Acoustic-holography-patterned primary hepatocytes possess liver functions

Hairong Zheng, Zhuoran Jiang, Pengyu Huang, Gang Xu, Feiyan Cai, Haitao Zhao, Yilei Mao, Xin Lü, Hang Sun, Huayu Yang, Bao Jin, Fei Li, Changcan Li, Yinhan Wang, Laixin Huang, Long Meng, Xingting Sang
2024-07-01

SCID:  54.1/z2dnnhs9
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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2024-07-01
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Hairong Zheng
Zhuoran Jiang
Pengyu Huang
Gang Xu
Feiyan Cai
Haitao Zhao
Yilei Mao
Xin Lü
Hang Sun
Huayu Yang
Bao Jin
Fei Li
Changcan Li
Yinhan Wang
Laixin Huang
Long Meng
Xingting Sang
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