Invention Grant
- Patent Title: Chemically modified cellulose fibrous meshes for use as tissue engineering scaffolds
- Patent Title (中): 用作组织工程支架的化学改性纤维素纤维网
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Application No.: US13438094Application Date: 2012-04-03
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Publication No.: US09259455B2Publication Date: 2016-02-16
- Inventor: Jie Song , Tera Marie Filion Potts , Artem Kutikov
- Applicant: Jie Song , Tera Marie Filion Potts , Artem Kutikov
- Applicant Address: US MA Boston
- Assignee: University of Massachusetts
- Current Assignee: University of Massachusetts
- Current Assignee Address: US MA Boston
- Agency: Milstein Zhang & Wu LLC
- Main IPC: A61K9/70
- IPC: A61K9/70 ; A61K38/18 ; D01D5/00 ; D01F2/28 ; A61K9/00 ; A61K47/38 ; A61L31/04 ; C08L1/12 ; A61K38/19 ; A61K38/30 ; D06M13/262 ; D06M13/342 ; D06M13/368 ; D06M13/372 ; D01D10/02 ; D01F11/02 ; D06M101/06

Abstract:
Cellulose and sulfated cellulose fibrous meshes exhibiting robust structural and mechanical integrity in water were fabricated using a combination of electrospinning, thermal-mechanical annealing and chemical modifications. The sulfated fibrous mesh exhibited higher retention capacity for human recombinant bone morphogenetic protein-2 than the cellulose mesh, and the retained proteins remained biologically active for at least 7 days. The sulfated fibrous mesh also more readily supported the attachment and osteogenic differentiation of rat bone marrow stromal cells in the absence of osteogenic growth factors. These properties combined make the sulfated cellulose fibrous mesh a promising bone tissue engineering scaffold.
Public/Granted literature
- US20120258160A1 CHEMICALLY MODIFIED CELLULOSE FIBROUS MESHES FOR USE AS TISSUE ENGINEERING SCAFFOLDS Public/Granted day:2012-10-11
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