Automated Generation of hiPSC-Derived Hepatic Progeny by Cost-Efficient Compounds.

IF 4 2区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
STEM CELLS Pub Date : 2023-11-05 DOI:10.1093/stmcls/sxad065
Gert Vanmarcke, Jonathan Sai-Hong Chui, Axelle Cooreman, Kristof De Vos, Lana Cleuren, Rob Van Rossom, Guillem García-Llorens, Teresa Izuel Idoype, Ruben Boon, Manoj Kumar Gautam, José V Castell, Pieter Annaert, Frederic Lluis, Catherine M Verfaillie
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引用次数: 1

Abstract

Human pluripotent stem cell (hPSC)-derived hepatocyte-like cells (HLCs) hold great promise for liver disease modeling, drug discovery, and drug toxicity screens. Yet, several hurdles still need to be overcome, including among others decrease in the cost of goods to generate HLCs and automation of the differentiation process. We here describe that the use of an automated liquid handling system results in highly reproducible HLC differentiation from hPSCs. This enabled us to screen 92 chemicals to replace expensive growth factors at each step of the differentiation protocol to reduce the cost of goods of the differentiation protocol by approximately 79%. In addition, we also evaluated several recombinant extracellular matrices to replace Matrigel. We demonstrated that differentiation of hPSCs on Laminin-521 using an optimized small molecule combination resulted in HLCs that were transcriptionally identical to HLCs generated using the growth factor combinations. In addition, the HLCs created using the optimized small molecule combination secreted similar amounts of albumin and urea, and relatively low concentrations of alfa-fetoprotein, displayed similar CYP3A4 functionality, and a similar drug toxicity susceptibility as HLCs generated with growth factor cocktails. The broad applicability of the new differentiation protocol was demonstrated for 4 different hPSC lines. This allowed the creation of a scalable, xeno-free, and cost-efficient hPSC-derived HLC culture, suitable for high throughput disease modeling and drug screenings, or even for the creation of HLCs for regenerative therapies.

高效化合物自动生成hipsc衍生的肝脏后代。
人多能干细胞(hPSC)衍生的肝细胞样细胞(HLCs)在肝病建模、药物发现和药物毒性筛选方面具有巨大的前景。然而,仍有几个障碍需要克服,其中包括降低产生HLC的商品成本和差异化过程的自动化。我们在这里描述了自动液体处理系统的使用导致HLC与hPSC的高度可重复分化。这使我们能够在分化方案的每一步筛选92种化学物质来取代昂贵的生长因子,从而将分化方案的商品成本降低约79%。此外,我们还评估了几种重组细胞外基质来取代Matrigel。我们证明,使用优化的小分子组合在Lamin-521上分化hPSCs会产生与使用生长因子组合产生的HLCs在转录上相同的HLCs。此外,使用优化的小分子组合产生的HLCs分泌类似量的白蛋白和尿素,以及相对低浓度的甲胎蛋白,显示出与生长因子混合物产生的HLC相似的CYP3A4功能和相似的药物毒性易感性。新的分化方案对4种不同的hPSC品系具有广泛的适用性。这允许创建可扩展的、无外源性的、成本效益高的hPSC衍生的HLC培养物,适用于高通量疾病建模和药物筛选,甚至适用于创建用于再生疗法的HLC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
STEM CELLS
STEM CELLS 医学-生物工程与应用微生物
CiteScore
10.30
自引率
1.90%
发文量
104
审稿时长
3 months
期刊介绍: STEM CELLS, a peer reviewed journal published monthly, provides a forum for prompt publication of original investigative papers and concise reviews. STEM CELLS is read and written by clinical and basic scientists whose expertise encompasses the rapidly expanding fields of stem and progenitor cell biology. STEM CELLS covers: Cancer Stem Cells, Embryonic Stem Cells/Induced Pluripotent Stem (iPS) Cells, Regenerative Medicine, Stem Cell Technology: Epigenetics, Genomics, Proteomics, and Metabonomics, Tissue-Specific Stem Cells, Translational and Clinical Research.
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