Suppr超能文献

肝脏微生理系统PhysioMimix LC12在不同培养条件和细胞类型组合下的可重复性和稳健性

Reproducibility and Robustness of a Liver Microphysiological System PhysioMimix LC12 under Varying Culture Conditions and Cell Type Combinations.

作者信息

Lim Alicia Y, Kato Yuki, Sakolish Courtney, Valdiviezo Alan, Han Gang, Bajaj Piyush, Stanko Jason, Ferguson Stephen S, Villenave Remi, Hewitt Philip, Hardwick Rhiannon N, Rusyn Ivan

机构信息

Department of Veterinary Physiology and Pharmacology, Texas A&M University, College Station, TX 77843, USA.

Laboratory for Drug Discovery and Development, Shionogi Pharmaceutical Research Center, Shionogi & Co., Ltd., Osaka 561-0825, Japan.

出版信息

Bioengineering (Basel). 2023 Oct 14;10(10):1195. doi: 10.3390/bioengineering10101195.

Abstract

The liver is one of the key organs for exogenous and endogenous metabolism and is often a target for drug- and chemical-driven toxicity. A wide range of experimental approaches has been established to model and characterize the mechanisms of drug- and chemical-induced hepatotoxicity. A number of microfluidics-enabled in vitro models of the liver have been developed, but the unclear translatability of these platforms has hindered their adoption by the pharmaceutical industry; to achieve wide use for drug and chemical safety evaluation, demonstration of reproducibility and robustness under various contexts of use is required. One of these commercially available platforms is the PhysioMimix LC12, a microfluidic device where cells are seeded into a 3D scaffold that is continuously perfused with recirculating cell culture media to mimic liver sinusoids. Previous studies demonstrated this model's functionality and potential applicability to preclinical drug development. However, to gain confidence in PhysioMimix LC12's robustness and reproducibility, supplementary characterization steps are needed, including the assessment of various human hepatocyte sources, contribution of non-parenchymal cells (NPCs), and comparison to other models. In this study, we performed replicate studies averaging 14 days with either primary human hepatocytes (PHHs) or induced pluripotent stem cell (iPSC)-derived hepatocytes, with and without NPCs. Albumin and urea secretion, lactate dehydrogenase, CYP3A4 activity, and metabolism were evaluated to assess basal function and metabolic capacity. Model performance was characterized by different cell combinations under intra- and inter-experimental replication and compared to multi-well plates and other liver platforms. PhysioMimix LC12 demonstrated the highest metabolic function with PHHs, with or without THP-1 or Kupffer cells, for up to 10-14 days. iPSC-derived hepatocytes and PHHs co-cultured with additional NPCs demonstrated sub-optimal performance. Power analyses based on replicate experiments and different contexts of use will inform future study designs due to the limited throughput and high cell demand. Overall, this study describes a workflow for independent testing of a complex microphysiological system for specific contexts of use, which may increase end-user adoption in drug development.

摘要

肝脏是外源性和内源性代谢的关键器官之一,常常是药物和化学物质所致毒性的作用靶点。人们已经建立了多种实验方法来模拟和表征药物及化学物质诱导的肝毒性机制。已经开发出了一些基于微流控技术的肝脏体外模型,但这些平台的可转化性尚不明确,这阻碍了制药行业对它们的采用;为了在药物和化学物质安全性评估中得到广泛应用,需要证明其在各种使用环境下的可重复性和稳健性。这些商业化可用平台之一是PhysioMimix LC12,它是一种微流控装置,细胞被接种到一个三维支架中,该支架用循环的细胞培养基持续灌注,以模拟肝血窦。先前的研究证明了该模型的功能及其在临床前药物开发中的潜在适用性。然而,为了增强对PhysioMimix LC12的稳健性和可重复性的信心,还需要补充表征步骤,包括评估各种人类肝细胞来源、非实质细胞(NPC)的作用以及与其他模型的比较。在本研究中,我们使用原代人肝细胞(PHH)或诱导多能干细胞(iPSC)衍生的肝细胞,在有和没有NPC的情况下进行了平均为期14天的重复研究。评估了白蛋白和尿素分泌、乳酸脱氢酶、CYP3A4活性和代谢情况,以评估基础功能和代谢能力。通过实验内和实验间重复下不同细胞组合来表征模型性能,并与多孔板和其他肝脏平台进行比较。对于PHH,无论有无THP-1或库普弗细胞,PhysioMimix LC12在长达10 - 14天的时间内都表现出最高的代谢功能。与额外的NPC共培养的iPSC衍生肝细胞和PHH表现出次优性能。由于通量有限和细胞需求量大,基于重复实验和不同使用环境的功效分析将为未来的研究设计提供参考。总体而言,本研究描述了一种针对特定使用环境对复杂微生理系统进行独立测试的工作流程,这可能会增加终端用户在药物开发中的采用率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1eb4/10603899/dbe333c31e25/bioengineering-10-01195-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验