Jones Alec Arthur, Snow Christopher D
School of Biomedical Engineering, Colorado State University, Fort Collins, CO 80523-1301, USA.
Department of Chemical and Biological Engineering, Colorado State University, Fort Collins, CO 80523-1301, USA.
Chem Commun (Camb). 2024 May 30;60(45):5790-5803. doi: 10.1039/d4cc00183d.
Large-pore protein crystals (LPCs) are an emerging class of biomaterials. The inherent diversity of proteins translates to a diversity of crystal lattice structures, many of which display large pores and solvent channels. These pores can, in turn, be functionalized directed evolution and rational redesign based on the known crystal structures. LPCs possess extremely high solvent content, as well as extremely high surface area to volume ratios. Because of these characteristics, LPCs continue to be explored in diverse applications including catalysis, targeted therapeutic delivery, templating of nanostructures, structural biology. This Feature review article will describe several of the existing platforms in detail, with particular focus on LPC synthesis approaches and reported applications.
大孔蛋白晶体(LPCs)是一类新兴的生物材料。蛋白质固有的多样性转化为晶格结构的多样性,其中许多晶格结构具有大孔和溶剂通道。反过来,这些孔可以基于已知的晶体结构通过定向进化和合理重新设计来实现功能化。LPCs具有极高的溶剂含量以及极高的表面积与体积比。由于这些特性,LPCs在包括催化、靶向治疗递送、纳米结构模板化、结构生物学等多种应用中不断得到探索。这篇专题综述文章将详细描述几种现有的平台,特别关注LPC的合成方法和已报道的应用。