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用于精准微组织工程的3D生物打印:进展、应用与前景

3D-Bioprinting for Precision Microtissue Engineering: Advances, Applications, and Prospects.

作者信息

Liu Jinrun, Wang Qi, Le Yinpeng, Hu Min, Li Chen, An Ni, Song Qingru, Yin Wenzhen, Ma Wenrui, Pan Mingyue, Feng Yutian, Wang Yunfang, Han Lu, Liu Juan

机构信息

Hepato-Pancreato-Biliary Center, Beijing Tsinghua Changgung Hospital, Key Laboratory of Digital Intelligence Hepatology (Ministry of Education/Beijing), School of Clinical Medicine, Tsinghua University, Beijing, 102218, China.

Clinical Translational Science Center, Beijing Tsinghua Changgung Hospital, Tsinghua University, Beijing, 102218, China.

出版信息

Adv Healthc Mater. 2025 Apr;14(10):e2403781. doi: 10.1002/adhm.202403781. Epub 2024 Dec 8.

Abstract

Microtissues, engineered to emulate the complexity of human organs, are revolutionizing the fields of regenerative medicine, disease modelling, and drug screening. Despite the promise of traditional microtissue engineering, it has yet to achieve the precision required to fully replicate organ-like structures. Enter 3D bioprinting, a transformative approach that offers unparalleled control over the microtissue's spatial arrangement and mechanical properties. This cutting-edge technology enables the detailed layering of bioinks, crafting microtissues with tissue-like 3D structures. It allows for the direct construction of organoids and the fine-tuning of the mechanical forces vital for tissue maturation. Moreover, 3D-printed devices provide microtissues with the necessary guidance and microenvironments, facilitating sophisticated tissue interactions. The applications of 3D-printed microtissues are expanding rapidly, with successful demonstrations of their functionality in vitro and in vivo. This technology excels at replicating the intricate processes of tissue development, offering a more ethical and controlled alternative to traditional animal models. By simulating in vivo conditions, 3D-printed microtissues are emerging as powerful tools for personalized drug screening, offering new avenues for pharmaceutical development and precision medicine.

摘要

微组织旨在模拟人体器官的复杂性,正在彻底改变再生医学、疾病建模和药物筛选等领域。尽管传统微组织工程前景广阔,但尚未达到完全复制类器官结构所需的精度。3D生物打印应运而生,这是一种变革性方法,能对微组织的空间排列和力学性能进行无与伦比的控制。这项前沿技术能够精确分层生物墨水,打造具有类组织三维结构的微组织。它可以直接构建类器官,并对组织成熟至关重要的机械力进行微调。此外,3D打印设备为微组织提供了必要的引导和微环境,促进了复杂的组织相互作用。3D打印微组织的应用正在迅速扩展,已成功证明其在体外和体内的功能。这项技术擅长复制组织发育的复杂过程,为传统动物模型提供了一种更符合伦理且可控的替代方案。通过模拟体内条件,3D打印微组织正成为个性化药物筛选的强大工具,为药物开发和精准医学开辟了新途径。

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