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Two-Photon polymerization for microfabrication of three-dimensional scaffolds for tissue engineering application

机译:用于组织工程应用的三维支架微细加工的双光子聚合

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摘要

In natural tissues cells are embedded in a three-dimensional fibrous network of biopolymers like collagen, hyaluronic acid etc. This extracellular matrix (ECM) influences the cell fate, the differentiation status, metabolic processes and provides structural integrity. For a three-dimensional or physiological cell cultivation that are required in biomedical applications (e.g. tissue engineering, BioMEMS) scaffolds are needed. These scaffolds mimic the ECM according to their biocompatibility which comprises aspects of surface compatibility and importantly for tissue engineering applications aspects of structural compatibility. We have evaluated scaffold design parameters for the three-dimensional cultivation of chondrocytes for the tissue engineering of artificial cartilage. Two-photon polymerization is a powerful technique for fabrication of polymeric three-dimensional micro- and submicro-structures. The photoinitiation system for two-photon polymerization is excited by simultaneous absorption of two photons leading to chemical polymerization reactions. Due to a tight confinement of the excitation Volume around the focal point, this method can produce micrometer sized objects maintaining a high spatial resolution down to 100 nm. Two-photon processes require very high photon densities which are provided by pulsed femtosecond lasers. The potential of this approach for microfabrication of scaffolds for tissue engineering is demonstrated by investigation of the cell response to microstructures with complex three-dimensional geometry and feature sizes in the range of few micrometers.
机译:在自然组织中,细胞被嵌入到生物聚合物的三维纤维网络中,例如胶原蛋白,透明质酸等。这种细胞外基质(ECM)影响细胞命运,分化状态,代谢过程并提供结构完整性。对于生物医学应用(例如组织工程,BioMEMS)所需的三维或生理细胞培养,需要支架。这些支架根据其生物相容性模拟ECM,其包括表面相容性方面,并且对于组织工程应用而言,重要的是结构相容性方面。我们已经评估了用于软骨组织工程的软骨细胞三维培养的支架设计参数。两光子聚合是制造聚合物三维微观和亚微观结构的一项强大技术。通过同时吸收两个光子导致化学聚合反应来激发用于双光子聚合的光引发体系。由于将激发体积严格限制在焦点周围,因此该方法可以产生微米级的物体,并保持低至100 nm的高空间分辨率。双光子工艺需要非常高的光子密度,这是由脉冲飞秒激光器提供的。通过研究细胞对具有复杂三维几何结构和特征尺寸在几微米范围内的微结构的反应,证明了该方法在组织工程支架微细加工中的潜力。

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