Principles of Human Organs-on-Chips 2023
DOI: 10.1016/b978-0-12-823536-2.00004-3
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Critical factors affecting cells behavior in microfluidic chips

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“…The future generation of multifunctional coatings and materials will benefit from new technologies and procedures like 3D printing, [ 154–156 ] bioprinting, additive manufacturing, and cell‐on‐the‐chip technologies [ 157 ] that will lead to the production of unique designs with hierarchical hybrid structures, [ 158–161 ] multilayered and biomimetic structures, or 3D‐printed coatings that will open new horizons in the manufacturing of multifunctional coated implants. It should be mentioned that the use of advanced modeling and simulations as well as the use of artificial intelligence in the future may lead to new steps being taken in the production of new Mg‐based multifunctional coatings and optimization of existing samples.…”
Section: Conclusion and Future Remarksmentioning
confidence: 99%
“…The future generation of multifunctional coatings and materials will benefit from new technologies and procedures like 3D printing, [ 154–156 ] bioprinting, additive manufacturing, and cell‐on‐the‐chip technologies [ 157 ] that will lead to the production of unique designs with hierarchical hybrid structures, [ 158–161 ] multilayered and biomimetic structures, or 3D‐printed coatings that will open new horizons in the manufacturing of multifunctional coated implants. It should be mentioned that the use of advanced modeling and simulations as well as the use of artificial intelligence in the future may lead to new steps being taken in the production of new Mg‐based multifunctional coatings and optimization of existing samples.…”
Section: Conclusion and Future Remarksmentioning
confidence: 99%