Tan Weiyi, Zhang Qiuxin, Lee Mikki, Lau William, Xu Bing
Department of Chemistry, Brandeis University, Waltham, MA, USA.
Department of Pharmacy and Pharmaceutical Sciences, National University of Singapore, Singapore.
Sci Technol Adv Mater. 2024 Jun 28;25(1):2373045. doi: 10.1080/14686996.2024.2373045. eCollection 2024.
Nanoarchitectonics, as a technology to arrange nano-sized structural units such as molecules in a desired configuration, requires nano-organization, which usually relies on intermolecular interactions. This review briefly introduces the development of using enzymatic reactions to control intermolecular interactions for generating artificial nanoarchitectures in a cellular environment. We begin the discussion with the early examples and uniqueness of enzymatically controlled self-assembly. Then, we describe examples of generating intracellular nanostructures and their relevant applications. Subsequently, we discuss cases of forming nanostructures on the cell surface via enzymatic reactions. Following that, we highlight the use of enzymatic reactions for creating intercellular nanostructures. Finally, we provide a summary and outlook on the promises and future direction of this strategy. Our aim is to give an updated introduction to the use of enzymatic reaction in regulating intermolecular interactions, a phenomenon ubiquitous in biology but relatively less explored by chemists and materials scientists. Our goal is to stimulate new developments in this simple and versatile approach for addressing societal needs.
纳米结构学作为一种将分子等纳米级结构单元排列成所需构型的技术,需要纳米组织,而这通常依赖于分子间相互作用。本文综述简要介绍了利用酶促反应来控制分子间相互作用,从而在细胞环境中生成人工纳米结构的发展情况。我们从酶促控制自组装的早期实例及其独特性开始讨论。然后,我们描述生成细胞内纳米结构的实例及其相关应用。随后,我们讨论通过酶促反应在细胞表面形成纳米结构的情况。接着,我们重点介绍利用酶促反应创建细胞间纳米结构。最后,我们对该策略的前景和未来方向进行总结与展望。我们的目的是对酶促反应在调节分子间相互作用方面的应用进行更新介绍,分子间相互作用在生物学中普遍存在,但化学家和材料科学家对其探索相对较少。我们的目标是推动这种简单且通用的方法取得新进展,以满足社会需求。