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Bioactive glass is known to benefit cell interactions of polymeric tissue engineering scaffolds.
This is a significant improvement in lifetime determination, which will benefit cell designers.
The resulted HA scaffold with surface stripe pattern is proposed to benefit cell attachment and tissue ingrowth.
These results agree with finite element predictions and suggest that reduction of electrode thickness does not exclusively benefit cell performance.
Moreover, MTT assessments suggested that the smaller pore size should benefit cell attachment and growth in the scaffold.
It suggested that stronger cell substrate interactions benefit cell adhesion, and better cell flexibility improve cell spreading.
Similar(49)
Therefore, appropriate and noninvasive means of determining the distribution of HSPCs will benefit cell-therapy applications.
Previous studies have shown that reversible IS-induced mutations with precise excisions may benefit cells in fluctuating environments [ 35, 36].
Intriguingly, multiple means may exist to post-translationally control BiP activity to benefit cells under oxidative stress.
Inactivation of ATPase activity for a pool of BiP upon oxidation may additionally benefit cells by limiting ATP turnover during oxidative stress.
In addition, TEM might be capable of guiding tongue-derived cells to the niche, benefiting cell survival, proliferation and differentiation.
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