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仿生大孔 PEG 水凝胶作为人类造血干/祖细胞扩增的 3D 支架。

Biomimetic macroporous PEG hydrogels as 3D scaffolds for the multiplication of human hematopoietic stem and progenitor cells.

机构信息

Department of New Materials and Biosystems, Max Planck Institute for Intelligent Systems, Heisenbergstr. 3, Stuttgart 70569, Germany.

出版信息

Biomaterials. 2014 Jan;35(3):929-40. doi: 10.1016/j.biomaterials.2013.10.038. Epub 2013 Oct 28.

Abstract

Multiplication of hematopoietic stem cells (HSCs) in vitro with current standard methods is limited and mostly insufficient for clinical applications of these cells. They quickly lose their multipotency in culture because of the fast onset of differentiation. In contrast, HSCs efficiently self-renew in their natural microenvironment (their niche) in the bone marrow. Therefore, engineering artificial bone marrow analogs is a promising biomaterial-based approach for culturing these cells. In the current study, a straight-forward, easy-to-use method for the production of biofunctionalized, macroporous hydrogel scaffolds that mimic the spongy architecture of trabecular bones was developed. As surrogates for cellular components of the niche, mesenchymal stem cells (MSCs) from different sources (bone marrow and umbilical cord) and osteoblast-like cells were tested. MSCs from bone marrow had the strongest pro-proliferative effect on freshly isolated human hematopoietic stem and progenitor cells (HSPCs) from umbilical cord blood. Co-culture in the pores of the three-dimensional hydrogel scaffold showed that the positive effect of MSCs on preservation of HSPC stemness was more pronounced in 3D than in standard 2D cell culture systems. Thus, the presented biomimetic scaffolds revealed to meet the basic requirements for creating artificial HSC niches.

摘要

目前的标准方法对造血干细胞(HSCs)的体外增殖能力有限,且大多不足以满足这些细胞的临床应用需求。由于快速分化,它们在培养过程中很快失去多能性。相比之下,HSCs 在骨髓的天然微环境(其龛位)中高效地自我更新。因此,工程化人工骨髓类似物是一种很有前途的基于生物材料的方法,可用于培养这些细胞。在本研究中,开发了一种直截了当、易于使用的方法,可生产仿生功能化的大孔水凝胶支架,模拟小梁骨的海绵状结构。作为龛位细胞成分的替代品,分别来自骨髓和脐带的间充质干细胞(MSCs)和成骨样细胞进行了测试。来自骨髓的 MSCs 对新鲜分离的来自脐带血的人造血干/祖细胞(HSPCs)具有最强的促增殖作用。在三维水凝胶支架的孔中进行共培养表明,MSCs 对 HSPC 干性的保存作用在 3D 中比在标准的 2D 细胞培养系统中更为明显。因此,所提出的仿生支架满足了创建人造 HSC 龛位的基本要求。

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