Miller Alisha J, Pearce Amanda K, Foster Jeffrey C, O'Reilly Rachel K
School of Chemistry, University of Birmingham, Edgbaston, Birmingham B15 2TT, United Kingdom.
ACS Cent Sci. 2021 Jan 27;7(1):30-38. doi: 10.1021/acscentsci.0c01196. Epub 2020 Dec 18.
Polymersomes are a class of synthetic vesicles composed of a polymer membrane surrounding an aqueous inner cavity. In addition to their overall size, the thickness and composition of polymersome membranes determine the range of potential applications in which they can be employed. While synthetic polymer chemists have made great strides in controlling polymersome membrane parameters, measurement of their permeability to various analytes including gases, ions, organic molecules, and macromolecules remains a significant challenge. In this Outlook, we compare the general methods that have been developed to quantify polymersome membrane permeability, focusing in particular on their capability to accurately measure analyte flux. In addition, we briefly highlight strategies to control membrane permeability. Based on these learnings, we propose a set of criteria for designing future methods of quantifying membrane permeability such that the passage of a variety of molecules into and out of their lumens can be better understood.
聚合物囊泡是一类合成囊泡,由围绕水相内腔的聚合物膜组成。除了其整体尺寸外,聚合物囊泡膜的厚度和组成决定了它们可被应用的潜在应用范围。虽然合成聚合物化学家在控制聚合物囊泡膜参数方面取得了很大进展,但测量它们对包括气体、离子、有机分子和大分子在内的各种分析物的渗透性仍然是一项重大挑战。在本展望中,我们比较了已开发出的用于量化聚合物囊泡膜渗透性的一般方法,特别关注它们准确测量分析物流通量的能力。此外,我们简要强调了控制膜渗透性的策略。基于这些经验教训,我们提出了一套设计未来量化膜渗透性方法的标准,以便能更好地理解各种分子进出其内腔的过程。