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A biocompatible macromolecular two-photon initiator based on hyaluronan

机译:基于透明质酸的生物相容性高分子双光子引发剂

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摘要

The possibility of the direct encapsulation of living cells via two-photon induced photopolymerization enables the microfabrication of hydrogel scaffolds with high initial cell loadings and intimate matrix-cell contact. While highly efficient water-soluble two-photon initiators based on benzylidene ketone dyes have been developed, they exhibit considerable cyto- and phototoxicity. To address the problem of photoinitiator migration from the extracellular matrix into the cytosol, a two-photon initiator bound to a polymeric hyaluronan backbone (HAPI) was synthesized in this work. HAPI exhibited a distinct improvement of cytocompatibility compared to a reference two-photon initiator. Basic photophysical investigations were performed to characterize the absorption and fluorescence behavior of HAPI. Laser scanning microscopy was used to visualize and confirm the hindered transmembrane migration behavior of HAPI. The performance of HAPI was tested in two-photon polymerization at exceedingly high printing speeds of 100 mm s-1 producing gelatin-based complex 3D hydrogel scaffolds with a water content of 85%. The photodamage of the structuring process was low and viable MC3T3 cells embedded in the gel were monitored for several days after structuring.
机译:通过双光子诱导的光聚合直接包封活细胞的可能性使水凝胶支架的微加工具有高的初始细胞负荷和紧密的基质-细胞接触。尽管已经开发了基于亚苄基酮染料的高效水溶性双光子引发剂,但它们具有相当大的细胞毒性和光毒性。为了解决光引发剂从细胞外基质迁移到细胞质中的问题,在这项工作中合成了与聚合物透明质酸骨架(HAPI)结合的双光子引发剂。与参考双光子引发剂相比,HAPI表现出明显的细胞相容性改善。进行了基本的光物理研究,以表征HAPI的吸收和荧光行为。激光扫描显微镜用于可视化和确认HAPI的跨膜迁移行为。 HAPI的性能在双光子聚合中以100 mm s-1的极高印刷速度进行了测试,生产出的明胶基复合3D水凝胶支架的水含量为85%。结构化过程的光损伤很低,并且在结构化后的几天内监测嵌入凝胶中的存活MC3T3细胞。

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