND OTHER APPLICATIONS Public/Granted day:2017-03-16
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