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DEVELOPMENT OF A MULTI-ARM BIOPRINTER FOR HYBRID TISSUE ENGINEERING

机译:用于混合组织工程的多臂Bioplinter的开发

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This paper highlights the development of a multi-arm bioprinter (MABP) capable of concurrent deposition of multiple materials with independent dispensing parameters including deposition speed, material dispensing rate and frequency for functional zonal-stratified articular cartilage tissue fabrication. The MABP consists of two Cartesian robots mounted in parallel on the same mechanical frame. This platform is used for concurrent filament fabrication and cell spheroid deposition. A single-layer structure is fabricated and concurrently deposited with spheroids to validate this system. Preliminary results showed that the MABP was able to produce filaments and spheroids with well-defined geometry and high cell viability. The resulting filament width has a variation of +/-170 μm and the center-to-center filament distance was within 100 μm of the specified distance. This fabrication system is aimed to be further refined for printing structures with varying porosities to mimic the natural cartilage structure in order to produce functional tissue-engineered articular cartilage using cell spheroids containing cartilage progenitor cells (CPCs).
机译:本文突出了能够在具有独立分配参数沉积多种材料的多臂生物炉(MABP)的开发,包括沉积速度,材料分配率和用于功能性地区分层的关节软骨组织制造的沉积速度。 MABP由两个平行安装在同一机械框架上的笛卡尔机器人组成。该平台用于并发灯丝制造和细胞球体沉积。用球状体制造和同时沉积单层结构以验证该系统。初步结果表明,MABP能够生产具有明确定义的几何形状和高细胞活力的长丝和球状体。得到的灯丝宽度的变化+/-170μm,中心到中心灯丝距离在指定距离的100μm内。该制造系统旨在进一步改进具有不同孔隙率的印刷结构以模拟天然软骨结构,以便使用包含软骨祖细胞(CPC)的细胞球状体产生功能组织工程的关节软骨。

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