材料科学
全息术
小学(天文学)
生物医学工程
纳米技术
光学
医学
物理
天文
作者
Changcan Li,Gang Xu,Yinhan Wang,Laixin Huang,Feiyan Cai,Long Meng,Bao Jin,Zhuoran Jiang,Hang Sun,Haitao Zhao,Xin Lü,Xinting Sang,Pengyu Huang,Fei Li,Huayu Yang,Yilei Mao,Hairong Zheng
出处
期刊:Biomaterials
[Elsevier]
日期:2024-07-01
卷期号:: 122691-122691
标识
DOI:10.1016/j.biomaterials.2024.122691
摘要
Acoustic holography (AH), a promising approach for cell patterning, emerges as a powerful tool for constructing novel invitro 3D models that mimic organs and cancers features. However, understanding changes in cell function post-AH remains limited. Furthermore, replicating complex physiological and pathological processes solely with cell lines proves challenging. Here, we employed acoustical holographic lattice to assemble primary hepatocytes directly isolated from mice into a cell cluster matrix to construct a liver-shaped tissue sample. For the first time, we evaluated the liver functions of AH-patterned primary hepatocytes. The patterned model exhibited large numbers of self-assembled spheroids and superior multifarious core hepatocyte functions compared to cells in 2D and traditional 3D culture models. AH offers a robust protocol for long-term in vitro culture of primary cells, underscoring its potential for future applications in disease pathogenesis research, drug testing, and organ replacement therapy.
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