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  2. 3D cell culture - Wikipedia

    en.wikipedia.org/wiki/3D_cell_culture

    3D cell culture. A 3D cell culture is an artificially created environment in which biological cells are permitted to grow or interact with their surroundings in all three dimensions. Unlike 2D environments (e.g. a Petri dish), a 3D cell culture allows cells in vitro to grow in all directions, similar to how they would in vivo. [1]

  3. Cell culture - Wikipedia

    en.wikipedia.org/wiki/Cell_culture

    There are a variety of platforms used to facilitate the growth of three-dimensional cellular structures including scaffold systems such as hydrogel matrices [69] and solid scaffolds, and scaffold-free systems such as low-adhesion plates, nanoparticle facilitated magnetic levitation, [70] hanging drop plates, [71] [72] and rotary cell culture ...

  4. Hollow fiber bioreactor - Wikipedia

    en.wikipedia.org/wiki/Hollow_fiber_bioreactor

    A Hollow fiber bioreactor is a 3 dimensional cell culturing system based on hollow fibers, which are small, semi-permeable capillary membranes arranged in parallel array with a typical molecular weight cut-off (MWCO) range of 10-30 kDa. These hollow fiber membranes are often bundled and housed within tubular polycarbonate shells to create ...

  5. Cerebral organoid - Wikipedia

    en.wikipedia.org/wiki/Cerebral_organoid

    Cerebral organoid. A neural, or brain organoid, describes an artificially grown, in vitro, tissue resembling parts of the human brain. Neural organoids are created by culturing pluripotent stem cells into a three-dimensional culture that can be maintained for years. [1][2] The brain is an extremely complex system of heterogeneous tissues and ...

  6. Nano-scaffold - Wikipedia

    en.wikipedia.org/wiki/Nano-scaffold

    The nano-scaffold is a three-dimensional structure composed of polymer fibers very small that are scaled from a Nanometer (10 −9 m) scale. [1] Developed by the American military, the medical technology uses a microscopic apparatus made of fine polymer fibers called a scaffold. [2] Damaged cells grip to the scaffold and begin to rebuild ...

  7. Neural tissue engineering - Wikipedia

    en.wikipedia.org/wiki/Neural_tissue_engineering

    Blood vessels have been observed to grow through the scaffold, thus the scaffold and cells are being integrated into the host tissue. A combination of engineered scaffolds presents an option for a 3D scaffold that can have both the necessary patterns for cell adhesion and the flexibility to adapt to the ever changing environment at the injury site.

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