Peng Haisheng, Zhao Man, Liu Xiaoying, Tong Tianjian, Zhang Wenyuan, Gong Chen, Chowdhury Ratul, Wang Qun
Department of Pharmacology, Medical College of Shaoxing University, 508 Huancheng Western Road, Shaoxing 312099, China.
Department of Pharmaceutics, Daqing Branch, Harbin Medical University, Research and Development of Natural Products Key Laboratory of Harbin Medical University, 39 Xin Yang Road, Daqing 163319, China.
Chem Rev. 2024 Dec 11;124(23):13178-13215. doi: 10.1021/acs.chemrev.4c00241. Epub 2024 Nov 26.
As the foundation of life, a cell is generally considered an advanced microreactor with a complicated structure and function. Undeniably, this fascinating complexity motivates scientists to try to extricate themselves from natural living matter and work toward rebuilding artificial cells . Driven by synthetic biology and bionic technology, the research of artificial cells has gradually become a subclass. It is not only held import in many disciplines but also of great interest in its synthesis. Therefore, in this review, we have reviewed the development of cell and bionic strategies and focused on the efforts of bottom-up strategies in artificial cell construction. Different from starting with existing living organisms, we have also discussed the construction of artificial cells based on biomimetic materials, from simple cell scaffolds to multiple compartment systems, from the construction of functional modules to the simulation of crucial metabolism behaviors, or even to the biomimetic of communication networks. All of them could represent an exciting advance in the field. In addition, we will make a rough analysis of the bottlenecks in this field. Meanwhile, the future development of this field has been prospecting. This review may bridge the gap between materials engineering and life sciences, forming a theoretical basis for developing various life-inspired assembly materials.
作为生命的基础,细胞通常被视为一个具有复杂结构和功能的先进微反应器。不可否认,这种迷人的复杂性促使科学家试图从天然生物物质中解脱出来,致力于重建人工细胞。在合成生物学和仿生技术的推动下,人工细胞的研究逐渐成为一个子类。它不仅在许多学科中具有重要意义,而且在其合成方面也备受关注。因此,在本综述中,我们回顾了细胞和仿生策略的发展,并重点关注了自下而上策略在人工细胞构建中的努力。与从现有生物体入手不同,我们还讨论了基于仿生材料构建人工细胞的情况,从简单的细胞支架到多隔室系统,从功能模块的构建到关键代谢行为的模拟,甚至到通信网络的仿生。所有这些都可能代表该领域令人兴奋的进展。此外,我们将对该领域的瓶颈进行粗略分析。同时,对该领域的未来发展进行了展望。本综述可能弥合材料工程与生命科学之间的差距,为开发各种受生命启发的组装材料形成理论基础。