• Title of article

    Laser direct writing of combinatorial libraries of idealized cellular constructs: Biomedical applications

  • Author/Authors

    Nathan R. Schiele، نويسنده , , Ryan A. Koppes، نويسنده , , David T. Corr، نويسنده , , Karen S. Ellison، نويسنده , , Deanna M. Thompson، نويسنده , , Lee A. Ligon، نويسنده , , Thomas K.M. Lippert، نويسنده , , Douglas B. Chrisey، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2009
  • Pages
    4
  • From page
    5444
  • To page
    5447
  • Abstract
    The ability to control cell placement and to produce idealized cellular constructs is essential for understanding and controlling intercellular processes and ultimately for producing engineered tissue replacements. We have utilized a novel intra-cavity variable aperture excimer laser operated at 193 nm to reproducibly direct write mammalian cells with micrometer resolution to form a combinatorial array of idealized cellular constructs. We deposited patterns of human dermal fibroblasts, mouse myoblasts, rat neural stem cells, human breast cancer cells, and bovine pulmonary artery endothelial cells to study aspects of collagen network formation, breast cancer progression, and neural stem cell proliferation, respectively. Mammalian cells were deposited by matrix assisted pulsed laser evaporation direct write from ribbons comprised of a UV transparent quartz coated with either a thin layer of extracellular matrix or triazene as a dynamic release layer using CAD/CAM control. We demonstrate that through optical imaging and incorporation of a machine vision algorithm, specific cells on the ribbon can be laser deposited in spatial coherence with respect to geometrical arrays and existing cells on the receiving substrate. Having the ability to direct write cells into idealized cellular constructs can help to answer many biomedical questions and advance tissue engineering and cancer research.
  • Keywords
    Combinatorial libraries , Laser processing , Matrix assisted pulsed laser evaporation direct write , Biomaterials , Patterning , Tissue engineering , Idealized cellular constructs
  • Journal title
    Applied Surface Science
  • Serial Year
    2009
  • Journal title
    Applied Surface Science
  • Record number

    1011308