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An Integration of a Peristaltic Pump-Based Extruder into a 3D Bioprinter Dedicated to Hydrogels

机译:将蠕动泵的挤出机与致力于水凝胶的3D Biopleiner集成

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摘要

The 3D printing technologies used for medical applications are mostly based on paste extruders. These are designed for high capacity, and thus often feature large material reservoirs and large diameter nozzles. A major challenge for most 3D printing platforms is a compromise between speed, accuracy, and/or volume/mass of moving elements. To address these issues, we integrated a peristaltic pump into a bioprinter. That allowed for combining the most important requirements: high precision, a large material reservoir, and safety of biological material. The system of a fully heated nozzle and a cooled print bed were developed to maintain the optimal hydrogel temperature and crosslinking speed. Our modifications of the bioprinter design improved the mechanical properties of the printouts and their accuracy while maintaining the maximal survival rate of cells and increasing the capacity of the bioink reservoir.
机译:用于医疗应用的3D打印技术主要基于粘贴挤出机。这些设计用于高容量,因此通常具有大型材料储存器和大直径喷嘴。大多数3D打印平台的主要挑战是移动元件的速度,精度和/或体积/质量之间的折衷。为了解决这些问题,我们将蠕动泵整合到生物炉中。这允许结合最重要的要求:高精度,大型材料储存器和生物材料的安全性。开发了完全加热的喷嘴和冷却印刷床的系统以保持最佳的水凝胶温度和交联速度。我们对BioPreinter的修改改进了打印输出的机械性能及其精度,同时保持细胞的最大生存率并增加了生物储存器的容量。

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