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Bioengineering an Artificial Ovary with 3D Printing

机译:使用3D打印对人工卵巢进行生物工程

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This work is the first to demonstrate well-defined 3D printed scaffolds as an artificial environment for supporting follicle health and growth. We leveraged the advantages of 3D printing to begin to understand the important effects of scaffold geometry on the behavior of follicles in vitro. Future studies will investigate mechanisms related to this geometry-dependent observation. Long-term goals include further optimizing scaffold architecture, biomaterial, and cell organization towards developing a functional and clinically translatable artificial ovary. Identifying important 3D printed scaffold design parameters and impact on cell behavior is not only needed in developing a fully functioning artificial ovary, but can also provide significant insight for 3D printing other tissues and organs.
机译:这项工作首次证明了定义明确的3D打印支架是支持卵泡健康和生长的人工环境。我们利用3D打印的优势开始了解支架几何学对体外卵泡行为的重要影响。未来的研究将研究与这种依赖几何的观测有关的机制。长期目标包括进一步优化支架结构,生物材料和细胞组织,以开发功能性且可临床翻译的人造卵巢。识别重要的3D打印支架设计参数及其对细胞行为的影响不仅是开发功能全面的人造卵巢所必需的,而且还可以为3D打印其他组织和器官提供重要的见识。

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