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Excimer laser forward transfer of mammalian cells using a novel triazene absorbing layer

机译:使用新型三氮烯吸收层的准分子激光正向转移哺乳动物细胞

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We present a novel laser-based approach for developing tissue engineered constructs and other cell-based assembly's. We have deposited mesoscopic patterns of viable B35 neuroblasts using a soft direct approach of the matrix assisted pulsed laser evaporation direct write (MAPLE DW) process. As a development of the conventional direct write process, an intermediate layer of absorbing triazene polymer is used to provide gentler and efficient transfers. Transferred cells were examined for viability and proliferation and compared with that of as-seeded cells to determine the efficacy of the process. Results suggest that successful transfers can be achieved at lower fluences than usual by the incorporation of the intermediate absorbing layer thus avoiding any damage to cells and other delicate materials. MAPLE DW offers rapid computer-controlled deposition of mesoscopic voxels at high spatial resolutions, with extreme versatility in depositing combinations of natural/synthetic. livingon-living, organic/inorganic and hard/soft materials. Our approach offers a gentle and efficient transfer of viable cells which when combined with a variety of matrix materials allows development of constructs and bioactive systems in bioengineering. (c) 2006 Published by Elsevier B.V.
机译:我们提出了一种新型的基于激光的方法,用于开发组织工程构建体和其他基于细胞的组件。我们已经使用基质辅助脉冲激光蒸发直接写入(MAPLE DW)工艺的直接方法来沉积活B35成神经细胞的介观模式。作为常规直接写入方法的发展,吸收三氮烯聚合物的中间层用于提供更平缓和有效的转移。检查转移的细胞的活力和增殖,并与接种的细胞进行比较以确定该过程的功效。结果表明,通过掺入中间吸收层,可以以比通常更低的通量实现成功的转移,从而避免了对细胞和其他易碎材料的损害。 MAPLE DW以高空间分辨率提供介观体素的快速计算机控制沉积,在沉积天然/合成物组合时具有极强的多功能性。生物/非生物,有机/无机和硬/软材料。我们的方法可以温和有效地转移活细胞,当与多种基质材料结合使用时,可以开发生物工程中的构建体和生物活性系统。 (c)2006年由Elsevier B.V.发布

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