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利用生物组织的基本原理来推动生物制造的发展。

Exploiting the fundamentals of biological organization for the advancement of biofabrication.

机构信息

Department of Chemical & Environmental Engineering, University of Nottingham, Nottingham, NG7 2RD, UK; School of Pharmacy, University of Nottingham, Nottingham, NG7 2RD, UK; Biodiscovery Institute, University of Nottingham, Nottingham, NG7 2RD, UK.

Department of Chemical & Environmental Engineering, University of Nottingham, Nottingham, NG7 2RD, UK.

出版信息

Curr Opin Biotechnol. 2022 Apr;74:42-54. doi: 10.1016/j.copbio.2021.10.016. Epub 2021 Nov 17.

Abstract

The field of biofabrication continues to progress, offering higher levels of spatial control, reproducibility, and functionality. However, we remain far from recapitulating what nature has achieved. Biological systems such as tissues and organs are assembled from the bottom-up through coordinated supramolecular and cellular processes that result in their remarkable structures and functionalities. In this perspective, we propose that incorporating such biological assembling mechanisms within fabrication techniques, offers an opportunity to push the boundaries of biofabrication. We dissect these mechanisms into distinct biological organization principles (BOPs) including self-assembly, compartmentalization, diffusion-reaction, disorder-to-order transitions, and out-of-equilibrium processes. We highlight recent work demonstrating the viability and potential of these approaches to enhance scalability, reproducibility, vascularization, and biomimicry; as well as current challenges to overcome.

摘要

生物制造领域不断发展,提供了更高水平的空间控制、重现性和功能性。然而,我们离重现大自然的成就还相差甚远。组织和器官等生物系统是通过协调的超分子和细胞过程自下而上组装而成的,这些过程导致了它们显著的结构和功能。在这方面,我们提出,在制造技术中纳入这些生物组装机制,为推动生物制造的发展提供了机会。我们将这些机制分解为不同的生物组织原则(BOPs),包括自组装、分隔、扩散反应、无序到有序的转变以及非平衡过程。我们强调了最近的工作,这些工作证明了这些方法在提高可扩展性、重现性、血管生成和仿生学方面的可行性和潜力;以及目前需要克服的挑战。

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