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Laser-based three-dimensional multiscale micropatterning of biocompatible hydrogels for customized tissue engineering scaffolds

机译:基于激光的生物相容性水凝胶的三维多尺度微图案化用于定制的组织工程支架

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摘要

Light-induced material phase transitions enable the formation of shapes and patterns from the nano- to the macroscale. From lithographic techniques that enable high-density silicon circuit integration, to laser cutting and welding, light–matter interactions are pervasive in everyday materials fabrication and transformation. These noncontact patterning techniques are ideally suited to reshape soft materials of biological relevance. We present here the use of relatively low-energy (   2 nJ) ultrafast laser pulses to generate 2D and 3D multiscale patterns in soft silk protein hydrogels without exogenous or chemical cross-linkers. We find that high-resolution features can be generated within bulk hydrogels through nearly 1 cm of material, which is 1.5 orders of magnitude deeper than other biocompatible materials. Examples illustrating the materials, results, and the performance of the machined geometries in vitro and in vivo are presented to demonstrate the versatility of the approach.
机译:光诱导的材料相变使得能够形成从纳米尺度到宏观尺度的形状和图案。从支持高密度硅电路集成的光刻技术,到激光切割和焊接,光-物质的相互作用在日常的材料制造和转换中无处不在。这些非接触式构图技术非常适合对具有生物学意义的软材料进行塑形。我们在这里介绍了使用相对较低能量(<2 nJ)的超快激光脉冲在没有外源或化学交联剂的软丝蛋白水凝胶中生成2D和3D多尺度图案的情况。我们发现,通过近1厘米的材料可以在散装水凝胶中生成高分辨率特征,该材料比其他生物相容性材料深1.5个数量级。给出了举例说明材料,结果以及机械加工的几何体在体外和体内的性能的示例,以证明该方法的多功能性。

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