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This study presents an osteoporotic long-bone model designed to match the lower cumulative range of mechanical properties found in large series of cadaveric femora reported in the literature.
The relationships between molecular composition, secondary structures and mechanical properties found in different types of spider silks are described, along with a discussion of artificial spinning of these proteins and their bioapplications, including the role of silks in biomineralization and fabrication of biomaterials with controlled properties.
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The best mechanical properties were found in samples without nodes.
Best mechanical properties were found for mercerized treatment.
Mechanical properties were found to be by far greater for the stretching dominated structure (P-Surface).
As expected, the mechanical properties were found to be strongly affected by strain-rate and temperature.
The mechanical properties were found to be strongly dependent on the system morphology.
All in all, the poorest mechanical properties are found in the silver.
A strong correlation between DC bias magnitude, nitrogen concentration and mechanical properties was found.
Crosslinked PCLF2000 with the highest crystallinity and mechanical properties was found to best support cell attachment and proliferation.
A remarkable enhancement in mechanical properties was found for PCL containing systems, even when crystalline structure remains unaltered.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com