Invention Grant
- Patent Title: Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same
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Application No.: US15624425Application Date: 2017-06-15
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Publication No.: US10238496B2Publication Date: 2019-03-26
- Inventor: Alexandru S. Biris
- Applicant: BOARD OF TRUSTEES OF THE UNIVERSITY OF ARKANSAS
- Applicant Address: US AR Little Rock
- Assignee: BOARD OF TRUSTEES OF THE UNIVERSITY OF ARKANSAS
- Current Assignee: BOARD OF TRUSTEES OF THE UNIVERSITY OF ARKANSAS
- Current Assignee Address: US AR Little Rock
- Agency: Locke Lord LLP
- Agent Tim Tingkang Xia, Esq.
- Main IPC: A61L27/36
- IPC: A61L27/36 ; A61L27/54 ; A61L27/58 ; A61F2/08 ; A61F2/28 ; B32B37/24 ; B32B37/26 ; B32B38/00 ; A61L27/38 ; A61L27/44 ; A61L27/46 ; A61L27/50 ; A61L27/56 ; A61L27/34

Abstract:
A biocompatible structure includes one or more base structures for regeneration of different tissues. Each base structure includes alternately stacked polymer layers and spacer layers. The polymer layer includes a polymer and tissue forming nanoparticles. The polymer includes polyurethane. The tissue forming nanoparticles includes hydroxypatites (HAP) nanoparticles, polymeric nanoparticles, or nanofibers. The spacer layer includes bone particles, polymeric nanoparticles, or nanofibers. The weight percentage of tissue forming nanoparticles to the polymer in the polymer layer in one base structure is different from that in the other base structures. A method of producing the biocompatible structure includes forming multiple base structures stacked together, coating the stacked multiple base structures, and plasma treating the coated structure.
Public/Granted literature
- US20170281829A1 BONE REGENERATION USING BIODEGRADABLE POLYMERIC NANOCOMPOSITE MATERIALS AND APPLICATIONS OF THE SAME Public/Granted day:2017-10-05
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