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在生物体内合成生物材料。

Synthesizing biomaterials in living organisms.

机构信息

State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Bioactive Materials, Ministry of Education, College of Life Sciences, Nankai University, Tianjin 300071, P. R. China.

Key Laboratory of Advanced Drug Delivery Systems of Zhejiang Province, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310058, China.

出版信息

Chem Soc Rev. 2023 Nov 27;52(23):8126-8164. doi: 10.1039/d2cs00999d.

Abstract

Living organisms fabricate biomacromolecules such as DNA, RNA, and proteins by the self-assembly process. The research on the mechanism of biomacromolecule formation also inspires the exploration of synthesized biomaterials. By elaborate design, artificial building blocks or precursors can self-assemble or polymerize into functional biomaterials within living organisms. In recent decades, these so-called synthesized biomaterials have achieved extensive applications in cell-fate manipulation, disease theranostics, bioanalysis, cellular surface engineering, and tissue regeneration. In this review, we classify strategies for synthesis into non-covalent, covalent, and genetic types. The development of these approaches is based on the chemical principles of supramolecular chemistry and synthetic chemistry, biological cues such as enzymes and microenvironments, and the means of synthetic biology. By summarizing the design principles in detail, some insights into the challenges and opportunities in this field are provided to  enlighten further research.

摘要

生物体能通过自组装过程来合成生物大分子,如 DNA、RNA 和蛋白质。对生物大分子形成机制的研究也启发了对合成生物材料的探索。通过精心设计,人工砌块或前体可以在活体内自组装或聚合形成功能性生物材料。在过去的几十年中,这些所谓的合成生物材料在细胞命运操纵、疾病治疗诊断、生物分析、细胞表面工程和组织再生等领域得到了广泛应用。在这篇综述中,我们将合成策略分为非共价、共价和遗传类型。这些方法的发展基于超分子化学和合成化学的化学原理、酶和微环境等生物线索以及合成生物学的手段。通过详细总结设计原理,为该领域的挑战和机遇提供了一些见解,以启发进一步的研究。

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