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通过微颗粒介导的生长因子传递在人多能干细胞的 3D 培养中高效且经济有效地生成肝样细胞。

Efficient and cost-effective generation of hepatocyte-like cells through microparticle-mediated delivery of growth factors in a 3D culture of human pluripotent stem cells.

机构信息

Department of Stem Cells and Developmental Biology, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran.

Department of Cell Engineering, Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran.

出版信息

Biomaterials. 2018 Mar;159:174-188. doi: 10.1016/j.biomaterials.2018.01.005. Epub 2018 Jan 2.

Abstract

Biomedical application of human pluripotent stem cell-derived hepatocyte-like cells (hPSC-HLCs) relies on efficient large-scale differentiation, which is commonly performed by a suspension culture of three-dimensional (3D) multicellular spheroids in bioreactors. However, this approach requires large amounts of growth factors (GFs) and the need to overcome limited diffusional transport posed by the inherent 3D structure of hPSC spheroids. Here, we have hypothesized that localized delivery of GFs by incorporation of GF-laden degradable polymeric microparticles (MPs) within the hPSC spheroids would circumvent such limitations. In this study, GFs for hepatocytic differentiation were encapsulated in gelatin-coated poly (l-lactic acid)/poly (DL-lactic-co-glycolic acid) (PLLA/PLGA) MPs which were subsequently incorporated into the hPSC spheroids. Gene expression analyses demonstrated that MP delivery of the GFs resulted in similar expression levels of hepatocytic markers despite the use of 10-fold less total GFs. The differentiated HLCs in the MP group exhibited ultrastructure and functional characteristics comparable with the conventional soluble GF group. The generated HLCs in the MP group were successfully engrafted in an acute liver injury mouse model and maintained hepatocytic function after implantation. These results suggested that sustained and localized delivery of GFs using MPs might offer a novel approach towards scalable technologies for hepatocytic differentiation and engineer a better 3D microenvironment for cells.

摘要

人多能干细胞源性肝细胞样细胞(hPSC-HLCs)在生物医学中的应用依赖于高效的大规模分化,通常通过三维(3D)多细胞球体在生物反应器中的悬浮培养来实现。然而,这种方法需要大量的生长因子(GFs),并且需要克服由 hPSC 球体固有的 3D 结构所带来的有限扩散传输的限制。在这里,我们假设通过在 hPSC 球体中掺入载有 GF 的可降解聚合物微球(MPs)来局部递送 GF,可以避免这种限制。在这项研究中,用于肝细胞分化的 GF 被包封在明胶涂覆的聚(L-乳酸)/聚(DL-乳酸-共-乙醇酸)(PLLA/PLGA) MPs 中,随后将其掺入 hPSC 球体中。基因表达分析表明,尽管使用的总 GF 减少了 10 倍,但 MPs 递送 GF 导致了类似的肝细胞标记物表达水平。MP 组中的分化 HLCs 表现出与传统可溶性 GF 组相当的超微结构和功能特征。在 MP 组中生成的 HLCs 成功地植入了急性肝损伤小鼠模型,并在植入后保持了肝细胞功能。这些结果表明,使用 MPs 进行持续和局部递送 GF 可能为肝细胞分化的可扩展技术提供一种新方法,并为细胞构建更好的 3D 微环境。

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