Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, California 90095, United States.
ACS Appl Mater Interfaces. 2020 Sep 2;12(35):38887-38898. doi: 10.1021/acsami.0c07206. Epub 2020 Aug 24.
Perfluorocarbon (PFC) nanoemulsions, droplets of fluorous solvent stabilized by surfactants dispersed in water, are simple yet versatile nanomaterials. The orthogonal nature of the fluorous phase promotes the formation of nanoemulsions through a simple, self-assembly process while simultaneously encapsulating fluorous-tagged payloads for various applications. The size, stability, and surface chemistry of PFC nanoemulsions are controlled by the surfactant. Here, we systematically study the effect of the hydrophilic portion of polymer surfactants on PFC nanoemulsions. We find that the hydrophilic block length and identity, the overall polymer hydrophilic/lipophilic balance, and the polymer architecture are all important factors. The ability to modulate these parameters enables control over initial size, stability, payload retention, cellular internalization, and protein adsorption of PFC nanoemulsions. With the insight obtained from this systematic study of polymer amphiphiles stabilizing PFC nanoemulsions, design features required for the optimal material are obtained.
全氟碳(PFC)纳米乳剂是由表面活性剂稳定的氟相液滴分散在水中形成的简单而多功能的纳米材料。氟相的正交性质通过简单的自组装过程促进纳米乳剂的形成,同时包封各种应用的氟标记有效载荷。PFC 纳米乳剂的大小、稳定性和表面化学性质由表面活性剂控制。在这里,我们系统地研究了聚合物表面活性剂亲水区对 PFC 纳米乳剂的影响。我们发现亲水区长度和性质、聚合物整体亲水/亲脂平衡以及聚合物结构都是重要因素。能够调节这些参数使我们能够控制 PFC 纳米乳剂的初始大小、稳定性、有效载荷保留、细胞内化和蛋白质吸附。通过对聚合物两亲物稳定 PFC 纳米乳剂的系统研究获得的见解,获得了最佳材料所需的设计特征。