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芯片肝技术的发展与应用——现状与未来展望

Developments and Applications of Liver-on-a-Chip Technology-Current Status and Future Prospects.

作者信息

Mugaanyi Joseph, Huang Jing, Fang Jiongze, Musinguzi Arthur, Lu Caide, Chen Zaozao

机构信息

Department of Hepato-Pancreato-Biliary Surgery, Ningbo Medical Center Lihuili Hospital, Health Science Center, Ningbo University, Ningbo 315040, China.

Health Science Center, Ningbo University, Ningbo 315200, China.

出版信息

Biomedicines. 2025 May 22;13(6):1272. doi: 10.3390/biomedicines13061272.

Abstract

: Liver-on-a-chip (LiOC) technology is increasingly recognized as a transformative platform for modeling liver biology, disease mechanisms, drug metabolism, and toxicity screening. Traditional two-dimensional (2D) in vitro models lack the complexity needed to replicate the liver's unique microenvironment. This review aims to summarize recent advancements in LiOC systems, emphasizing their potential in biomedical research and translational applications. : This narrative review synthesizes findings from key studies on the development and application of LiOC platforms. We explored innovations in material science and bioengineering, including microfluidic design, 3D printing, stem cell- and tissue-derived liver organoid integration, and co-culture strategies. Commercially available LiOC systems and their regulatory relevance were also evaluated. : LiOC systems have evolved from simple PDMS-based chips to complex, multicellular constructs incorporating hepatocytes, endothelial cells, Kupffer cells, and hepatic stellate cells. Recent studies demonstrate their superior ability to replicate liver-specific architecture and functions. Applications span cancer research, drug toxicity assessment (e.g., drug-induced liver injury prediction with >85% sensitivity), disease modeling, and regenerative medicine. Several platforms have gained FDA recognition and are in active use for preclinical drug testing. : LiOC technology offers a more physiologically relevant alternative to traditional models and holds promise for reducing reliance on animal studies. While challenges remain, such as vascularization and long-term function, ongoing advancements are paving the way toward clinical and pharmaceutical integration. The technology is poised to play a key role in personalized medicine and next-generation therapeutic development.

摘要

芯片肝脏(LiOC)技术日益被视为一种变革性平台,用于模拟肝脏生物学、疾病机制、药物代谢和毒性筛选。传统的二维(2D)体外模型缺乏复制肝脏独特微环境所需的复杂性。本综述旨在总结LiOC系统的最新进展,强调其在生物医学研究和转化应用中的潜力。:本叙述性综述综合了关于LiOC平台开发和应用的关键研究结果。我们探索了材料科学和生物工程方面的创新,包括微流体设计、3D打印、干细胞和组织来源的肝脏类器官整合以及共培养策略。还评估了市售的LiOC系统及其监管相关性。:LiOC系统已从简单的基于聚二甲基硅氧烷(PDMS)的芯片发展为包含肝细胞、内皮细胞、库普弗细胞和肝星状细胞的复杂多细胞构建体。最近的研究表明它们在复制肝脏特异性结构和功能方面具有卓越能力。应用范围涵盖癌症研究、药物毒性评估(例如,预测药物性肝损伤的敏感性>85%)、疾病建模和再生医学。一些平台已获得美国食品药品监督管理局(FDA)认可,并正积极用于临床前药物测试。:LiOC技术为传统模型提供了一种更具生理相关性的替代方案,有望减少对动物研究的依赖。尽管挑战依然存在,如血管化和长期功能问题,但持续的进展正在为临床和制药整合铺平道路。该技术有望在个性化医疗和下一代治疗开发中发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10f8/12189686/04d1345a343c/biomedicines-13-01272-g001.jpg

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