Enhancing the Maturity and Diclofenac Metabolism Ability of Mesenchymal Stem Cell-Derived Human Hepatocytes In Vitro Using Microfluidics Technology

IF 3.1 3区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
Joana Saraiva Rodrigues, Sofia Relvas, Pedro Monteiro Condelipes, Bárbara Silva, Raquel Bozzo, Paula Guedes de Pinho, Virginia Chu, Fernando Remião, João Pedro Conde, Joana Paiva Miranda
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Abstract

Human stem cell-derived hepatocyte-like cells (HLCs) represent a powerful tool for testing the efficacy and safety of novel therapies. However, most traditional 2D in vitro models yield HLCs with unpaired hepatic functions, hampering HLCs’ adoption in the non-clinical drug development process. Here, we design a novel hepatic perfused microphysiological system (HLC-chip) that upon the optimization of the cell chamber architecture, cell inoculation strategy, and surface coating shows to improve the maturity of human HLCs derived from mesenchymal stem cell (MSC). The HLC-chip is microfabricated by photolithography and soft lithography techniques, based on polydimethylsiloxane (PDMS) molding. In particular, the optimized square-shaped HLC-chip design with seven inlets sealed against a collagen-coated polystyrene surface enables the homogeneous distribution of HLCs displaying the typical hepatic morphology. Additionally, HLCs can be maintained in the HLC-chip up to 10 days under perfusion, being positive for the hepatic markers HNF-4a, CK-18, OATP-C, and MRP2, while presenting increased ammonia detoxification ability. Likewise, upon GC-MS analysis, the 11.96- and 6.85-fold augment of diclofenac glucuronidation products in the HLC-chip and 2D cultures, respectively, demonstrate the enhanced biotransformation competence of cells. This study supports the generation of high-quality data from complex in vitro HLC systems and its usefulness for drug metabolism and toxicology studies.

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微流体技术提高间充质干细胞来源的人肝细胞的成熟度和双氯芬酸代谢能力
人类干细胞衍生的肝细胞样细胞(HLCs)是测试新疗法有效性和安全性的有力工具。然而,大多数传统的2D体外模型产生的肝细胞具有不配对的肝功能,阻碍了肝细胞在非临床药物开发过程中的应用。在此,我们设计了一种新型的肝灌注微生理系统(HLC-chip),通过优化细胞腔结构、细胞接种策略和表面涂层,显示出提高人间充质干细胞(MSC)衍生的hlc的成熟度。hlc芯片是基于聚二甲基硅氧烷(PDMS)模塑,通过光刻和软光刻技术进行微制造的。特别是,优化的方形hlc芯片设计,七个入口密封在胶原包被的聚苯乙烯表面上,使hlc均匀分布,显示典型的肝脏形态。此外,hlc在灌注后可在hlc芯片中维持10天,肝脏标志物HNF-4a、CK-18、ooatp -c和MRP2呈阳性,同时氨解毒能力增强。同样,在GC-MS分析中,在hplc芯片和2D培养中,双氯芬酸葡萄糖醛酸化产物分别增加11.96倍和6.85倍,表明细胞的生物转化能力增强。本研究支持从复杂的体外hplc系统中产生高质量的数据,以及它在药物代谢和毒理学研究中的有用性。
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来源期刊
Biotechnology Journal
Biotechnology Journal Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
8.90
自引率
2.10%
发文量
123
审稿时长
1.5 months
期刊介绍: Biotechnology Journal (2019 Journal Citation Reports: 3.543) is fully comprehensive in its scope and publishes strictly peer-reviewed papers covering novel aspects and methods in all areas of biotechnology. Some issues are devoted to a special topic, providing the latest information on the most crucial areas of research and technological advances. In addition to these special issues, the journal welcomes unsolicited submissions for primary research articles, such as Research Articles, Rapid Communications and Biotech Methods. BTJ also welcomes proposals of Review Articles - please send in a brief outline of the article and the senior author''s CV to the editorial office. BTJ promotes a special emphasis on: Systems Biotechnology Synthetic Biology and Metabolic Engineering Nanobiotechnology and Biomaterials Tissue engineering, Regenerative Medicine and Stem cells Gene Editing, Gene therapy and Immunotherapy Omics technologies Industrial Biotechnology, Biopharmaceuticals and Biocatalysis Bioprocess engineering and Downstream processing Plant Biotechnology Biosafety, Biotech Ethics, Science Communication Methods and Advances.
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