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Limb derived cells as a paradigm for engineering self‐assembling skeletal tissues

机译:肢体衍生的细胞作为工程自组装骨骼组织的范例

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Abstract Mimicking developmental events has been proposed as a strategy to engineer tissue constructs for regenerative medicine. However, this approach has not yet been investigated for skeletal tissues. Here, it is demonstrated that ectopic implantation of day‐14.5 mouse embryonic long bone anlagen, dissociated into single cells and randomly incorporated in a bioengineered construct, gives rise to epiphyseal growth plate‐like structures, bone and marrow, which share many morphological and molecular similarities to epiphyseal units that form after transplanting intact long bone anlage, demonstrating substantial robustness and autonomy of complex tissue self‐assembly and the overall organogenesis process. In vitro studies confirm the self‐aggregation and patterning capacity of anlage cells and demonstrate that the model can be used to evaluate the effects of large and small molecules on biological behaviour. These results reveal the preservation of self‐organizing and self‐patterning capacity of anlage cells even when disconnected from their developmental niche and subjected to system perturbations such as cellular dissociation. These inherent features make long bone anlage cells attractive as a model system for tissue engineering technologies aimed at creating constructs that have the potential to self‐assemble and self‐pattern complex architectural structures.
机译:摘要提出了模仿发展事件作为对再生医学的工程组织构建体的策略。然而,尚未对骨骼组织研究这种方法。在这里,证明了将Day-14.5小鼠胚胎长骨Anlagen分离为单细胞并随机掺入生物工程构建体中的异位植入,导致骨骺生长板状结构,骨骼和骨髓,其分享许多形态和分子移植完整的长骨抑制后形成的骨骺单元的相似性,展示复杂组织自组装和整体子组织过程的大量鲁棒性和自主性。体外研究证实了肾小球细胞的自聚集和图案化能力,并证明该模型可用于评估大小分子对生物行为的影响。这些结果表明,即使在与其发育性的乳绒内切断并进行系统扰动,如细胞解离,也揭示了肾小序细胞的自组织和自我图案化能力。这些固有的特征使得长的骨骼anlage细胞作为用于组织工程技术的模型系统,旨在创造具有自组装和自我模式复杂架构结构的构造的构造。

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