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本文引用的文献

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Cell biology is different in small volumes: endogenous signals shape phenotype of primary hepatocytes cultured in microfluidic channels.细胞生物学在小体积环境中有所不同:内源性信号塑造了在微流控通道中培养的原代肝细胞的表型。
Sci Rep. 2016 Sep 29;6:33980. doi: 10.1038/srep33980.
2
Embryonic Stem Cells Cultured in Microfluidic Chambers Take Control of Their Fate by Producing Endogenous Signals Including LIF.在微流控芯片中培养的胚胎干细胞通过产生包括白血病抑制因子(LIF)在内的内源性信号来掌控自身命运。
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Micropatterned coculture of primary human hepatocytes and supportive cells for the study of hepatotropic pathogens.用于研究嗜肝病原体的原代人肝细胞与支持细胞的微图案共培养
Nat Protoc. 2015 Dec;10(12):2027-53. doi: 10.1038/nprot.2015.128. Epub 2015 Nov 19.
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Microfluidic co-cultures with hydrogel-based ligand trap to study paracrine signals giving rise to cancer drug resistance.基于水凝胶配体陷阱的微流控共培养物用于研究引发癌症药物耐药性的旁分泌信号。
Lab Chip. 2015 Dec 21;15(24):4614-24. doi: 10.1039/c5lc00948k. Epub 2015 Nov 6.
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Long-term culture and expansion of primary human hepatocytes.原代人肝细胞的长期培养与扩增。
Nat Biotechnol. 2015 Dec;33(12):1264-1271. doi: 10.1038/nbt.3377. Epub 2015 Oct 26.
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Using reconfigurable microfluidics to study the role of HGF in autocrine and paracrine signaling of hepatocytes.利用可重构微流控技术研究肝细胞生长因子(HGF)在肝细胞自分泌和旁分泌信号传导中的作用。
Integr Biol (Camb). 2015 Jul;7(7):815-24. doi: 10.1039/c5ib00105f.
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Effects of glucose concentration in the medium on rat hepatocyte culture.培养基中葡萄糖浓度对大鼠肝细胞培养的影响。
Ann Surg Treat Res. 2014 Aug;87(2):53-60. doi: 10.4174/astr.2014.87.2.53. Epub 2014 Jul 29.
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Probing embryonic stem cell autocrine and paracrine signaling using microfluidics.利用微流控技术探测胚胎干细胞的自分泌和旁分泌信号。
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9
Attenuation of extrinsic signaling reveals the importance of matrix remodeling on maintenance of embryonic stem cell self-renewal.外在信号的衰减揭示了基质重塑对维持胚胎干细胞自我更新的重要性。
Proc Natl Acad Sci U S A. 2012 Jan 17;109(3):835-40. doi: 10.1073/pnas.1103100109. Epub 2012 Jan 3.
10
Cultivating hepatocytes on printed arrays of HGF and BMP7 to characterize protective effects of these growth factors during in vitro alcohol injury.在 HGF 和 BMP7 的打印阵列上培养肝细胞,以研究这些生长因子在体外酒精损伤过程中的保护作用。
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使用微量多孔板利用来自肝细胞的内源性信号。

Harnessing endogenous signals from hepatocytes using a low volume multi-well plate.

作者信息

Gheibi Pantea, Son Kyung Jin, Stybayeva Gulnaz, Revzin Alexander

机构信息

Department of Biomedical Engineering, University of California, Davis, CA 95616, USA.

出版信息

Integr Biol (Camb). 2017 May 22;9(5):427-435. doi: 10.1039/c7ib00010c.

DOI:10.1039/c7ib00010c
PMID:28353687
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5800425/
Abstract

Hepatocytes are highly differentiated epithelial cells that lose their phenotype and function when removed from the in vivo environment. Given the importance of hepatic cultures for drug toxicity, bioartificial liver assist devices and basic biology studies, considerable efforts have been focused on the maintenance of hepatic function in vitro. The methods used to date include co-cultivation of hepatocytes with stromal cells, organizing these cells into spheroids and imbedding them into bioactive gels. Our team has recently demonstrated that primary rat hepatocytes confined to microfluidic channels in the absence of convection maintained the epithelial phenotype through upregulation of endogenous signals including hepatocyte growth factor (HGF). The objective of the present study was to transition from microfluidic devices, which are somewhat specialized and challenging to use, towards low volume multiwell plates ubiquitous in biology laboratories. Using a combination of 3D printing and micromolding we have constructed inserts that can be placed into standard 12-well plates and can be used to create low volume culture conditions under which primary hepatocytes maintained a differentiated phenotype. This phenotype enhancement was confirmed by hepatic function assays including albumin synthesis and expression. Importantly we confirmed upregulation of HGF inside the low volume culture plates and demonstrated that inhibition of HGF signaling degraded the hepatic phenotype in our cell culture platform. Overall, this study outlines a new cell culture system that leverages the low volume effects of microfluidic channels in a multiwell plate format. Beyond hepatocytes, such a system may be of use in the maintenance of other difficult-to-culture cells including stem cells and primary cancer cells.

摘要

肝细胞是高度分化的上皮细胞,当从体内环境中取出时会失去其表型和功能。鉴于肝培养物在药物毒性、生物人工肝辅助装置和基础生物学研究中的重要性,人们已投入大量精力致力于在体外维持肝功能。迄今为止使用的方法包括将肝细胞与基质细胞共培养、将这些细胞组织成球体并将其嵌入生物活性凝胶中。我们的团队最近证明,在没有对流的情况下,局限于微流控通道中的原代大鼠肝细胞通过上调包括肝细胞生长因子(HGF)在内的内源性信号来维持上皮表型。本研究的目的是从使用起来有些专门化且具有挑战性的微流控装置转向生物学实验室中普遍存在的小体积多孔板。通过结合3D打印和微成型技术,我们构建了可放入标准12孔板中的插入物,可用于创建小体积培养条件,在此条件下原代肝细胞维持分化表型。通过包括白蛋白合成和表达在内的肝功能测定证实了这种表型增强。重要的是,我们证实了小体积培养板内HGF的上调,并证明抑制HGF信号会在我们的细胞培养平台中使肝表型退化。总体而言,本研究概述了一种新的细胞培养系统,该系统利用多孔板形式的微流控通道的小体积效应。除了肝细胞之外,这样的系统可能有助于维持包括干细胞和原发性癌细胞在内的其他难以培养的细胞。