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Cell-by-cell construction of living tissue by ambient laser transfer

机译:通过环境激光转移逐细胞施工活组织

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In order to fabricate and interface biological Systems for next generation applications such as biosensors, protein recognition microarrays, and engineered tissues, it is imperative to have a method of accurately and rapidly depositing different active biomaterials in patterns or layered structures. Ideally, the biomaterial structures would also be compatible with many different substrates including technologically relevant platforms such as electronic circuits, microfluidic devices, or even living tissue. We have developed a technique termed matrix assisted pulsed laser evaporation direct write (MAPLE DW), that is able to form patterns and three-dimensional structures of numerous biologically active species ranging from protein solutions to living cells. Specifically, we have shown that MAPLE DW is capable of forming mesoscopic patterns of many components needed to construct complex 3D tissue such as living mammalian cells (mouse pluripotent, human osteoblast, rat cardiac), numerous active proteins, extracellular matrix materials, and semi -rigid scaffold materials. This manuscript presents experimental results on our stepwise efforts to fabricate living tissue constructs. We first demonstrate the ability to form 2D microarrays from active proteins and living cells. We then discuss our efforts to begin 3D printing of both living cells and scaffold materials.
机译:为了制造和界面用于下一代应用的生物系统,例如生物传感器,蛋白质识别微阵列和工程化组织,必须具有在图案或层状结构中精确且快速地沉积不同活性生物材料的方法。理想地,生物材料结构也将与许多不同的基板兼容,包括技术相关平台,例如电子电路,微流体装置,甚至活组织。我们已经开发了一种称为矩阵辅助脉冲激光蒸发直接写入(枫木DW)的技术,能够形成许多生物活性物种的模式和三维结构,范围从蛋白质溶液到活细胞。具体地,我们已经表明,枫树DW能够形成构建复杂3D组织所需的许多组分的介观模式,例如活哺乳动物细胞(小鼠多能,人骨细胞,大鼠心脏),许多活性蛋白质,细胞外基质材料和半 - 刚性脚手架材料。此手稿介绍了我们逐步努力制造活组织构建体的实验结果。我们首先证明了从活性蛋白和活细胞形成2D微阵列的能力。然后,我们讨论我们开始3D印刷活细胞和支架材料的努力。

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