通过支架引导的器官形态变异来实现恒常性小肠
Mikhail Nikolaev1, Olga Mitrofanova1, Nicolas Broguiere1
1Laboratory of Stem Cell Bioengineering, Institute of Bioengineering, School of Life Sciences (SV), École Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Nature
|September 17, 2020
概括
研究人员从肠道干细胞中设计了可输注的微型肠道管. 这种突破克服了有机体的局限性,
科学领域:
- 组织工程
- 干细胞生物学
- 有机器人技术
背景情况:
- 目前从干细胞获得的上皮器官由于其囊性结构而存在局限性,限制了寿命,大小和实验操作.
- 现有的有机体模型阻碍了稳态和组织和疾病生物学的深入研究.
研究的目的:
- 设计具有改善结构和生理相关性的功能性肠道器官.
- 克服传统器官的局限性,用于先进的组织和疾病建模.
主要方法:
- 使用组织工程原理和内在细胞自我组织来引导肠道干细胞.
- 开发具有可访问的光线和体内类似空间组织的管状上皮结构.
- 连接工程微型肠道管到 perfusion 系统进行连续的细胞清除和微生物殖民.
主要成果:
- 成功生成了管状肠表皮质,可访问的光线和类似密室的域.
- 通过清除死细胞,使组织寿命延长,并允许微生物殖民.
- 这些微型肠道表现出关键的生理特征, 包括罕见的细胞类型,
结论:
- 开发的微型肠道管与传统的有机体相比, 是一个显著的进步.
- 这种"芯片上的器官"方法为研究肠道生物学和疾病提供了更具生理意义的平台.
- 该技术广泛适用于创建具有增强形状,尺寸和功能的功能器官.
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