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Pesheva P, Spiess E, Schachner M. J1-160 and J1-180 are oligodendrocyte-secreted nonpermissive substrates for cell adhesion.
This chapter discusses three-dimensional extracellular matrix substrates for cell culture.
Here we review and compare the most representative methods of producing thermoresponsive substrates for cell sheet engineering.
Applications of this technology include the modification of substrates for cell culture, tissue engineering, and cell transplantation.
Microparticles can serve as substrates for cell amplification and deliver the expanded cells to the site of the defect.
They have been used for drug release, magnetic hyperthermia treatment, and can potentially be engineered as stimuli-responsive substrates for cell mechanobiology.
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Next, we address approaches for the introduction of biodegradable elements such as substrates for cell-secreted enzymes into hydrogel matrices.
In an attempt to improve uptake and cell selectivity of ALA and its derivatives, we investigated PpIX formation and metabolism mechanisms using peptide ALA prodrugs that represent potential substrates for cell-surface and cytoplasmic peptidases and esterases.
ECM proteins are not just static substrates for cells; rather, ECM components signal by binding to integrins located in the cell membrane [ 12].
Thermoresponsive polymers can be used for cell sheet engineering to treat a wide range of diseases, from corneal dysfunction to oesophageal cancer, tracheal resection, and cardiac failure as growth substrates for cells [ 35].
Nakanishi, J. et al. Photoactivation of a substrate for cell adhesion under standard fluorescence microscopes.
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