Mass Generation and Long-term Expansion of Hepatobiliary Organoids from Adult Primary Human Hepatocytes

类有机物 生物 再生(生物学) 再生医学 肝细胞 离体 细胞生物学 干细胞 癌症研究 体内 病理 体外 医学 生物化学 生物技术
作者
Ary Marsee,Arabela Ritchie,Adam Myszczyszyn,Shicheng Ye,J.-C. Chang,Arif Ibrahim Ardisasmita,Indi P. Joore,Jose Castro-Alpizar,Sabine A. Fuchs,Kerstin Schneeberger,Bart Spee
出处
期刊: [Cold Spring Harbor Laboratory]
标识
DOI:10.1101/2024.06.10.598262
摘要

Adult primary human hepatocytes (PHHs) are the gold standard in ex vivo toxicological studies and possess the clinical potential to treat patients with liver disease as advanced therapy medicinal products (ATMPs). However, the utility of this valuable cell type has been limited by short-term functionality and limited expansion potential in vitro. While notable advances have been made in the long-term maintenance of primary hepatocytes, there has been limited success in driving the efficient generation and expansion of adult PHH-derived organoids which recapitulate both liver tissue architecture and function, hampering in vitro studies and regenerative medicine applications. Here we describe the mass generation and long-term expansion of hepatobiliary organoids with functionally interconnected hepatic and biliary-like structures from adult primary human hepatocytes. Hepatobiliary organoids retain the expression of lineage and functional markers, closely resembling PHH, while also acquiring the expression of regeneration, fetal and biliary markers. Organoids perform key hepatocyte functions while proliferating and can be matured to enhance their functionality. As a proof-of-principle, we demonstrate that hepatobiliary organoids can recapitulate hallmarks of cholestasis and steatosis in vitro. Moreover, we show that hepatocytes can be transfected, transduced and gene edited in 3D prior to organoid generation, facilitating a wide range of applications. Our novel hepatobiliary organoid system bridges the gap between short-term functionality of primary human hepatocytes and the need for scalable, long-term organoid models of the adult liver, offering immense potential for drug testing, disease modeling, and advanced therapeutic applications.

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