Biomimetic Mechanical Tension Driven Fabrication of Nanofibrillar Architecture
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United States of America Patent
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Issued Date -
Sep 26, 2019
app pub date -
Aug 1, 2017
filing date -
Aug 1, 2016
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Published
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Abstract
This present disclosure provides methods for utilizing such forces in when generating nanofibrillar constructs with engineered morphology from the nano- to macro-scales. Using for example, a biopolymer silk fibroin as a base material, patterns an intermediate hydrogel were generated within a deformable mold. Subsequently, mechanical tension was introduced via either hydrogel contraction or mold deformation, and finally a material is reentrapped in this transformed shape via beta-sheet crystallization and critical point drying. Topdown engineered anchorages, cables, and shapes act in concert to mediate precision changes in nanofiber alignment/orientation and a macroscale form of provided nanofibrillar structure. An ability of this technique to engineer large gradients of nano- and micro-scale order, manipulate mechanical properties (such as plasticity and thermal transport), and the in-situ generation of 2D and 3D, multi-tiered and doped, nanofibrillar constructs was demonstrated.

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Patent Owner(s)
Patent Owner | Address | |
---|---|---|
TRUSTEES OF TUFTS COLLEGE | BALLOU HALL MEDFORD MA 02155 |
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Inventor(s)
Inventor Name | Address | # of filed Patents | Total Citations |
---|---|---|---|
OMENETTO, Fiorenzo G | Lexington, US | 49 | 323 |
TSENG, Peter | Saratoga, US | 21 | 161 |
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