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首页> 外文期刊>Biomaterials >Tissue engineered humanized bone supports human hematopoiesis in vivo
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Tissue engineered humanized bone supports human hematopoiesis in vivo

机译:组织工程化的人性化骨骼在体内支持人类造血

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摘要

Advances in tissue-engineering have resulted in a versatile tool-box to specifically design a tailored microenvironment for hematopoietic stem cells (HSCs) in order to study diseases that develop within this setting. However, most current in vivo models fail to recapitulate the biological processes seen in humans. Here we describe a highly reproducible method to engineer humanized bone constructs that are able to recapitulate the morphological features and biological functions of the HSC niches. Ectopic implantation of biodegradable composite scaffolds cultured for 4 weeks with human mesenchymal progenitor cells and loaded with rhBMP-7 resulted in the development of a chimeric bone organ including a large number of human mesenchymal cells which were shown to be metabolically active and capable of establishing a humanized microenvironment supportive of the homing and maintenance of human HSCs. A syngeneic mouse-to-mouse transplantation assay was used to prove the functionality of the tissue-engineered ossicles. We predict that the ability to tissue engineer a morphologically intact and functional large-volume bone organ with a humanized bone marrow compartment will help to further elucidate physiological or pathological interactions between human HSCs and their native niches. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:组织工程学的进步导致了一个多功能的工具箱,专门为造血干细胞(HSC)设计了量身定制的微环境,以便研究在这种情况下发展成的疾病。但是,大多数当前的体内模型无法概括人类所见的生物学过程。在这里,我们描述了一种高度可重复的方法来工程化人性化的骨结构,该结构能够概括HSC壁ches的形态特征和生物学功能。异位植入人间充质祖细胞培养4周并负载rhBMP-7的可生物降解复合材料支架,导致嵌合骨器官的发育,其中包括大量的人间充质细胞,这些细胞具有代谢活性并能够建立人性化微环境,支持人类HSC的归巢和维持。同种小鼠到小鼠的移植测定法被用来证明组织工程小骨的功能。我们预测组织工程化具有人性化的骨髓腔室的形态完整且功能性的大体积骨器官的能力将有助于进一步阐明人类HSC与它们的天然壁ni之间的生理或病理学相互作用。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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