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Enhancement of the predicted drug hepatotoxicity in gel entrapped hepatocytes within polysulfone-g-poly (ethylene glycol) modified hollow fiber.增强聚砜-g-聚乙二醇改性中空纤维内凝胶包埋肝细胞中预测的药物肝毒性。
Toxicol Appl Pharmacol. 2010 Dec 1;249(2):140-7. doi: 10.1016/j.taap.2010.08.028. Epub 2010 Sep 15.
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Thiazolidinediones and the liver in humans.噻唑烷二酮类药物与人类肝脏。
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Liver safety in patients with type 2 diabetes treated with pioglitazone: results from a 3-year, randomized, comparator-controlled study in the US.吡格列酮治疗2型糖尿病患者的肝脏安全性:美国一项为期3年的随机、对照研究结果
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Liver tissue engineering in the evaluation of drug safety.肝脏组织工程在药物安全性评估中的应用
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Serum-free collagen sandwich cultures of adult rat hepatocytes maintain liver-like properties long term: a valuable model for in vitro toxicity and drug-drug interaction studies.成年大鼠肝细胞的无血清胶原三明治培养可长期维持肝样特性:一种用于体外毒性和药物相互作用研究的有价值模型。
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Enhanced glucose synthesis in three-dimensional hepatocyte collagen matrix.三维肝细胞胶原基质中葡萄糖合成增强。
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Species-specific toxicity of diclofenac and troglitazone in primary human and rat hepatocytes.双氯芬酸和曲格列酮对原代人肝细胞和大鼠肝细胞的种属特异性毒性。
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10
Resistin and insulin resistance in hepatocytes: resistin disturbs glycogen metabolism at the protein level.抵抗素与肝细胞中的胰岛素抵抗:抵抗素在蛋白质水平扰乱糖原代谢。
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一种用于阐明肝脏葡萄糖代谢的新型 3D 类肝器官系统。

A novel 3D liver organoid system for elucidation of hepatic glucose metabolism.

机构信息

Department of Chemical and Biological Engineering, Zhejiang University, 38 Zheda Road, Hangzhou, Zhejiang 310027, China.

出版信息

Biotechnol Bioeng. 2012 Feb;109(2):595-604. doi: 10.1002/bit.23349. Epub 2011 Oct 19.

DOI:10.1002/bit.23349
PMID:22006574
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3907714/
Abstract

Hepatic glucose metabolism is a key player in diseases such as obesity and diabetes as well as in antihyperglycemic drugs screening. Hepatocytes culture in two-dimensional configurations is limited in vitro model for hepatocytes to function properly, while truly practical platforms to perform three-dimensional (3D) culture are unavailable. In this work, we present a practical organoid culture method of hepatocytes for elucidation of glucose metabolism under nominal and stress conditions. Employing this new method of culturing cells within a hollow fiber reactor, hepatocytes were observed to self-assemble into 3D spherical organoids with preservation of tight junctions and display increased liver-specific functions. Compared to both monolayer culture and sandwich culture, the hepatocyte organoids displayed higher intracellular glycogen content, glucose consumption, and gluconeogenesis and approached the in vivo values, as also confirmed by gene expression of key enzymes. Moreover, hepatocyte organoids demonstrated more realistic sensitivity to hormonal challenges with insulin, glucagon, and dexamethasone. Finally, the exposure to high glucose demonstrated toxicities including alteration of mitochondrial membrane potential, lipid accumulation, and reactive oxygen species formation, similar to the in vivo responses, which was not captured by monolayer cultures. Collectively, hepatocyte organoids mimicked the in vivo functions better than hepatocyte monolayer and sandwich cultures, suggesting suitability for applications such as antihyperglycemic drugs screening.

摘要

肝脏葡萄糖代谢是肥胖症和糖尿病等疾病以及抗高血糖药物筛选中的关键因素。肝细胞在二维构型中的培养是体外模型中肝细胞正常功能的限制因素,而真正实用的三维(3D)培养平台则无法实现。在这项工作中,我们提出了一种实用的肝细胞类器官培养方法,用于阐明正常和应激条件下的葡萄糖代谢。通过在中空纤维反应器中培养细胞的这种新方法,观察到肝细胞自组装成具有紧密连接的 3D 球形类器官,并显示出增强的肝脏特异性功能。与单层培养和三明治培养相比,肝细胞类器官显示出更高的细胞内糖原含量、葡萄糖消耗和糖异生作用,并且接近体内值,这也通过关键酶的基因表达得到证实。此外,与单层培养相比,肝细胞类器官对胰岛素、胰高血糖素和地塞米松等激素挑战表现出更真实的敏感性。最后,暴露于高葡萄糖会导致毒性,包括线粒体膜电位改变、脂质积累和活性氧形成,类似于体内反应,而这在单层培养中无法捕捉到。总之,肝细胞类器官比肝细胞单层和三明治培养更能模拟体内功能,这表明其适合于抗高血糖药物筛选等应用。