Microscale Collagen and Fibroblast Interactions Enhance Primary Human Hepatocyte Functions in Three-Dimensional Models.

Q2 Biochemistry, Genetics and Molecular Biology Gene expression Pub Date : 2020-06-12 DOI:10.3727/105221620X15868728381608
David A Kukla, Alexandra L Crampton, David K Wood, Salman R Khetani
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引用次数: 11

Abstract

Human liver models that are three-dimensional (3D) in architecture are indispensable for compound metabolism/toxicity screening, to model liver diseases for drug discovery, and for cell-based therapies; however, further development of such models is needed to maintain high levels of primary human hepatocyte (PHH) functions for weeks to months. Therefore, here we determined how microscale 3D collagen I presentation and fibroblast interaction affect the longevity of PHHs. High-throughput droplet microfluidics was utilized to generate reproducibly sized (∼300-μm diameter) microtissues containing PHHs encapsulated in collagen I ± supportive fibroblasts, namely, 3T3-J2 murine embryonic fibroblasts or primary human hepatic stellate cells (HSCs); self-assembled spheroids and bulk collagen gels (macrogels) containing PHHs served as controls. Hepatic functions and gene expression were subsequently measured for up to 6 weeks. We found that microtissues placed within multiwell plates rescued PHH functions at 2- to 30-fold higher levels than spheroids or macrogels. Further coating of PHH microtissues with 3T3-J2s led to higher hepatic functions than when the two cell types were either coencapsulated together or when HSCs were used for the coating instead. Importantly, the 3T3-J2-coated PHH microtissues displayed 6+ weeks of relatively stable hepatic gene expression and function at levels similar to freshly thawed PHHs. Lastly, microtissues responded in a clinically relevant manner to drug-mediated cytochrome P450 induction or hepatotoxicity. In conclusion, fibroblast-coated collagen microtissues containing PHHs display high hepatic functions for 6+ weeks and are useful for assessing drug-mediated CYP induction and hepatotoxicity. Ultimately, microtissues may find utility for modeling liver diseases and as building blocks for cell-based therapies.

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在三维模型中,微尺度胶原和成纤维细胞的相互作用增强了人肝细胞的初级功能。
三维(3D)人体肝脏模型对于化合物代谢/毒性筛选、肝脏疾病模型用于药物发现和基于细胞的治疗是必不可少的;然而,需要进一步开发这种模型来维持高水平的原发性人肝细胞(PHH)功能数周至数月。因此,在这里,我们确定了微尺度三维胶原I的呈现和成纤维细胞的相互作用如何影响phh的寿命。利用高通量微流控技术生成可复制大小(~ 300 μm直径)的微组织,其中含有包裹在胶原I±支持性成纤维细胞(即3T3-J2小鼠胚胎成纤维细胞或原代人肝星状细胞(hsc)中的PHHs;含有phh的自组装球体和散装胶原凝胶(大凝胶)作为对照。随后测量肝功能和基因表达长达6周。我们发现放置在多孔板内的微组织比球体或大凝胶修复PHH功能高2至30倍。进一步用3T3-J2s包覆PHH微组织,比两种细胞类型共包覆在一起或用造血干细胞包覆时具有更高的肝功能。重要的是,3t3 - j2包被的PHH微组织显示出6周以上相对稳定的肝脏基因表达和功能,其水平与新鲜解冻的PHH相似。最后,微组织对药物介导的细胞色素P450诱导或肝毒性有临床相关的反应。总之,含PHHs的成纤维细胞包被的胶原微组织在6周以上的时间内显示出较高的肝功能,可用于评估药物介导的CYP诱导和肝毒性。最终,微组织可能会在肝脏疾病建模和细胞治疗中发挥作用。
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来源期刊
Gene expression
Gene expression 生物-生物工程与应用微生物
CiteScore
3.80
自引率
0.00%
发文量
3
审稿时长
>12 weeks
期刊介绍: Gene Expression, The Journal of Liver Research will publish articles in all aspects of hepatology. Hepatology, as a research discipline, has seen unprecedented growth especially in the cellular and molecular mechanisms of hepatic health and disease, which continues to have a major impact on understanding liver development, stem cells, carcinogenesis, tissue engineering, injury, repair, regeneration, immunology, metabolism, fibrosis, and transplantation. Continued research and improved understanding in these areas will have a meaningful impact on liver disease prevention, diagnosis, and treatment. The existing journal Gene Expression has expanded its focus to become Gene Expression, The Journal of Liver Research to meet this growing demand. In its revised and expanded scope, the journal will publish high-impact original articles, reviews, short but complete articles, and special articles (editorials, commentaries, opinions) on all aspects of hepatology, making it a unique and invaluable resource for readers interested in this field. The expanded team, led by an Editor-in-Chief who is uniquely qualified and a renowned expert, along with a dynamic and functional editorial board, is determined to make this a premier journal in the field of hepatology.
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