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通过细胞水凝胶的附加光图案化制备三维肝组织。

Fabrication of 3D hepatic tissues by additive photopatterning of cellular hydrogels.

作者信息

Liu Tsang Valerie, Chen Alice A, Cho Lisa M, Jadin Kyle D, Sah Robert L, DeLong Solitaire, West Jennifer L, Bhatia Sangeeta N

机构信息

Department of Bioengineering, University of California, San Diego, La Jolla, California, USA.

出版信息

FASEB J. 2007 Mar;21(3):790-801. doi: 10.1096/fj.06-7117com. Epub 2006 Dec 28.

Abstract

We have fabricated a hepatic tissue construct using a multilayer photopatterning platform for embedding cells in hydrogels of complex architecture. We first explored the potential of established hepatocyte culture models to stabilize isolated hepatocytes for photoencapsulation (e.g., double gel, Matrigel, cocultivation with nonparenchymal cells). Using photopolymerizable PEG hydrogels, we then tailored both the chemistry and architecture of the hydrogels to further support hepatocyte survival and liver-specific function. Specifically, we incorporated adhesive peptides to ligate key integrins on these adhesion-dependent cells. To identify the appropriate peptides for incorporation, the integrin expression of cultured hepatocytes was monitored by flow cytometry and their functional role in cell adhesion was assessed on full-length extracellular matrix (ECM) molecules and their adhesive peptide domains. In addition, we modified the hydrogel architecture to minimize barriers to nutrient transport for these highly metabolic cells. Viability of encapsulated cells was improved in photopatterned hydrogels with structural features of 500 microm in width over unpatterned, bulk hydrogels. Based on these findings, we fabricated a multilayer photopatterned PEG hydrogel structure containing the adhesive RGD peptide sequence to ligate the alpha5beta1 integrin of cocultured hepatocytes. Three-dimensional photopatterned constructs were visualized by digital volumetric imaging and cultured in a continuous flow bioreactor for 12 d where they performed favorably in comparison to unpatterned, unperfused constructs. These studies will have impact in the field of liver biology as well as provide enabling tools for tissue engineering of other organs.

摘要

我们利用多层光图案化平台构建了一种肝组织构建体,用于将细胞包埋在具有复杂结构的水凝胶中。我们首先探索了已建立的肝细胞培养模型在稳定分离的肝细胞以进行光包封方面的潜力(例如,双凝胶、基质胶、与非实质细胞共培养)。然后,我们使用可光聚合的聚乙二醇(PEG)水凝胶,对水凝胶的化学性质和结构进行了调整,以进一步支持肝细胞的存活和肝脏特异性功能。具体而言,我们引入了黏附肽以连接这些依赖黏附的细胞上的关键整合素。为了确定合适的引入肽,通过流式细胞术监测培养肝细胞中的整合素表达,并在全长细胞外基质(ECM)分子及其黏附肽结构域上评估它们在细胞黏附中的功能作用。此外,我们对水凝胶结构进行了修饰,以尽量减少这些高代谢细胞营养物质运输的障碍。与无图案的块状水凝胶相比,具有500微米宽度结构特征的光图案化水凝胶中包封细胞的活力得到了提高。基于这些发现,我们制备了一种多层光图案化PEG水凝胶结构,其中包含黏附性RGD肽序列,以连接共培养肝细胞的α5β1整合素。通过数字体积成像对三维光图案化构建体进行可视化,并在连续流生物反应器中培养12天,与无图案、未灌注的构建体相比,它们的表现良好。这些研究将对肝脏生物学领域产生影响,并为其他器官的组织工程提供有用的工具。

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