National Physical Laboratory, Teddington, TW11 0LW, Middlesex, UK.
Methods Mol Biol. 2021;2208:149-165. doi: 10.1007/978-1-0716-0928-6_10.
Nanoscale systems encapsulating biomacromolecules hold promise for cell and gene therapies. Common issues hampering progress include polydispersity, heterogeneity in size and shape, agglomeration, and poor stability. Much attention is given to the search of novel designs. However, reliable protocols for the validation of encapsulating systems in the continuum of their physicochemical properties, from design to ultrastructure, are lacking. Herein, we report electron microscopy protocols for biologically functional shell-like peptide capsids, which exhibit the physical characteristics of viruses including folding-mediated self-assembly, hollow shell morphology, and uniformity in size.
纳米级系统包裹生物大分子有望应用于细胞和基因治疗。阻碍进展的常见问题包括多分散性、大小和形状的异质性、聚集和稳定性差。人们非常关注新型设计的研究。然而,缺乏用于验证封装系统的可靠方案,这些系统涵盖了从设计到超微结构的物理化学性质的连续体。在此,我们报告了具有生物学功能的壳状肽衣壳的电子显微镜方案,其表现出病毒的物理特性,包括折叠介导的自组装、空心壳形态和尺寸均匀性。