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Additionally, the strength of PVA provides scaffolds with mechanical properties appropriate for culturing cells in vitro.
A degradable, polar/hydrophobic/ionic polyurethane (D-PHI) scaffold was optimized in in vitro studies to yield mechanical properties appropriate to replicate vascular graft tissue while eliciting a more wound-healing phenotype macrophage when compared to established materials.
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These results may allow better evaluation of nanotube mechanical properties via appropriate atomistic simulations.
Our results demonstrated that ASC are an alternative cell source for the production of TEVS displaying good mechanical properties and appropriate endothelialization.
A unit cell is defined as the smallest representative volumetric element to carry the information of composite constituent materials, heterogeneous structures, homogenized mechanical properties, and appropriate manufacturing processes.
The match of mechanical properties and appropriate structures can effectively promote the fixation between the implant and the bone tissue in a long term.
Interfacial adhesion was estimated by various means including the measurement of surface characteristics, cyclic loading experiments and evaluation of composition dependence of mechanical properties by appropriate models.
Synthetic hydrogels, on the other hand, have tunable mechanical properties; however, appropriate cell−matrix interactions are difficult to obtain.
The porosity of samples reached 45% after 1 month of degradation, and mechanical properties were still appropriate for human bone tissue.
The obtained results ascertained that the PCL/TNT (0.5 wt%) scaffold sintered at 60 °C for 90 min had the most optimal mechanical properties and an appropriate pore structure for bone tissue engineering applications.
In this study, spiral polycaprolactone (PCL) nanofibrous scaffolds were inserted into poly(lactide-co-glycolide) (PLGA) microsphere sintered tubular scaffolds to form integrated scaffolds to provide mechanical properties and bioactivity appropriate for bone tissue engineering.
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