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Loss of csA did not affect development in the mutant cells under laboratory conditions, however when grown on soil plates which resembles natural conditions the mutant cells displayed reduced cell-cell adhesion, increased adhesiveness to the substratum, and slower motility, which led to their sorting out from aggregating wild-type cells [26] [26].
Coating adhesion increased as Cr Ti ratio increased.
In the unloading process, the adhesion increased as the imprint depth increased.
Downstream signaling promotes cell proliferation, altered cytoskeletal function, decreased cellular adhesion, increased cellular invasion, decreased apoptosis and enhanced DNA transcription.
This adhesion increased with the growth of the additive ratio of Li3N.
Wei et al. investigated osteoblast adhesion according to water contact angle - osteoblast adhesion increased with increasing surface hydrophilicity within a contact angle range of 0° to 106°.
As the sintering temperature increased from 150°C to 300°C, the apparent density and the adhesion increased by 22.7% and 43%, respectively.
At and below pH 5, TiO2 nanoparticle adhesion increased with increasing pH; at pH 6 and above, adhesion occurred independently of pH.
It was found that adhesion increased significantly when the composite substrate was lightly grit blasted, with no adhesion on smooth composite surfaces.
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In most cases of good adhesion, increasing the temperature favors cohesive failure of the adhesive in detriment of intra-laminar failure of the composite.
In most cases of good interface adhesion, increasing the temperature favors cohesive failure of the adhesive in detriment of intra-laminar failure of the composite.
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