Department of Biomedical Engineering, Indian Institute of Technology Hyderabad, Kandi, Sangareddy 502284, Telangana, India.
Department of Chemistry and Biotechnology, Swinburne University of Technology, Hawthorn, Victoria 3122, Australia.
ACS Appl Bio Mater. 2023 Dec 18;6(12):5224-5234. doi: 10.1021/acsabm.3c00481. Epub 2023 Nov 28.
The varied functions of the liver are dependent on the metabolic heterogeneity exhibited by the hepatocytes within the liver lobule spanning the porto-central axis. This complex phenomenon plays an important role in maintaining the physiological homeostasis of the liver. Standard in vitro culture models fail to mimic this spatial heterogeneity of hepatocytes, assuming a homogeneous population of cells, which leads to inaccurate translation of results. Here, we demonstrate the development of an in vitro model of hepatic zonation by mimicking the microarchitecture of the liver using a 3D printed mini bioreactor and decellularized liver matrix to provide the native microenvironmental cues. There was a differential expression of hypoxic and metabolic markers across the developed mini bioreactor, showing the establishment of gradients of oxygen, Wnt/β-catenin pathway, and other metabolic pathways. The model also showed the establishment of zone-dependent toxicity on treatment with acetaminophen. The developed model would thus be a promising avenue in the field of tissue engineering for understanding the liver physiology and pathophysiology and for drug screening to evaluate the potential of new pharmaceutical interventions.
肝脏的多种功能取决于跨越门腔轴的肝小叶内肝细胞表现出的代谢异质性。这种复杂的现象在维持肝脏的生理平衡中起着重要作用。标准的体外培养模型无法模拟肝细胞的这种空间异质性,假设细胞是同质群体,这导致结果的翻译不准确。在这里,我们通过使用 3D 打印的微型生物反应器和去细胞化的肝基质来模拟肝脏的微结构,开发了一种肝分区的体外模型,为提供天然的微环境线索。在开发的微型生物反应器中,缺氧和代谢标志物呈现出不同的表达,表明氧气、Wnt/β-连环蛋白途径和其他代谢途径梯度的建立。该模型在使用对乙酰氨基酚治疗时也显示出与区域相关的毒性。因此,该模型将成为组织工程领域的一个有前途的途径,用于理解肝脏的生理学和病理生理学,并进行药物筛选,以评估新的药物干预措施的潜力。